Claims
- 1. Direct pour-on skin solution intended to eliminate parasites from cattle and sheep, most particularly ticks, especially Boophilus microplus in cattle and lice and blowfly in sheep, comprising from 0.05 to 25% weight/volume, relative to the total solution, of a compound of formula (I):
- 2. Solution according to claim 1, wherein the compound of formula (I) is such that:
R1 is CN or methyl; R2 is S(O)nR3; R3 is alkyl or haloalkyl; R4 represents a hydrogen or halogen atom; or a 1 radical NR5R6, S(O)mR7, C(O)R7, alkyl, haloalkyl or OR8 or a radical —N═C (R9) (R10) R5 and R6 independently represent a hydrogen atom or an alkyl, haloalkyl, C(O)alkyl or S(O)rCF3 radical; or R5 and R6 may together form a divalent alkylene radical which may be interrupted by one or two divalent hetero atoms, such as oxygen or sulphur; R7 represents an alkyl or haloalkyl radical; R8 represents an alkyl or haloalkyl radical or a hydrogen atom; R9 represents an alkyl radical or a hydrogen atom; R10 represents a phenyl or heteroaryl group optionally substituted with one or more halogen atoms or groups such as OH, —O-alkyl, —S-alkyl, cyano or alkyl; R11 and R12 represent, independently of each other, a hydrogen or halogen atom; R13 represents a halogen atom or a haloalkyl, haloalkoxy, S(O)qCF3 or SF5 group; m, n, q, and r represent, independently of each other, an integer equal to 0, 1 or 2; X represents a trivalent nitrogen atom or a radical C—R12, the other three valency positions of the carbon atom forming part of the aromatic ring; with the proviso that, when R1 is methyl, then R3 is haloalkyl, R4 is NH2, R11 is Cl, R13 is CF3 and X is N.
- 3. Solution according to claim 2, wherein the compound of formula (I) is such that R1 is CN.
- 4. Solution according to claim 2, wherein the compound of formula (I) is such that R13 is haloalkyl.
- 5. Solution according to claim 2, wherein the compound of formula (I) is such that R13 is CF3.
- 6. Solution according to claim 2, wherein the compound of formula (I) is such that R2 is S(O)n R3.
- 7. Solution according to claim 6, wherein n=1, R3 being chosen among the goup consisting of CF3, methyl and ethyl.
- 8. Solution according to claim 6, wherein n=0 and R3 is CF3.
- 9. Solution according to claim 2, wherein the compound of formula (I) is such that X is C—R12 with R12 being a halogen atom.
- 10. Solution according to claim 2, wherein the compound of formula (I) is chosen from those in which R1 is CN, R3 is haloalkyl, R4 is NH2, R11 and R12 are, independently of each other, a halogen atom and/or R13 is haloalkyl.
- 11. Solution according to claim 2, wherein the compound of formula (I) is chosen among the group consisting of the compound A: 1-[2,6-Cl2 4-CF3phenyl]3-CN 4-[SO—CF3] 5-NH2pyrazole, and its derivatives with n=0, R3=CF3 and n=1, R3=ethyl.
- 12. Solution according to claim 2, wherein the compound of formula is present in a proportion of from 0.05 to 10% weight/volume.
- 13. Solution according to claim 2, wherein the compound of formula (I) is present in a proportion of from 0.1 to 2%.
- 14. Solution according to claim 2, wherein the compound of formula (I) is present in a proportion of from 0.25 to 1.5%.
- 15. Solution according to claim 2, wherein the compound of formula (I) is present in a proportion of about 1%.
- 16. Solution according to claim 11, wherein the compound of formula is present in a proportion of from 0.05 to 10% weight/volume.
- 17. Solution according to claim 11, wherein the compound of formula (I) is present in a proportion of from 0.1 to 2%.
- 18. Solution according to claim 11, wherein the compound of formula (I) is present in a proportion of from 0.25 to 1.5%.
- 19. Solution according to claim 11, wherein the compound of formula (I) is present in a proportion of about 1%.
- 20. Solution according to claim 2, wherein it comprises a solvent for the compound (I) and a diluent, optionally an emollient.
- 21. Solution according to claim 20, wherein the solvent is selected from the group consisting of:
acetyl tributyl citrate, fatty acid esters such as the dimethyl ester, diisobutyl adipate, acetone, acetonitrile, benzyl alcohol, butyl diglycol, dimethylacetamide, dimethylformamide, dipropylene glycol n-butyl ether, ethanol, isopropanol, methanol, ethylene glycol monoethyl ether, ethylene glycol monomethyl ether, monomethylacetamide, dipropylene glycol monomethyl ether, liquid polyoxyethylene glycols, propylene glycol, 2-pyrrolidone, in particular N-methylpyrrolidone, diethylene glycol monoethyl ether, ethylene glycol and diethyl phthalate, or a mixture of at least two of these solvents.
- 22. Solution according to claim 20, wherein the diluent is selected from the group consisting of:
plant oils such as soybean oil, groundnut oil, castor oil, corn oil, cotton oil, olive oil, grape seed oil, sunflower oil, etc.; mineral oils such as petrolatum, paraffin, silicone, etc.; aliphatic or cyclic hydrocarbons or alternatively, medium-chain (C8 to C12 in particular).
- 23. Solution according to claim 20, wherein the emollient is selected from the group consisting of:
polyvinylpyrrolidone, polyvinyl alcohols, copolymers of vinyl acetate and vinylpyrrolidone, polyethylene glycols, benzyl alcohol, mannitol, glycerol, sorbitol, polyoxyethylenated sorbitan esters; lecithin, sodium carboxymethylcellulose, silicone oils, anionic surfactants such as alkaline stearates, in particular sodium, potassium or ammonium stearates; calcium stearate, triethanolamine stearate; sodium abietate; alkyl sulphates, in particular sodium lauryl sulphate and sodium cetyl sulphate; sodium dodecylbenzenesulphonate, sodium dioctylsulphosuccinate; fatty acids, in particular those derived from coconut oil, cationic surfactants such as water-soluble quaternary ammonium salts of formula N+R′R″R′″R″″, Y− in which the radicals R are optionally hydroxylated hydrocarbon radicals, and Y− is an anion of a strong acid such as the halide, sulphate and sulphonate anions; cetyltrimethylammonium bromide is among the cationic surfactants which can be used, amine salts of formula N+R′R″R′″ in which the radicals R are optionally hydroxylated hydrocarbon radicals; octadecylamine hydrochloride is among the cationic surfactants which can be used, nonionic surfactants such as sorbitan esters, which are optionally polyoxyethylenated, in particular polysorbate 80, polyoxyethylenated alkyl ethers; polyoxypropylated fatty alcohols such as polyoxypropylene-15-stearyl ether; polyethylene glycol stearate, polyoxyethylenated derivatives of castor oil, polyglycerol esters, polyoxyethylenated fatty alcohols, polyoxyethylenated fatty acids, copolymers of ethylene oxide and propylene oxide, amphoteric surfactants such as the substituted lauryl compounds of betaine; or a mixture of at least two of these agents.
- 24. Solution according to claim 2, wherein it is an oily solution.
- 25. Solution according to claim 2, wherein it is designed to ensure protection over a period longer than or equal to 2 months.
- 26. Solution according to claim 2, wherein it is designed to ensure total elimination of Boophilus microplus in less than 2 days.
- 27. Process for the elimination of external parasites from cattle and sheep, most particularly ticks, especially Boophilus microplus in cattle and lice and blowfly in sheep, wherein one applies on the cattle or sheep a direct pour-on skin solution comprising from 0.05 to 25% weight/volume, relative to the total solution, of a compound of formula (I) below:
- 28. Process according to claim 27, wherein the solution is applied in a volume of 5 to 20 ml per 100 kg of animal.
- 29. Process according to claim 27 wherein the solution is applied in a volume of about 10 ml per 100 kg of animal.
- 30. Process according to claim 27, wherein the solution is applied with a total volume of from 10 to 150 ml per animal.
- 31. Process according to claim 27 , wherein the compound of formula (I) is such that:
R1 is CN or methyl; R2 is S(O)nR3; R3 is alkyl or haloalkyl; p1 R4 represents a hydrogen or halogen atom; or a radical NR R6, S(O)mR7, C(O)R7, alkyl, haloalkyl or OR8 or a radical —N═C (R9) (R10); R5 and R6 independently represent a hydrogen atom or an alkyl, haloalkyl, C(O)alkyl or S(O)rCF3 radical; or R5 and R6 may together form a divalent alkylene radical which may be interrupted by one or two divalent hetero atoms, such as oxygen or sulphur; R7 represents an alkyl or haloalkyl radical; R8 represents an alkyl or haloalkyl radical or a hydrogen atom; R9 represents an alkyl radical or a hydrogen atom; R10 represents a phenyl or heteroaryl group optionally substituted with one or more halogen atoms or groups such as OH, —O-alkyl, —S-alkyl, cyano or alkyl; R11 and R12 represent, independently of each other, a hydrogen or halogen atom; R13 represents a halogen atom or a haloalkyl, haloalkoxy, S(O)qCF3 or SF5 group; m, n, q, and r represent, independently of each other, an integer equal to 0, 1 or 2; X represents a trivalent nitrogen atom or a radical C—R12, the other three valency positions of the carbon atom forming part of the aromatic ring; with the proviso that, when R1 is methyl, then R3 is haloalkyl, R4 is NH2, R11 is Cl, R13 is CF3 and X is N.
- 32. Process according to claim 31, wherein the compound of formula (I) is such that R1 is CN.
- 33. Process according to claim 31, wherein the compound of formula (I) is such that R13 is haloalkyl.
- 34. Process according to claim 31, wherein the compound of formula (I) is such that R13 is CF3.
- 35. Process according to claim 31, wherein the compound of formula (I) is such that R2 is S(O)nR3.
- 36. Process according to claim 35, wherein n=1 and R3 is chosen among the goup consisting of CF3, methyl and ethyl.
- 37. Ptrocess according to claim 35, wherein n=0, R3 preferably being CF3.
- 38. Process according to claim 31, wherein the compound of formula (I) is such that X is C—R12 with R12 being a halogen atom.
- 39. Process according to claim 31, wherein the compound of formula (I) is such that R1 is CN, R3 is haloalkyl, R4 is NH2, R11 and R12 are, independently of each other, a halogen atom and/or R13 is haloalkyl.
- 40. Process according to claim 31, wherein the compound of the formula (I) is chosen among the group consisting of compound A: 1-[2,6-Cl2 4-CF3phenyl]3-CN 4-[SO—CF3] 5-NH2pyrazole, and its derivatives with n=0, R3=CF3 and n=1, R3=ethyl.
- 41. Process according to claim 31, wherein the compound of formula is present in a proportion of from 0.05 to 10% weight/volume.
- 42. Process according to claim 31, wherein the compound of formula (I) is present in a proportion of from 0.1 to 2%.
- 43. Process according to claim 31, wherein the compound of formula (I) is present in a proportion of from 0.25 to 1.5%.
- 44. Process according to claim 31, wherein the compound of formula (I) is present in a proportion of about 1%.
- 45. Process according to claim 40, wherein the compound of formula is present in a proportion of from 0.05 to 10% weight/volume.
- 46. Process according to claim 40, wherein the compound of formula (I) is present in a proportion of from 0.1 to 2%.
- 47. Process according to claim 40, wherein the compound of formula (I) is present in a proportion of from 0.25 to 1.5%.
- 48. Process according to claim 40, wherein the compound of formula (I) is present in a proportion of about 1%.
- 49. Process according to claim 31, wherein one applies the solution in a proportion of from 0.1 to 2 mg/kg.
- 50. Process according to claim 31, wherein one applies the solution in a proportion of from 0.25 to 1.5 mg/kg.
- 51. Process according to claim 31, wherein one applies the solution in a proportion of about 0.1 mg/kg.
- 52. Process according to claim 40, wherein one applies the solution in a proportion of from 0.1 to 2 mg/kg.
- 53. Process according to claim 40, wherein one applies the solution in a proportion of from 0.25 to 1.5 mg/kg.
- 54. Process according to claim 40, wherein one applies the solution in a proportion of about 0.1 mg/kg.
- 55. Process according to claim 31, wherein one applies the solution to the animals in pasture or before they arrive in pasture.
- 56. Process according to claim 31, wherein one applies the solution every two month.
- 57. Process according to claim 31, wherein one applies the solution to the animals before they arrive in the Feed Lot, this application being the final one before the animal is slaughtered.
- 58. Process according to claim 31, wherein when applied topically locally onto the animal's skin, the solution is designed to ensure protection for at least two months, in particular against Boophilus microplus.
- 59. Process according to claim 31, wherein the solution is designed to ensure total elimination of Boophilus microplus in less than 2 days.
Priority Claims (3)
Number |
Date |
Country |
Kind |
96/04209 |
Mar 1996 |
FR |
|
97/03708 |
Mar 1997 |
FR |
|
96/10312 |
Aug 1996 |
FR |
|
Parent Case Info
[0001] This application is a continuation-in-part of U.S. application Ser. No. 08/933,016, filed Sep. 18, 1997, now allowed, which is in turn a continuation-in-part of application U.S. Ser. No. 08/692,178, filed Aug. 5, 1996, now abandoned, which claims priority to, French patent application No. 96 04 209 filed Mar. 29, 1996, and French patent application No. 97 03 708 filed Mar. 26, 1997; and this application is also a continuation-in-part of U.S. application Ser. No. 09/051,693, filed Jul. 27, 1998, now allowed, which in turn is the National Phase of International Application PCT/FR97/01504 having an international filing date of Aug. 19, 1997, and designating the U.S. and claiming priority from French patent application No. 96 10 312, filed Aug. 20, 1996.
[0002] Reference is also made to: U.S. application Ser. No. 09/271,470 filed Mar. 17, 1999, now pending, which is a continuation-in-part of International Application PCT/FR97/01548, having an international filing date of Sep. 15, 1997 and designating the U.S., and claiming priority to French application No. 96 11 446 filed Sep. 19, 1996; U.S. application Ser. No. 09/376,736, filed Aug. 17, 1999, now pending, which is a continuation-in-part of U.S. application Ser. No. 09/271,470 filed on Mar. 17, 1999, now pending, which is a continuation-in-part of International Application PCT/FR97/01548, having an international filing date of Sep. 15, 1997 and designating the U.S., and claiming priority to French application No. 96 11 446 filed Sep. 19, 1996; U.S. application Ser. No. 09/381,794, filed Sep. 24, 1999, now pending, which in turn is the National Phase of International Application No. PCT/FR98/00601 having an international filing date of Mar. 25, 1998 and designating the U.S., and claiming priority to French application No. 97 03 709, filed Mar. 26, 1997; U.S. application Ser. No. 08/891,047, filed Jul. 10, 1997, now pending, which claims priority from French application No. 96 08 703 filed Jul. 11, 1996 and French application No. 97 03 025 filed Mar. 13, 1997; U.S. application Ser. No. 08/863,692 filed Mar. 27, 1997, now allowed, which is a continuation-in-part of US application Ser. No. 08/692,113 filed Aug. 5, 1996, now abandoned, which claims priority to French patent application 96 04 208, filed Mar. 29, 1996 and French application No. 97 03 711 filed Mar. 26, 1997; U.S. application Ser. No. 08/719,942 filed Sep. 25, 1996, which claim priority to French application No. 95 11 685 filed Sep. 29, 1995 and French application No. 96 11 278 filed Sep. 11, 1996; and U.S. application Ser. No. 09/174,598 filed Oct. 19, 1998, now pending, which is a divisional application of U.S. application Ser. No. 08/863,182 filed Mar. 27, 1997, now U.S. Patent No. 5,885,607, which is a continuation-in-part of U.S. application Ser. No. 08/692,430 filed Aug. 5, 1996, now abandoned, and which claims priority to French application No. 96 04 206 filed Mar. 29, 1996 and French application No. 97 03 707 filed Mar. 26, 1997.
Divisions (1)
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Number |
Date |
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Parent |
09450186 |
Nov 1999 |
US |
Child |
10120691 |
Apr 2002 |
US |
Continuation in Parts (3)
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Number |
Date |
Country |
Parent |
08933016 |
Sep 1997 |
US |
Child |
09450186 |
Nov 1999 |
US |
Parent |
08692178 |
Aug 1996 |
US |
Child |
08933016 |
Sep 1997 |
US |
Parent |
09051693 |
Jul 1998 |
US |
Child |
08933016 |
Sep 1997 |
US |