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葡萄糖进出人体红细胞的机制。

The mechanism of glucose transfer into and out of the human red cell.

作者信息

LeFEVRE P G, LeFEVRE M E

出版信息

J Gen Physiol. 1952 Jul;35(6):891-906.

Abstract
  1. The kinetics of the movements of glucose in both directions across the surface of the human red cell were studied by optical recording (Ørskov method) of resultant cell volume changes. 2. A wide experimental variety was arranged in the relations between the several quantitative factors contributing to the glucose gradient and the volume changes expected, in order to provide a maximum variety of systematic relations between those factors and the rate of glucose transfer. 3. The kinetics were shown to follow the patterns predicted on the basis of a simple carrier system, involving formation of a highly undissociated complex between the sugar and some factor in the cell surface, provided the glucose concentrations used did not exceed about 3/4 isosmotic. Certain simple properties of this system are derived from the data. 4. At very high glucose concentrations, this system apparently gradually fails to operate; this failure is reversible upon lowering of the excessive glucose concentration. 5. An empirical correction was derived for a previously known but uncalibrated optical disturbance complicating the use of the Ørskov method with media containing appreciable concentrations of non-electrolytes.
摘要
  1. 通过光学记录(厄斯柯夫法)红细胞总体积变化,研究了葡萄糖在人红细胞表面双向转运的动力学。2. 对影响葡萄糖梯度的几个定量因素与预期体积变化之间的关系进行了广泛的实验,以便在这些因素与葡萄糖转运速率之间提供最大范围的系统关系。3. 结果表明,动力学符合基于简单载体系统预测的模式,即糖与细胞表面某些因子形成高度不解离的复合物,前提是所用葡萄糖浓度不超过约3/4等渗浓度。该系统的某些简单特性可从数据中推导得出。4. 在非常高的葡萄糖浓度下,该系统显然逐渐失效;降低过高的葡萄糖浓度后,这种失效是可逆的。5. 针对先前已知但未校准的光学干扰进行了经验校正,这种干扰使得在含有相当浓度非电解质的介质中使用厄斯柯夫法变得复杂。

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