Bioequivalence model for evaluation of Losartan in human plasma with special reference to drug–metabolite ratio

D. Goswami, S. Gurule, A. Khuroo, T. Monif
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引用次数: 3

Abstract

Losartan and in-vivo active metabolite losartan carboxylic acid (LCA) formation into systemic circulation have been poorly characterized in different races. A bioequivalence study was therefore conducted on healthy male Indian volunteers with 50 mg losartan formulation and unique comparative analysis with other population is presented. Non-compartmental pharmacokinetic analysis elucidated metabolite formation ratio (MR) for losartan: LCA [Cmax = 1.30 and AUC = 0.32] of 50 mg losartan was more varying compared to innovator [Cmax = 0.82 and AUC = 0.22] though bioequivalence requirements were met successfully. This variation was less for losartan 100 mg losartan- hydrochlorothiazide formulation in our previous published bioequivalence study.
评价氯沙坦在人血浆中的生物等效性模型,特别参考药物代谢比
氯沙坦和体内活性代谢物氯沙坦羧酸(LCA)进入体循环的形成在不同种族中特征不明显。因此,对印度健康男性志愿者使用50mg氯沙坦配方进行了生物等效性研究,并与其他人群进行了独特的比较分析。非室室药代动力学分析表明氯沙坦的代谢物形成比(MR): 50 mg氯沙坦的LCA [Cmax = 1.30, AUC = 0.32]与innovator [Cmax = 0.82, AUC = 0.22]相比变化更大,但成功地满足了生物等效性要求。在我们之前发表的生物等效性研究中,100mg氯沙坦-氢氯噻嗪制剂的变异较小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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