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结构多样的低溶解度化合物的剂量吸收分数估算。

Fraction of a dose absorbed estimation for structurally diverse low solubility compounds.

机构信息

Global Research & Development, Sandwich Laboratories, Research Formulation, Pfizer Inc., CT13 9NJ Sandwich, Kent, UK.

出版信息

Int J Pharm. 2011 Feb 28;405(1-2):79-89. doi: 10.1016/j.ijpharm.2010.11.049. Epub 2010 Dec 4.

Abstract

The purpose of the present study was to investigate the prediction accuracy of the fully mechanistic gastrointestinal unified theoretical (GUT) framework for in vivo oral absorption of low solubility drugs. Solubility in biorelevant media, molecular weight, logP(oct), pK(a), Caco-2 permeability, dose and particle size were used as the input parameters. To neglect the effect of the low stomach pH on dissolution of a drug, the fraction of a dose absorbed (Fa%) of undissociable and free acids were used. In addition, Fa% of free base drugs with the high pH stomach was also included to increase the number of model drugs. In total twenty nine structurally diverse compounds were used as the model drugs. Fa% data at several doses and particle sizes in humans and dogs were collated from the literature (total 110 Fa% data). In approximately 80% cases, the prediction error was within 2 fold, suggesting that the GUT framework has practical predictability for drug discovery, but not for drug development. The GUT framework appropriately captured the dose and particle size dependency of Fa% as the particle drifting effect was taken into account. It should be noted that the present validation results cannot be applied for salt form cases and other special formulations such as solid dispersions and emulsion formulations.

摘要

本研究旨在探讨全机械胃肠道统一理论(GUT)框架对低溶解度药物体内口服吸收的预测准确性。将生物相关介质中的溶解度、分子量、logP(辛醇)、pK(a)、Caco-2 渗透率、剂量和粒径用作输入参数。为了忽略低胃 pH 对药物溶解的影响,使用非解离和游离酸的剂量分数吸收(Fa%)。此外,还包括高 pH 胃中游离碱药物的 Fa%,以增加模型药物的数量。总共使用了 29 种结构多样的化合物作为模型药物。从文献中整理了人类和狗在几种剂量和粒径下的 Fa%数据(共 110 个 Fa%数据)。在大约 80%的情况下,预测误差在 2 倍以内,这表明 GUT 框架对于药物发现具有实际的预测能力,但对于药物开发则不然。GUT 框架适当地捕捉到 Fa%的剂量和粒径依赖性,因为考虑了颗粒漂移效应。需要注意的是,目前的验证结果不能应用于盐形式的情况和其他特殊制剂,如固体分散体和乳液制剂。

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