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Mechanics of Fluid-Filled Interstitial Gaps. I. Modeling Gaps in a Compact Tissue

机译:填隙间隙的力学。 I.在紧凑的组织中建模间隙

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摘要

Fluid-filled interstitial gaps are a common feature of compact tissues held together by cell-cell adhesion. Although such gaps can in principle be the result of weak, incomplete cell attachment, adhesion is usually too strong for this to occur. Using a mechanical model of tissue cohesion, we show that, instead, a combination of local prevention of cell adhesion at three-cell junctions by fluidlike extracellular material and a reduction of cortical tension at the gap surface are sufficient to generate stable gaps. The size and shape of these interstitial gaps depends on the mechanical tensions between cells and at gap surfaces, and on the difference between intracellular and interstitial pressures that is related to the volume of the interstitial fluid. As a consequence of the dependence on tension/tension ratios, the presence of gaps does not depend on the absolute strength of cell adhesion, and similar gaps are predicted to occur in tissues of widely differing cohesion. Tissue mechanical parameters can also vary within and between cells of a given tissue, generating asymmetrical gaps. Within limits, these can be approximated by symmetrical gaps.
机译:充满液体的间隙是通过细胞间粘附将紧密组织保持在一起的共同特征。尽管原则上这些间隙可能是细胞附着力弱,不完全的结果,但粘附力通常太强而无法发生。使用组织凝聚力的机械模型,我们显示,相反,通过流体状细胞外材料局部防止三细胞交界处的细胞黏附和间隙表面皮质张力的降低足以产生稳定的间隙。这些间隙的大小和形状取决于细胞之间和间隙表面的机械张力,并取决于与间隙流体的体积有关的细胞内压力和间隙压力之间的差异。由于依赖于张力/张力比,间隙的存在不取决于细胞粘附的绝对强度,并且预计在具有广泛差异的内聚力的组织中会出现类似的间隙。组织机械参数也可以在给定组织的细胞内和细胞之间变化,从而产生不对称的间隙。在限制范围内,可以通过对称间隙近似。

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