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首页> 外文期刊>Biomedical Chromatography: An International Journal Devoted to Research in Chromatographic Methodologies and Their Applications in the Biosciences >Characterization of xylazine metabolism in rat liver microsomes using liquid chromatography-hybrid triple quadrupole-linear ion trap-mass spectrometry
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Characterization of xylazine metabolism in rat liver microsomes using liquid chromatography-hybrid triple quadrupole-linear ion trap-mass spectrometry

机译:液相色谱-三重四极杆-线性离子阱-质谱法表征大鼠肝脏微粒体中甲苯噻嗪的代谢

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摘要

Xylazine is an α2-adrenoceptor agonist and it is widely used in veterinary anesthesia in combination with ketamine. There is limited information on the metabolism of xylazine. A quantitative method for the determination of xylazine by HPLC-ESI/MS/MS was developed. The method consisted of a protein precipitation extraction followed by analysis using liquid chromatography electrospray tandem mass spectrometry. The chromatographic separation was achieved using a Thermo Betasil Phenyl 100×2 mm column combined with an isocratic mobile phase composed of acetonitrile, methanol, water and formic acid (60:20:20:0.4) at a flow rate of 300 μL/min. The mass spectrometer was operating in selected reaction monitoring mode and the analytical range was set at 0.05-50 μm. The precision (%CV) and accuracy (%NOM) observed were 2.3-7.2 and 88.2-96.4%. In vitro metabolism studies were performed in rat liver microsomes and results showed moderate cytochrome P450 affinity (Km=10.1 μm) and a low metabolic stability of xylazine with a half-life of 4.1 min in rat liver microsomes. Five phase 1 metabolites were observed. The main metabolite observed was an oxidation of the thiazine moiety at m/z 235 and, to a lesser extent, we observed the formation of N-(2,6-dimethylphenyl)thiourea at m/z 181 and three distinctive hydroxylated metabolites at m/z 237. Further experiments with ketamine and ketoconazole strongly supported that the metabolism of xylazine to its main metabolite is mediated by CYP3A in rat liver microsomes.
机译:赛拉嗪是一种α2-肾上腺素受体激动剂,与氯胺酮联用广泛用于兽医麻醉中。赛拉嗪的代谢信息有限。建立了HPLC-ESI / MS / MS测定甲苯二嗪的定量方法。该方法包括蛋白质沉淀提取,然后使用液相色谱电喷雾串联质谱分析。使用Thermo Betasil Phenyl 100×2 mm色谱柱与等度流动相(由乙腈,甲醇,水和甲酸(60:20:20:0.4)组成)以300μL/ min的流速进行色谱分离。质谱仪在选定的反应监测模式下运行,分析范围设置为0.05-50μm。观察到的精密度(%CV)和准确度(%NOM)为2.3-7.2和88.2-96.4%。在大鼠肝微粒体中进行了体外代谢研究,结果表明,中等的细胞色素P450亲和力(Km = 10.1μm)和赛拉嗪的低代谢稳定性,在大鼠肝微粒体中的半衰期为4.1分钟。观察到五种1期代谢物。观察到的主要代谢物是噻嗪部分在m / z 235处的氧化,并且在较小程度上,我们观察到在m / z 181处形成N-(2,6-二甲基苯基)硫脲和在m / z处形成了三种独特的羟基化代谢物/ z 237.氯胺酮和酮康唑的进一步实验强烈支持了赛拉嗪在大鼠肝微粒体中代谢为其主要代谢物的作用是由CYP3A介导的。

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