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压力和电荷对牛晶状体基底膜上大分子运输的影响。

Effects of pressure and electrical charge on macromolecular transport across bovine lens basement membrane.

机构信息

Department of Medicine, Division of Nephrology and Hypertension, Vanderbilt University, Nashville, Tennessee, USA.

出版信息

Biophys J. 2013 Apr 2;104(7):1476-84. doi: 10.1016/j.bpj.2013.01.062.

Abstract

Molecular transport through the basement membrane is important for a number of physiological functions, and dysregulation of basement membrane architecture can have serious pathological consequences. The structure-function relationships that govern molecular transport in basement membranes are not fully understood. The basement membrane from the lens capsule of the eye is a collagen IV-rich matrix that can easily be extracted and manipulated in vitro. As such, it provides a convenient model for studying the functional relationships that govern molecular transport in basement membranes. Here we investigate the effects of increased transmembrane pressure and solute electrical charge on the transport properties of the lens basement membrane (LBM) from the bovine eye. Pressure-permeability relationships in LBM transport were governed primarily by changes in diffusive and convective contributions to solute flux and not by pressure-dependent changes in intrinsic membrane properties. The solute electrical charge had a minimal but statistically significant effect on solute transport through the LBM that was opposite of the expected electrokinetic behavior. The observed transport characteristics of the LBM are discussed in the context of established membrane transport modeling and previous work on the effects of pressure and electrical charge in other basement membrane systems.

摘要

分子通过基底膜的转运对于许多生理功能都很重要,基底膜结构的失调可能会产生严重的病理后果。目前尚未完全了解控制基底膜中分子转运的结构-功能关系。眼晶状体囊的基底膜是富含胶原蛋白 IV 的基质,可在体外轻松提取和操作。因此,它为研究控制基底膜中分子转运的功能关系提供了一个便利的模型。在这里,我们研究了跨膜压力和溶质电荷增加对牛眼晶状体基底膜(LBM)转运特性的影响。LBM 转运中的压力-渗透率关系主要由溶质通量的扩散和对流贡献的变化决定,而不是由固有膜性质的压力依赖性变化决定。溶质电荷对 LBM 中溶质转运的影响虽然很小,但具有统计学意义,与预期的电动行为相反。在已建立的膜转运模型和先前关于压力和电荷对其他基底膜系统影响的工作的背景下,讨论了 LBM 的观察到的转运特性。

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