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在秀丽隐杆线虫中药物选择压力后对线虫伊维菌素和莫西菌素的获得性耐受性。

Acquired Tolerance to Ivermectin and Moxidectin after Drug Selection Pressure in the Nematode Caenorhabditis elegans.

作者信息

Ménez Cécile, Alberich Mélanie, Kansoh Dalia, Blanchard Alexandra, Lespine Anne

机构信息

Toxalim, Université de Toulouse, INRA, ENVT, INP-Purpan, UPS, Toulouse, France

Toxalim, Université de Toulouse, INRA, ENVT, INP-Purpan, UPS, Toulouse, France.

出版信息

Antimicrob Agents Chemother. 2016 Jul 22;60(8):4809-19. doi: 10.1128/AAC.00713-16. Print 2016 Aug.

Abstract

Ivermectin and moxidectin are the most widely administered anthelmintic macrocyclic lactones (MLs) to treat human and animal nematode infections. Their widespread and frequent use has led to a high level of resistance to these drugs. Although they have the same mode of action, differences in terms of selection for drug resistance have been reported. Our objective was to study and compare changes occurring upon ivermectin or moxidectin selection in the model nematode Caenorhabditis elegans C. elegans worms were submitted to stepwise exposure to increasing doses of moxidectin. The sensitivity of moxidectin-selected worms to MLs was determined in a larval development assay and compared with those of wild-type and ivermectin-selected strains. Selection with either ivermectin or moxidectin led to acquired tolerance to ivermectin, moxidectin, and eprinomectin. Importantly, moxidectin was the most potent ML in both ivermectin- and moxidectin-selected strains. Interestingly, this order of potency was also observed in a resistant Haemonchus contortus isolate. In addition, ivermectin- and moxidectin-selected strains displayed constitutive overexpression of several genes involved in xenobiotic metabolism and transport. Moreover, verapamil potentiated sensitivity to ivermectin and moxidectin, demonstrating that ABC transporters play a role in ML sensitivity in ML-selected C. elegans strains. Finally, both ivermectin- and moxidectin-selected strains displayed a dye-filling-defective phenotype. Overall, this work demonstrated that selection with ivermectin or moxidectin led to cross-resistance to several MLs in nematodes and that the induction of detoxification systems and defects in the integrity of amphidial neurons are two mechanisms that appear to affect the responsiveness of worms to both ivermectin and moxidectin.

摘要

伊维菌素和莫昔克丁是治疗人和动物线虫感染时使用最广泛的抗寄生虫大环内酯类药物(MLs)。它们的广泛和频繁使用导致了对这些药物的高度耐药性。尽管它们具有相同的作用模式,但已报道在耐药性选择方面存在差异。我们的目标是研究和比较在模式线虫秀丽隐杆线虫中,经伊维菌素或莫昔克丁选择后发生的变化。将秀丽隐杆线虫逐步暴露于递增剂量的莫昔克丁中。在幼虫发育试验中测定经莫昔克丁选择的线虫对MLs的敏感性,并与野生型及经伊维菌素选择的菌株进行比较。用伊维菌素或莫昔克丁进行选择均导致对线虫对伊维菌素、莫昔克丁和埃普利诺菌素产生获得性耐受性。重要的是,在经伊维菌素和莫昔克丁选择的菌株中,莫昔克丁都是最有效的ML。有趣的是,在耐药的捻转血矛线虫分离株中也观察到了这种效力顺序。此外,经伊维菌素和莫昔克丁选择的菌株表现出几种参与异生物质代谢和转运的基因的组成型过表达。而且,维拉帕米增强了对线虫对伊维菌素和莫昔克丁的敏感性,表明ABC转运蛋白在经ML选择秀丽隐杆线虫菌株的ML敏感性中起作用。最后,经伊维菌素和莫昔克丁选择的菌株均表现出染料填充缺陷表型。总体而言,这项研究表明,用伊维菌素或莫昔克丁进行选择会导致线虫对几种MLs产生交叉耐药性,并且解毒系统的诱导和双纤毛神经元完整性的缺陷是两种似乎影响线虫对伊维菌素和莫昔克丁反应性的机制。

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