...
首页> 外文期刊>Veterinary Parasitology >The development of anthelmintic resistance with best practice control of nematodes on commercial sheep farms in the UK
【24h】

The development of anthelmintic resistance with best practice control of nematodes on commercial sheep farms in the UK

机译:在英国的商业化羊场中,通过最佳实践控制线虫的驱虫抗药性的发展

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Antimicrobial resistance threatens the effective prevention and treatment of an ever-increasing range of infections. The widespread development of anthelmintic resistance is a major global issue affecting the effective control of parasite diseases in grazing livestock production. Sustainable control strategies that reduce dependence on antimicrobials have the potential to slow the further development of resistance but there is little data on the effect of control strategies on resistance development in the field. This report documents a study undertaken to measure the temporal effect of the UK sustainable control of parasites in sheep (SCOPS) guidelines on the development of anthelmintic resistance. Farms carrying out SCOPS or traditional worm control (TRADITIONAL) were tested for resistance to the benzimidazole and imidazothiazole anthelmintics in vitro using a discriminating dose (dd) larval development test (LDT) in year 1 and then 7 years later. In years 5 and 7, resistance was also measured using a dose-response LDT assay. There was a significant increase in Teladorsagia survivors at the benzimidazole dd assay between year 1 and year 7 for both treatment groups, but the increase in survivors was greater for the farms carrying out their traditional worm control compared to the SCOPS farms. There was also a significant difference between benzimidazole dd results generated across years for Trichostrongylus, but the year and treatment interaction was not significant. Only one of the farm Teladorsagia populations had survivors in the imidazothiazole dd assay in years 1 and 7 and none of the Trichostrongylus populations survived in year 1 compared to isolates from three of the farms in year 7. Dose-response data showed a significant effect for time for both the benzimidazole and imidazothiazole anthelmintics and the increase was again significantly higher for the Teladorsagia populations in the TRADITIONAL group compared to the SCOPS group. This data suggests an increased sensitivity both to detect and to measure changes in response to anthelmintics with the dose-response assay compared to the dd and this is important particularly when allele frequencies are low as might be the case when novel compounds are released to the market. Anthelmintic use across years 5-7 was significantly lower for the farms in the SCOPS group compared to the TRADITIONAL group and farmers in the SCOPS group had selected products from the benzimidazole group less often than farmers in the TRADITIONAL group. Both groups had made minimal use of the imidazothiazole anthelmintic classes and the majority of ewe treatments were selected from the macrocyclic lactone class. Further research is required to determine the effect of these anthelmintic choices on the development of resistance to the macrocyclic lactones. Crown Copyright (C) 2016 Published by Elsevier B.V. All rights reserved.
机译:抗菌素耐药性威胁着日益扩大的感染范围的有效预防和治疗。驱虫抗药性的广泛发展是影响放牧牲畜生产中有效控制寄生虫疾病的主要全球性问题。减少对抗生素的依赖性的可持续控制策略有可能减慢耐药性的进一步发展,但是在该领域,关于控制策略对耐药性发展的影响的数据很少。本报告记录了一项旨在衡量英国对绵羊寄生虫的可持续控制(SCOPS)指南对驱虫药耐药性发展的时间影响的研究。在第1年,然后在7年后,使用区分剂量(dd)幼虫发育测试(LDT)在体外对进行SCOPS或传统蠕虫防治(TRADITIONAL)的农场进行了对苯并咪唑和咪唑并噻唑驱虫药的抗性测试。在第5年和第7年,还使用剂量反应LDT测定法测量了耐药性。在两个处理组的第1年到第7年之间,苯并咪唑dd测定的Teladorsagia存活率显着增加,但是与SCOPS养殖场相比,执行传统蠕虫防治的养殖场的存活率增加幅度更大。多年生毛滴虫的苯并咪唑dd结果之间也存在显着差异,但年份和治疗之间的相互作用并不显着。在第1年和第7年,只有一个农场Teladorsagia种群的咪唑并噻唑dd试验中有幸存者,而在第7年,与三个农场的分离株相比,没有Trichostrongylus种群在第1年存活。剂量反应数据显示,苯并咪唑和咪唑并噻唑驱虫药的使用时间,与SCOPS组相比,TRADITIONAL组的Teladorsagia人群的增加再次明显更高。该数据表明,与dd相比,使用剂量反应测定法检测和测量对驱虫药的反应的敏感性都得到了提高,这一点尤其重要,特别是当等位基因频率较低时(如新型化合物投放市场的情况) 。与传统组相比,SCOPS组的农场在5-7年间的杀虫剂使用量显着降低,并且SCOPS组的农民从苯并咪唑组中选择产品的频率比传统组的农民低。两组都很少使用咪唑并噻唑驱虫药,大部分母羊处理选自大环内酯类。需要进一步的研究来确定这些驱虫剂对大环内酯抗药性发展的影响。官方版权(C)2016,由Elsevier B.V.保留所有权利。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号