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Explaining glomerular pores with fiber matrices. A visualization study based on computer modeling.

机译:用纤维基质解释肾小球毛孔。基于计算机建模的可视化研究。

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摘要

The extracellular space of the glomerular capillary wall is occupied by a complex meshwork of fibrous molecules. Little is understood about how the size, shape, and charge recognition properties of glomerular ultrafiltration arise from this space-filling fiber matrix. We studied the problem of size recognition by visualizing the void volume accessible to hard spheres in computer-generated three-dimensional homogeneous random fiber matrices. The spatial organization of the void volume followed a complex "blob-and-throat" pattern in which circumscribed cavities of free space within the matrix ("blobs") were joined to adjacent cavities by narrower throats of void space. For sufficiently small solutes, chains of blobs and throats traversed the matrix, providing pathways for trans-matrix permeation. The matrices showed threshold or gating properties with respect to permeation: solutes whose radius exceeded a critical value, at which a throat on the last connected trans-matrix pathway pinched off, could not cross, whereas smaller solutes had nonzero permeability. The thresholds may give the glomerular fiber matrix porelike response properties and explain why pore models have been such a useful means of treating permselectivity.
机译:肾小球毛细血管壁的细胞外空间被纤维分子的复杂网状结构占据。对于这种空间填充纤维基质如何产生肾小球超滤的大小,形状和电荷识别特性知之甚少。我们通过可视化计算机生成的三维均质随机纤维矩阵中硬球可访问的空隙体积来研究尺寸识别问题。空隙体积的空间组织遵循复杂的“肿胀和喉咙”模式,其中基质内的自由空间的外接空腔(“肿胀”)通过狭窄的空隙空间连接到相邻的空腔。对于足够小的溶质,斑点和喉咙的链条穿过基质,为跨基质渗透提供了途径。基质表现出关于渗透的阈值或门控特性:溶质的半径超过临界值(在该临界值处,最后连接的反矩阵路径上的喉咙被夹断)无法穿过,而较小的溶质具有非零渗透率。阈值可以赋予肾小球纤维基质类似孔的响应特性,并解释为什么孔模型一直是治疗渗透选择性的有用手段。

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