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驱虫药莫能菌素在绵羊及其寄生虫(捻转血矛线虫)体内的代谢途径。

Metabolic pathways of anthelmintic drug monepantel in sheep and in its parasite (Haemonchus contortus).

作者信息

Stuchlíková Lucie, Jirásko Robert, Vokřál Ivan, Valát Martin, Lamka Jiří, Szotáková Barbora, Holčapek Michal, Skálová Lenka

机构信息

Department of Biochemical Sciences, Faculty of Pharmacy in Hradec Králové, Charles University in Prague, Heyrovského 1203, 500 05, Hradec Králové, Czech Republic.

出版信息

Drug Test Anal. 2014 Oct;6(10):1055-62. doi: 10.1002/dta.1630. Epub 2014 Mar 10.

DOI:10.1002/dta.1630
PMID:24616229
Abstract

Monepantel (MOP) is a new anthelmintic drug intended for the treatment and control of gastrointestinal roundworms (nematodes) infection and associated disease in sheep. The aim of our study was to find out metabolic pathways of MOP in sheep in vivo and in its parasite Haemonchus contortus ex vivo. MOP biotransformation in two H. contortus strains with different sensitivity to anthelmintics was also compared. Ultra high-performance liquid chromatography with tandem mass spectrometry (UHPLC-MS/MS) technique is used for the identification of MOP metabolites in ovine urine, faeces, and nematodes. MOP biotransformation study in sheep in vivo led to the identification of 13 MOP metabolites; 7 of them have not been described previously in in vitro study. The study of MOP biotransformation in H. contorus ex vivo reveals four MOP metabolites. The nitrile hydrolysis as a new biotransformation pathway in helminths ex vivo is reported here for the first time. Unlike sheep, H. contorus nematodes are not able to metabolize MOP via phase II biotransformation. Nematodes of resistant White river (WR) strain form more types of MOP metabolites than nematodes of sensitive inbred susceptible Edinburgh (ISE) strain. Based on obtained results, schemes of metabolic pathways of MOP in sheep and nematodes are proposed.

摘要

莫能菌素(MOP)是一种新型驱虫药,用于治疗和控制绵羊胃肠道线虫(蛔虫)感染及相关疾病。我们研究的目的是找出MOP在绵羊体内以及在其寄生虫捻转血矛线虫体外的代谢途径。同时还比较了MOP在两种对驱虫药敏感性不同的捻转血矛线虫菌株中的生物转化情况。采用超高效液相色谱串联质谱(UHPLC-MS/MS)技术鉴定绵羊尿液、粪便和线虫中的MOP代谢产物。对绵羊体内MOP生物转化的研究鉴定出了13种MOP代谢产物;其中7种在之前的体外研究中未曾描述过。对捻转血矛线虫体外MOP生物转化的研究揭示了4种MOP代谢产物。本文首次报道腈水解作为寄生虫体外一种新的生物转化途径。与绵羊不同,捻转血矛线虫无法通过II相生物转化代谢MOP。抗性白河(WR)菌株的线虫比敏感近交易感爱丁堡(ISE)菌株的线虫形成更多类型的MOP代谢产物。基于所得结果,提出了MOP在绵羊和线虫体内的代谢途径示意图。

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