Efficacy of selamectin against experimentally induced and naturally acquired ascarid (Toxocara canis and Toxascaris leonina) infections in dogs

被引:20
作者
McTier, TL
Siedek, EM
Clemence, RG
Wren, JA
Bowman, DD
Hellmann, K
Holbert, MS
Murphy, MG
Young, DR
Cruthers, LR
Smith, DG
Shanks, DJ
Rowan, TG
Jernigan, AD
机构
[1] Pfizer Inc, Div Cent Res, Anim Hlth Clin Affairs, Groton, CT 06340 USA
[2] Pfizer Ltd, Div Cent Res, Anim Hlth Clin Affairs, Sandwich CT13 9NJ, Kent, England
[3] CHK R&D, Stanwood, MI 49346 USA
[4] Klifovet GmbH, Munich, Germany
[5] Stillmeadow Inc, Sugar Land, TX 77478 USA
[6] RBK House, Irishtown, Athlone Co West, Ireland
[7] Young Vet Res Serv, Turlock, CA 95380 USA
[8] PLRS Inc, Corapeake, NC 27927 USA
关键词
selamectin; Stronghold (TM); Revolution (TM); Toxocara canis; Toxascaris leonina; ascarids; roundworms; dogs; fecal eggs; zoonosis;
D O I
10.1016/S0304-4017(00)00303-4
中图分类号
R38 [医学寄生虫学]; Q [生物科学];
学科分类号
07 ; 0710 ; 09 ; 100103 ;
摘要
The efficacy of selamectin against adult ascarids was evaluated in eight controlled and masked studies in dogs. Three laboratory studies evaluated selamectin against experimentally induced infections of Taxacara canis; three laboratory studies evaluated selamectin against naturally acquired infections of T. canis; one laboratory study evaluated selamectin against naturally acquired infections of both T: canis and Toxascaris leonina; one field study evaluated selamectin against naturally acquired infections of ascarids (T. canis and/or T. leonina) in dogs presented as veterinary patients, Selamectin was administered topically to the skin of dogs in unit doses designed to deliver a minimum of 6 mg kg(-1) (range, 6-12 mg kg(-1)). In all studies, dogs were allocated randomly to treatment assignments (selamectin or Vehicle control in laboratory studies: selamectin or reference product in the field study) on the basis of pretreatment fecal egg counts. For induced infections, there were significant reductions in geometric mean numbers of adult T. canis after a single application of selamectin (93.9-98.1%, P=0.0001), after two monthly applications (greater than or equal to 88.3%, P less than or equal to 0.0001), and after three monthly applications (100%, P less than or equal to 0.0002). In the natural infection laboratory studies, when selamectin was administered twice at an interval of 30 days, the percentage reductions in geometric mean numbers of adult T. canis at necropsy were 84.6, 91.3, and 97.9%, and when selamectin was administered on days 0, 14, and 30, the percentage reductions were 91.1 and 97.6%. Geometric mean fecal T: canis egg counts were reduced by greater than or equal to 92.9% (P less than or equal to 0.0067) at the end of the studies. In the field study, geometric mean fecal ascarid egg counts were reduced by 89.5 and 95.5% (P=0.0001) for 14 and 30 days, respectively after a single treatment with selamectin, and by 94.0% (P=0.0001) 30 days after the second treatment with selamectin. These reductions compared favorably with the egg count reductions from dogs treated with a reference product containing praziquantel, pyrantel embonate, and febantel. There were no adverse drug experiences or treatment-related mortalities during any of the studies. Selamectin, when administered topically in a unit dose providing a minimum dosage of 6 mg kg(-1), was safe and effective against adult T. canis and T. leonina and in reducing the fecal excretion of T. canis eggs in dogs. (C) 2000 Elsevier Science B.V. All rights reserved.
引用
收藏
页码:333 / 345
页数:13
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