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牛趾间皮炎相关螺旋体对抗菌药物的体外敏感性

In vitro susceptibility of bovine digital dermatitis associated spirochaetes to antimicrobial agents.

作者信息

Evans Nicholas J, Brown Jennifer M, Demirkan Ibrahim, Birtles Richard, Hart C Anthony, Carter Stuart D

机构信息

Department of Veterinary Pathology, University of Liverpool, Liverpool L69 CBX, UK.

出版信息

Vet Microbiol. 2009 Apr 14;136(1-2):115-20. doi: 10.1016/j.vetmic.2008.10.015. Epub 2008 Oct 30.

Abstract

Bovine digital dermatitis (BDD) is an infectious lameness in cattle, which has a large global impact in terms of animal welfare and cost. The majority of evidence suggests that spirochaetes are the aetiological agent of this disease. The aim of this study was to identify the susceptibility of BDD associated spirochaetes to a range of antimicrobial agents with a view to potential usage in vivo to treat this widespread cattle disease. A microdilution method was adapted to determine the in vitro susceptibilities of 19 UK digital dermatitis spirochaetes (6 Treponema medium/Treponema vincentii-like, 8 Treponema phagedenis-like and 5 Treponema denticola/Treponema putidum-like) to eight relevant antimicrobials. The BDD spirochaetes exhibited the highest susceptibility to penicillin and erythromycin and this information may now be used to aid development of efficacious treatments. This study has also identified that BDD spirochaete T167 is spectinomycin resistant and that the likely biological basis is a point mutation in the 16S rRNA gene. Interestingly, nearly all Brachyspira isolate 16S rRNA gene sequences in Genbank have this substitution, suggesting it may be responsible for the characteristic spectinomycin resistance reported for the Brachyspira genus.

摘要

牛趾间皮炎(BDD)是牛的一种感染性跛行病,在动物福利和成本方面对全球有重大影响。大多数证据表明,螺旋体是该病的病原体。本研究的目的是确定与BDD相关的螺旋体对一系列抗菌剂的敏感性,以期在体内用于治疗这种广泛流行的牛病。采用微量稀释法测定了19株英国趾间皮炎螺旋体(6株中型密螺旋体/文森特密螺旋体样、8株蚀疮密螺旋体样和5株龋齿密螺旋体/恶臭密螺旋体样)对8种相关抗菌剂的体外敏感性。BDD螺旋体对青霉素和红霉素表现出最高的敏感性,这一信息现在可用于帮助开发有效的治疗方法。本研究还确定BDD螺旋体T167对壮观霉素耐药,其可能的生物学基础是16S rRNA基因中的一个点突变。有趣的是,Genbank中几乎所有短螺旋体分离株的16S rRNA基因序列都有这种替换,这表明它可能是短螺旋体属报道的特征性壮观霉素耐药的原因。

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