WO2004103388A2 - Insect repellent - Google Patents
Insect repellent Download PDFInfo
- Publication number
- WO2004103388A2 WO2004103388A2 PCT/IB2004/001631 IB2004001631W WO2004103388A2 WO 2004103388 A2 WO2004103388 A2 WO 2004103388A2 IB 2004001631 W IB2004001631 W IB 2004001631W WO 2004103388 A2 WO2004103388 A2 WO 2004103388A2
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- WO
- WIPO (PCT)
- Prior art keywords
- oil
- composition
- epo
- catnip
- target
- 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.)
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Classifications
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
- A01N65/08—Magnoliopsida [dicotyledons]
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- A—HUMAN NECESSITIES
- A01—AGRICULTURE; FORESTRY; ANIMAL HUSBANDRY; HUNTING; TRAPPING; FISHING
- A01N—PRESERVATION OF BODIES OF HUMANS OR ANIMALS OR PLANTS OR PARTS THEREOF; BIOCIDES, e.g. AS DISINFECTANTS, AS PESTICIDES OR AS HERBICIDES; PEST REPELLANTS OR ATTRACTANTS; PLANT GROWTH REGULATORS
- A01N65/00—Biocides, pest repellants or attractants, or plant growth regulators containing material from algae, lichens, bryophyta, multi-cellular fungi or plants, or extracts thereof
- A01N65/08—Magnoliopsida [dicotyledons]
- A01N65/22—Lamiaceae or Labiatae [Mint family], e.g. thyme, rosemary, skullcap, selfheal, lavender, perilla, pennyroyal, peppermint or spearmint
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- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P31/00—Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P31/00—Antiinfectives, i.e. antibiotics, antiseptics, chemotherapeutics
- A61P31/12—Antivirals
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P33/00—Antiparasitic agents
- A61P33/02—Antiprotozoals, e.g. for leishmaniasis, trichomoniasis, toxoplasmosis
-
- A—HUMAN NECESSITIES
- A61—MEDICAL OR VETERINARY SCIENCE; HYGIENE
- A61P—SPECIFIC THERAPEUTIC ACTIVITY OF CHEMICAL COMPOUNDS OR MEDICINAL PREPARATIONS
- A61P33/00—Antiparasitic agents
- A61P33/02—Antiprotozoals, e.g. for leishmaniasis, trichomoniasis, toxoplasmosis
- A61P33/06—Antimalarials
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
Definitions
- the invention relates to repellent compositions, and more particularly to repellent compositions that may be used to repel insects from animals, including humans, and also plants, soil, or building structures.
- Insects particularly mosquitoes, carry diseases and are generally regarded as pests to both animals and plants. Every year, over one million people worldwide die from mosquito- borne diseases. Mosquitoes can carry many different kinds of diseases including malaria, heartworm, dengue fever, encephalitis, yellow fever and West Nile virus.
- insecticides which kill insects, or repellents, which merely repel insects
- insecticides are commonly used to keep insects away from animals, plants and building structures.
- commercially available insecticides including those available for home use, commonly include active ingredients which are not only toxic to the target pests, but, if used in relatively confined environments and delivered as aerosol sprays, can be present in sufficient concentration to be toxic to humans and household pets.
- Various undesirable side effects may include immediate or delayed neurotoxic reactions and/or suffocation. Even the noxious odor of such materials can cause headaches or nausea in some individuals. These adverse side effects are exacerbated when such compositions come in contact with persons of increased sensitivity, or persons of small body mass such as children or babies.
- insecticides which kill the target pests
- insect repellents may be a compromise that minimizes disease and discomfort in animals and plants, without disrupting the natural balance of insects.
- a repellent composition useful for effectively repelling pests, including insects, from animals, plants and building structures.
- the formulations should be long lasting and of lesser toxicity than traditional repellents.
- effective repellents are needed to reduce the transmission of infectious disease. Because insects are also carriers of infectious diseases, a repellent composition the prevents or reduces the number of landings and bites of insects may reduce the transmission of infectious diseases.
- compositions and method of the present invention resolve many of the difficulties associated with conventional insect repellents described above.
- insects particularly mosquitoes
- evening primrose oil (“EPO”)
- EPO evening primrose oil
- catnip oil a known insect repellent
- DEET N,N-diethyl-3-methylbenzamide
- compositions of the invention comprise mixtures of EPO and a carrier.
- Compositions of the invention also comprise mixtures or solutions of EPO, catnip oil and a carrier.
- Compositions of the invention further comprise mixtures of EPO and another plant extract oil, optionally combined with catnip oil.
- the EPO is present in an amount between approximately 0.1% and 99% w/w. In other embodiments, the EPO is present in an amount between approximately
- the EPO is present in an amount between approximately 1% and 10%. In preferred embodiments, the EPO is present in an amount between approximately 2% and 8% w/w.
- the catnip oil is present in an amount between approximately
- the catnip oil is present in an amount between approximately 0.1 % and 50% w/w. In additional embodiments, the catnip oil is present in an amount between approximately 1% and 10%. In preferred embodiments, the catnip oil is present in an amount between approximately 2% and 8% w/w.
- compositions of EPO, and EPO with catnip oil further comprise one or more additional plant extract oils.
- the one or more additional plant extract oil may be allspice, anisum, basil, cajeput, catnip, cedar, chrysanthemum, cinnamon, citronella, clove, eucalyptus, garlic, geranium, lavender, marjoram, neem, pennyroyal, peppermint, pine, rosemary, sage, spearmint, thyme or any other members of the mint (Lamiaceae or Labiatae) family, tea-tree, vanilla or verbena or a combination thereof.
- the one or more additional plant extract oil is present in an amount between approximately 0.1% and 99% w/w. In particular embodiments, the one or more additional plant extract oil is present in an amount between approximately 0.1 % and 50% w/w. In still more particular embodiments, the one or more additional plant extract oil is present in amount between approximately 1% and 10% w/w. In preferred embodiments, the one or more additional plant extract oil is peppermint oil.
- compositions of the present invention further comprise DEET.
- compositions comprise an emulsifier, an antimicrobial agent and/or an antioxidant.
- the emulsifier is lecithin.
- the target pest may be a biting, sucking or chewing insect.
- the target pests include but are not limited to a mosquito, house fly, barn fly, face fly, bush fly, black fly, no see'um, deer fly, horse fly, beetle, gnat, tick, beer bug, flea, louse, bed bug, earwig, ant, cockroach, aphid, spruce bud worm, corn borer, sandflea, tsetse fly, mite or assassin bug.
- the target area is at least one area on a human, animal, bird, plant, crop, tree, soil, field, greenhouse, barn, granary, home, deck, pool, commercial building, clothing, tent, shoe, boot, blanket, sleeping bag, backpack, table cloth or picnic table.
- Embodiments of the invention are also directed to methods for reducing the incidence of an infectious disease caused by a target pest comprising applying the compositions to a target area.
- the target area is at least one area on a human or an animal.
- the infectious disease is an insect-borne disease.
- the infectious disease is any one of the following: malaria, yellow fever, dengue fever, West Nile encephalitis, Rift Valley fever, Arboviral Encephalitides, filariasis, babesiosis, ehrlichiosis, Lyme disease, Rocky Mountain spotted fever, Southern tick- associated rash illness, tick typhus, tularemia, encephalitis, Leishmaniasis, Carrion's disease, sand fly fever, African sleeping sickness, Chagas disease, lice infestation, epidemic relapsing fever, trench fever, typhus fever, onchoceriasis, tularemia, anthrax, loiasis, yaws, conjunctivitis, dysentery, cholera, poliomyelitis, bubonic plague and murine typhus.
- the composition comprises EPO, catnip oil, a carrier, an emulsifier, an anti-microbial agent, and an antioxidant.
- the invention includes methods for repelling a target pest from a target area comprising applying the composition to the target area.
- compositions for repelling pests such as insects
- Another object of the invention is to provide a method for repelling pests, such as insects, from a target area through application of the compositions of the present invention to a target area.
- Yet another object of the invention is to provide a method of reducing the incidence of infectious disease through application of the compositions of the present invention to a target area.
- Fig. 1 is a chart showing the mean mosquito repellency provided by a combination of 2% catnip oil and 1% EPO.
- the Y-axis shows the number of landings or bites and the X-axis shows the time except for Figure 4.
- Figure 4 In this and all subsequent figures except
- Fig. 2 is a chart showing the mean mosquito repellency provided by a combination of 4% catnip oil and 1% EPO.
- Fig. 3 is a chart showing the mean mosquito repellency provided by a combination of 8% catnip oil and 1% EPO.
- Fig. 4 is a chart showing the mean mosquito repellency provided by EPO alone at different concentrations of EPO.
- Fig. 5 is a chart showing the mean mosquito repellency of a combination of 4% catnip oil and
- Fig. 6 is a chart showing the mean mosquito repellency of a combination of 4% catnip oil and
- Fig. 7 is a chart showing the mean mosquito repellency of a combination of 4% catnip oil and 0% EPO.
- Fig. 8 is a chart showing the mean mosquito repellency of a combination of 4% EPO and 4%
- the invention relates to repellent compositions that are useful in repelling pests, such as insects, from target areas including but not limited to animals, including humans, clothing, plants and building structures.
- the repellent composition comprises evening primrose oil (EPO) and a carrier, EPO and catnip oil and a carrier, and either of these compositions in combination with a plant extract oil.
- repel means that less time (including no time) is spent in a target area than in a non-target area.
- to repel a target pest means deterring the pest from remaining in a target area.
- Repel may also include killing the target pest.
- Repel may also be used to refer to slowing the behavior and/or responsiveness of a target pest so that the presence of the target pest is less of a nuisance to the target area.
- Repel also includes minimizing the landings of the target pest on a target area, including entry of the target pests into building structures.
- target areas include, but are not limited to, areas on humans, animals, birds, plants, crops, trees, soils, fields, greenhouses, barns granaries, homes, decks, pools, commercial buildings, clothing, tents, shoes, boots, blankets, sleeping bags, backpacks, table cloths, picnic tables and the like.
- Animals include but are not limited to domestic animals, farm animals, wild animals, pets, and zoo animals.
- target pest generally includes, but is not limited to, biting, sucking and chewing insects.
- Target pest includes, but is not limited to, mosquitoes, flies (including house, barn, face, bush, and the like), black flies, no see'ums, deer flies, horse flies, beetles, gnats, ticks, beer bugs (raspberry beetles), fleas, lice, bed bugs, earwigs, ants, cockroaches, aphids, spruce bud worm, corn borers, sandfleas, tsetse flies, mites, assassin bugs and the like.
- Repellent Compositions include, but is not limited to, mosquitoes, flies (including house, barn, face, bush, and the like), black flies, no see'ums, deer flies, horse flies, beetles, gnats, ticks, beer bugs (raspberry beetles), fleas, lice, bed bugs, earwigs, ants,
- Embodiments of the insect repellent include evening primrose oil (EPO). Evening primrose or Oenothera biennis (Onagraceae) is a genus of herbs and undershrubs distributed mainly in temperate America together with some species occurring in the tropics. The oil from seeds of Oenothera biennis is known to be a rich source of gamma-linolenic acid. EPO has surprisingly been found to be an effective pest repellent.
- Embodiments of the repellent composition may include EPO and a carrier.
- the concentration of EPO in the repellent composition ranges from about 0.1% to about 99% by weight.
- EPO is present in a concentration ranging from about 0.1% to about 50% by weight. More preferably, EPO is present in a concentration ranging from about 1% to about 10% by weight. More preferably, EPO is present in a concentration ranging from about 2% to about 8% by weight. In a preferred embodiment, EPO is present in a concentration of about 4% to about 6% by weight.
- the repellent composition includes EPO, a carrier and any of the plant extract essential oils selected from the following: allspice, anisum, basil, cajeput, catnip, cedar, chrysanthemum, cinnamon, citronella, clove, eucalyptus, garlic, geranium, lavender, marjoram, neem, pennyroyal, peppermint, pine, rosemary, sage, spearmint, thyme or any other members of the mint (Lamiaceae or Labiatae) family, tea-tree, vanilla proximity verbena or combinations thereof.
- the concentration of the additional plant extract essential oil(s) in the repellent composition ranges from about 0.1% to about 99% by weight.
- the additional oil(s) are present in a concentration ranging from about 0.1% to about 50% by weight. More preferably, the additional oil(s) are present in a concentration ranging from about 1% to about 10% by weight. More preferably, the additional oil(s) are present in a concentration ranging from about 2% to about 8% by weight. In a preferred embodiment, EPO is present in a concentration of about 4% to about 6% by weight in combination with additional plant extract essential oil(s) present in a concentration of about 6% by weight.
- Embodiments of the repellent composition comprising EPO and a carrier may also include any of the following essential oils, including but not limited to catnip oil, clove oil, peppermint oil, lavender oil or combinations thereof.
- the concentration of the additional essential oil ranges from about 0.1% to about 99% by weight.
- the additional essential oil is present in a concentration ranging from about 0.1% to about 50% by weight.
- the additional essential oil is present in a concentration ranging from about 1% to about 10% by weight.
- the additional essential oil is present in a concentration ranging from about 2% to about 8% by weight.
- the additional essential oil is present in a concentration of about 4% to about 6% by weight.
- the repellent compositions comprise catnip oil in combination with EPO.
- the concentration of the catnip oil ranges from about 0.1% to about 99% by weight.
- the catnip oil is present in a concentration ranging from about 0.1% to about 50% by weight.
- the catnip oil is present in a concentration ranging from about 1% to about 10% by weight.
- the catnip oil is present in a concentration ranging from about 2% to about 8% by weight.
- the catnip oil is present in a concentration of about 4% to about 6% by weight.
- Catnip is the common name for a, strong-scented perennial herb (Nepeta cataria) of the family Labiatae (mint family), native to Europe and Asia but naturalized in America. Catnip is best known for its stimulating effect on cats. Nepetalactone, the essential oil in catnip that gives the plant its characteristic odor, is about ten times more effective at repelling mosquitoes than DEET. Although Nepeta cataria was used in the present examples, it is to be understood that any of the more than 200 species of Nepeta may be used.
- Table 1 shows examples of the relative amounts (w/w) of active ingredients in the repellent composition of the invention. Any combination may be employed provided the combination of the relative amounts does not exceed 100%.
- the repellent composition may include modified EPO and a carrier.
- the EPO may be modified such that it is oxidized prior to or immediately following application.
- repellent composition when applied to skin, wetting of the skin may reactivate the composition such that the repellency is extended for an additional period of time.
- repellency function may be extended by wetting the target area.
- the repellent compositions of the present invention may also contain carriers, emulsif ⁇ ers, or diluents as known to one of ordinary skill in the art.
- a carrier or diluent is an inert material used in making different formulations of the repellent compositions.
- the specific carrier used in any repellent composition depends on how the repellent composition will be applied (whether in a lotion, spray or dust form, for example) and where the repellent composition will be applied.
- the repellent compositions optionally include anti-microbial agents to reduce the transfer of infectious diseases.
- anti-microbial agents to reduce the transfer of infectious diseases.
- any anti-microbial agents appropriate for application to the specific target area to be treated may be used.
- the repellent compositions optionally include an antioxidant.
- the antioxidant assists in preventing rancidity of the oils and fats in the compositions.
- rosemary extract has been found to be a suitable lipophilic antioxidant.
- any suitable antioxidant appropriate for application to the specific target area to be treated may be used.
- the repellent compositions optionally include a fragrance that is not an insect attractant.
- a fragrance that is not an insect attractant.
- Such fragrances are known to one of ordinary skill in the art.
- Formulations The repellent compositions may be formulated differently based on the target area (i.e., living vs. nonliving objects) and how the compositions are to be applied.
- Spray formulations are known to one of ordinary skill in the art and include aqueous solutions, water-soluble powders, emulsifiable concentrates, water miscjble liquids/powders (for compositions that are soluble in water), wettable powders or water-dispersible powders, flowable/sprayable suspensions or suspension concentrates, and oil solutions.
- One spray formulation of the invention is an emulsifiable concentrate.
- a concentrated organic solvent-based solution of the repellent composition (or the repellent composition alone if it is a liquid at room temperature) is added to an emulsifier.
- an emulsifier is a detergent-like (surfactant) material that allows microscopically small oil droplets to be suspended in water to form an emulsion.
- the concentrate is thereby dispersed evenly throughout an aqueous solution and generally remains suspended for an extended period of time (in some cases for days).
- Emulsifiers useful in the invention are generally known to one of ordinary skill in the art and include, but are not limited to the following: non-ionic or ionic polymers such as polyoxyethylenesorbitan monooleates (Tweens), such as Tween 20 and Tween 60; sorbitol (polysorbate 80); propylene glycol; polyethylene glycol; ethanol (ethyl alcohol); and methanol (methyl alcohol).
- Tweens polyoxyethylenesorbitan monooleates
- sorbitol polysorbate 80
- propylene glycol polyethylene glycol
- ethanol ethyl alcohol
- methanol methyl alcohol
- Other surfactants that can be used as an emulsifier for pesticide formulations are the phosphate esters.
- phosphate ester surfactants examples include, but are not limited to the following: butyl phosphate; hexyl phosphate; 2-ethylhexyl phosphate; octyl phosphate; decyl phosphate; octyldecyl phosphate; mixed alkyl phosphate; hexyl polyphosphate; and octyl polyphosphate.
- the emulsifier used is either plant extract, bees wax or commercial emsulfiers/surfactants such as Novomer EC-1, Ultrez 21, Pemulen TR-2NF, soaps, poloxamers, Tweens and the like).
- a plant extract e.g., plant lecithin, plant glycerin, plant waxes and glycoproteins
- a plant extract e.g., plant lecithin, plant glycerin, plant waxes and glycoproteins
- Wettable powders or water-dispersible powders are also an important spray formulation.
- Wettable powders are known to one of ordinary skill in the art and are made by mixing the repellent composition with a fine dust (generally clay or talc) and a wejting agent (a dry soap or detergent). This mixture is then dispersed in water before spraying.
- the wetting agent will act as an emulsifier in the aqueous solution and cause the otherwise insoluble repellent composition to dissolve in water.
- Emulsifiable concentrates are preferred over wettable powders for most applications because the wettable powder aqueous solution will tend to "settle" quickly and require agitation in order to keep a constant concentration of repellent composition while spraying.
- Flowable/sprayable suspensions or suspension concentrates are another method of creating a spray formulation with a repellent composition that is insoluble in water.
- a flowable/sprayable suspension is a suspension of very finely ground dust diluent and. repellent composition in a non-solvent liquid (generally water). The suspension will then mix well with water and can be sprayed.
- Flowable/sprayable suspensions suffer the same disadvantage as wettable powders because they tend to "settle" out and give varying concentrations of repellent composition throughout spraying.
- An oil solution is another method of creating a spray formulation with a repellent composition that is insoluble in water.
- Such oil solutions are known to one of ordinary skill in the art.
- the repellent composition is dispersed in oil and applied as an oil-based spray. This formulation is convenient for ready-to-use pesticides where further handling by the user is not desired.
- Dust formulations are also known to one of ordinary skill in the art and can be utilized in formulations of the repellent compositions of the present invention.
- the repellent composition is mixed with a solid particulate diluent (preferably one with a size range of 50-100 ⁇ m).
- the dust formulation is then mixed with the air through the aid of a dusting machine.
- dust formulations have historically been the easiest to make and apply, application rates, and repellent composition concentrations have to be exceedingly high. Further, even though the amount of repellent composition applied is very high, the actual amount of the repellent composition that reaches the target is generally low because the dusts are prone to drift.
- Preferred diluents for use in dust formulations are silicon dioxide, zinc oxide, talc, diatomaceous earth, clays, calcium carbonate, wheat flour, and powdered nut hulls.
- the repellent compositions of the invention can also be formulated into granular formulations as known to one of ordinary skill in the art.
- Granules such as small pellets (usually 0.3-1.3 mm) of an inert carrier (usually clay), can be mixed with the repellent compositions to give the desired concentration.
- Granules can be formulated to allow a rapid release, or an extended release of the repellent composition over time.
- Granular formulations are useful for relatively small-scale (garden or houseplant) applications, and in applications where safer handling is desired.
- the repellent compositions of the invention can also be formulated into aerosol formulations as known to one of ordinary skill in the art. In order to use an aerosol formulation, the repellent composition must be soluble in a pressurized, volatile, petroleum solvent. Upon application of the aerosol formulation, the solvent evaporates leaving micro-droplets of the repellent composition suspended in the air. Aerosol formulations are useful for indoor applications, or small-scale outdoor applications.
- the repellent compositions of the invention can also be formulated into a lotion for topical application.
- the lotion compositions can be presented as a solution or a suspension of the repellent composition in a liquid medium.
- the repellent compositions can also be combined with a sunscreen or tanning solution.
- the sunscreen or tanning solution may be of the usual formulations, such as a lotion, spray or aerosol.
- the repellent composition may also be combined with an insecticide, such as DEET.
- an insecticide such as DEET.
- the insecticide kills any insects that are not repelled by the repellent composition.
- Other acceptable insecticides for application to animals or humans, or to other target areas are commonly known to one of ordinary skill in the art and may be included in the compositions of the present invention. Due to the effective repellency of the repellent compositions, lower amounts of DEET are needed than are traditionally used.
- Embodiments of the repellent composition may include but are not limited to 0.1% - 15% DEET, 1% - 15% DEET or 2-15% DEET (w/w).
- the repellent compositions may also include antimicrobial agents to further reduce the incidence of spreading infectious diseases.
- the formulated repellent composition can either be applied directly or can be diluted further before application.
- the diluent depends on the specific treatment to be accomplished, and the method of application.
- a repellent composition that is to be applied to trees could be diluted further with water to make it easier and more efficient to spray with known spraying techniques.
- Sprays and lotions may be employed for application to skin or fur of humans or animals.
- Repellent compositions either diluted or undiluted, can be applied in a number of different ways. For small-scale application of a liquid repellent composition, backpack tanks, hand-held wands, spray bottles, or aerosol cans can be utilized.
- tractor drawn rigs with booms, tractor drawn mist blowers, airplanes or helicopters equipped for spraying, or fogging sprayers can all be utilized.
- Small-scale application of solid formulations can be accomplished in a number of different ways, examples of which are: shaking product directly from the container or gravity-application by human powered fertilizer spreader.
- Large-scale application of solid formulations can be accomplished by gravity fed tractor drawn applicators, or similar devices.
- compositions of the invention can be combined with slow-release systems including micro-beads, silicon-based formulas, encapsulation, etc. to extend the repellent time.
- the formulations can be so constituted that they release the active ingredient only or preferably in a particular location, possibly over a period of time (i.e., a sustained-release formulation).
- Such combinations provide yet a further mechanism for controlling release kinetics.
- the coatings, envelopes, and protective matrices may be made, for example, from polymeric substances or waxes and the pharmaceutically acceptable.
- Repellent compositions of the invention may be applied as frequently as needed, based on the characteristics of the target area and the nature and concentration of the target pests to be repelled.
- Embodiments of the repellent composition of the invention may also be used to reduce disease transmission.
- embodiments of the repellent composition may be used to reduce the incidence of common insect-borne diseases of humans and other animals.
- Mosquitoes may be vectors for malaria, yellow fever, dengue fever, and West Nile encephalitis, Rift Valley fever, Arboviral Encephalitides, such as Eastern equine encephalitis, Japanese encephalitis, La Crosse encephalitis, St. Louis encephalitis, West Nile virus and Western equine encephalitis, and filariasis.
- Ticks can be vectors for babesiosis, ehrlichiosis, Lyme disease, Rocky Mountain spotted fever, Southern tick-associated rash illness, tick typhus, tularemia and encephalitis.
- Sand fleas are vectors for Leishmaniasis, Carrion's disease and sand fly fever.
- Tsetse flies can be vectors for African sleeping sickness.
- Assassin bugs may be vectors for Chagas disease.
- Lice may be vectors for lice infestation, epidemic relapsing fever, trench fever and typhus fever.
- Black flies may be vectors for filariasis and onchoceriasis.
- Horse flies and deer flies may be vectors for tularemia, anthrax and loiasis.
- Eye gnats can be vectors for yaws and conjunctivitis.
- House flies may be vectors for dysentery, typhoid fever, cholera and poliomyelitis.
- Rat fleas are carriers of bubonic plague and murine typhus.
- various parasitic, rickettsial, bacterial and viral diseases of animals and man are spread by mosquitoes, ticks, biting flies, fleas, lice and other biting insects.
- Application of the repellent composition of the invention reduces the incidence of the diseases in humans and animals by reducing the number of insect bites.
- a laboratory culture of Aedes atropalpus adults maintained in continuous culture at the University of Ottawa was used. The culture was derived from collections made from temporary pools in shale beds along the Ottawa River at Fitzroy Harbour, Ontario. This species is known as the rock hole breeding mosquito and is found in southern Ontario and Quebec. It is representative of the many Aedes spp. which are the most important mosquitoes biting humans in spring and summer. The genus is capable of transmitting tropical diseases such as dengue and yellow fever. This species of mosquito is a known vector that transmits West Nile virus.
- the WHO test protocol for mosquito repellents was used (Barnard, D.R. 2000. Repellent and toxicants for personal protection. WHO/CDS/WHOPES).
- Two clear PerspexTM mosquito cages (38 cm x 38 cm x 38 cm) containing more than 400 adults of both sexes and various ages were used.
- the investigators wore gloves to protect hands and introduced their forearms up to the elbow through a cloth sleeve entry port into the cage.
- an untreated arm was exposed for 3 -minute period. The number of landings and bites were recorded as bites per 3- minute period.
- each forearm was treated (1 ml of repellent per forearm) with a different repellent and each forearm was introduced into the cages for a further 3 minutes of evaluation. After one hour, the forearms were exposed a second time and landings and bites recorded. This procedure was repeated at hourly intervals, collecting data until the product failed to protect against bites. Failure occurred when there were two bites within the 3-minute test period. The two principal investigators volunteered along with 2 male subjects in their mid 20's. The compounds tested contained various levels of catnip (Nepeta cataria) essential oil, and evening primrose (Oenothera biennis ) high gamma linoleic acid (“GLA”) vegetable oil.
- a formulation with active ingredient, steam distilled catnip oil (80% nepetalactone), and a second active ingredient, cold pressed evening primrose oil (10% GLA) was prepared as an emulsifiable concentrate in water, using Novemer EC-1 (Noveon Inc., Cleveland, Ohio) distributed by L.V. Lomas Ltd. Bampton, Ontario.
- the formulation contained 8.0 g/L of Novemer EC-1 emulsifying agent, plus 1.0 g/L of rosemary extract (lipid antioxidant), and 3.0 g/L of Germall Plus (topical antimicrobial agent).
- the active ingredients were varied and tested as follows: (1) 2% Catnip + 1% EPO; (2) 4% Catnip + 1% EPO; (3) 8% Catnip + 1% EPO; (4a) 1% EPO; (4b) 2% EPO; (4c) 4% EPO; (4d) 8% EPO; and (5) 4% Catnip + 4% EPO.
- the mosquitoes were attracted to, landed on, probed and promptly took blood meals from the unprotected human forearms. After the application of the repellent, the mosquitoes clearly avoided the forearms in their flight behavior. Catnip oil concentrations less than 1% (data not presented) provided low protection.
- Table 2 The complete data set for the product containing 4% catnip oil and 4% EPO can be found in Table 2.
- the data from Table 2 is graphically presented in Figure 5.
- Table 2 shows the number of landings and bites in a 3-minute test period.
- the product was an effective repellent in this test at a concentration of 2% of the active ingredient or greater. It compares favorably with other essential oils tested using this procedure.
- the level of the catnip oil was elevated to 4% and the emulsion was combined with the 4% evening primrose oil, the product provided sustained protection for a period of 3 to 5 hours or longer for some individuals.
- EXAMPLE 2 A combination of EPO and catnip oil provides greater repellency than catnip alone.
- Example 2 The laboratory culture of Aedes atropalpus adults described in Example 1 was used. The procedure described in Example 1 was repeated. The compounds tested contained 4% of catnip (Nepeta cataria) essential oil, and either
- a formulation with active ingredient steam distilled catnip oil (80% nepetalactone), and a second active ingredient cold pressed evening primrose oil (10% GLA) was prepared as an emulsifiable concentrate in water, using Novemer EC-1 (Noveon Inc., Cleveland, Ohio) distributed by L.V. Lomas Ltd. Bampton, Ontario.
- the formulation contained 8.0 g/L of Novemer EC-1 emulsifying agent, plus 1.0 g/L of rosemary extract (lipid antioxidant), and 3.0 g/L of Germall Plus (topical antimicrobial agent).
- the active ingredients (catnip oil and evening primrose oil) tested were 4% catnip + 4% EPO and 4% catnip + 0% EPQ
- the mosquitoes were attracted to, landed on, probed and promptly took blood meals from the unprotected human forearms. After the application of the repellent, the mosquitoes clearly avoided the forearms in their flight behavior.
- a combination of catnip oil and EPO provided greater protection than catnip oil alone.
- Figure 6 shows the mean efficacy of the 4% catnip oil and 4% EPO. It appears from this data that the product is provided up to 4 hours of protection. The complete data set for the product containing 4% catnip oil and 4% EPO is shown in
- Table 3 The data from Table 3 is graphically presented in Figure 6. Table 3 shows the number of landings and bites in a 3 minute test period.
- Figure 7 demonstrates that catnip oil alone has some repellency, but formulations need to contain EPO to cause reductions in both landings and bites.
- Table 4 The complete data set for the product containing 4% catnip oil and 0% EPO can be found in Table 4.
- the data from Table 4 is graphically presented in Figure 7.
- Table 4 shows the number of landings and bites in a 3 minute test period.
- the product was an effective repellent in this test when a combination of catnip oil and EPO is used.
- the combination of catnip oil and EPO had greater repellency than catnip oil alone.
- a 4% catnip oil/4% EPO emulsion provided 3 to 5 hours of repellent efficacy.
- the repellent composition tested contained 4% catnip (Nepeta cataria) essential oil and 4% evening primrose (Oenothera biennis) high GLA vegetable oil. Otherwise, the composition was as described in Example 1.
- the horses were kept in a pasture near a pond in Canada. The experiment was performed during the summer when mosquitoes are more prevalent. Each of the horses was treated by its owner with 25 ml of the repellent composition on the right side of its neck. Thus, each animal acted as its own control and different rates of carbon dioxide release did not interfere with the results. The horses were allowed to graze and move about as they normally do. After one-half hour, the horses were evaluated for bites and then allowed to continue grazing. This procedure was repeated every half hour for three hours.
- the purpose of this experiment was to determine whether water reactivates the repellency of the repellent composition after five hours. A few of the horses from Example 3 were wetted down with water from a common garden hose.
- the horses were allowed to graze and move about as they normally do. After one-half hour, the horses were evaluated for additional bites and then allowed to continue grazing. This procedure was repeated every half hour for two hours. Watering the surface treated with the repellent composition effectively reactivated the composition such that it continued repelling mosquitoes for a period of time. Mosquitoes were deterred from taking blood meals from the areas that were originally treated and were rewetted. The reactivated repellent composition provided repellency for at least an additional hour.
- Example 1 The laboratory culture of Aedes atropalpus adults described in Example 1 was used. The procedure described in Example 1 was repeated.
- the repellent composition contained 4% catnip (Nepeta cataria) essential oil and 4% evening primrose (Oenothera biennis) high GLA vegetable oil. Otherwise, the composition was as described in Example 1.
- the mosquitoes were attracted to, landed on, probe and promptly took blood meals from the unprotected human forearms. After the application of the repellent, the mosquitoes clearly avoided the forearms in their flight behavior. Although the repellent composition failed to protect the forearms after approximately 3 to 5 hours, the repellency was reactivated by exposure to water. After wetting the forearms, the mosquitoes again avoided the forearms in their flight behavior.
- the product provides additional sustained protection beyond the original period of 3 to 5 hours.
- the repellency of the product appeared to be extended or reactivated by exposure to water.
- EXAMPLE 6 Water reactivates the repellent composition when applied to humans.
- Example 1 The laboratory culture of Aedes aegypti adults described in Example 1 was used. The procedure described in Example 1 was repeated. When the product failed to protect against bites, the forearms were wetted by dipping in water. Thereafter, the procedure of 3-minute exposure was continued every hour, collecting data until the product again failed to protect against bites.
- the repellent compositions tested contained 4%, 6% or 8% catnip (Nepeta cataria) essential oil and 4% evening primrose (Oenothera biennis) high GLA vegetable oil.
- the composition was as described in Example 1 with one exception.
- a repellent composition with 6% catnip oil and 4% evening primrose high GLA vegetable oil was prepared as described in Example 1, but Ultrez 21 emulsifying agent (Noveon Inc., Cleveland, Ohio) was added as the emulsifying agent and 2% peppermint oil was added for fragrance.
- the mosquitoes were attracted to, landed on, probed and promptly took blood meals from the unprotected human forearms. After the application of the repellent, the mosquitoes clearly avoided the forearms in their flight behavior.
- the repellent composition protected the forearms for approximately 0.5 to 2.0 hours, depending on the concentration of catnip oil. A summary of the results can be seen in Figure 8.
- Aedes aegypti is a much more aggressive strain of mosquito and an evaluation of the performance of various formulations of the repellent was suggested.
- the product provides protection against even aggressive mosquito strains such as A. aegypti.
- the repellency of the product appears to be extended or reactivated by exposure to water.
- EXAMPLE 7 The repellent composition is effective in repelling horseflies and deer flies from humans.
- Deer flies (Chrysops species) and horse flies (Chrysops species) were used.
- the repellent was tested by five human subject volunteers that worked either outdoors or in recreational fields
- the product was also applied to all exposed areas including the head (face, neck, hair) and legs.
- the repellent composition tested was an emulsion of 4% EPO (Oenothera biennis) and
- the repellent composition was an effective repellent against deer flies and horse flies in human subjects.
- EXAMPLE 8 The repellent composition is effective in repelling horseflies and deer flies from horses.
- Deer flies (Chrysops species) and horse flies (Chrysops species) were used.
- the repellent composition was provided to the owners of six show horses that compete at regional, provincial and national horse shows in Canada. The owners applied the repellent composition to their horses during daytime for training sessions and at competitions in late July and early August. The training and the competition occurred in areas having high deer fly and horse fly pressure, usually in conditions that were hot and dry. In some cases, the insect pressure was almost unbearable for both the riders and the horses.
- the repellent composition tested was an emulsion of 4% evening primrose oil (Oenothera biennis) and 4% catnip oil (Nepeta cataria). Otherwise the composition was prepared as described in Example 1.
- the repellent composition was an effective repellent against deer flies and horse flies in horses.
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Abstract
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Priority Applications (6)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| DE200460020081 DE602004020081D1 (en) | 2003-05-22 | 2004-05-20 | INSECT REPELLENT |
| CA 2526627 CA2526627A1 (en) | 2003-05-22 | 2004-05-20 | Insect repellent |
| MXPA05012523A MXPA05012523A (en) | 2003-05-22 | 2004-05-20 | Insect repellent. |
| CN2004800205951A CN1829443B (en) | 2003-05-22 | 2004-05-20 | Insect repellant |
| EP20040734056 EP1667698B1 (en) | 2003-05-22 | 2004-05-20 | Insect repellent |
| AU2004241797A AU2004241797B2 (en) | 2003-05-22 | 2004-05-20 | Insect repellent |
Applications Claiming Priority (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| US47256703P | 2003-05-22 | 2003-05-22 | |
| US60/472,567 | 2003-05-22 |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| WO2004103388A2 true WO2004103388A2 (en) | 2004-12-02 |
| WO2004103388A3 WO2004103388A3 (en) | 2005-04-07 |
Family
ID=33476966
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| PCT/IB2004/001631 Ceased WO2004103388A2 (en) | 2003-05-22 | 2004-05-20 | Insect repellent |
Country Status (10)
| Country | Link |
|---|---|
| US (2) | US7381431B2 (en) |
| EP (1) | EP1667698B1 (en) |
| CN (1) | CN1829443B (en) |
| AR (1) | AR044433A1 (en) |
| AT (1) | ATE425760T1 (en) |
| AU (1) | AU2004241797B2 (en) |
| CA (1) | CA2526627A1 (en) |
| DE (1) | DE602004020081D1 (en) |
| MX (1) | MXPA05012523A (en) |
| WO (1) | WO2004103388A2 (en) |
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| WO2004089357A2 (en) * | 2003-04-02 | 2004-10-21 | Regents Of The University Of Minnesota | Anti-fungal formulation of triterpene and essential oil |
| EP1667698B1 (en) | 2003-05-22 | 2009-03-18 | Bioniche Life Sciences Inc. | Insect repellent |
-
2004
- 2004-05-20 EP EP20040734056 patent/EP1667698B1/en not_active Expired - Lifetime
- 2004-05-20 CA CA 2526627 patent/CA2526627A1/en not_active Abandoned
- 2004-05-20 WO PCT/IB2004/001631 patent/WO2004103388A2/en not_active Ceased
- 2004-05-20 CN CN2004800205951A patent/CN1829443B/en not_active Expired - Fee Related
- 2004-05-20 AT AT04734056T patent/ATE425760T1/en not_active IP Right Cessation
- 2004-05-20 MX MXPA05012523A patent/MXPA05012523A/en active IP Right Grant
- 2004-05-20 DE DE200460020081 patent/DE602004020081D1/en not_active Expired - Lifetime
- 2004-05-20 AU AU2004241797A patent/AU2004241797B2/en not_active Ceased
- 2004-05-21 US US10/851,774 patent/US7381431B2/en not_active Expired - Fee Related
- 2004-05-24 AR ARP040101784 patent/AR044433A1/en not_active Application Discontinuation
-
2008
- 2008-05-12 US US12/119,161 patent/US7985432B2/en not_active Expired - Fee Related
Cited By (8)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US7524888B2 (en) | 1999-08-06 | 2009-04-28 | Iowa State University Research Foundation, Inc. | Biorational repellents obtained from terpenoids for use against arthropods |
| US7939091B2 (en) | 1999-08-06 | 2011-05-10 | Iowa State University Research Foundation, Inc. | Biorational repellents obtained from terpenoids for use against arthropods |
| DE102006060159B4 (en) * | 2005-12-19 | 2014-06-12 | Ingo Krecklow | Repellent for horses |
| WO2007109736A3 (en) * | 2006-03-21 | 2008-07-17 | Univ Iowa State Res Found Inc | Biorational repellents obtained from terpenoids and methods related thereto |
| EP2257157B1 (en) | 2008-02-15 | 2018-01-03 | S.C. Johnson & Son, Inc. | Sustained release insecticide composition |
| EP2257157B2 (en) † | 2008-02-15 | 2020-06-24 | S.C. Johnson & Son, Inc. | Sustained release insecticide composition |
| CN101520447B (en) * | 2009-04-08 | 2012-05-23 | 南京农业大学 | A method for identifying the resistance of chrysanthemum aphids by artificial inoculation |
| CN103735445A (en) * | 2013-12-17 | 2014-04-23 | 李强 | Traditional Chinese medicine desinsectization cream |
Also Published As
| Publication number | Publication date |
|---|---|
| WO2004103388A3 (en) | 2005-04-07 |
| CN1829443A (en) | 2006-09-06 |
| US20050019432A1 (en) | 2005-01-27 |
| EP1667698B1 (en) | 2009-03-18 |
| EP1667698A2 (en) | 2006-06-14 |
| CA2526627A1 (en) | 2004-12-02 |
| AR044433A1 (en) | 2005-09-14 |
| CN1829443B (en) | 2010-06-23 |
| AU2004241797A1 (en) | 2004-12-02 |
| US7985432B2 (en) | 2011-07-26 |
| ATE425760T1 (en) | 2009-04-15 |
| US20080213408A1 (en) | 2008-09-04 |
| MXPA05012523A (en) | 2006-02-08 |
| DE602004020081D1 (en) | 2009-04-30 |
| AU2004241797B2 (en) | 2011-03-17 |
| US7381431B2 (en) | 2008-06-03 |
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