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首页> 外文期刊>Veterinary Parasitology >Effect of the P-glycoprotein inhibitor, R(+)-verapamil on the drug susceptibility of a triclabendazole-resistant isolate of Fasciola hepatica.
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Effect of the P-glycoprotein inhibitor, R(+)-verapamil on the drug susceptibility of a triclabendazole-resistant isolate of Fasciola hepatica.

机译:P糖蛋白抑制剂R(+)-维拉帕米对耐Fasciola hepatica的曲霉苯达唑分离株的药敏性的影响。

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A study has been carried out to investigate whether the action of triclabendazole (TCBZ) against Fasciola hepatica is altered by the inhibition of P-glycoprotein (Pgp)-linked drug efflux pumps. The Sligo TCBZ-resistant and Cullompton TCBZ-susceptible fluke isolates were used for these experiments and the Pgp inhibitor selected was R(+)-verapamil [R-VPL]. In the first experiment, flukes were initially incubated for 2 h in R-VPL (100 micro M), then incubated for a further 22 h in R-VPL+triclabendazole sulphoxide (TCBZ.SO) (50 micro g/ml, or 0.1327 micro M). For controls, flukes were incubated for 24 h in R-VPL and TCBZ.SO on their own. In a second experiment, flukes were removed from the incubation media following cessation of movement. In the third experiment, Sligo flukes were incubated in lower concentrations of R-VPL (10 micro M) and TCBZ.SO (15 micro g/ml, or 0.0398 micro M). Morphological changes resulting from drug treatment and following Pgp inhibition were assessed by means of scanning electron microscopy. Incubation in R-VPL alone had minimal effect on either isolate. After treatment with TCBZ.SO alone, there was greater surface disruption to the Cullompton than Sligo isolate. However, combined treatment of R-VPL+TCBZ.SO led to more severe surface changes to the Sligo isolate than with TCBZ.SO on its own; this potentiation of drug activity was not seen with the Cullompton isolate. The phenomenon was evident at both concentrations of TCBZ.SO. Inclusion of R-VPL in the incubation medium also reduced the time taken for the flukes to become inactive; again, this effect was more distinct with the Sligo isolate. The results of this study support the concept of altered drug efflux in TCBZ-resistant flukes and indicate that drug transporters may play a role in the development of drug resistance.
机译:已经进行了一项研究,以研究三氯苯达唑(TCBZ)对Fasciola hepatica的作用是否通过抑制P-糖蛋白(Pgp)相关的药物外排泵而改变。用于Sligo TCBZ耐药和Cullompton TCBZ易感吸虫分离株用于这些实验,选择的Pgp抑制剂为R(+)-维拉帕米[R-VPL]。在第一个实验中,吸管最初在R-VPL(100 micro M)中孵育2小时,然后在R-VPL +三苯达唑亚砜(TCBZ.SO)(50 micro g / ml或0.1327)中孵育22 h微M)。作为对照,吸管分别在R-VPL和TCBZ.SO中孵育24小时。在第二个实验中,停止移动后,从培养液中除去吸虫。在第三个实验中,将Sligo吸虫在较低浓度的R-VPL(10 micro M)和TCBZ.SO(15 micro g / ml,或0.0398 micro M)中孵育。由药物处理和随后的Pgp抑制引起的形态变化通过扫描电子显微镜评估。单独在R-VPL中孵育对任一分离株的影响均最小。单独使用TCBZ.SO处理后,与Sligo分离物相比,对Cullompton的表面破坏更大。然而,与单独使用TCBZ.SO相比,R-VPL + TCBZ.SO的联合处理导致Sligo分离株的表面发生了更严重的变化。 Cullompton分离物未见这种药物活性增强作用。在两种浓度的TCBZ.SO中,这种现象都很明显。在培养培养基中加入R-VPL也减少了吸虫灭活所需的时间。同样,这种作用在Sligo分离株中更为明显。这项研究的结果支持在TCBZ耐药性吸虫中改变药物外排的概念,并表明药物转运蛋白可能在耐药性的发展中发挥作用。

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