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使用内标物控制大鼠体内和大鼠间的变异性,提高体外肠道通透性对体内口服吸收的预测能力。

Improved prediction of in vivo peroral absorption from in vitro intestinal permeability using an internal standard to control for intra- and inter-rat variability.

作者信息

Dowty M E, Dietsch C R

机构信息

Procter and Gamble Pharmaceuticals, Health Care Research Center Mason, Ohio 45040, USA.

出版信息

Pharm Res. 1997 Dec;14(12):1792-7. doi: 10.1023/a:1012148300807.

Abstract

PURPOSE

To evaluate the use of an in vitro intestinal permeability model to predict rat and human absorption as well as to evaluate the use of an internal standard to control for intra- and inter-rat variability.

METHODS

In vivo peroral absorption and in vitro steady-state intestinal permeability coefficients were determined in the rat for a variety of structurally different compounds with different physicochemical properties including: progesterone, hydrocortisone, salicylic acid, caffeine, clonidine, p-aminoclonidine, UK-14304, oxymetazoline, mannitol, PEG 900, PEG 4000, and a number of novel hydrophilic chemical entities.

RESULTS

The intestinal permeability coefficients determined in vitro could be used to predict the peroral absorption of a compound in both the rat and human. Normalizing the permeability of a test compound to an internal standard, e.g. mannitol, greatly improved the prediction of peroral absorption.

CONCLUSIONS

The use of an internal standard can aid in the prediction of the peroral absorption of a test compound, in particular, for one that has moderate absorption in the range of 20-80%. Moreover, these methods would appear to be a useful means to improve the prediction of other absorption models as well, such as the Caco-2 cell systems and in-situ perfusion methods.

摘要

目的

评估体外肠道通透性模型在预测大鼠和人体吸收方面的应用,以及评估使用内标物控制大鼠体内和不同大鼠之间变异性的作用。

方法

测定了大鼠体内经口吸收情况以及多种结构不同、理化性质各异的化合物的体外稳态肠道通透性系数,这些化合物包括:孕酮、氢化可的松、水杨酸、咖啡因、可乐定、对氨基可乐定、UK - 14304、羟甲唑啉、甘露醇、聚乙二醇900、聚乙二醇4000以及一些新型亲水性化学实体。

结果

体外测定的肠道通透性系数可用于预测化合物在大鼠和人体中的经口吸收情况。将测试化合物的通透性相对于内标物(如甘露醇)进行归一化处理,可显著提高经口吸收的预测准确性。

结论

使用内标物有助于预测测试化合物的经口吸收情况,特别是对于吸收程度在20% - 80%之间的中等吸收程度的化合物。此外,这些方法似乎也是改进其他吸收模型(如Caco - 2细胞系统和原位灌注法)预测能力的有用手段。

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