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Multimodal imaging of fluid transport in living epithelial sheets

机译:活体上皮细胞中流体运输的多峰成像

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摘要

Epithelial tissues form the barrier between different fluid compartments throughout the body, lining and delineating the borders between tissues to control homeostasis and provide for the functions of secretion, absorption, and volume regulation. Key to these physiological roles is the transepithelial transport of fluid and solutes. Vectorial transport is possible due to the highly polarised cytoarchitecture, with different ion transporters and other proteins present in the apical vs basolateral membrane domains, which are separated by “tight junctions” which ring the lateral membranes of each cell. These separate the apical and basolateral compartments, providing intercellular adhesion and controlling permeation via the intercellular pathway. By varying the composition and function of the pools of transport proteins between these segregated membrane domains, directed transport is achieved thus promoting homeostasis. The retinal pigment epithelium (RPE) lies behind the neural retina, forming the blood-retinal barrier and providing for the homeostasitic and biochemical support of the photoreceptors and other neuronal layers. Much is known of RPE physiology at the macroscopic level since dysregulation or pathology have profound consequences for the visual system. Lacking is the detailed knowledge of biophysical mechanisms and local intercompartmental dynamics by which fluid and solute transport is achieved and regulated at the cellular and subcellular level.
机译:上皮组织形成整个身体不同液室之间的屏障,衬里并勾勒出组织之间的边界,以控制体内平衡并提供分泌,吸收和调节体积的功能。这些生理作用的关键是液体和溶质的经上皮运输。由于高度极化的细胞结构,矢量运输是可能的,在顶端与基底外侧膜结构域中存在不同的离子转运蛋白和其他蛋白质,这些蛋白通过“紧密连接”隔开,这些紧密连接环环住每个细胞的外侧膜。这些分隔顶端和基底外侧区室,提供细胞间粘附并通过细胞间途径控制渗透。通过改变这些分离的膜结构域之间的转运蛋白池的组成和功能,可以实现定向转运,从而促进体内平衡。视网膜色素上皮(RPE)位于神经视网膜的后面,形成血视网膜屏障,并为感光器和其他神经元层提供了稳态和生化支持。宏观上,RPE生理学已广为人知,因为失调或病理对视觉系统有深远的影响。缺乏是生物物理机制和局部室间动力学的详细知识,通过这些知识可以实现流体和溶质的运输并在细胞和亚细胞水平上进行调节。

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