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The Pump-Leak Model and Exchange Diffusion

机译:泵泄漏模型与交换扩散

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摘要

Steady-state concentration gradients across cell membranes have often been attributed to the associated leakage of solute down its electrochemical potential gradient, and active transport at an equal rate in the opposite direction. Several workers have evaluated the minimal energetic requirements of such a “pump-leak” model for sodium in muscle tissue, presuming that influx occurs only via the leak pathway and to no extent by way of the active transport pathway. The high energy requirements so predicted have led to the suggestions that either (a) sodium is not actively transported, being at equilibrium distribution across the cell surface, or (b) substantial sodium movement must be by means of exchange diffusion. The present treatment, based on the consideration that the active transport mechanism is bidirectional, demonstrates that the rates of influx and efflux associated with a given rate of active transport are explicit functions of two parameters: (1) the ratio of the exchange resistance of the active pathway to that of the leak pathway, and (2) the electrochemical potential difference across the cell surface. Lacking precise values for these parameters, the demonstration of a high rate of isotope flux is not compelling evidence either against active transport or for a discrete exchange diffusion mechanism. Various concepts and criteria of exchange diffusion are discussed.
机译:跨细胞膜的稳态浓度梯度通常归因于相关的溶质在其电化学势梯度下的泄漏,以及沿相反方向以相同速率主动迁移。数名工人评估了这种“泵-泄漏”模型对肌肉组织中钠的最低能量需求,假定流入仅通过泄漏途径发生,而没有通过主动运输途径发生。如此预测的高能量需求已导致提出以下建议:(a)钠未主动转运,在整个细胞表面处于平衡分布,或(b)大量钠的移动必须通过交换扩散进行。基于对主动转运机制是双向的考虑,本发明表明与给定的主动转运速率相关的流入和流出速率是两个参数的显式函数:(1)交换阻力的比率活性途径与泄漏途径之间的联系,以及(2)整个细胞表面的电化学电位差。由于缺乏这些参数的精确值,因此高同位素通量的论证并不能作为反对主动迁移或离散交换扩散机制的有力证据。讨论了交换扩散的各种概念和标准。

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