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Identification of metabolic pathways involved in the biotransformation of eslicarbazepine acetate using UPLC-MS/MS, human microsomal enzymes and in silico studies

机译:使用UPLC-MS / MS,人微粒体酶和Silico的乙酸酯的生物转化术中鉴定参与烯类脲基脲酰胺的生物转化途径,Silico和Italic> Italic> Italic>研究

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In the last few decades, metabolite identification and detection have become an integral component of drug discovery process. The detection and depiction of an identified metabolite is significant for the development of safe and effective therapeutic agents as these metabolites may be pharmacologically active or toxic in nature. A (UPLC-MS/MS) method was developed for the quantification of eslicarbazepine acetate metabolite (M3),cis-10,11-dihydro-5H-dibenz[b,f]azepine-10,11-diol, in rat plasma. Eslicarbazepine acetate was extracted from rat plasma by precipitation technique using acetonitrile as a precipitating solvent. Chromatographic separation was accomplished using acetonitrile-0.01?M potassium dihydrogen phosphate (60:40, v/v) as mobile phase at a flow rate of 0.2?ml/min on Waters Acquity BEH 150?×?2.1?mm, 1.7?μm, C18 column at 30? C. The linearity of the calibration curve was 5–100?ng/ml for metabolite M3. The overall intra- and inter-day precision did not exceed 3%.In silico,in vitroandin vivoapproaches have been used to facilitate the detection and depiction of eslicarbazepine acetate metabolites. MetabolExpert was used to predict the probable metabolites of the compounds. Metabolite of eslicarbazepine acetate was identified using human liver microsomes.
机译:在过去的几十年中,代谢物鉴定和检测已成为药物发现过程的一个组成部分。鉴定的代谢物的检测和描述对于安全和有效的治疗剂的发展是显着的,因为这些代谢物可以是药理学活性或本质上的毒性。开发了(UPLC-MS / MS)方法,用于大鼠等离子体中的大鼠血糖酰胺代谢物(M3),CIS-10,11-二氢-5H-二苯并[B,F]偶氮素-10,11-二醇。通过使用乙腈作为沉淀溶剂,通过沉淀技术从大鼠等离子体中萃取乙酸苯胺哌嗪。使用乙腈-0.01·m钾二氢磷酸钾(60:40,v / v)为流动率以0.2≤ml/ min的流动率完成色谱分离,以在水上的流速下,在水下的情况下,××2.1≤mm,1.7?μm ,C18列在30? C.代谢物M3的校准曲线的线性为5-100μg/ ml。整体血液内和日间精度不超过3%。在玻璃体积中,硅片已经用于促进乙酸亚哌嗪代谢物的检测和描述。 Metabolexpert用于预测化合物的可能代谢物。使用人肝微粒体鉴定乙酸亚哌嗪乙酸酯的代谢物。

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