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酮康唑体外抑制三氯苯达唑代谢增加了对三氯苯达唑耐药华支睾吸虫虫体被膜的破坏。

Inhibition of triclabendazole metabolism in vitro by ketoconazole increases disruption to the tegument of a triclabendazole-resistant isolate of Fasciola hepatica.

机构信息

Parasite Therapeutics Group, School of Biological Sciences, Medical Biology Centre, The Queen's University of Belfast, 97 Lisburn Road, Belfast, BT9 7BL, UK.

出版信息

Parasitol Res. 2011 Oct;109(4):981-95. doi: 10.1007/s00436-011-2304-9. Epub 2011 Mar 26.

Abstract

A study has been carried out to investigate whether the action of triclabendazole (TCBZ) against Fasciola hepatica is altered by inhibition of drug metabolism. The cytochrome P450 (CYP 450) enzyme pathway was inhibited using ketoconazole (KTZ) to see whether a TCBZ-resistant isolate could be made more sensitive to TCBZ action. The Oberon TCBZ-resistant and Cullompton TCBZ-susceptible isolates were used for these experiments. The CYP 450 system was inhibited by a 2-h pre-incubation in ketoconazole (40 μM), then incubated for a further 22 h in NCTC medium containing either KTZ, KTZ + nicotinamide adenine dinucleotide phosphate (NADPH) (1 nM), KTZ + NADPH + TCBZ (15 μg/ml), or KTZ + NADPH + triclabendazole sulphoxide (TCBZ.SO; 15 μg/ml). Changes to fluke ultrastructure following drug treatment and metabolic inhibition were assessed using transmission electron microscopy. After treatment with either TCBZ or TCBZ.SO on their own, there was greater disruption to the TCBZ-susceptible than TCBZ-resistant isolate. However, co-incubation with KTZ + TCBZ, but more particularly KTZ + TCBZ.SO, led to more severe changes to the TCBZ-resistant isolate than with each drug on its own: in the syncytium, for example, there was severe swelling of the basal infolds and their associated mucopolysaccharide masses, accompanied by an accumulation of secretory bodies just below the apex. Golgi complexes were greatly reduced or absent in the tegumental cells and the synthesis, production, and transport of secretory bodies were badly disrupted. With the TCBZ-susceptible Cullompton isolate, there was limited potentiation of drug action. The results support the concept of altered drug metabolism in TCBZ-resistant flukes and this process may play a role in the development of drug resistance.

摘要

一项研究旨在探讨三氯苯达唑(TCBZ)的作用是否因药物代谢抑制而改变。使用酮康唑(KTZ)抑制细胞色素 P450(CYP 450)酶途径,以观察是否可以使 TCBZ 耐药分离株对 TCBZ 作用更敏感。使用 Oberon TCBZ 耐药和 Cullompton TCBZ 敏感分离株进行这些实验。用酮康唑(40 μM)进行 2 小时预孵育抑制 CYP 450 系统,然后在含有 KTZ、KTZ+烟酰胺腺嘌呤二核苷酸磷酸(NADPH)(1 nM)、KTZ+NADPH+TCBZ(15 μg/ml)或 KTZ+NADPH+三氯苯达唑砜(TCBZ.SO;15 μg/ml)的 NCTC 培养基中进一步孵育 22 小时。使用透射电子显微镜评估药物处理和代谢抑制后对吸虫超微结构的影响。单独使用 TCBZ 或 TCBZ.SO 处理后,TCBZ 敏感分离株比 TCBZ 耐药分离株受到更大的破坏。然而,与单独使用每种药物相比,与 KTZ+TCBZ 共孵育,特别是与 KTZ+TCBZ.SO 共孵育,导致 TCBZ 耐药分离株发生更严重的变化:例如,在合胞体中,基底内褶及其相关粘多糖质量严重肿胀,伴随着在顶点下方积累分泌体。被膜细胞中的高尔基体复合体大大减少或不存在,分泌体的合成、产生和运输受到严重破坏。在 TCBZ 敏感的 Cullompton 分离株中,药物作用的增强有限。结果支持 TCBZ 耐药吸虫中药物代谢改变的概念,并且该过程可能在耐药性的发展中起作用。

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