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Permeability of Red Cell Membranes to Small Hydrophilic and Lipophilic Solutes

机译:红细胞膜对小型亲水和亲脂溶质的渗透性

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摘要

The permeability coefficients of a series of amides, ureas, and diols have been measured on red cells of man and dog using the minimum volume method of Sha'afi et al. When the molecules are grouped according to their ether-water partition coefficients, k ether, the behavior of the hydrophilic molecules, with k ether less than water, is different from that of the lipophilic molecules, characterized by k ether greater than water. The rate of permeation of the hydrophilic molecules through an aqueous pathway is determined by the molar volume, a parameter in which the geometrical measure of molecular volume is modified by hydrogen-bonding ability. This indicates the importance of chemical interactions within the aqueous path. The permeation of the lipophilic molecules is determined in the first instance by k ether, taken as a measure of the ease with which the molecule can escape from its aqueous environment. Within the membrane, lipophilic permeability is modified both by steric factors and by the formation of hydrogen bonds with membrane components. These data allow one to infer that lipid-soluble molecules travel through an organized structure within the lipid membrane and come into contact with polar moieties.
机译:使用Sha'afi等人的最小体积方法,已经在人和狗的红细胞上测量了一系列酰胺,脲和二醇的渗透系数。当分子根据其醚-水分配系数k醚分组时,k醚小于水的亲水分子的行为与亲脂性分子的行为不同,亲油分子的特征在于k醚大于水。亲水分子通过水通道的渗透速率由摩尔体积决定,该参数是通过氢键合能力改变分子体积的几何量度的参数。这表明在水路径内化学相互作用的重要性。亲脂性分子的渗透率首先通过k醚来确定,这是衡量该分子从其水性环境中逸出的难易程度的度量。在膜内,亲脂渗透性通过空间因素和与膜成分形成氢键而改变。这些数据可以推断脂溶性分子穿过脂质膜内的有组织结构并与极性部分接触。

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