WO2002016368A1 - Process for the preparation and purification of thiol-containing maytansinoids - Google Patents

Process for the preparation and purification of thiol-containing maytansinoids Download PDF

Info

Publication number
WO2002016368A1
WO2002016368A1 PCT/US2001/010816 US0110816W WO0216368A1 WO 2002016368 A1 WO2002016368 A1 WO 2002016368A1 US 0110816 W US0110816 W US 0110816W WO 0216368 A1 WO0216368 A1 WO 0216368A1
Authority
WO
WIPO (PCT)
Prior art keywords
maytansinol
methyl
maytansinoid
thiol
alanine
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Ceased
Application number
PCT/US2001/010816
Other languages
English (en)
French (fr)
Inventor
Ravi Vankeepuram Jagannatha Chari
Wayne Charles Widdison
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Immunogen Inc
Original Assignee
Immunogen Inc
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Immunogen Inc filed Critical Immunogen Inc
Priority to JP2002521468A priority Critical patent/JP4922535B2/ja
Priority to AT01926594T priority patent/ATE313545T1/de
Priority to DE60116113T priority patent/DE60116113T2/de
Priority to AU53118/01A priority patent/AU763107B2/en
Priority to EP01926594A priority patent/EP1313738B1/en
Priority to CA2373554A priority patent/CA2373554C/en
Priority to HK03108241.7A priority patent/HK1056357B/en
Publication of WO2002016368A1 publication Critical patent/WO2002016368A1/en
Anticipated expiration legal-status Critical
Ceased legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C07ORGANIC CHEMISTRY
    • C07DHETEROCYCLIC COMPOUNDS
    • C07D498/00Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms
    • C07D498/12Heterocyclic compounds containing in the condensed system at least one hetero ring having nitrogen and oxygen atoms as the only ring hetero atoms in which the condensed system contains three hetero rings
    • C07D498/18Bridged systems
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61KPREPARATIONS FOR MEDICAL, DENTAL OR TOILETRY PURPOSES
    • A61K47/00Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient
    • A61K47/50Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient the non-active ingredient being chemically bound to the active ingredient, e.g. polymer-drug conjugates
    • A61K47/51Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient the non-active ingredient being chemically bound to the active ingredient, e.g. polymer-drug conjugates the non-active ingredient being a modifying agent
    • A61K47/68Medicinal preparations characterised by the non-active ingredients used, e.g. carriers or inert additives; Targeting or modifying agents chemically bound to the active ingredient the non-active ingredient being chemically bound to the active ingredient, e.g. polymer-drug conjugates the non-active ingredient being a modifying agent the modifying agent being an antibody, an immunoglobulin or a fragment thereof, e.g. an Fc-fragment
    • A61K47/6801Drug-antibody or immunoglobulin conjugates defined by the pharmacologically or therapeutically active agent
    • A61K47/6803Drugs conjugated to an antibody or immunoglobulin, e.g. cisplatin-antibody conjugates
    • A61K47/68033Drugs conjugated to an antibody or immunoglobulin, e.g. cisplatin-antibody conjugates the drug being a maytansine
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P31/00Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P31/00Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
    • A61P31/12Antivirals
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P35/00Antineoplastic agents
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P37/00Drugs for immunological or allergic disorders
    • A61P37/02Immunomodulators
    • A61P37/06Immunosuppressants, e.g. drugs for graft rejection
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61PSPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
    • A61P43/00Drugs for specific purposes, not provided for in groups A61P1/00-A61P41/00

Definitions

  • the present invention relates to a process for preparing and purifying cytotoxic agents. More specifically, the invention relates a process for preparing and purifying cytotoxic agents comprising thiol-containing maytansinoids. These cytotoxic agents can be used as therapeutic agents by linking them to a cell binding agent, through the thiol group, and then delivering them to a specific cell population in a targeted fashion.
  • Cytotoxic drugs such as methotrexate, daunorubicin, doxorubicin, vincristine, vinblastine, melphalan, mitomycin C, and chlorambucil have been conjugated to a variety of murine monoclonal antibodies.
  • the drug molecules were linked to the antibody molecules through an intermediary carrier molecule such as serum albumin (Garnett et al., 46 Cancer Res.
  • One of the cleavable linkers that has been employed for the preparation of antibody-drug conjugates is an acid-labile linker based on cis-aconitic acid that takes advantage of the acidic environment of different intracellular compartments such as the endosomes encountered during receptor mediated endocytosis and the lysosomes.
  • Shen and Ryser introduced this method for the preparation of conjugates of daunorubicin with macromolecular carriers (102 Biochem. Biophys. Res. Commun. 1048-1054 (1981)).
  • Yang and Reisfeld used the same technique to conjugate daunorubicin to an anti- melanoma antibody (80 J Natl. Cane. Inst. 1154-1159 (1988)). Dillman et al.
  • Another major drawback with existing antibody-drug conjugates is their inability to deliver a sufficient concentration of drug to the target site because of the limited number of targeted antigens and the relatively moderate cytotoxicity of cancerostatic drugs like methotrexate, daunorubicin and vincristine.
  • cancerostatic drugs like methotrexate, daunorubicin and vincristine.
  • an antibody conjugate of doxorubicin was evaluated in human clinical trials, and found to be ineffective (Tolcher et al., 17 J Clinical Oncol. 478-484 (1999)).
  • linkage of a large number of drug molecules either directly to the antibody or through a polymeric carrier molecule becomes necessary.
  • such heavily modified antibodies often display impaired binding to the target antigen and fast in vivo clearance from the blood stream.
  • Maytansinoids are highly cytotoxic drugs. Maytansine was first isolated by Kupchan et al. from the east African shrub Maytenus serrata and
  • the naturally occurring and synthetic C-3 esters can be classified into two groups:
  • Esters of group (b) were found to be much more cytotoxic than esters 110 of group (a).
  • Maytansine is a mitotic inhibitor. Treatment of L1210 cells in vivo with maytansine has been reported to result in 67% of the cells accumulating in mitosis. Untreated control cells were reported to demonstrate a mitotic index ranging from between 3.2 to 5.8% (Sieber et al., 43 Comparative
  • maytansine has also been shown to be active. Tumor growth in the P388 lymphocytic leukemia system was shown to be inhibited over a
  • U.S. Pat. Nos. 5,208,020 and 5,416,064 disclose that a thiol-containing maytansinoid may be produced by first converting a maytansinoid bearing an ester group into maytansinol, then esterifying the resulting maytansinol with N-methyl-E-alanine or N-methyl-Z-cysteine derivatives to yield disulfide- containing maytansinoids, followed by cleavage of the disulfide group with
  • maytansinol is first derived from maytansine or other esters of maytansinol by reduction, such as with lithium aluminum
  • the next step in the process is the conversion of maytansinol to
  • the object of the present invention is to provide an improved process for the preparation and purification of thiol-containing maytansinoids that reduces the complexity of the process, allows scalability and improves the 200 yield.
  • the present invention provides a process for 205 preparing a thiol-containing maytansinoid comprising the steps of:
  • a reducing agent selected from the group consisting of lithium trimethoxyaluminum hydride (LiAl(OMe) 3 H), lithium triethoxyaluminum hydride (LiAl(OEt) 3 H), lithium tripropoxyaluminum hydride (LiAl(OPr) H),
  • sodium trimethoxyaluminum hydride NaAl(OMe) 3 H
  • sodium triethoxyaluminum hydride NaAl(OEt) 3 H
  • sodium tripropoxyaluminum hydride NaAl(OPr) 3 H
  • the reducing agent in (1) is lithium trimethoxyaluminum hydride.
  • the reducing agent in (1) is used in a concentration of
  • the reducing agent in (1) is used in a concentration of from about 7.5 to 30 equivalents per mole of the maytansinoid C-3 ester. Most preferably, the reducing agent in (1) is used in a concentration from about 10 to 20 equivalents per mole of the maytansinoid C-3 ester.
  • the reductive hydrolysis in (1) is conducted at a temperature of from about -80°C to 0°C. More preferably, the reductive hydrolysis in (1) is conducted at a temperature of from about -45°C to -27.5°C. Most preferably, the reductive hydrolysis in (1) is conducted at a temperature of from about -35°C to -30°C.
  • the reducing agent in (1) is added over a period of from about 5 to 40 minutes. More preferably, the reducing agent in (1) is added over a period of from about 7 to 20 minutes. Most preferably, the reducing agent in (1) is added over a period of from about 8 to 12 minutes.
  • the maytansinol is purified in (2) by chromatography.
  • the maytansinol is purified in (2) by chromatography where the chromatography is silica gel column chromatography, preparative thin- layer chromatography on silica gel or cyano-bonded silica HPLC column chromatography.
  • the maytansinol is purified in (2) by chromatography where the chromatography is silica gel column 245 chromatography.
  • the purification in (2) is performed at ambient temperature.
  • the maytansinol in (2) is purified to a purity of about 95%.
  • the carboxylic acid in (3) is selected from the group consisting of N-methyl-N-methyldithioacetyl-I-alanine, N-methyl-N-(3- 250 methyldithio-propanoyl)-Z-alanine, N-methyl-N-(3-methyldithio-butanoyl)- - alanine, N-methyl-N-(4-methyldithio-butanoyl)-__.-alanine, N-methyl-N-(5- methyldithio-pentanoyl)-Z-alanine, N-methyl-N-(3-phenyldithio-propanoyl)- - alanine, N-methyl-N- [3 -(4-nitrophenyldithio)-propanoyl]E-alanine, N-acetyl- N-methyl-methyldithiocysteine and N-acetyl-N
  • the esterification in (3) is conducted at ambient temperature.
  • the esterification in (3) further comprises the use of 260 dicyclohexylcarbodiimide and zinc chloride.
  • the separating in (4) is carried out by passing the reaction mixture over a cyano-bonded silica HPLC column.
  • the separating in (4) is carried out at about 25°C.
  • the reduction in (5) uses dithiothreitol as the reducing 265 agent.
  • the reduction in (5) is carried out in a mixture of ethyl acetate-methanol-aqueous buffer which is capable of keeping buffer salts, dithiothreitol, unreduced maytansinoids and reduced maytansinoids in solution. More preferably, the mixture of ethyl acetate-methanol-aqueous
  • 270 buffer is 1 : 1.5 : 1 , v/v/v, ethyl acetate:methanol:aqueous buffer.
  • the concentration of the thiol-containing maytansinoid is such that the thiol-containing maytansinoid remains soluble in ethyl acetate- methanol-aqueous buffer.
  • the concentration of the thiol-containing maytansinoid is about 4 g/L.
  • the reduction in (5) is carried out in an oxygen-free atmosphere.
  • the reduction in (5) is carried out at about 25°C.
  • the purification of the thiol-containing maytansinoid in (6) is by chromatography. More preferably, the chromatography is by a cyano- 280 bonded HPLC column. Most preferably, the chromatography is by a cyano- bonded HPLC column equilibrated and run in an organic solvent.
  • the organic solvent is a mixture of hexanes:2-propanol:ethyl acetate, more preferably the solvent is a 78.0:5.5:16.5, v/v/v, mixture of hexanes:2- propanol: ethyl acetate.
  • Fig. 1 shows the reduction of ansamitocins la-e to yield maytansinol
  • Fig. 2a shows the conversion of the ⁇ -mercapto-carboxylic acids 3a-e to the respective methyl-dithio derivatives 4a-e.
  • Fig. 2b shows the conversion of the ⁇ -mercapto-carboxylic acid 3b to the respective aryl-dithio derivatives 5a-b.
  • Fig. 2c shows the conversion of the methyl-dithio derivatives 4a-e and the aryl-dithio derivatives 5a-b to N ⁇ methyl-E-alanine derivatives 6a-g containing a disulfide group.
  • Fig. 3 a shows the conversion of N-methylcysteine and N- methylhomocysteine (7a-b) to the respective disulfide derivatives 8a-b.
  • Fig. 3b shows the acylation of the disulfide derivatives 8a-b to N- methyl-E-cysteine derivatives 9a-b containing a disulfide group.
  • Fig. 4 shows the esterification of maytansinol (2) with the N-methyl-Z-
  • alanine derivatives 6a-g containing a disulfide group to yield the disulfide- containing maytansinoid stereoisomers 10, from which the L-isomers are separated via chromatography to yield the disulfide-containing maytansinoid L-isomers lOa-g, which in turn are reduced to yield the thiol-containing maytansinoids lla-g.
  • FIG. 5 shows the esterification of maytansinol (2) with the N-methyl-E- cysteine derivatives 9a-b containing a disulfide group to yield the disulfide- containing maytansinoid stereoisomers 12, from which the L-isomers are separated via chromatography to yield the disulfide-containing maytansinoid L-isomers 12a-b, which in turn are reduced to yield the thiol-containing
  • This invention is based on the synthesis of thiol-containing maytansinoid derivatives that retain high cytotoxicity and that can be effectively linked to cell binding agents.
  • the art reveals that the existing 315 methods for producing thiol-containing maytansinoids are complex, non- scalable and produce low product yield.
  • the present invention overcomes these problems by disclosing a novel process for producing thiol-containing maytansinoids that reduces the complexity of the process, allows scalability and improves product yield.
  • the invention provides a novel process for the production of thiol-containing maytansinoids, useful agents for the elimination of diseased or abnormal cells that are to be killed or lysed, such as tumor cells (particularly solid tumor cells), virus infected cells, microorganism infected cells, parasite infected cells, autoimmune cells (cells that produce
  • thiol-containing maytansinoids can be chemically linked to a cell binding agent while keeping a high cytotoxicity either in bound form or in
  • High cytotoxicity is defined as exhibiting a toxicity having an IC 5 o ⁇ the inhibiting concentration of a toxic substance that leaves a surviving fraction of 0.5 ⁇ of about 10 "8 M or less when measured in vitro with KB cells upon a 24 hour exposure time to the drug.
  • Cell binding agents may be of any kind presently known, or that become known and include peptides and non-peptides. Generally, these can be antibodies (especially monoclonal antibodies), lymphokines, hormones, growth factors, nutrient-transport molecules (such as transferrin), or any other
  • maytansinoids include maytansinol and 345 maytansinol analogues.
  • suitable maytansinol analogues include those having a modified aromatic ring and those having modifications at other positions.
  • Specific examples of suitable analogues of maytansinol having a modified aromatic ring, and the process for their production, include: 350 (1) C-19-dechloro (U.S. Pat. No. 4,256,746) (prepared by lithium aluminum hydride reduction of ansamitocin P-2);
  • linking group In order to link the maytansinoid to the cell binding agent, a linking group is used. 375 Suitable linking groups are well known in the art and include disulfide groups, thioether groups, acid labile groups, photolabile groups, peptidase labile groups and esterase labile groups. Preferred are disulfide groups and thioether groups.
  • the linking group is part of a 380 chemical moiety that is covalently bound to the maytansinoid through disclosed methods.
  • the chemical moiety is covalently bound to the maytansinoid via an ester linkage.
  • the linkage position is expected to be useful as the linkage position, depending upon the type of link. For example, for forming an 385 ester linkage, the C-3 position having a hydroxyl group, the C-14 position modified with hydroxymethyl, the C-15 position modified with hydroxy and the C-20 position having a hydroxy group are all expected to be useful.
  • C-3 position is preferred and the C-3 position of maytansinol is especially preferred.
  • 390 Also preferred is an N-methyl-E-alanine-containing C-3 ester of maytansinol and an N-methyl-E-cysteine-containing C-3 ester of maytansinol or their analogues.
  • the present invention recites a process for the preparation and purification of a thiol-containing maytansinoid that positions the linking group 395 at C-3 of maytansinol.
  • Step 1 Synthesis of Maytansinol (2) from an Ester-Bearing Maytansinoid
  • the first step in the preparation and purification of thiol-containing maytansinoids involves the reductive hydrolysis of a maytansinoid C-3 ester into maytansinol (2).
  • the maytansinoid C-3 ester is maytansine or ansamitocin P-
  • ansamitocin P-3 (lc). Maytansine can obtained as described by Kupchan et al, 42 J Org. Chem. 2349-2357 (1977). The microbiological preparation of ansamitocin P-3 (lc) is described in US Pat. No. 4,450,234 and in Hatano et al., 48 Agric. Biol. Chem. 1721-1729 (1984).
  • the anhydrous solvent is tetrahydrofuran (THF), 2- methoxyethyl ether, dioxane or di-ethyl ether, although other solvents can be used. More preferably, the anhydrous solvent is tefrahydrofuran. Preferably, 20 to 30 mL of the anhydrous solvent is used per gram of ester, more preferably 25 mL/g.
  • the inert gas is argon, nitrogen or helium, although other gases can be used. More preferably, the inert gas is argon.
  • the solution is maintained at between about 0 to -80°C, more preferably between about -30 to -50°C, most preferably between about -35 to - 45°C, in a dry ice-acetone bath.
  • a reducing agent is also cooled, and then transferred into the chilled solution of the maytansinoid C-3 ester.
  • the reaction is maintained under an inert gas atmosphere, at a low temperature, and stirred.
  • the reducing agent is lithium trimethoxyaluminum hydride (LiAl(OMe) H), lithium triethoxyaluminum hydride (LiAl(OEt) 3 H), lithium tripropoxyaluminum hydride (LiAl(OPr) 3 H), sodium trimethoxyaluminum hydride (NaAl(OMe) 3 H), sodium triethoxyaluminum hydride (NaAl(OEt) 3 H) or sodium tripropoxyaluminum hydride (NaAl(OPr) 3 H). More preferably, the reducing agent is lithium trimethoxyaluminum hydride (LiAl(OMe) 3 H).
  • the reducing agent is cooled to about -30 to -40°C in a dry ice- acetone bath.
  • the cooled reducing agent is transferred into the chilled solution of the maytansinoid C-3 ester via a canula.
  • the inert gas is argon, nitrogen or helium, although other gases can be used. More preferably, the inert gas is argon.
  • the reducing agent is used in a concentration of from about 5 to 100 equivalents per mole of the maytansinoid C-3 ester, more preferably from about 7.5 to 30 equivalents per mole, most preferably from about 10 to 20 equivalents per mole.
  • the reducing agent is added to the chilled solution of maytansinoid C-3 ester over a time period ranging from about 5 to 40 minutes, more preferably from about 7 to 20 minutes, most preferably from about 8 to 12 minutes.
  • the reaction is maintained under an inert gas atmosphere at a temperature range of from about -25°C to -80°C, more preferably from about -27°C to -45°C, most preferably from about -30°C to -35°C.
  • the reaction is stirred between about 30 min and three hours, more preferably for about three hours.
  • the amount of reducing agent used, the temperature maintained during the reaction, the length of the time period over which the reducing agent is added and the reaction time are each dependent on the other. For example, the lower the amount of the reducing agent, the longer the reaction time. Similarly, the lower the temperature, the larger the excess of reducing agent required and the longer the time required for completion of the reaction. Moreover, the slower the rate the reducing agent is added, the longer reaction time required for completion of the reaction.
  • the reaction is quenched by the addition of saturated sodium chloride solution, water or ammonium chloride solution, more preferably by the addition of saturated sodium chloride solution.
  • the reaction is quenched using between about 20 to 40 mL of the solution per gram of maytansinoid ester used.
  • the reaction is extracted with ethyl acetate, dichloromethane, toluene, chloroform or ether, more preferably with ethyl acetate.
  • the reaction is extracted at the rate of between about 4 x 80 to 4 x 200 mL/g maytansinoid ester used.
  • the combined ethyl acetate extracts are dried over sodium sulfate or magnesium sulfate, more preferably sodium sulfate, and filtered.
  • the crude maytansinol (2) may be purified, if required, by chromatography.
  • the crude maytansinol (2) may be purified by dissolving it in a minimum volume of ethyl acetate, dichloro methane, ether, chloroform or toluene, more preferably ethyl acetate, and purified via silica gel column chromatography using dichloromethane, chloroform, ethyl acetate or toluene, more preferably dichloromethane.
  • the crude maytansinol (2) may be purified by dissolving it in a minimum volume of ethyl acetate, dichloro methane, ether, chloroform or toluene, more preferably ethyl acetate, and purified via silica gel column chromatography using dichloromethane, chloroform, ethyl acetate or toluene, more preferably dichloromethane.
  • the crude maytansinol (2) may be purified by dissolving it in a minimum volume of e
  • 475 maytansinol (2) is eluted with a step gradient starting with dichloromethane or ethyl acetate, or a mixture of dichloromethane: ethyl acetate:alcohol, chloroform:ethyl acetate or toluene:ethyl acetate, preferably 77:23:0, v/v/v, dichloromethane:ethyl acetate:alcohol.
  • the concentration of alcohol is slowly increased from 0 to about 20%, preferably from 0 to about 10%.
  • the purification may be performed at ambient temperature.
  • the purification is performed at a temperature of about 20°C and 25°C.
  • the alcohol is methanol, ethanol, n-propanol, iso-propanol, n-, iso-, sec-, or tert-butanol,
  • the crude maytansinol (2) may be purified using a cyano-bonded silica HPLC column that is run in normal phase, using organic solvents in the mobile phase.
  • the crude maytansinol (2) is dissolved in ethyl acetate, ethyl acetate:isopropanol:hexane (mobile phase)
  • the cyano-bonded HPLC column that is used for the separation is one having cyanopropyl and cyano-di-isopropyl groups stably bonded to the silica backbone.
  • Such columns are available under the trade names DiazemTM, ZorbaxTM,
  • the organic solvent used in the mobile phase is hexanes:2-propanol:dichloromethane:ethyl acetate.
  • the concentration of each constituent of the organic solvent is in the range 65-75:2-4:15-20:5-10, v/v/v/v, respectively. More preferably, the concentration of each element of the organic solvent is
  • maytansinol (2) purified by this process is at least 90% pure, more preferably at least 95% pure.
  • maytansinol (2) of less than 90% purity is used in the following steps, additional purification steps may be required.
  • the reduction reaction may yield small amounts of undesired side products, in addition to the maytansinol (2).
  • purification may be required to remove the contaminants.
  • the side products are not generated, such as where the precise times, temperatures, and amounts are established, then the
  • Step 2 Synthesis of Esters of Maytansinol (2) Having a Linking Group
  • the maytansinol (2) from Step 1 is next esterified with disulfide- containing N-methyl-Z-alanine derivatives 6a-g or N-methyl-i-cysteine derivatives 9a-b, in the presence of dicyclohexylcarbodiimide (DCC) and zinc
  • N-methyl-Z-alanine may be prepared as described in the literature (see, Fu, S. J. & Birnbaum, S. M., 75 J. Amer. Chem. Soc. 918 (1953)), or is
  • the N-methyl-Z-alanine derivatives containing a disulfide group are N-methyl-N-methyldithioacetyl-Z-alanine, N-methyl-N-(3- methyldithio-propanoyl)-Z-alanine, N-methyl-N-(4-methylditl ⁇ io-butanoyl)-Z- alanine, N-methyl-N-(3-methyldithio-butanoyl)-Z-alanine, N-methyl-N-(5-
  • These disulfide-containing derivatives 9a-b will be condensed with maytansinol (2) to form maytansinoids containing disulfide-linking groups 12a-b.
  • N-methyl-Z-cysteine can be prepared as described in Undheim and
  • N-methyl-Z-cysteine derivatives containing a disulfide group are N-acetyl-N-methyl-methyldithiocysteine (9a) and N-acetyl-N- methyl-methyldithiohomocysteine (9b) .
  • racemic versions of 6a- g and 9a-b i.e. a D, L-mixture
  • the N-methyl-Z-alanine or N-methyl-Z-cysteine derivative containing a disulfide group is N-methyl-N-(methyldithio-propanoyl)-Z- alanine (6b) and N-acetyl-N-methyl-methyldithiocysteine (9a), respectively.
  • the solution of the disulfide-containing derivative comprises dry methylene chloride, tetrahydrofuran, or ether, preferably dry methylene chloride, using between about 10 to 50 mL/gram maytansinol, preferably 20 mL/gram.
  • the inert gas is argon, nitrogen or helium, although other gases can be used. More preferably, the inert gas is argon.
  • the DCC or EDC is in methylene chloride, tetrahydrofuran or ether, preferably methylene chloride, using about 10 to 15 mL per gram DCC or EDC, preferably 12 mL/g.
  • the DCC or EDC solution is added at the rate of about 5 to 7 moles/mole of maytansinol.
  • the ZnCl 2 is about 1 M, and it is used at between about 1.2 to 1.5 moles/mole of
  • 580 maytansinol, preferably 1.25 moles, in ether or methylene chloride, preferably ether.
  • maytansinol is in methylene chloride, tetrahydrofuran or ether, more preferably methylene chloride, using about 10 to 120 mL solvent per gram of maytansinol, preferably 100 mL/g.
  • the reaction mixture is stirred at between 4 to 30°C, preferably room temperature, for between 1 to 24 hours,
  • the separation can be conducted using silica gel chromatography, but the process is not easily converted to an industrial scale. Separation can also be accomplished through other, less desirable, means such as HPLC using chiral columns or silica columns.
  • the 600 separation are those that have cyanopropyl and cyano-di-isopropyl groups stably bonded to the silica backbone.
  • Such columns are available under the trade names DiazemTM, ZorbaxTM, MonochromTM, and KromasilTM, among others.
  • the organic solvent used in the mobile phase is hexanes:2- propanol: ethyl acetate.
  • the yield of the separation is greater than
  • the desired L-isomer has a retention time of about 36 to 46 min, preferably 42 min, while the D-isomer elutes at about 50 to 60 minutes, preferably 56 min.
  • the esterification is carried out at about 25°C.
  • the L- aminoacyl maytansinol esters obtained from Step 2 are dissolved in a solution comprising a solvent and an alcohol. This mixture is stirred under an inert gas atmosphere, and treated with a solution of dithiothreitol or dithioerythritol, in
  • EDTA ethylenediaminetetraacetic acid
  • the solvent the L-aminoacyl maytansinol esters obtained is obtained
  • the alcohol the L-aminoacyl maytansinol esters obtained from Step 2 are dissolved in is methanol or ethanol, more preferably methanol, using from about 90 to 120 mL alcohol per
  • the reaction between L-aminoacyl maytansinol esters and dithiothreitol is in a mixture of ethyl acetate:methanol:aqueous buffer which is capable of keeping the buffer salts, dithiothreitol and maytansinoids (reduced and non-reduced forms) in solution. More preferably, the reaction between L-aminoacyl maytansinol esters and
  • dithiothreitol is in a 1 : 5 : 1 mixture of ethyl acetate :methanol : aqueous buffer.
  • the concentration of L-aminoacyl maytansinol esters used in Step 3 is less than about 4 g/L such that the L-aminoacyl maytansinol esters remain solubilized.
  • the reduction reaction is carried out in an oxygen-free
  • the inert gas is argon, nitrogen or helium, although other gases can be used. More preferably, the inert gas is argon.
  • the reduction reaction is carried out at between 4 to 30°C, more preferably at room temperature. One of ordinary skill in the art will understand that the reaction can be carried out at lower temperatures, however,
  • the solution containing the L-aminoacyl maytansinol esters is treated with dithiothreitol, dithioerythritol or a phosphine reagent such as tris (2-carboxyethyl) phosphine (TCEP), more preferably dithiothreitol, using about 2 to 3 moles reducing agent per mole maytansinoid, preferably 2.5
  • potassium phosphate buffer sodium phosphate buffer or triethanolamine buffer, preferably potassium phosphate buffer, the buffer at a concentration between about 20 to 100 mM, preferably 50 mM, using 60 to 80 mL of the buffered DTT per gram maytansinoid, preferably 72 mL/g, and containing from about 1 to 10 mM, preferably 2 mM,
  • EDTA ethylenediaminetetraacetic acid
  • the completed reaction is treated with a 0.2 M solution of potassium phosphate buffer, sodium phosphate buffer or triethanolamine buffer, more preferably potassium phosphate buffer, using from about 120 to 160 mL buffer per gram maytansinoid, preferably 144 mL/g, and containing
  • the extraction is with ethyl acetate, dichloro methane, or ether, more preferably ethyl acetate, using 200 to 500 mL per gram maytansinoid, preferably 300 mL/g, repeated three times.
  • the combined organic layers are washed with a saturated sodium chloride solution, water or a saturated ammonium chloride
  • 665 solution more preferably a saturated sodium chloride solution, using 40 to 100 mL per gram maytansinoid, preferably 50 mL/g, and then dried over sodium sulfate or magnesium sulfate, preferably sodium sulfate.
  • the cyano-bonded HPLC columns that are used for the separation are those that have cyanopropyl and cyano-di-isopropyl groups
  • the organic solvent used in the mobile phase is hexanes:2-pro ⁇ anol: ethyl acetate. More preferably, the organic solvent used in the mobile phase is a 78.0:5.5:16.5 (v/v/v) mixture of hexanes:2-propanol: ethyl acetate.
  • the flow rate is 150 mL/min.
  • the yield of the separation is greater than 75%, and product is at least about 90% pure, more preferably, at least about 95% pure.
  • the desired thiol-containing maytansinoids l la-d and 13a-b have a retention time of 16 min, within a range from about 14 to 18 min.
  • N-methyl-L-alanine-containing maytansinoid derivatives taught by the present invention are represented by formulas (I) - (IV):
  • Z represents H or SR, wherein R represents a methyl, linear alkyl, branched alkyl, cyclic alkyl, simple or substituted aryl or heterocyclic group; represents an integer of 1 to 10; and may represents a maytansinoid.
  • Rj and R which may be the same or different, represents H, 690 CH 3 or CH CH ;
  • Z represents H or SR, wherein R represents methyl, linear alkyl, branched alkyl, cyclic alkyl, simple or substituted aryl, or heterocyclic;
  • m represents 0, 1, 2 or 3; and may represents a maytansinoid.
  • Z represents H or SR, wherein R represents methyl, linear alkyl, branched alkyl, cyclic alkyl, simple or substituted aryl, or heterocyclic; p represents an integer of 3 to 8; and may represents a maytansinoid.
  • Z represents H or SR, wherein R represents methyl, linear alkyl, branched alkyl, cyclic alkyl, simple or substituted aryl or heterocyclic; q represents an integer from 1 to 10; Y represents Cl or H; and X represents H or CH 3 .
  • N-methyl-Z-cysteine-containing maytansinoid
  • Z represents H or SR, wherein R represents methyl, linear alkyl, branched alkyl, cyclic alkyl, simple or substituted aryl, or heterocyclic; o represents 1 or 2; q represents 0 or an integer of 1 to 10; and may represents a maytansinoid.
  • Z represents H or SR, wherein R represents methyl, linear 715 alkyl, branched alkyl, cyclic alkyl, simple or substituted aryl or heterocyclic; o represents 1 or 2; q represents 0 or an integer of 1 to 10; Y represents Cl or H; and X represents H or CH 3 .
  • linear alkyls examples include methyl, ethyl, propyl, butyl, pentyl and hexyl.
  • branched alkyls examples include isopropyl, isobutyl, sec-butyl, tert. -butyl, isopentyl and 1-ethyl-propyl.
  • cyclic alkyls examples include cyclopropyl, cyclobutyl, cyclopentyl and cyclohexyl.
  • Examples of simple aryls include phenyl and naphthyl. 725
  • Examples of substituted aryls include aryls such as those described above substituted with alkyl groups, with halogens, such as Cl, Br, F, nitro groups, amino groups, sulfonic acid groups, carboxylic acid groups, hydroxy groups and alkoxy groups.
  • heterocyclics are compounds wherein the heteroatoms are 730 selected from O, N and S, and include pyrrollyl, pyridyl, f ryl and thiophene.
  • room temperature and “ambient temperature” mean environmental temperature or uncontrolled temperature.
  • optical purity means that the purity exceeds 98%.
  • ranges 735 are specified herein, e.g. temperature, time, concentration etc., the range includes all specific values within the range, as well as subranges falling within the broad range. Where values are stated to be “about” a specific value, or range of values, it is to be understood that statistically insignificant variations in those values are included as well. 740 EXAMPLES
  • 5-Mercaptopentanoic acid (3d) was prepared by a modification of a literature method (Kl im et al, 37 J Org.
  • N-methyl-N-methyldithioacetoyl-Z-alanine (6a).
  • l-(3-dimethylaminopropyl)-3-ethylcarbodiimide hydrochloride (2.99 g, 15.6 mmol) and triethylamine (1.58 g, 15.6 mmol) in dry CH 2 C1 2 (40 mL) at 0°C was added a solution of methyldithio-acetic acid (Singh et al., 104 Anal.
  • reaction mixture was stirred for fifteen minutes at -15°C and then warmed to room temperature and stirred for an additional period of 2.5 hours.
  • 1 M HCl (10 mL) was added and the reaction mixture was extracted with ethyl acetate (4 x 50 mL). The combined organic layers were dried with ⁇ a 2 SO , filtered, and evaporated under reduced pressure.
  • the crude mixture was purified by
  • Methyldithio-N-methylcysteine (8a) A solution of N-methylcysteine (7a) (Undhein, K., & Eidem, A., 23 Ada Chem. Scandinavica 3129-3133 (1970)) (1.5 g, 11.1 mmol) in H O (20 mL) was stirred at room temperature,
  • N-methylhomocysteine (7b) can be made by the method previously described for N-methylcysteine (Undhein, K., & Eidem, A., 23 Acta Chem. Scandinavica 3129-3133 (1970)).
  • N-acetyl-N-methyl-methyldithiohomocysteine (9b).
  • One of ordinary skill in the art will understand how to make N-acetyl-N-methyl- methyldithiohomocysteine (8b) based on the method for making N-acetyl-N-
  • Step 1 Reduction of Ansamitocin P-3 (lc) into Maytansinol
  • Ansanmitocin P-3 (lc) was converted into maytansinol (2) by reductive hydrolysis.
  • Ansamitocin P-3 (lc) (3.2 g, 5.0 mmol) was dissolved in anhydrous THF (80 mL), and the solution was placed under an argon 1000 atmosphere, and cooled in a dry ice-acetone bath to -40°C.
  • 1015 maytansinol (2) .
  • the crude product was dissolved in ethyl acetate and loaded onto a silica gel column packed in dichloromethane.
  • the column was eluted with a step gradient starting with a mixture of dichloromethane: ethyl acetate:methanol (77:23:0, v/v/v) and slowly increasing the concentration of
  • the maytansinol was further purified by HPLC as follows.
  • a KromasilTM cyano preparative HPLC column 250 mm x 50 mm, 10 micron
  • the compound 10a can be more efficiently purified using a DiazemTM cyano HPLC column (250 mm x 10 mm, 10 micron particle size) equilibrated in a mixture of hexanes:2-propanol:ethyl acetate (17:2:6, v/v/v) at a flow rate of 4.7 mL/min.
  • the mixture can be further purified using a DiazemTM cyano
  • HPLC column 250 mm x 50 mm, 10 micron particle size was equilibrated in a mixture of hexanes:2-propanol:ethyl acetate (17:2:6, v/v/v) at a flow rate of 150 mL/min as described above for (10b).
  • the completed reaction mixture was treated with a solution of 0.2 M potassium phosphate buffer (250 mL), pH 6.0, containing 2 mM EDTA, and then extracted with ethyl acetate (3 x 600 mL).
  • the organic layers were
  • the crude thiol-containing maytansinoid lib was purified by HPLC using a preparative DiazemTM cyano HPLC column (250 mm x 50 mm, 10

Landscapes

  • Health & Medical Sciences (AREA)
  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Bioinformatics & Cheminformatics (AREA)
  • Organic Chemistry (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Veterinary Medicine (AREA)
  • Public Health (AREA)
  • General Health & Medical Sciences (AREA)
  • Medicinal Chemistry (AREA)
  • Animal Behavior & Ethology (AREA)
  • Pharmacology & Pharmacy (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Nuclear Medicine, Radiotherapy & Molecular Imaging (AREA)
  • General Chemical & Material Sciences (AREA)
  • Immunology (AREA)
  • Communicable Diseases (AREA)
  • Oncology (AREA)
  • Epidemiology (AREA)
  • Transplantation (AREA)
  • Virology (AREA)
  • Nitrogen And Oxygen Or Sulfur-Condensed Heterocyclic Ring Systems (AREA)
  • Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
  • Organic Low-Molecular-Weight Compounds And Preparation Thereof (AREA)
  • Agricultural Chemicals And Associated Chemicals (AREA)
PCT/US2001/010816 2000-08-18 2001-04-26 Process for the preparation and purification of thiol-containing maytansinoids Ceased WO2002016368A1 (en)

Priority Applications (7)

Application Number Priority Date Filing Date Title
JP2002521468A JP4922535B2 (ja) 2000-08-18 2001-04-26 チオール含有メイタンシノイド類の製造および精製方法
AT01926594T ATE313545T1 (de) 2000-08-18 2001-04-26 Verfahren zur herstellung und reinigung von thiolhaltigen maytansinoiden
DE60116113T DE60116113T2 (de) 2000-08-18 2001-04-26 Verfahren zur herstellung und reinigung von thiolhaltigen maytansinoiden
AU53118/01A AU763107B2 (en) 2000-08-18 2001-04-26 Process for the preparation and purification of thiol-containing maytansinoids
EP01926594A EP1313738B1 (en) 2000-08-18 2001-04-26 Process for the preparation and purification of thiol-containing maytansinoids
CA2373554A CA2373554C (en) 2000-08-18 2001-04-26 Process for the preparation and purification of thiol-containing maytansinoids
HK03108241.7A HK1056357B (en) 2000-08-18 2001-04-26 Process for the preparation and purification of thiol-containing maytansinoids

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
US09/641,348 2000-08-18
US09/641,348 US6333410B1 (en) 2000-08-18 2000-08-18 Process for the preparation and purification of thiol-containing maytansinoids

Publications (1)

Publication Number Publication Date
WO2002016368A1 true WO2002016368A1 (en) 2002-02-28

Family

ID=24571977

Family Applications (1)

Application Number Title Priority Date Filing Date
PCT/US2001/010816 Ceased WO2002016368A1 (en) 2000-08-18 2001-04-26 Process for the preparation and purification of thiol-containing maytansinoids

Country Status (10)

Country Link
US (2) US6333410B1 (2)
EP (1) EP1313738B1 (2)
JP (1) JP4922535B2 (2)
AT (1) ATE313545T1 (2)
AU (1) AU763107B2 (2)
CA (2) CA2678754C (2)
DE (1) DE60116113T2 (2)
DK (1) DK1313738T3 (2)
ES (1) ES2253371T3 (2)
WO (1) WO2002016368A1 (2)

Cited By (66)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1373273A4 (en) * 2001-03-16 2004-07-14 Smithkline Beecham Corp METHOD FOR PRODUCING MAYTANSINOL
EP1390370A4 (en) * 2001-05-31 2005-07-06 Immunogen Inc METHODS FOR PREPARING CYTOTOXIC CONJUGATES BASED ON MAYTANSINOIDS AND CELL FIXING AGENTS
EP1507781A4 (en) * 2002-05-13 2006-03-15 Smithkline Beecham Corp METHOD OF PREPARING MAYTANSINOL
JP2007514646A (ja) * 2003-05-20 2007-06-07 イミュノジェン・インコーポレーテッド 新規メイタンシノイドを含む改良された細胞毒性薬
EP1806365A1 (en) 2006-01-05 2007-07-11 Boehringer Ingelheim International GmbH Antibody molecules specific for fibroblast activation protein and immunoconjugates containing them
US7851432B2 (en) 2003-05-20 2010-12-14 Immunogen Inc. Cytotoxic agents comprising new maytansinoids
WO2012045085A1 (en) 2010-10-01 2012-04-05 Oxford Biotherapeutics Ltd. Anti-rori antibodies
AU2010212291B2 (en) * 2003-05-14 2012-05-24 Immunogen, Inc. Method of targeting specific cell populations using cell-binding agent maytansinoid conjugates linked via a non-cleavable linker, said conjugates, and methods of making said conjugates
WO2012092616A1 (en) 2010-12-30 2012-07-05 Takeda Pharmaceutical Company Limited Conjugated anti-cd38 antibodies
WO2013022855A1 (en) 2011-08-05 2013-02-14 Xencor, Inc. Antibodies with modified isoelectric points and immunofiltering
WO2013055809A1 (en) 2011-10-10 2013-04-18 Xencor, Inc. A method for purifying antibodies
WO2014113510A1 (en) 2013-01-15 2014-07-24 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
US8795673B2 (en) 2011-03-29 2014-08-05 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
WO2014145806A2 (en) 2013-03-15 2014-09-18 Xencor, Inc. Heterodimeric proteins
US8933205B2 (en) 2005-08-24 2015-01-13 Immunogen, Inc. Process for preparing purified drug conjugates
WO2015052537A1 (en) 2013-10-11 2015-04-16 Oxford Biotherapeutics Ltd Conjugated antibodies against ly75 for the treatment of cancer
WO2015149077A1 (en) 2014-03-28 2015-10-01 Xencor, Inc. Bispecific antibodies that bind to cd38 and cd3
WO2016014984A1 (en) 2014-07-24 2016-01-28 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
WO2016061718A1 (zh) * 2014-10-24 2016-04-28 南京联宁生物制药有限公司 一种化合物及其制备方法以及美登素dm1的制备方法
EP3029066A2 (en) 2010-07-29 2016-06-08 Xencor, Inc. Antibodies with modified isoelectric points
US9376500B2 (en) 2009-06-03 2016-06-28 Immunogen, Inc. Conjugation methods
WO2016141387A1 (en) 2015-03-05 2016-09-09 Xencor, Inc. Modulation of t cells with bispecific antibodies and fc fusions
US9493578B2 (en) 2009-09-02 2016-11-15 Xencor, Inc. Compositions and methods for simultaneous bivalent and monovalent co-engagement of antigens
US9605084B2 (en) 2013-03-15 2017-03-28 Xencor, Inc. Heterodimeric proteins
US9650446B2 (en) 2013-01-14 2017-05-16 Xencor, Inc. Heterodimeric proteins
US9701759B2 (en) 2013-01-14 2017-07-11 Xencor, Inc. Heterodimeric proteins
US9850320B2 (en) 2014-11-26 2017-12-26 Xencor, Inc. Heterodimeric antibodies to CD3 X CD20
US9856327B2 (en) 2014-11-26 2018-01-02 Xencor, Inc. Heterodimeric antibodies to CD3 X CD123
US10035817B2 (en) 2012-10-04 2018-07-31 Immunogen, Inc. Method of purifying cell-binding agent-cytotoxic agent conjugates with a PVDF membrane
US10106624B2 (en) 2013-03-15 2018-10-23 Xencor, Inc. Heterodimeric proteins
US10131710B2 (en) 2013-01-14 2018-11-20 Xencor, Inc. Optimized antibody variable regions
EP3421495A2 (en) 2013-03-15 2019-01-02 Xencor, Inc. Modulation of t cells with bispecific antibodies and fc fusions
US10227410B2 (en) 2015-12-07 2019-03-12 Xencor, Inc. Heterodimeric antibodies that bind CD3 and PSMA
US10316088B2 (en) 2016-06-28 2019-06-11 Xencor, Inc. Heterodimeric antibodies that bind somatostatin receptor 2
US10428155B2 (en) 2014-12-22 2019-10-01 Xencor, Inc. Trispecific antibodies
US10487155B2 (en) 2013-01-14 2019-11-26 Xencor, Inc. Heterodimeric proteins
US10501543B2 (en) 2016-10-14 2019-12-10 Xencor, Inc. IL15/IL15Rα heterodimeric Fc-fusion proteins
WO2019238843A1 (en) 2018-06-14 2019-12-19 Berlin-Chemie Ag Pharmaceutical combinations
US10519242B2 (en) 2013-03-15 2019-12-31 Xencor, Inc. Targeting regulatory T cells with heterodimeric proteins
US10526417B2 (en) 2014-11-26 2020-01-07 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CD38
WO2020010079A2 (en) 2018-07-02 2020-01-09 Amgen Inc. Anti-steap1 antigen-binding protein
WO2020180709A1 (en) * 2019-03-01 2020-09-10 Celgene Corporation Preparation of maytansinol
US10787518B2 (en) 2016-06-14 2020-09-29 Xencor, Inc. Bispecific checkpoint inhibitor antibodies
US10793632B2 (en) 2016-08-30 2020-10-06 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
US10851178B2 (en) 2011-10-10 2020-12-01 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications
US10858417B2 (en) 2013-03-15 2020-12-08 Xencor, Inc. Heterodimeric proteins
US10968276B2 (en) 2013-03-12 2021-04-06 Xencor, Inc. Optimized anti-CD3 variable regions
US10982006B2 (en) 2018-04-04 2021-04-20 Xencor, Inc. Heterodimeric antibodies that bind fibroblast activation protein
US10981992B2 (en) 2017-11-08 2021-04-20 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
JPWO2021107133A1 (2) * 2019-11-29 2021-06-03
US11053316B2 (en) 2013-01-14 2021-07-06 Xencor, Inc. Optimized antibody variable regions
US11084863B2 (en) 2017-06-30 2021-08-10 Xencor, Inc. Targeted heterodimeric Fc fusion proteins containing IL-15 IL-15alpha and antigen binding domains
US11312770B2 (en) 2017-11-08 2022-04-26 Xencor, Inc. Bispecific and monospecific antibodies using novel anti-PD-1 sequences
US11319355B2 (en) 2017-12-19 2022-05-03 Xencor, Inc. Engineered IL-2 Fc fusion proteins
US11358999B2 (en) 2018-10-03 2022-06-14 Xencor, Inc. IL-12 heterodimeric Fc-fusion proteins
US11365258B2 (en) 2017-03-10 2022-06-21 Berlin-Chemie Ag Pharmaceutical combinations comprising an anti-LY75 antibody
US11472890B2 (en) 2019-03-01 2022-10-18 Xencor, Inc. Heterodimeric antibodies that bind ENPP3 and CD3
US11505595B2 (en) 2018-04-18 2022-11-22 Xencor, Inc. TIM-3 targeted heterodimeric fusion proteins containing IL-15/IL-15RA Fc-fusion proteins and TIM-3 antigen binding domains
US11524991B2 (en) 2018-04-18 2022-12-13 Xencor, Inc. PD-1 targeted heterodimeric fusion proteins containing IL-15/IL-15Ra Fc-fusion proteins and PD-1 antigen binding domains and uses thereof
US11591401B2 (en) 2020-08-19 2023-02-28 Xencor, Inc. Anti-CD28 compositions
WO2023089314A1 (en) 2021-11-18 2023-05-25 Oxford Biotherapeutics Limited Pharmaceutical combinations
US11739144B2 (en) 2021-03-09 2023-08-29 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CLDN6
US11859012B2 (en) 2021-03-10 2024-01-02 Xencor, Inc. Heterodimeric antibodies that bind CD3 and GPC3
US11919956B2 (en) 2020-05-14 2024-03-05 Xencor, Inc. Heterodimeric antibodies that bind prostate specific membrane antigen (PSMA) and CD3
US12466897B2 (en) 2011-10-10 2025-11-11 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications
US12617872B2 (en) 2025-09-16 2026-05-05 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications

Families Citing this family (218)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
AU775373B2 (en) 1999-10-01 2004-07-29 Immunogen, Inc. Compositions and methods for treating cancer using immunoconjugates and chemotherapeutic agents
US7097840B2 (en) * 2000-03-16 2006-08-29 Genentech, Inc. Methods of treatment using anti-ErbB antibody-maytansinoid conjugates
US6333410B1 (en) 2000-08-18 2001-12-25 Immunogen, Inc. Process for the preparation and purification of thiol-containing maytansinoids
AR030612A1 (es) * 2000-09-12 2003-08-27 Smithkline Beecham Corp Procedimiento e intermedios
AUPR395801A0 (en) * 2001-03-26 2001-04-26 Austin Research Institute, The Antibodies against cancer
US20090123470A1 (en) * 2001-03-26 2009-05-14 The Macfarlane Burnet Istitute For Medical Research And Public Health Ltd. Antibodies Against Cancer
US7582299B2 (en) * 2001-04-26 2009-09-01 Biogen Idec Ma Inc. Cripto-specific antibodies
PL207087B1 (pl) * 2001-04-26 2010-10-29 Biogen Przeciwciało, które wiąże się swoiście z białkiem Cripto, zawierająca je kompozycja farmaceutyczna i zastosowanie przeciwciała
US20100056762A1 (en) 2001-05-11 2010-03-04 Old Lloyd J Specific binding proteins and uses thereof
AU2002311919B8 (en) 2001-05-11 2007-03-22 Ludwig Institute For Cancer Research Ltd Specific binding proteins and uses thereof
WO2002098897A2 (en) 2001-06-01 2002-12-12 Cornell Research Foundation, Inc. Modified antibodies to prostate-specific membrane antigen and uses thereof
US20050053611A1 (en) * 2001-06-08 2005-03-10 Xiaoke Hao Pharmaceutical kit comprising anti-human seminal plasma protein single chain antibody/human carboxypeptidase fusion protein and prodrug
US20090297531A1 (en) * 2001-06-20 2009-12-03 Genentech, Inc. Compositions and methods for the diagnosis and treatment of tumor
US7803915B2 (en) * 2001-06-20 2010-09-28 Genentech, Inc. Antibody compositions for the diagnosis and treatment of tumor
PT2000545E (pt) * 2001-06-20 2011-12-21 Genentech Inc Composições e métodos para o diagnóstico e tratamento do tumor pulmonar
DE10215336A1 (de) 2002-03-28 2003-10-23 Schering Ag N-Methyl-Homocysteine und ihre Verwendung sowie Verfahren zu ihrer Herstellung
US20040249130A1 (en) * 2002-06-18 2004-12-09 Martin Stanton Aptamer-toxin molecules and methods for using same
US7767803B2 (en) 2002-06-18 2010-08-03 Archemix Corp. Stabilized aptamers to PSMA and their use as prostate cancer therapeutics
US20040022727A1 (en) * 2002-06-18 2004-02-05 Martin Stanton Aptamer-toxin molecules and methods for using same
CA2491017A1 (en) * 2002-07-03 2004-01-15 Immunogen, Inc. Antibodies to non-shed muc1 and muc16, and uses thereof
US8853376B2 (en) 2002-11-21 2014-10-07 Archemix Llc Stabilized aptamers to platelet derived growth factor and their use as oncology therapeutics
US7432088B2 (en) * 2003-05-08 2008-10-07 Immunogen Inc. Methods for the production of ansamitocins
CN1816356A (zh) 2003-05-14 2006-08-09 免疫原公司 药物缀合物组合物
EP1646357A4 (en) * 2003-06-27 2007-01-10 Diadexus Inc PRO104 ANTIBODY COMPOSITIONS AND APPLICATION PROCEDURES
US7834155B2 (en) * 2003-07-21 2010-11-16 Immunogen Inc. CA6 antigen-specific cytotoxic conjugate and methods of using the same
ATE496944T1 (de) * 2003-07-21 2011-02-15 Immunogen Inc Ca6-antigenspezifisches zytotoxisches konjugat und verfahren zu dessen anwendung
CA2535337A1 (en) * 2003-08-14 2005-03-03 Merck & Co., Inc. Macrocyclic beta-secretase inhibitors for the treatment of alzheimer's disease
US6890962B1 (en) * 2003-11-25 2005-05-10 Chevron U.S.A. Inc. Gas-to-liquid CO2 reduction by use of H2 as a fuel
NZ579482A (en) 2004-06-01 2011-02-25 Genentech Inc Antibody drug conjugates and methods
US7541330B2 (en) * 2004-06-15 2009-06-02 Kosan Biosciences Incorporated Conjugates with reduced adverse systemic effects
CA2486285C (en) * 2004-08-30 2017-03-07 Viktor S. Goldmakher Immunoconjugates targeting syndecan-1 expressing cells and use thereof
US7678783B2 (en) * 2004-11-17 2010-03-16 Merck Sharp & Dohme Corp. Macrocyclic tertiary amine beta-secretase inhibitors for the treatment of alzheimer's disease
US7951949B2 (en) * 2004-11-23 2011-05-31 Merck, Sharp & Dohme, Corp. Macrocyclic aminopyridyl beta-secretase inhibitors for the treatment of Alzheimer's disease
EP1838736B1 (en) 2005-01-05 2013-03-06 Biogen Idec MA Inc. Cripto binding molecules
US7301019B2 (en) * 2005-01-21 2007-11-27 Immunogen, Inc. Method for the preparation of maytansinoid esters
ES2503719T3 (es) 2005-02-11 2014-10-07 Immunogen, Inc. Procedimiento para preparar conjugados de anticuerpos y de maitansinoides
EP1863828A4 (en) * 2005-03-07 2010-10-13 Archemix Corp STABILIZED APTAMERS FOR PSMA AND THEIR USE AS PROSTATE ACID THERAPEUTICS
US8323645B2 (en) 2005-03-24 2012-12-04 Millennium Pharmaceuticals, Inc. Antibodies that bind OV064 and methods of use therefor
WO2007019232A2 (en) * 2005-08-03 2007-02-15 Immunogen, Inc. Immunoconjugate formulations
ATE535529T1 (de) * 2005-08-09 2011-12-15 Millennium Pharm Inc Verfahren zur acylierung von maytansinol mit chiralen aminosäuren
EP1945647B9 (en) * 2005-11-08 2012-11-14 Immunogen, Inc. Processes for preparation of maytansinol
MX2009000709A (es) * 2006-07-18 2009-02-04 Sanofi Aventis Anticuerpo antagonista contra epha2 para el tratamiento de cancer.
EP1914242A1 (en) 2006-10-19 2008-04-23 Sanofi-Aventis Novel anti-CD38 antibodies for the treatment of cancer
MX2009005466A (es) 2006-11-22 2009-08-17 Adnexus A Bristol Myers Sqibb Terapeuticos dirigidos a base de proteinas manipuladas para receptores de tirosina cinasas, incluyendo receptor de factor de crecimiento tipo insulina-i.
US9090693B2 (en) 2007-01-25 2015-07-28 Dana-Farber Cancer Institute Use of anti-EGFR antibodies in treatment of EGFR mutant mediated disease
EP2111228B1 (en) 2007-02-02 2011-07-20 Bristol-Myers Squibb Company 10Fn3 domain for use in treating diseases associated with inappropriate angiogenesis
CA2680854C (en) 2007-03-15 2017-02-14 Ludwig Institute For Cancer Research Treatment method using egfr antibodies and src inhibitors and related formulations
CN101679974B (zh) 2007-03-27 2015-09-30 航道生物技术有限责任公司 包含抗体替代轻链序列的构建体和文库
US20090011060A1 (en) * 2007-07-06 2009-01-08 Peter Koepke Campsiandra angustifolia extract and methods of extracting and using such extract
US20090017140A1 (en) * 2007-07-09 2009-01-15 Peter Koepke Maytenus abenfolia extract and methods of extracting and using such extract
PE20090943A1 (es) 2007-07-16 2009-08-05 Genentech Inc Anticuerpos anti-cd79b e inmunoconjugados
EP2176295B1 (en) 2007-07-16 2014-11-19 Genentech, Inc. Humanized anti-cd79b antibodies and immunoconjugates and methods of use
US20090035395A1 (en) * 2007-08-01 2009-02-05 Peter Koepke Spondias mombin l. extract and methods of extracting and using such extract
CN108424454B (zh) 2007-08-14 2022-05-31 路德维格癌症研究所有限公司 靶向egf受体的单克隆抗体175及其衍生物和用途
MX338397B (es) 2007-08-29 2016-04-15 Sanofi Aventis Anticuerpos anti - cxcr5 humanizados, derivados de los mismos y su uso.
US7879369B2 (en) * 2007-09-18 2011-02-01 Selvamedica, Llc Combretum laurifolium Mart. extract and methods of extracting and using such extract
EP2050764A1 (en) 2007-10-15 2009-04-22 sanofi-aventis Novel polyvalent bispecific antibody format and uses thereof
US9221914B2 (en) 2007-12-26 2015-12-29 Biotest Ag Agents targeting CD138 and uses thereof
WO2009080832A1 (en) * 2007-12-26 2009-07-02 Biotest Ag Methods and agents for improving targeting of cd138 expressing tumor cells
CN101965366B (zh) * 2007-12-26 2016-04-27 生物测试股份公司 靶向cd138的免疫缀合物及其应用
WO2009080831A1 (en) * 2007-12-26 2009-07-02 Biotest Ag Method of decreasing cytotoxic side-effects and improving efficacy of immunoconjugates
KR101607346B1 (ko) 2008-01-31 2016-03-29 제넨테크, 인크. 항-cd79b 항체 및 면역접합체 및 사용 방법
DK2644194T3 (en) 2008-03-18 2017-07-03 Genentech Inc Combinations of an anti-HER2 antibody-drug conjugate and docetaxel
NZ610239A (en) 2008-04-30 2014-11-28 Immunogen Inc Cross-linkers and their uses
WO2009142773A2 (en) 2008-05-22 2009-11-26 Bristol-Myers Squibb Company Multivalent fibronectin based scaffold domain proteins
NZ591488A (en) 2008-09-07 2012-11-30 Glyconex Inc Anti-extended type i glycosphingolipid antibody, derivatives thereof and use
RU2587621C2 (ru) 2009-04-01 2016-06-20 Дженентек, Инк. АНТИТЕЛА К FcRH5, ИХ ИММУНОКОНЪЮГАТЫ И СПОСОБЫ ИХ ПРИМЕНЕНИЯ
EP2424875B1 (en) 2009-04-29 2016-01-06 Bio-Rad Laboratories, Inc. Purification of immunoconjugates
AR076284A1 (es) 2009-04-29 2011-06-01 Bayer Schering Pharma Ag Inmunoconjugados de antimesotelina y usos de los mismos
CA2761681A1 (en) 2009-05-13 2010-11-18 Sea Lane Biotechnologies, Llc Neutralizing molecules to influenza viruses
NZ621170A (en) 2009-05-13 2015-08-28 Genzyme Corp Anti-human cd52 immunoglobulins
TW201117814A (en) 2009-10-02 2011-06-01 Sanofi Aventis New maytansinoids and the use of said maytansinoids to prepare conjugates with an antibody
UY32914A (es) 2009-10-02 2011-04-29 Sanofi Aventis Anticuerpos que se usan específicamente al receptor epha2
CN102596922A (zh) 2009-10-06 2012-07-18 免疫基因公司 有效的缀合物和亲水性连接体
US20130064788A1 (en) 2009-10-10 2013-03-14 Eleven Biotherapeutics, Inc. Il-17 family cytokine compositions and uses
SG10201407757XA (en) 2009-10-23 2015-01-29 Millennium Pharm Inc Anti-gcc antibody molecules and related compositions and methods
US20110165155A1 (en) 2009-12-04 2011-07-07 Genentech, Inc. Methods of treating metastatic breast cancer with trastuzumab-mcc-dm1
KR20130009760A (ko) 2010-02-10 2013-01-23 이뮤노젠 아이엔씨 Cd20 항체 및 이의 용도
TWI622402B (zh) 2010-02-24 2018-05-01 免疫遺傳股份有限公司 葉酸受體1抗體類和免疫共軛物類及彼等之用途
EP2542256B1 (en) 2010-03-04 2019-05-22 MacroGenics, Inc. Antibodies reactive with b7-h3, immunologically active fragments thereof and uses thereof
SG10201501803YA (en) 2010-03-12 2015-05-28 Immunogen Inc Cd37-binding molecules and immunoconjugates thereof
CA3255551A1 (en) 2010-03-26 2025-04-15 Memorial Sloan-Kettering Cancer Center MUC16 ANTIBODIES AND METHODS OF USE
WO2011133555A2 (en) 2010-04-20 2011-10-27 The Research Foundation Of State University Of New York Compositions and methods for inhibiting matrix metalloproteinase (mmp)-mediated cell migration
WO2012019024A2 (en) 2010-08-04 2012-02-09 Immunogen, Inc. Her3-binding molecules and immunoconjugates thereof
ES2931477T3 (es) 2010-10-29 2022-12-29 Perseus Proteomics Inc Anticuerpo anti-CDH3 que tiene alta capacidad de internalización
EA201390575A1 (ru) 2010-10-29 2014-01-30 Иммьюноджен, Инк. Неантагонистические egfr-связывающие молекулы и их иммуноконъюгаты
EA201390472A1 (ru) 2010-10-29 2014-02-28 Иммьюноджен, Инк. Новые молекулы, связывающиеся с egfr, и их иммуноконъюгаты
US20120121615A1 (en) 2010-11-17 2012-05-17 Flygare John A Alaninyl maytansinol antibody conjugates
US20120148559A1 (en) 2010-12-01 2012-06-14 Board Of Regents The University Of Texas System Compositions and method for deimmunization of proteins
US9433686B2 (en) 2011-01-31 2016-09-06 The Regents Of The University Of California Methods for treating castration resistant prostate cancer and metastasis by reducing B-cell number and/or function
TWI719112B (zh) 2011-03-16 2021-02-21 賽諾菲公司 雙重v區類抗體蛋白質之用途
MY171008A (en) 2011-03-29 2019-09-23 Immunogen Inc Preparation of maytansinoid antibody conjugates by a one-step process
KR102060389B1 (ko) 2011-05-21 2019-12-31 마크로제닉스, 인크. 사람 및 비-사람 cd3에 결합할 수 있는 cd3-결합 분자
WO2012171020A1 (en) 2011-06-10 2012-12-13 Mersana Therapeutics, Inc. Protein-polymer-drug conjugates
JP6209159B2 (ja) 2011-06-21 2017-10-04 イミュノジェン・インコーポレーテッド ペプチドリンカーを有する新規メイタンシノイド誘導体およびその結合体
WO2013012733A1 (en) 2011-07-15 2013-01-24 Biogen Idec Ma Inc. Heterodimeric fc regions, binding molecules comprising same, and methods relating thereto
EP2736928B1 (en) 2011-07-28 2019-01-09 i2 Pharmaceuticals, Inc. Sur-binding proteins against erbb3
MX353958B (es) 2011-09-22 2018-02-07 Amgen Inc Proteinas de union al antigeno cd27l.
CA2856411A1 (en) 2011-11-21 2013-05-30 Immunogen, Inc. Method of treatment of tumors that are resistant to egfr therapies by egfr antibody cytotoxic agent conjugate
KR20140100571A (ko) 2011-12-08 2014-08-14 바이오테스트 아게 Cd138을 타겟팅하는 면역접합체의 용도
US9975956B2 (en) 2011-12-22 2018-05-22 I2 Pharmaceuticals, Inc. Surrogate binding proteins which bind DR4 and/or DR5
WO2013109994A1 (en) 2012-01-20 2013-07-25 Sea Lane Biotechnologies, Llc Surrobody cojugates
US9592289B2 (en) 2012-03-26 2017-03-14 Sanofi Stable IgG4 based binding agent formulations
AR090549A1 (es) 2012-03-30 2014-11-19 Genentech Inc Anticuerpos anti-lgr5 e inmunoconjugados
CA2869704A1 (en) 2012-04-04 2013-10-10 Perseus Proteomics Inc. Drug conjugate comprising anti-cdh3 (pcadherin) antibody
US9156915B2 (en) 2012-04-26 2015-10-13 Thomas Jefferson University Anti-GCC antibody molecules
US9056910B2 (en) 2012-05-01 2015-06-16 Genentech, Inc. Anti-PMEL17 antibodies and immunoconjugates
AR091069A1 (es) 2012-05-18 2014-12-30 Amgen Inc Proteinas de union a antigeno dirigidas contra el receptor st2
CN104619334A (zh) 2012-08-09 2015-05-13 利兰斯坦福初级大学董事会 超级因子和合成因子:具有新的和增强的信号传导活性的经改造细胞因子
DK3199552T3 (da) 2012-11-20 2020-03-30 Sanofi Sa Anti-ceacam5-antistoffer og anvendelser heraf
CA2891280C (en) 2012-11-24 2018-03-20 Hangzhou Dac Biotech Co., Ltd. Hydrophilic linkers and their uses for conjugation of drugs to cell binding molecules
TW201425336A (zh) 2012-12-07 2014-07-01 Amgen Inc Bcma抗原結合蛋白質
CA2892863C (en) 2012-12-10 2022-03-15 Mersana Therapeutics, Inc. Polymeric scaffold based on phf for targeted drug delivery
WO2014093379A1 (en) 2012-12-10 2014-06-19 Mersana Therapeutics, Inc. Auristatin compounds and conjugates thereof
WO2014093640A1 (en) 2012-12-12 2014-06-19 Mersana Therapeutics,Inc. Hydroxy-polmer-drug-protein conjugates
CN103333246B (zh) 2012-12-21 2015-09-16 百奥泰生物科技(广州)有限公司 一种抗egfr受体的肿瘤生长抑制剂及其制备方法和用途
CN104688740A (zh) 2012-12-21 2015-06-10 百奥泰生物科技(广州)有限公司 类美登素衍生物及其制备方法和用途
CN104530235A (zh) 2012-12-21 2015-04-22 百奥泰生物科技(广州)有限公司 一种抑制肿瘤生长的抗体药物衍生物及其制备方法和用途
CN103254213B (zh) 2012-12-21 2015-02-25 百奥泰生物科技(广州)有限公司 类美登素酯的制备方法及用于所述方法的组合物
HK1210713A1 (en) 2012-12-27 2016-05-06 Sanofi Anti-lamp1 antibodies and antibody drug conjugates, and uses thereof
EP2948478B1 (en) 2013-01-25 2019-04-03 Amgen Inc. Antibodies targeting cdh19 for melanoma
HK1215959A1 (en) 2013-02-15 2016-09-30 Perseus Proteomics Inc. Anti-cdh3 humanized antibody, drug conjugate thereof, and utilization of same
US9562099B2 (en) 2013-03-14 2017-02-07 Genentech, Inc. Anti-B7-H4 antibodies and immunoconjugates
JP6436965B2 (ja) 2013-03-14 2018-12-12 ジェネンテック, インコーポレイテッド 抗b7−h4抗体及びイムノコンジュゲート
AR095199A1 (es) 2013-03-15 2015-09-30 Genzyme Corp Anticuerpos anti-cd52
US9862690B2 (en) 2013-05-10 2018-01-09 University of Pittsburgh—of the Commonwealth System of Higher Education Treatment of pulmonary and other conditions
HUE056580T2 (hu) 2013-05-30 2022-02-28 Kiniksa Pharmaceuticals Ltd Onkosztatin-M-receptor antigénjét kötõ fehérjék
JP2016537399A (ja) 2013-09-17 2016-12-01 ジェネンテック, インコーポレイテッド 抗lgr5抗体を使用する方法
PL3055332T3 (pl) 2013-10-08 2020-02-28 Immunogen, Inc. Schematy dawkowania immunokoniugatu anty-FOLR1
KR102087850B1 (ko) 2013-10-11 2020-03-12 메르사나 테라퓨틱스, 인코포레이티드 단백질-고분자-약물 접합체
ES2754397T3 (es) 2013-10-11 2020-04-17 Asana Biosciences Llc Conjugados de proteína-polímero-fármaco
SG11201604784XA (en) 2013-12-13 2016-07-28 Genentech Inc Anti-cd33 antibodies and immunoconjugates
WO2015095227A2 (en) 2013-12-16 2015-06-25 Genentech, Inc. Peptidomimetic compounds and antibody-drug conjugates thereof
TWI541022B (zh) 2013-12-18 2016-07-11 應克隆公司 針對纖維母細胞生長因子受體-3(fgfr3)之化合物及治療方法
US9943606B2 (en) 2014-01-15 2018-04-17 Rutgers, The State University Of New Jersey Dendritic polypeptide-based nanocarriers for the delivery of therapeutic agents
EP3096797A1 (en) 2014-01-24 2016-11-30 F. Hoffmann-La Roche AG Methods of using anti-steap1 antibodies and immunoconjugates
KR20160135190A (ko) 2014-02-14 2016-11-25 앤드류 에스. 카이 혈관형성 암의 치료를 위한 개선된 방법
US10464955B2 (en) 2014-02-28 2019-11-05 Hangzhou Dac Biotech Co., Ltd. Charged linkers and their uses for conjugation
KR102587838B1 (ko) 2014-03-14 2023-10-12 바이오몰레큘러 홀딩스 엘엘씨 비-펩티드 결합을 함유하는 하이브리드 면역글로불린
WO2015179658A2 (en) 2014-05-22 2015-11-26 Genentech, Inc. Anti-gpc3 antibodies and immunoconjugates
MA40513A (fr) 2014-08-12 2017-06-21 Novartis Ag Conjugués médicament-anticorps anti-cdh6
DK4074735T3 (da) 2014-08-28 2025-07-14 Bioatla Inc Betinget aktive kimæriske antigenreceptorer til modificerede t-celler
SG11201701328XA (en) 2014-09-02 2017-03-30 Immunogen Inc Methods for formulating antibody drug conjugate compositions
WO2016040724A1 (en) 2014-09-12 2016-03-17 Genentech, Inc. Anti-b7-h4 antibodies and immunoconjugates
MA40579A (fr) 2014-09-12 2016-03-17 Genentech Inc Anticorps anti-cll-1 et immunoconjugués
HUE049175T2 (hu) 2014-09-23 2020-09-28 Hoffmann La Roche Eljárás anti-CD79b immunkonjugátumok alkalmazására
TW201625692A (zh) 2014-11-14 2016-07-16 諾華公司 抗體藥物結合物
US10413615B2 (en) 2014-11-19 2019-09-17 Immunogen, Inc. Process for preparing cell-binding agent-cytotoxic agent conjugates
US10335495B2 (en) 2014-12-04 2019-07-02 Celgene Corporation Biomolecule conjugates
US10722523B2 (en) 2015-03-17 2020-07-28 The Regents Of The University Of California Chemoimmunotherapy for epithelial cancer
MX376146B (es) 2015-03-17 2025-03-07 Regeneron Pharma Reactivos de acilacion de aminoacidos y metodos para usar los mismos.
SG11201707538XA (en) 2015-03-17 2017-10-30 Memorial Sloan Kettering Cancer Center Anti-muc16 antibodies and uses thereof
TW201711702A (zh) 2015-06-04 2017-04-01 應克隆公司 使用針對纖維母細胞生長因子受體3(fgfr3)之化合物的療法
EP3302561A4 (en) 2015-06-08 2019-02-06 Debiopharm International SA COMBINATIONS OF ANTI-CD37 IMMUNOCONJUGATE AND ANTI-CD20 ANTIBODIES
NZ739830A (en) 2015-07-12 2021-12-24 Hangzhou Dac Biotech Co Ltd Bridge linkers for conjugation of cell-binding molecules
US9839687B2 (en) 2015-07-15 2017-12-12 Suzhou M-Conj Biotech Co., Ltd. Acetylenedicarboxyl linkers and their uses in specific conjugation of a cell-binding molecule
US10509035B2 (en) 2015-08-07 2019-12-17 Gamamabs Pharma Sa Antibodies, antibody drug conjugates and methods of use
CN116440279B (zh) 2015-09-17 2026-02-24 伊缪诺金公司 包含抗folr1免疫缀合物的治疗组合
TW201731532A (zh) 2016-02-05 2017-09-16 伊繆諾金公司 用於製備細胞結合劑-細胞毒性劑結合物之有效方法
SMT202600033T1 (it) 2016-04-15 2026-03-09 Bioatla Inc Anticorpi anti-axl, frammenti di anticorpo e loro immunoconiugati e loro utilizzi
TW201808336A (zh) 2016-05-11 2018-03-16 賽諾菲公司 用抗muc1類美登素免疫綴合物抗體治療腫瘤的治療方案
PL3455261T3 (pl) 2016-05-13 2022-12-12 Bioatla, Inc. Przeciwciała anty-ror2, fragmenty przeciwciał, ich immunokoniugaty oraz ich zastosowania
EP3465221B1 (en) 2016-05-27 2020-07-22 H. Hoffnabb-La Roche Ag Bioanalytical method for the characterization of site-specific antibody-drug conjugates
WO2018004338A1 (en) 2016-06-27 2018-01-04 Tagworks Pharmaceuticals B.V. Cleavable tetrazine used in bio-orthogonal drug activation
EP3535297B1 (en) 2016-11-02 2022-08-10 Debiopharm International, S.A. Methods for improving anti-cd37 immunoconjugate therapy
KR20220150408A (ko) 2016-11-14 2022-11-10 항저우 디에이씨 바이오테크 씨오, 엘티디 결합 링커, 그러한 결합 링커를 함유하는 세포 결합 분자-약물 결합체, 링커를 갖는 그러한 결합체의 제조 및 사용
EP4015532A1 (en) 2016-11-21 2022-06-22 cureab GmbH Anti-gp73 antibodies and immunoconjugates
US11135307B2 (en) 2016-11-23 2021-10-05 Mersana Therapeutics, Inc. Peptide-containing linkers for antibody-drug conjugates
AU2018290330A1 (en) 2017-06-22 2020-01-02 Mersana Therapeutics, Inc. Methods of producing drug-carrying polymer scaffolds and protein-polymer-drug conjugates
CN111225688B (zh) 2017-08-22 2025-06-17 普渡研究基金会 靶向碳酸酐酶阳性癌症的基于fbsa的治疗和放射性成像缀合物
CN119857155A (zh) 2017-11-29 2025-04-22 海德堡医药研究有限责任公司 用于耗尽cd5+细胞的组合物和方法
BR112020017053A2 (pt) 2018-02-21 2020-12-15 Celgene Corporation Anticorpos que se ligam ao bcma e usos dos mesmos
AU2019262520B2 (en) 2018-05-04 2025-07-10 Tagworks Pharmaceuticals B.V. Tetrazines for high click conjugation yield in vivo and high click release yield
CA3099421C (en) 2018-05-04 2025-05-06 Tagworks Pharmaceuticals B.V. COMPOUNDS INCLUDING A BINDER TO INCREASE TRANSCYCLOOCTENE STABILITY
US12144818B2 (en) 2018-05-30 2024-11-19 Debiopharm International, S.A. Method for treating cancer in a human patient by administering an anti-CD37 immunoconjugate using various dosing regimens
CA3107383A1 (en) 2018-07-23 2020-01-30 Magenta Therapeutics, Inc. Use of anti-cd5 antibody drug conjugate (adc) in allogeneic cell therapy
CN113365664A (zh) 2018-10-29 2021-09-07 梅尔莎纳医疗公司 具有含肽接头的半胱氨酸工程化的抗体-药物缀合物
WO2020161214A1 (en) 2019-02-07 2020-08-13 Sanofi Use of anti-ceacam5 immunoconjugates for treating lung cancer
EP3693023A1 (en) 2019-02-11 2020-08-12 Sanofi Use of anti-ceacam5 immunoconjugates for treating lung cancer
US11420981B2 (en) 2019-04-18 2022-08-23 Indena S.P.A. Diasteroselective process for the preparation of thiol- or disulfide-containing maytansinoid esters and intermediates thereof
AU2020275415B2 (en) 2019-05-14 2026-01-15 Genentech, Inc. Methods of using anti-CD79B immunoconjugates to treat follicular lymphoma
DK3983363T3 (da) 2019-06-17 2024-06-24 Tagworks Pharmaceuticals B V Forbindelser til hurtig og effektiv klikfrigivelse
IL289094A (en) 2019-06-17 2022-02-01 Tagworks Pharmaceuticals B V Tetrazines for increasing the speed and yield of the "click release" reaction
WO2021076196A1 (en) 2019-10-18 2021-04-22 Genentech, Inc. Methods of using anti-cd79b immunoconjugates to treat diffuse large b-cell lymphoma
CA3156570A1 (en) 2019-11-05 2021-05-14 Jin Xie Functionally modified maytansinoids and compositions and methods of use thereof
BR112022013255A2 (pt) 2020-01-09 2022-09-06 Mersana Therapeutics Inc Conjugados anticorpo-fármaco específicos de sítio com ligantes contendo peptídeo
EP4138924A1 (en) 2020-04-24 2023-03-01 Sanofi Antitumor combinations containing anti-ceacam5 antibody conjugates and folfiri
MX2022013406A (es) 2020-04-24 2022-11-14 Sanofi Sa Combinaciones antitumorales que contienen productos conjugados de anticuerpos anti-ceacam5 y cetuximab.
CA3181005A1 (en) 2020-04-24 2021-10-28 Sanofi Antitumor combinations containing anti-ceacam5 antibody conjugates and folfox
AU2021258464A1 (en) 2020-04-24 2023-01-05 Sanofi Antitumor combinations containing anti-CEACAM5 antibody conjugates, trifluridine and tipiracil
WO2022010797A2 (en) 2020-07-07 2022-01-13 Bionecure Therapeutics, Inc. Novel maytansinoids as adc payloads and their use for the treatment of cancer
AU2021379882A1 (en) 2020-11-10 2023-06-29 Sanofi Ceacam5 antibody-drug conjugate formulation
US20250327057A1 (en) 2021-09-06 2025-10-23 Veraxa Biotech Gmbh Novel aminoacyl-trna synthetase variants for genetic code expansion in eukaryotes
EP4426727A2 (en) 2021-11-03 2024-09-11 Hangzhou Dac Biotech Co., Ltd. Specific conjugation of an antibody
AU2022382383A1 (en) 2021-11-05 2024-06-20 Eli Lilly And Company Antitumor combinations containing anti-ceacam5 antibody-drug conjugates and anti-vegfr-2 antibodies
DK4186529T3 (da) 2021-11-25 2025-08-25 Veraxa Biotech Gmbh Forbedrede antistof-payload-konjugater (apc) fremstillet ved stedspecifik konjugering ved hjælp af genetisk kodeudvidelse
WO2023094525A1 (en) 2021-11-25 2023-06-01 Veraxa Biotech Gmbh Improved antibody-payload conjugates (apcs) prepared by site-specific conjugation utilizing genetic code expansion
AU2022402334A1 (en) 2021-12-02 2024-07-18 Sanofi Ceacam5 adc–anti-pd1/pd-l1 combination therapy
EP4440603A1 (en) 2021-12-02 2024-10-09 Sanofi Cea assay for patient selection in cancer therapy
US20250135011A1 (en) 2021-12-08 2025-05-01 European Molecular Biology Laboratory Hydrophilic tetrazine-functionalized payloads for preparation of targeting conjugates
US20250114489A1 (en) 2022-02-15 2025-04-10 Tagworks Pharmaceuticals B.V. Masked il12 protein
CA3261603A1 (en) 2022-07-15 2024-01-18 Pheon Therapeutics Ltd ANTIBODY-DRUG CONJUGATES
WO2024080872A1 (en) 2022-10-12 2024-04-18 Tagworks Pharmaceuticals B.V. Strained bicyclononenes
WO2024153789A1 (en) 2023-01-20 2024-07-25 Basf Se Stabilized biopolymer composition, their manufacture and use
JP2026508856A (ja) 2023-03-01 2026-03-13 サノフイ Ceacam5を発現する神経内分泌がんを処置するための抗ceacam5免疫複合体の使用
EP4427763A1 (en) 2023-03-06 2024-09-11 Sanofi Antitumor combinations containing anti-ceacam5 antibody-drug conjugates, anti-vegfr-2 antibodies and anti-pd1/pd-l1 antibodies
WO2024191293A1 (en) 2023-03-10 2024-09-19 Tagworks Pharmaceuticals B.V. Trans-cyclooctene with improved t-linker
KR20250169564A (ko) 2023-03-23 2025-12-03 사노피 암 치료법에서 환자 선택을 위한 CEACAM5 mRNA 검정
EP4719483A1 (en) 2023-06-05 2026-04-08 Sanofi Antitumor combinations containing anti-ceacam5 antibody-drug conjugates, anti-pd1/pd-l1 antibodies and anti-ctla4 antibodies
KR20260046464A (ko) 2023-07-27 2026-04-07 베락사 바이오테크 게엠베하 친수성 트랜스-시클로옥텐(hyTCO) 화합물, 이를 포함하는 구조체 및 접합체
WO2025056807A1 (en) 2023-09-15 2025-03-20 Basf Se Stabilized biopolymer composition, their manufacture and use
WO2025094146A1 (en) 2023-11-02 2025-05-08 Immunogen Switzerland Gmbh Vasconstrictors for reducing ocular toxicity of antibody-maytansinoid conjugates
WO2025149667A1 (en) 2024-01-12 2025-07-17 Pheon Therapeutics Ltd Antibody drug conjugates and uses thereof
WO2025169012A1 (en) 2024-02-06 2025-08-14 Sanofi Methods of treating ceacam5-expressing cancers
WO2025174248A1 (en) 2024-02-16 2025-08-21 Tagworks Pharmaceuticals B.V. Trans-cyclooctenes with "or gate" release
WO2026043376A1 (en) 2024-08-22 2026-02-26 Tagworks Pharmaceuticals B.V. Trans-cyclooctene formulations
WO2026078060A1 (en) 2024-10-08 2026-04-16 Basf Se Tocopherol alkoxylates for biopolymer stabilization
WO2026082894A1 (en) 2024-10-17 2026-04-23 Sanofi Ceacam5 antibody-drug conjugate for use in cancer therapy

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4424219A (en) * 1981-05-20 1984-01-03 Takeda Chemical Industries, Ltd. 9-Thiomaytansinoids and their pharmaceutical compositions and use
US5208020A (en) * 1989-10-25 1993-05-04 Immunogen Inc. Cytotoxic agents comprising maytansinoids and their therapeutic use

Family Cites Families (19)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE2241418A1 (de) 1972-08-23 1974-03-07 S Morris Kupchan Antileukaemische ansamakrolide
JPS53124692A (en) 1977-04-01 1978-10-31 Takeda Chem Ind Ltd Preparation of maytansinol, maytansine, and maytansinol, propionate
US4162940A (en) * 1977-03-31 1979-07-31 Takeda Chemical Industries, Ltd. Method for producing Antibiotic C-15003 by culturing nocardia
JPS6010718B2 (ja) 1977-03-31 1985-03-19 武田薬品工業株式会社 メイタンシノ−ル,メイタナシンおよびメイタンシノ−ル・プロピオネ−トの製造法
US4151042A (en) 1977-03-31 1979-04-24 Takeda Chemical Industries, Ltd. Method for producing maytansinol and its derivatives
US4145345A (en) * 1977-12-07 1979-03-20 Research Corporation Chromatographic purification of maytansine
JPS5529972A (en) 1978-08-24 1980-03-03 Takeda Chem Ind Ltd Preparation of maytansinol
JPS5566586A (en) * 1978-11-14 1980-05-20 Takeda Chem Ind Ltd Novel maytansinoid compound and its preparation
JPS5645483A (en) 1979-09-19 1981-04-25 Takeda Chem Ind Ltd C-15003phm and its preparation
CA2006408A1 (en) 1988-12-27 1990-06-27 Susumu Iwasa Bispecific monoclonal antibody, its production and use
CA2026147C (en) * 1989-10-25 2006-02-07 Ravi J. Chari Cytotoxic agents comprising maytansinoids and their therapeutic use
AU775373B2 (en) * 1999-10-01 2004-07-29 Immunogen, Inc. Compositions and methods for treating cancer using immunoconjugates and chemotherapeutic agents
DE10012120A1 (de) 2000-03-13 2001-09-27 Ktb Tumorforschungs Gmbh Therapeutische und diagnostische Ligandensysteme mit Transportmolekülbindenden Eigenschaften und diese enthaltende Arzneimittel
US6573074B2 (en) 2000-04-12 2003-06-03 Smithkline Beecham Plc Methods for ansamitocin production
AU2001266853B2 (en) 2000-06-14 2005-02-17 Medarex, Inc. Prodrug compounds with an oligopeptide having an isoleucine residue
US6333410B1 (en) 2000-08-18 2001-12-25 Immunogen, Inc. Process for the preparation and purification of thiol-containing maytansinoids
US20020156274A1 (en) 2001-03-16 2002-10-24 Terfloth Gerald J. Process for preparing maytansinol
US6441163B1 (en) 2001-05-31 2002-08-27 Immunogen, Inc. Methods for preparation of cytotoxic conjugates of maytansinoids and cell binding agents
JP2006510349A (ja) 2002-08-08 2006-03-30 スミスクライン・ビーチャム・コーポレイション アンサミトシンの単離および精製方法

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4424219A (en) * 1981-05-20 1984-01-03 Takeda Chemical Industries, Ltd. 9-Thiomaytansinoids and their pharmaceutical compositions and use
US5208020A (en) * 1989-10-25 1993-05-04 Immunogen Inc. Cytotoxic agents comprising maytansinoids and their therapeutic use
US5416064A (en) * 1989-10-25 1995-05-16 Immunogen, Inc. Cytotoxic agents comprising maytansinoids and their therapeutic use

Cited By (140)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1373273A4 (en) * 2001-03-16 2004-07-14 Smithkline Beecham Corp METHOD FOR PRODUCING MAYTANSINOL
EP1390370A4 (en) * 2001-05-31 2005-07-06 Immunogen Inc METHODS FOR PREPARING CYTOTOXIC CONJUGATES BASED ON MAYTANSINOIDS AND CELL FIXING AGENTS
US7368565B2 (en) 2001-05-31 2008-05-06 Immunogen Inc. Methods for preparation of cytotoxic conjugates of maytansinoids and cell binding agents
EP1507781A4 (en) * 2002-05-13 2006-03-15 Smithkline Beecham Corp METHOD OF PREPARING MAYTANSINOL
AU2010212291B2 (en) * 2003-05-14 2012-05-24 Immunogen, Inc. Method of targeting specific cell populations using cell-binding agent maytansinoid conjugates linked via a non-cleavable linker, said conjugates, and methods of making said conjugates
AU2010212291C1 (en) * 2003-05-14 2012-11-29 Immunogen, Inc. Method of targeting specific cell populations using cell-binding agent maytansinoid conjugates linked via a non-cleavable linker, said conjugates, and methods of making said conjugates
JP2007514646A (ja) * 2003-05-20 2007-06-07 イミュノジェン・インコーポレーテッド 新規メイタンシノイドを含む改良された細胞毒性薬
US7851432B2 (en) 2003-05-20 2010-12-14 Immunogen Inc. Cytotoxic agents comprising new maytansinoids
US8841425B2 (en) 2003-05-20 2014-09-23 Immunogen, Inc. Cytotoxic agents comprising new maytansinoids
EP1651162A4 (en) * 2003-05-20 2010-06-30 Immunogen Inc IMPROVED CYTOTOXIC AGENTS CONTAINING NEW MAYTANSINOIDES
NO339597B1 (no) * 2003-05-20 2017-01-09 Immunogen Inc Forbedrede cytotoksiske midler som omfatter nye maytansinoider; fremgangsmåte for deres fremstilling; intermediater derav og fremgangsmåte for deres fremstilling; konjugat mellom maytansinoidene og et cellebindende middel; fremgangsmåte for dets fremstilling og dets anvendelse i en terapeutisk metode eller til fremstilling av et medikament, samt et farmasøytisk preparat derav.
US8435528B2 (en) 2003-05-20 2013-05-07 Immunogen, Inc. Cytotoxic agents comprising new maytansinoids
JP2013082733A (ja) * 2003-05-20 2013-05-09 Immunogen Inc 新規メイタンシノイドを含む改良された細胞毒性薬
US11471536B2 (en) 2005-08-24 2022-10-18 Immunogen, Inc. Process for preparing purified drug conjugates
US9789204B2 (en) 2005-08-24 2017-10-17 Immunogen, Inc. Process for preparing purified drug conjugates
US8933205B2 (en) 2005-08-24 2015-01-13 Immunogen, Inc. Process for preparing purified drug conjugates
EP1806365A1 (en) 2006-01-05 2007-07-11 Boehringer Ingelheim International GmbH Antibody molecules specific for fibroblast activation protein and immunoconjugates containing them
US10815309B2 (en) 2009-06-03 2020-10-27 Immunogen, Inc. Methods for preparing antibody-drug conjugates
US9771432B2 (en) 2009-06-03 2017-09-26 Immunogen, Inc. Conjugation methods
US10233257B2 (en) 2009-06-03 2019-03-19 Immunogen, Inc. Methods for preparing antibody-drug conjugates
US11498979B2 (en) 2009-06-03 2022-11-15 Immunogen, Inc. Methods for preparing a purified maytansinoid conjugate in a solution
US9376500B2 (en) 2009-06-03 2016-06-28 Immunogen, Inc. Conjugation methods
US9493578B2 (en) 2009-09-02 2016-11-15 Xencor, Inc. Compositions and methods for simultaneous bivalent and monovalent co-engagement of antigens
US9605061B2 (en) 2010-07-29 2017-03-28 Xencor, Inc. Antibodies with modified isoelectric points
EP3029066A2 (en) 2010-07-29 2016-06-08 Xencor, Inc. Antibodies with modified isoelectric points
EP3828205A1 (en) 2010-10-01 2021-06-02 Oxford BioTherapeutics Ltd Anti-ror1 antibodies
WO2012045085A1 (en) 2010-10-01 2012-04-05 Oxford Biotherapeutics Ltd. Anti-rori antibodies
EP3219731A1 (en) 2010-10-01 2017-09-20 Oxford BioTherapeutics Ltd Anti-ror1 antibodies
EP3798231A1 (en) 2010-12-30 2021-03-31 Takeda Pharmaceutical Company Limited Conjugated anti-cd38 antibodies
WO2012092616A1 (en) 2010-12-30 2012-07-05 Takeda Pharmaceutical Company Limited Conjugated anti-cd38 antibodies
EP3284755A1 (en) 2010-12-30 2018-02-21 Takeda Pharmaceutical Company Limited Conjugated anti-cd38 antibodies
US11090390B2 (en) 2011-03-29 2021-08-17 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
US8795673B2 (en) 2011-03-29 2014-08-05 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
US11744900B2 (en) 2011-03-29 2023-09-05 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
US10435432B2 (en) 2011-03-29 2019-10-08 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
US9428543B2 (en) 2011-03-29 2016-08-30 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
US9914748B2 (en) 2011-03-29 2018-03-13 Immunogen, Inc. Preparation of maytansinoid antibody conjugates by a one-step process
WO2013022855A1 (en) 2011-08-05 2013-02-14 Xencor, Inc. Antibodies with modified isoelectric points and immunofiltering
EP3611187A1 (en) 2011-10-10 2020-02-19 Xencor, Inc. A method for purifying antibodies
WO2013055809A1 (en) 2011-10-10 2013-04-18 Xencor, Inc. A method for purifying antibodies
US12466897B2 (en) 2011-10-10 2025-11-11 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications
US10851178B2 (en) 2011-10-10 2020-12-01 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications
US10035817B2 (en) 2012-10-04 2018-07-31 Immunogen, Inc. Method of purifying cell-binding agent-cytotoxic agent conjugates with a PVDF membrane
US10131710B2 (en) 2013-01-14 2018-11-20 Xencor, Inc. Optimized antibody variable regions
US11718667B2 (en) 2013-01-14 2023-08-08 Xencor, Inc. Optimized antibody variable regions
US9701759B2 (en) 2013-01-14 2017-07-11 Xencor, Inc. Heterodimeric proteins
US10738132B2 (en) 2013-01-14 2020-08-11 Xencor, Inc. Heterodimeric proteins
US10738133B2 (en) 2013-01-14 2020-08-11 Xencor, Inc. Heterodimeric proteins
US9650446B2 (en) 2013-01-14 2017-05-16 Xencor, Inc. Heterodimeric proteins
US11634506B2 (en) 2013-01-14 2023-04-25 Xencor, Inc. Heterodimeric proteins
US10487155B2 (en) 2013-01-14 2019-11-26 Xencor, Inc. Heterodimeric proteins
US11053316B2 (en) 2013-01-14 2021-07-06 Xencor, Inc. Optimized antibody variable regions
US10472427B2 (en) 2013-01-14 2019-11-12 Xencor, Inc. Heterodimeric proteins
WO2014113510A1 (en) 2013-01-15 2014-07-24 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
US9738722B2 (en) 2013-01-15 2017-08-22 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
US10968276B2 (en) 2013-03-12 2021-04-06 Xencor, Inc. Optimized anti-CD3 variable regions
EP3421495A2 (en) 2013-03-15 2019-01-02 Xencor, Inc. Modulation of t cells with bispecific antibodies and fc fusions
US11814423B2 (en) 2013-03-15 2023-11-14 Xencor, Inc. Heterodimeric proteins
US10287364B2 (en) 2013-03-15 2019-05-14 Xencor, Inc. Heterodimeric proteins
US12415849B2 (en) 2013-03-15 2025-09-16 Xencor, Inc. Heterodimeric proteins
WO2014145806A2 (en) 2013-03-15 2014-09-18 Xencor, Inc. Heterodimeric proteins
US10519242B2 (en) 2013-03-15 2019-12-31 Xencor, Inc. Targeting regulatory T cells with heterodimeric proteins
EP3587448A1 (en) 2013-03-15 2020-01-01 Xencor, Inc. Heterodimeric proteins
US9605084B2 (en) 2013-03-15 2017-03-28 Xencor, Inc. Heterodimeric proteins
US11299554B2 (en) 2013-03-15 2022-04-12 Xencor, Inc. Heterodimeric proteins
US10544187B2 (en) 2013-03-15 2020-01-28 Xencor, Inc. Targeting regulatory T cells with heterodimeric proteins
US10106624B2 (en) 2013-03-15 2018-10-23 Xencor, Inc. Heterodimeric proteins
US10858417B2 (en) 2013-03-15 2020-12-08 Xencor, Inc. Heterodimeric proteins
EP3936521A1 (en) 2013-03-15 2022-01-12 Xencor, Inc. Heterodimeric proteins
WO2015052537A1 (en) 2013-10-11 2015-04-16 Oxford Biotherapeutics Ltd Conjugated antibodies against ly75 for the treatment of cancer
WO2015149077A1 (en) 2014-03-28 2015-10-01 Xencor, Inc. Bispecific antibodies that bind to cd38 and cd3
US11840579B2 (en) 2014-03-28 2023-12-12 Xencor, Inc. Bispecific antibodies that bind to CD38 and CD3
US10858451B2 (en) 2014-03-28 2020-12-08 Xencor, Inc. Bispecific antibodies that bind to CD38 and CD3
US9822186B2 (en) 2014-03-28 2017-11-21 Xencor, Inc. Bispecific antibodies that bind to CD38 and CD3
EP3954713A2 (en) 2014-03-28 2022-02-16 Xencor, Inc. Bispecific antibodies that bind to cd38 and cd3
WO2016014984A1 (en) 2014-07-24 2016-01-28 Xencor, Inc. Rapid clearance of antigen complexes using novel antibodies
CN105585579A (zh) * 2014-10-24 2016-05-18 南京联宁生物制药有限公司 一种化合物及其制备方法以及美登素dm1的制备方法
WO2016061718A1 (zh) * 2014-10-24 2016-04-28 南京联宁生物制药有限公司 一种化合物及其制备方法以及美登素dm1的制备方法
US10889653B2 (en) 2014-11-26 2021-01-12 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US11859011B2 (en) 2014-11-26 2024-01-02 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US10913803B2 (en) 2014-11-26 2021-02-09 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US10259887B2 (en) 2014-11-26 2019-04-16 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US9856327B2 (en) 2014-11-26 2018-01-02 Xencor, Inc. Heterodimeric antibodies to CD3 X CD123
US9850320B2 (en) 2014-11-26 2017-12-26 Xencor, Inc. Heterodimeric antibodies to CD3 X CD20
US11352442B2 (en) 2014-11-26 2022-06-07 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CD38
US11945880B2 (en) 2014-11-26 2024-04-02 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US11673972B2 (en) 2014-11-26 2023-06-13 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US12359002B2 (en) 2014-11-26 2025-07-15 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US10526417B2 (en) 2014-11-26 2020-01-07 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CD38
US11111315B2 (en) 2014-11-26 2021-09-07 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US12129309B2 (en) 2014-11-26 2024-10-29 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CD38
US11225528B2 (en) 2014-11-26 2022-01-18 Xencor, Inc. Heterodimeric antibodies that bind CD3 and tumor antigens
US10428155B2 (en) 2014-12-22 2019-10-01 Xencor, Inc. Trispecific antibodies
WO2016141387A1 (en) 2015-03-05 2016-09-09 Xencor, Inc. Modulation of t cells with bispecific antibodies and fc fusions
US10227411B2 (en) 2015-03-05 2019-03-12 Xencor, Inc. Modulation of T cells with bispecific antibodies and FC fusions
US11091548B2 (en) 2015-03-05 2021-08-17 Xencor, Inc. Modulation of T cells with bispecific antibodies and Fc fusions
US11623957B2 (en) 2015-12-07 2023-04-11 Xencor, Inc. Heterodimeric antibodies that bind CD3 and PSMA
US10227410B2 (en) 2015-12-07 2019-03-12 Xencor, Inc. Heterodimeric antibodies that bind CD3 and PSMA
US10787518B2 (en) 2016-06-14 2020-09-29 Xencor, Inc. Bispecific checkpoint inhibitor antibodies
US11236170B2 (en) 2016-06-14 2022-02-01 Xencor, Inc. Bispecific checkpoint inhibitor antibodies
US11492407B2 (en) 2016-06-14 2022-11-08 Xencor, Inc. Bispecific checkpoint inhibitor antibodies
US10316088B2 (en) 2016-06-28 2019-06-11 Xencor, Inc. Heterodimeric antibodies that bind somatostatin receptor 2
US12054545B2 (en) 2016-06-28 2024-08-06 Xencor, Inc. Heterodimeric antibodies that bind somatostatin receptor 2
US11225521B2 (en) 2016-06-28 2022-01-18 Xencor, Inc. Heterodimeric antibodies that bind somatostatin receptor 2
US10793632B2 (en) 2016-08-30 2020-10-06 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
US10501543B2 (en) 2016-10-14 2019-12-10 Xencor, Inc. IL15/IL15Rα heterodimeric Fc-fusion proteins
US10550185B2 (en) 2016-10-14 2020-02-04 Xencor, Inc. Bispecific heterodimeric fusion proteins containing IL-15-IL-15Rα Fc-fusion proteins and PD-1 antibody fragments
EP4257614A2 (en) 2017-03-10 2023-10-11 Berlin-Chemie AG Pharmaceutical combinations comprising an anti-ly75 antibody
US12351635B2 (en) 2017-03-10 2025-07-08 Berlin-Chemie Ag Pharmaceutical combinations comprising an anti-LY75 antibody
US11365258B2 (en) 2017-03-10 2022-06-21 Berlin-Chemie Ag Pharmaceutical combinations comprising an anti-LY75 antibody
US11084863B2 (en) 2017-06-30 2021-08-10 Xencor, Inc. Targeted heterodimeric Fc fusion proteins containing IL-15 IL-15alpha and antigen binding domains
US11312770B2 (en) 2017-11-08 2022-04-26 Xencor, Inc. Bispecific and monospecific antibodies using novel anti-PD-1 sequences
US10981992B2 (en) 2017-11-08 2021-04-20 Xencor, Inc. Bispecific immunomodulatory antibodies that bind costimulatory and checkpoint receptors
US12152076B2 (en) 2017-11-08 2024-11-26 Xencor, Inc. Bispecific and monospecific antibodies using novel anti-PD-1 sequences
US11319355B2 (en) 2017-12-19 2022-05-03 Xencor, Inc. Engineered IL-2 Fc fusion proteins
US10982006B2 (en) 2018-04-04 2021-04-20 Xencor, Inc. Heterodimeric antibodies that bind fibroblast activation protein
US12180302B2 (en) 2018-04-04 2024-12-31 Xencor, Inc. Heterodimeric antibodies that bind fibroblast activation protein
US11505595B2 (en) 2018-04-18 2022-11-22 Xencor, Inc. TIM-3 targeted heterodimeric fusion proteins containing IL-15/IL-15RA Fc-fusion proteins and TIM-3 antigen binding domains
US11524991B2 (en) 2018-04-18 2022-12-13 Xencor, Inc. PD-1 targeted heterodimeric fusion proteins containing IL-15/IL-15Ra Fc-fusion proteins and PD-1 antigen binding domains and uses thereof
WO2019238843A1 (en) 2018-06-14 2019-12-19 Berlin-Chemie Ag Pharmaceutical combinations
US12194092B2 (en) 2018-06-14 2025-01-14 Berlin-Chemie Ag Pharmaceutical combinations
US11530274B2 (en) 2018-07-02 2022-12-20 Amgen Inc. Anti-STEAP1 antigen-binding protein
WO2020010079A2 (en) 2018-07-02 2020-01-09 Amgen Inc. Anti-steap1 antigen-binding protein
US11358999B2 (en) 2018-10-03 2022-06-14 Xencor, Inc. IL-12 heterodimeric Fc-fusion proteins
EP4219509A1 (en) * 2019-03-01 2023-08-02 Celgene Corporation Preparation of maytansinol
WO2020180709A1 (en) * 2019-03-01 2020-09-10 Celgene Corporation Preparation of maytansinol
US11472890B2 (en) 2019-03-01 2022-10-18 Xencor, Inc. Heterodimeric antibodies that bind ENPP3 and CD3
US12227519B2 (en) 2019-03-01 2025-02-18 Celgene Corporation Preparation of maytansinol
JPWO2021107133A1 (2) * 2019-11-29 2021-06-03
US12473579B2 (en) 2019-11-29 2025-11-18 Microbiopharm Japan Co., Ltd. Method for enzymatically producing maytansinol
JP7772363B2 (ja) 2019-11-29 2025-11-18 日本マイクロバイオファーマ株式会社 メイタンシノールの酵素的生産方法
US12404329B2 (en) 2020-05-14 2025-09-02 Xencor, Inc. Heterodimeric antibodies that bind prostate specific membrane antigen (PSMA) and CD3
US11919956B2 (en) 2020-05-14 2024-03-05 Xencor, Inc. Heterodimeric antibodies that bind prostate specific membrane antigen (PSMA) and CD3
US11591401B2 (en) 2020-08-19 2023-02-28 Xencor, Inc. Anti-CD28 compositions
US11919958B2 (en) 2020-08-19 2024-03-05 Xencor, Inc. Anti-CD28 compositions
US11739144B2 (en) 2021-03-09 2023-08-29 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CLDN6
US12398207B2 (en) 2021-03-09 2025-08-26 Xencor, Inc. Heterodimeric antibodies that bind CD3 and CLDN6
US11859012B2 (en) 2021-03-10 2024-01-02 Xencor, Inc. Heterodimeric antibodies that bind CD3 and GPC3
WO2023089314A1 (en) 2021-11-18 2023-05-25 Oxford Biotherapeutics Limited Pharmaceutical combinations
US12617872B2 (en) 2025-09-16 2026-05-05 Xencor, Inc. Heterodimeric human IgG1 polypeptides with isoelectric point modifications

Also Published As

Publication number Publication date
USRE39151E1 (en) 2006-06-27
CA2373554A1 (en) 2002-02-28
CA2678754C (en) 2013-08-27
DE60116113T2 (de) 2006-07-27
JP2004506738A (ja) 2004-03-04
US6333410B1 (en) 2001-12-25
EP1313738B1 (en) 2005-12-21
CA2373554C (en) 2011-02-15
CA2678754A1 (en) 2002-02-28
HK1056357A1 (en) 2004-02-13
DK1313738T3 (da) 2006-05-01
DE60116113D1 (de) 2006-01-26
JP4922535B2 (ja) 2012-04-25
AU763107B2 (en) 2003-07-10
ES2253371T3 (es) 2006-06-01
EP1313738A1 (en) 2003-05-28
ATE313545T1 (de) 2006-01-15
AU5311801A (en) 2002-03-04
EP1313738A4 (en) 2005-01-19

Similar Documents

Publication Publication Date Title
EP1313738B1 (en) Process for the preparation and purification of thiol-containing maytansinoids
KR101145506B1 (ko) 새로운 메이탠시노이드를 포함하는 개선된 세포독성체
CA2417858C (en) Methods for preparation of cytotoxic conjugates of maytansinoids and cell binding agents
US5208020A (en) Cytotoxic agents comprising maytansinoids and their therapeutic use
EP0425235B1 (en) Cytotoxic agents comprising maytansinoids and their therapeutic use
AU2002251880A1 (en) Method for preparation of cytotoxic conjugates of maytansinoids and cell binding agents
HK1056357B (en) Process for the preparation and purification of thiol-containing maytansinoids
HK1060355B (en) Methods for preparation of cytotoxic conjugates of maytansinoids and cell binding agents
HK1149765B (en) Methods for preparation of cytotoxic conjugates of maytansinoids and cell binding agents
HK40012682A (en) Improved cytotoxic agents comprising new maytansinoids
HK40012682B (en) Improved cytotoxic agents comprising new maytansinoids

Legal Events

Date Code Title Description
ENP Entry into the national phase

Ref document number: 2373554

Country of ref document: CA

AK Designated states

Kind code of ref document: A1

Designated state(s): AU CA JP

AL Designated countries for regional patents

Kind code of ref document: A1

Designated state(s): AT BE CH CY DE DK ES FI FR GB GR IE IT LU MC NL PT SE TR

WWE Wipo information: entry into national phase

Ref document number: 53118/01

Country of ref document: AU

ENP Entry into the national phase

Ref country code: JP

Ref document number: 2002 521468

Kind code of ref document: A

Format of ref document f/p: F

WWE Wipo information: entry into national phase

Ref document number: 2001926594

Country of ref document: EP

121 Ep: the epo has been informed by wipo that ep was designated in this application
WWP Wipo information: published in national office

Ref document number: 2001926594

Country of ref document: EP

WWG Wipo information: grant in national office

Ref document number: 53118/01

Country of ref document: AU

WWG Wipo information: grant in national office

Ref document number: 2001926594

Country of ref document: EP