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首页> 外文期刊>Journal of Biomechanics >Internal forces, tension and energy density in tethered cellular membranes
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Internal forces, tension and energy density in tethered cellular membranes

机译:系留细胞膜的内力,张力和能量密度

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We analyze tethered cellular membranes by considering the membrane resultants, tension and densities of two modes of energy, bending and adhesion. These characteristics are determined based on a computational (finite-difference) analysis of membrane shape. We analyze the relative contribution and distribution of the membrane characteristics in four typical zones of the membrane surface. Using an axisymmetric model, we found that the meridional and circumferential components of the resultant are different near the tether body and they converge to the value of membrane tension farther from the tether. At the beginning of the area of membrane detachment from the cytoskeleton, the density of bending energy is on the same order of magnitude as membrane tension (resultant). Away from the tether, the bending energy density quickly decreases and becomes of the same order as that of the adhesion energy in the membrane-cytoskeleton attachment area. In that area, both modes of energy are significantly smaller than the membrane tension. We also consider the effect of the membrane bending modulus on the distribution of the membrane characteristics. An increase in the bending modulus results in changing the length and position on the membrane surface of zone 1 characterized by significant evolution of the resultant components. It also results in shortening zone 2 that covers the rest of the area of membrane detachment. The obtained results can help in a better interpretation of the measurements of membrane mechanical properties as well as in analyses of proteins and channels in curved membranes.
机译:我们通过考虑膜的合成,张力和能量的两种模式(弯曲和粘附)的密度来分析束缚的细胞膜。这些特征基于膜形状的计算(有限差)分析来确定。我们分析了膜表面四个典型区域中膜特性的相对贡献和分布。使用轴对称模型,我们发现所得的子午线和圆周分量在系绳体附近不同,并且收敛到距离系绳较远的膜张力值。在膜与细胞骨架分离的区域开始时,弯曲能的密度与膜张力(结果)的数量级相同。远离系绳,弯曲能量密度迅速降低,并变成与膜细胞骨架附着区域中的粘附能量相同的数量级。在该区域,两种能量模式都明显小于膜张力。我们还考虑了膜弯曲模量对膜特性分布的影响。弯曲模量的增加导致区域1的膜表面上的长度和位置改变,其特征在于所得组分的显着演变。这也导致缩短区域2覆盖膜分离的其余区域。获得的结果可以帮助更好地解释膜的机械性能,以及分析弯曲膜中的蛋白质和通道。

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