首页> 外文期刊>Journal of Chromatography, Biomedical Applications >Detection of fenspiride and identification of in vivo metabolites in horse body fluids by capillary gas chromatography-mass spectrometry: administration, biotransformation and urinary excretion after a single oral dose
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Detection of fenspiride and identification of in vivo metabolites in horse body fluids by capillary gas chromatography-mass spectrometry: administration, biotransformation and urinary excretion after a single oral dose

机译:毛细管气相色谱-质谱法检测马匹体液中的杀螨灵和体内代谢物:单次口服后给药,生物转化和尿排泄

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Studies related to the in vivo biotransformation and urinary excretion of fenspiride hydrochloride in the horse are described. After oral administration, the drug is metabolised by both phase I functionalisation and phase II conjugation pathways. Following enzymatic deconjugation, fenspiride and its phase I metabolites were isolated from post-administration biofluids using bonded co-polymeric mixed mode solid-phase extraction cartridges to isolate the basic compounds. Following trimethylsilylation (TMS), the parent drug and metabolites were identified by capillary gas chromatography-mass spectrometry (GC-MS). Fenspiride (A) and seven metabolites (B→G) arising from oxidation on both the aromatic and heterocyclic substructures were detected in urine. The positive ion electron ionisation mass spectra of the TMS derivatives of fenspiride and its metabolites provide useful information on its metabolism. Positive ion methane chemical ionisation-GC-MS of the derivatives provided both derivatised molecular mass and structural information. Unchanged fenspiride can be detected in post-administration plasma and urine samples for up to 24 h. Maximum urinary levels of 100-200 ng ml~(-1) were observed between 3 and 5 h after administration. After enzymatic deconjugation, the major phenolic metabolite (G) can be detected in urine for up to 72 h. This metabolite is the analyte of choice in the GC-MS screening of post-race equine urine samples for detection of fenspiride use. However, a distinct difference was observed in the urinary excretion of this metabolite between the thoroughbred horses used in UK study and the quarterbred and standardbred horses used for the USA administrations.
机译:描述了与马匹中盐酸芬斯匹德的体内生物转化和尿排泄有关的研究。口服后,该药物通过I期功能化和II期结合途径进行代谢。酶解结合后,使用键合的共聚物混合模式固相萃取柱从给药后的生物流体中分离出芬美利特及其I相代谢物,以分离碱性化合物。三甲基甲硅烷基化(TMS)之后,通过毛细管气相色谱-质谱(GC-MS)鉴定母体药物和代谢物。在尿液中检测到芬斯必利(A)和7种代谢物(B→G),它们是由芳香族和杂环亚结构上的氧化作用引起的。芬斯匹德的TMS衍生物及其代谢产物的正离子电子电离质谱提供了有关其代谢的有用信息。衍生物的正离子甲烷化学电离-GC-MS提供了衍生化的分子质量和结构信息。给药后血浆和尿液样品中长达24小时都可以检测到未改变的非司匹利。给药后3至5小时观察到最大尿液水平为100-200 ng ml〜(-1)。酶解结合后,长达72小时的尿液中都可以检测到主要的酚类代谢物(G)。该代谢物是赛马后尿液样本的GC-MS筛查中选择的分析物,用于检测是否使用了芬斯匹德。但是,在英国研究中使用的纯种马与美国政府使用的四匹和标准马之间,在该代谢物的尿排泄中观察到了明显的差异。

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