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The Balance of Fluid and Osmotic Pressures across Active Biological Membranes with Application to the Corneal Endothelium

机译:活性生物膜上流体和渗透压的平衡及其在角膜内皮中的应用

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摘要

The movement of fluid and solutes across biological membranes facilitates the transport of nutrients for living organisms and maintains the fluid and osmotic pressures in biological systems. Understanding the pressure balances across membranes is crucial for studying fluid and electrolyte homeostasis in living systems, and is an area of active research. In this study, a set of enhanced Kedem-Katchalsky (KK) equations is proposed to describe fluxes of water and solutes across biological membranes, and is applied to analyze the relationship between fluid and osmotic pressures, accounting for active transport mechanisms that propel substances against their concentration gradients and for fixed charges that alter ionic distributions in separated environments. The equilibrium analysis demonstrates that the proposed theory recovers the Donnan osmotic pressure and can predict the correct fluid pressure difference across membranes, a result which cannot be achieved by existing KK theories due to the neglect of fixed charges. The steady-state analysis on active membranes suggests a new pressure mechanism which balances the fluid pressure together with the osmotic pressure. The source of this pressure arises from active ionic fluxes and from interactions between solvent and solutes in membrane transport. We apply the proposed theory to study the transendothelial fluid pressure in the in vivo cornea, which is a crucial factor maintaining the hydration and transparency of the tissue. The results show the importance of the proposed pressure mechanism in mediating stromal fluid pressure and provide a new interpretation of the pressure modulation mechanism in the in vivo cornea.
机译:流体和溶质在生物膜上的运动促进了营养物质向活生物体的运输,并维持了生物系统中的流体和渗透压。了解跨膜的压力平衡对于研究生命系统中的流体和电解质稳态是至关重要的,并且是一个活跃的研究领域。在这项研究中,提出了一组增强的Kedem-Katchalsky(KK)方程来描述水和溶质在生物膜上的通量,并将其用于分析流体压力和渗透压之间的关系,从而说明了推动物质对抗它们的浓度梯度和固定电荷会改变分离环境中的离子分布。平衡分析表明,所提出的理论可以恢复Donnan的渗透压,并且可以预测跨膜的正确流体压力差,由于忽略了固定电荷,现有的KK理论无法实现这一结果。对活性膜的稳态分析表明了一种新的压力机制,可以平衡流体压力和渗透压。该压力的来源来自活性离子通量以及膜运输中溶剂与溶质之间的相互作用。我们应用提出的理论来研究体内角膜中的内皮细胞液压力,这是维持组织水化和透明性的关键因素。结果表明,所提出的压力机制在介导基质流体压力中的重要性,并为体内角膜中的压力调节机制提供了新的解释。

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