Efficacy of a fixed-dose combination injectable (0.2 mg/kg doramectin+6.0 mg/kg levamisole hydrochloride) in Australian cattle against naturally acquired gastrointestinal nematode infections

被引:1
作者
Packianathan, Raj [1 ]
Hodge, Andrew [1 ]
Wright, Jacqueline [1 ]
Pearce, Michael [1 ]
DeRosa, Andrew A. [2 ]
机构
[1] Zoetis, Vet Med Res & Dev, Level 6,5 Rider Blvd, Rhodes, NSW 2138, Australia
[2] Zoetis, Vet Med Res & Dev, 333 Portage St, Kalamazoo, MI 49007 USA
关键词
Anthelmintic; Cooperia; Dectomax V (R); Doramectin; Gastrointestinal nematode; Haemonchus; Levamisole; Macrocyclic lactone; Ostertagia; Resistance; Trichostrongylus; MANAGING ANTHELMINTIC RESISTANCE; OSTERTAGIA-OSTERTAGI; HAEMONCHUS-CONTORTUS; PERSISTENT EFFICACY; WORLD-ASSOCIATION; DRUG-RESISTANCE; IVERMECTIN; FORMULATIONS; MOXIDECTIN; MANAGEMENT;
D O I
10.1016/j.vetpar.2023.110025
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
Australian producers have long used macrocyclic lactones (MLs) to successfully control cattle gastrointestinal nematodes (GINs) and consequently improve production parameters. However, the trajectory of ML resistance development in cattle GINs is following that of small ruminant nematode populations, highlighting a need for novel treatment options to provide efficacy in the current environment and interrupt the long-term establishment of ML-resistant GIN populations in Australian cattle. Here, we describe three field studies conducted in Australia to evaluate the efficacy of a single administration of a novel fixed-dose combination injectable (FDCI) endectocide against naturally acquired infections of cattle GINs. The FDCI is administered subcutaneously to deliver 0.2 mg/kg doramectin and 6 mg/kg levamisole hydrochloride (HCl). Study sites consisted of three farms in New South Wales (n = 2) and Victoria (n = 1). At each site, cattle were randomly allocated into one of three treatment groups: (1) untreated control (saline), (2) FDCI (0.2 mg/kg doramectin, 6 mg/kg levamisole HCl) or (3) positive control (0.2 mg/kg ivermectin). All treatments were administered on Day 0. Fecal samples were collected prior to treatment on Days 1 (Study 3) or 0 (Studies 1 and 2) and again on Day 14 (post-treatment) to evaluate efficacy via fecal egg count (FEC) and for coproculture. Adequacy of infection was confirmed at all three study sites, with Day 14 geometric mean (GM) FECs for saline-treated cattle ranging from 32.5 eggs per gram (EPG) to 623.7 EPG. FECs for FDCI-treated cattle were significantly reduced compared to saline-treated cattle (p <= 0.0001) on Day 14, with GM-based efficacy >= 99.7% at all three study sites. In contrast, ivermectin was 97.4% effective against cattle GINs in Study 1 but was only 47.2% and 39.8% effective at study site 2 and 3, respectively. Genus-specific efficacies suggest the presence of ivermectin-resistant Cooperia spp. (Study 1), Haemonchus spp. (Study 2) and Ostertagia spp. (Study 3) populations in the naturally infected cattle used in these studies. The post-treatment FEC and genus-specific efficacy estimations indicate the doramectin + levamisole HCl FDCI was highly efficacious against cattle GINs even in the face of ivermectin LOE at study sites 2 and 3. The efficacy of the new FDCI against both ML-susceptible and ML-resistant economically important cattle GINs in Australia affirms it is a valuable treatment option for producers operating in an environment of ML loss of efficacy.
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