首页> 外文期刊>Veterinary Parasitology >In vitro levamisole selection pressure on larval stages of Haemonchus contortus over nine generations gives rise to drug resistance and target site gene expression changes specific to the early larval stages only
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In vitro levamisole selection pressure on larval stages of Haemonchus contortus over nine generations gives rise to drug resistance and target site gene expression changes specific to the early larval stages only

机译:在超过九代的时间内,左旋左旋咪唑选择对捻转血矛线虫幼虫期的压力会产生耐药性,而靶位点基因表达的变化只针对幼虫早期期

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There is some evidence that resistance to levamisole and pyrantel in trichostrongylid nematodes is due to changes in the composition of nicotinic acetylcholine receptors (nAChRs) which represent the drug target site. Altered expression patterns of genes coding for nAChR subunits, as well as the presence of truncated versions of several subunits, have been implicated in observed resistances. The studies have mostly compared target sites in worm isolates of very different genetic background, and hence the ability to associate the molecular changes with drug sensitivity alone have been clouded to some extent. The present study aimed to circumvent this issue by following target site gene expression pattern changes as resistance developed in Haemonchus contortus worms under laboratory selection pressure with levamisole. We applied drug selection pressure to early stage larvae in vitro over nine generations, and monitored changes in larval and adult drug sensitivities and target site gene expression patterns. High level resistance developed in larvae, with resistance factors of 94-fold and 1350-fold at the IC50 and IC95, respectively, in larval development assays after nine generations of selection. There was some crossresistance to bephenium (70-fold increase in IC95). The expression of all the putative subunit components of levamisole-sensitive nAChRs, as well as a number of ancillary protein genes, particularly Hco-unc-29.1 and ric-3, were significantly decreased (up to 5.5-fold) in the resistant larvae at generation nine compared to the starting population. However, adult worms did not show any resistance to levamisole, and showed an inverse pattern of gene expression changes, with many target site genes showing increased expression compared to the starting population. A comparison of the larval/adult drug sensitivity data with the known relationships for field-derived isolates indicated that the adults of our selected population should have been highly resistant to the drug if the larval/adult sensitivity relationships were in accordance with previous field isolates. Hence, our selected worms showed a life-stage drug sensitivity pattern quite different to that seen in the field. The present study has highlighted an association between drug target site changes and resistance to levamisole in H. contortus larvae. However, it has also highlighted the artificial nature of the larval selection method with levamisole, as the resistance phenotype and the associated molecular changes were only observed in the drug-pressured life stage. The study therefore reinforces the need for caution in extrapolating larval-based laboratory selection outcomes to field resistances. (C) 2015 Elsevier B.V. All rights reserved.
机译:有一些证据表明,对三线虫硬线虫的线虫乙酰氨基酚和吡喃酮具有抗性是由于代表药物靶点的烟碱型乙酰胆碱受体(nAChRs)组成的变化所致。编码nAChR亚基的基因表达模式的改变,以及几个亚基的截短形式的存在,都与观察到的抗性有关。这些研究大多比较了遗传背景非常不同的蠕虫分离物中的靶位点,因此使分子变化与单独的药物敏感性相关联的能力在某种程度上已经模糊。本研究旨在通过跟踪目标位点基因表达模式的变化来规避这一问题,因为在实验室选择压力下,左旋咪唑对捻转血矛线虫具有抗药性。我们将药物选择压力施加到体外的九代早期幼虫中,并监测幼虫和成虫对药物的敏感性和靶位点基因表达模式的变化。在经过9代筛选后的幼虫发育试验中,幼虫出现了高水平的抗药性,在IC50和IC95处的抗性因子分别为94倍和1350倍。苯具有一定的交叉抗性(IC95增加70倍)。耐幼虫时,左旋咪唑敏感的nAChRs的所有假定亚基成分的表达以及许多辅助蛋白基因,特别是Hco-unc-29.1和ric-3的表达显着降低(高达5.5倍)。第九代与起始人口相比。但是,成虫蠕虫对左旋咪唑没有任何抵抗力,并且显示出与基因表达变化相反的模式,与起始种群相比,许多靶位点基因显示出增加的表达。将幼虫/成人药物敏感性数据与田间分离株的已知关系进行比较表明,如果幼虫/成人敏感性关系与以前的田间分离株一致,那么我们所选人群的成年人应该对药物高度耐药。因此,我们选择的蠕虫显示出与实地观察到的完全不同的生命期药物敏感性模式。本研究强调了在旋毛虫幼虫中药物靶位点变化与对左旋咪唑的抗性之间的关联。但是,它也强调了左旋咪唑对幼虫选择方法的人工性质,因为仅在药物紧张的生命阶段才观察到耐药表型和相关的分子变化。因此,该研究强调在将基于幼虫的实验室选择结果外推到田间抗药性时需要谨慎。 (C)2015 Elsevier B.V.保留所有权利。

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