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Optimization of intestinal microsomal preparation in the rat: A systematic approach to assess the influence of various methodologies on metabolic activity and scaling factors

机译:大鼠肠微粒体制剂的优化:一种评估各种方法对代谢活性和缩放因子的影响的系统方法

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Abstract The metabolic capacity of the intestine and its importance as the initial barrier to systemic exposure can lead to underestimation of first‐pass, and thus overestimation of oral bioavailability. However, the in vitro tools informing estimates of in vivo intestinal metabolism are limited by the complexity of the in vitro matrix preparation and uncertainty with the scaling factors for in vitro to in vivo extrapolation. A number of methods currently exist in the literature for the preparation of intestinal microsomes; however, the impact of key steps in the preparation procedure has not been critically assessed. In the current study, changes in enterocyte isolation, the impact of buffer constituents heparin and glycerol, as well as sonication as a direct method of homogenization were assessed systematically. Furthermore, fresh vs. frozen tissue samples and the impact of microsome freeze thawing was assessed. The rat intestinal microsomes were characterized for CYP content as well as metabolic activity using testosterone and 4‐nitropheonol as probes for CYP and UGT activity, respectively. Comparisons in metabolic activity and scaled unbound intestinal intrinsic clearance ( CL intu,gut ) were made to commercially available microsomes using 25 drugs with a diverse range of metabolic pathways and intestinal metabolic stabilities. An optimal, robust and reproducible microsomal preparation method for investigation of intestinal metabolism is proposed. The importance of characterization of the in vitro matrix and the potential impact of intestinal scaling factors on the in vitro–in vivo extrapolation of F G needs to be investigated further. ? 2017 The Authors Biopharmaceutics & Drug Disposition Published by John Wiley & Sons Ltd.
机译:摘要肠道的代谢能力及其重要性随着全身暴露的初始障碍可能导致低估了一般性,从而高估口服生物利用度。然而,向体内肠道代谢估计的体外工具通知体内肠道代谢的估计受到体外基质制备和不确定性与体外缩放因子的复杂性的限制。目前存在许多方法,用于制备肠微粒体的文献中存在;但是,在制备程序中关键步骤的影响尚未受到严重评估。在目前的研究中,系统地评估了肠溶性分离的变化,缓冲液组分肝素和甘油的影响,以及超声处理作为直接均质化方法。此外,评估新鲜与冷冻组织样品和微粒冻融的影响。大鼠肠微粒体的特征在于CYP含量以及使用睾酮和4-硝基洛索的代谢活性分别作为CYP和UGT活性的探针。使用25种药物具有多种代谢途径和肠道代谢稳定性,对商业上可获得的微粒体进行代谢活性和缩放的未结合肠道内在清除(Cl Intu,Gut)的比较。提出了一种最佳,鲁棒和可再现的肠道代谢的微粒体制备方法。需要进一步研究体外基质对体外基质的重要性和肠比例因子对体内体内外推的潜在影响。还2017年作者BioPharmaceutics& John Wiley&amp出版的药物处理; SONS LTD.

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