首页> 外文期刊>European Journal of Medicinal Chemistry: Chimie Therapeutique >On the mechanism of human intestinal absorption.
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On the mechanism of human intestinal absorption.

机译:关于人体肠道吸收的机制。

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摘要

In order to investigate whether the main step in intestinal absorption in humans is dominated by partition or by diffusion, we have transformed % human intestinal absorption into a first-order rate constant, and have regressed the latter, as logk, against our solvation parameters. The obtained regression coefficients are compared with those for diffusion and partition processes. The coefficients in the logk equation are completely different to those for water/solvent partitions, but are very similar to those for processes (not involving transport through membranes) in which diffusion is the major step. It is suggested that the main step in the absorption process is diffusion through a stagnant mucus layer, together with transfer across the mucusmid R:membrane interface. It is further shown that for strong Bronsted acids and bases, the rate constant for absorption of ionic species is close to that for absorption of the corresponding neutral species, so that to a first approximation the % intestinal absorption can be calculated from properties of the neutral species.
机译:为了研究人类肠道吸收的主要步骤是通过分配还是通过扩散来控制,我们已将人类肠道吸收百分比转换为一阶速率常数,并将其作为logk相对于我们的溶剂化参数进行了回归。将获得的回归系数与扩散和分配过程的回归系数进行比较。 logk方程中的系数与水/溶剂分配的系数完全不同,但与其中扩散是主要步骤的过程(不涉及通过膜的运输)的系数非常相似。建议吸收过程的主要步骤是通过停滞的粘液层扩散,以及通过粘液R:膜界面的转移。进一步表明,对于强布朗斯台德酸和碱,离子物质的吸收速率常数接近于相应中性物质的吸收速率常数,因此可以近似地从中性的性质计算肠道吸收百分比种类。

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