毒品运输和定位。肠道运输。

Q4 Pharmacology, Toxicology and Pharmaceutics Pharmaceutical biotechnology Pub Date : 1999-01-01 DOI:10.1007/0-306-46812-3_3
D M Oh, H K Han, G L Amidon
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引用次数: 55

摘要

在肠道中发现了各种各样的转运蛋白,并参与日常营养物质和药物的膜运输。这些肠转运蛋白位于刷状边缘膜和基底外膜。每个转运蛋白都有自己的底物特异性,有些转运蛋白比其他转运蛋白具有更广泛的特异性。此外,肠道转运体的分布和特征在肠道中表现出区域差异,这意味着不同的生理功能和某些情况下的病理反应。事实上,一些遗传疾病已被证明是由肠道转运蛋白缺乏引起的。针对肠道转运体的前药的开发已经成功地改善了口服吸收。例如,肠肽转运体被用于提高几种类拟肽药物的生物利用度,特别是ACE抑制剂和β -内酰胺类抗生素。利用负责肠道吸收各种溶质的转运蛋白和/或抑制参与外排系统的转运蛋白,可以提高吸收不良药物的生物利用度。近年来基因克隆技术和分子生物学技术的进步,使得在分子水平上研究转运体的特性和分布成为可能。基于膜转运体的分子特征和积累的特异性和动力学生化数据,结构修饰和靶向特定转运体是一种很有前途的药物设计策略,可以改善生物利用度和组织分布。
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Drug transport and targeting. Intestinal transport.

A wide variety of transporters are found in the intestine, and are involved in the membrane transport of daily nutrients as well as drugs. These intestinal transporters are located in the brush border membrane as well as basolateral membrane. Each transporter exhibits its own substrate specificity, and some have broader specificities than others. In addition, the distribution and characteristics of the intestinal transporters exhibit regional differences along the intestine, implying diverse physiologic functions and in some cases pathologic responses. Indeed several genetic disorders have been shown to result from deficient intestinal transporters. The development of prodrugs that target to intestinal transporters has been successful in improving oral absorption. For example, the intestinal peptide transporter is utilized in order to increase the bioavailability of several classes of peptidomimetic drugs, especially ACE inhibitors and beta-lactam antibiotics. The bioavailability of poorly absorbed drugs can be improved by utilization of the transporters responsible for the intestinal absorption of various solutes and/or by inhibiting the transporter involved in the efflux system. Recent advances in gene cloning and molecular biology techniques make it possible to study the characteristics and distribution of transporters at the molecular level. Based on molecular characterizations of membrane transporters and accumulated biochemical data on their specificities and kinetics, structural modification and targeting of a specific transporter is a promising strategy for the design of drugs that improve bioavailability and tissue distribution.

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