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The Validity of the Ussing Flux Ratio Equation in a Three-Dimensionally Inhomogeneous Membrane

机译:三维均质膜中使用通量比方程的有效性

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摘要

Derivations of the Ussing flux ratio equation have, until now, required the membrane to be both bounded by parallel planes and homogeneous, except in the transmembrane direction. These constraints have been necessary for the theoretical demonstration that the equation is independent of membrane parameters in the absence of carriers, coupling, solvent drag, or “single-file” diffusion. In a new derivation, the flux ratio equation is shown to be valid in this kind of diffusion regime without regard to the three-dimensional structure of the membrane. Thus the constraints on both membrane homogeneity and membrane geometry are shown to be unnecessary. The general use of this equation to differentiate between simple, uncoupled diffusion and other membrane transport phenomena is thus placed on a firmer base. However, as in earlier derivations, it is necessary that isopotential, isobaric, constant concentration surfaces exist sufficiently close to the membrane on both of its sides.
机译:直到现在,Ussing通量比方程的推导都要求膜除了在跨膜方向上外,还必须以平行平面为边界并且是均质的。这些约束对于理论证明是必要的,即在没有载流子,偶​​合,溶剂拖曳或“单列”扩散的情况下,该方程与膜参数无关。在一个新的推导中,通量比方程在这种扩散状态下被证明是有效的,而与膜的三维结构无关。因此,显示出对膜均质性和膜几何形状的约束均是不必要的。因此,该方程式通常用于区分简单的,未耦合的扩散和其他膜传输现象,因此具有更坚实的基础。然而,如在较早的推导中一样,等势,等压,恒定浓度的表面必须在其两侧都足够靠近膜存在。

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