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Modeling the Mechanics of Tethers Pulled From the Cochlear Outer Hair Cell Membrane

机译:模拟从耳蜗外毛细胞膜拉出的系链的力学

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Cell membrane tethers are formed naturally (e.g., in leukocyte rolling) and experimentally to probe membrane properties. In cochlear outer hair cells, the plasma membrane is part of the trilayer lateral wall, where the membrane is attached to the cytoskeleton by a system of radial pillars. The mechanics of these cells is important to the sound amplification and frequency selectivity of the ear. We present a modeling study to simulate the membrane deflection, bending, and interaction with the cytoskeleton in the outer hair cell tether pulling experiment. In our analysis, three regions of the membrane are considered: the body of a cylindrical tether, the area where the membrane is attached and interacts with the cytoskeleton, and the transition region between the two. By using a computational method, we found the shape of the membrane in all three regions over a range of tether lengths and forces observed in experiments. We also analyze the effects of biophysical properties of the membrane, including the bending modulus and the forces of the membrane adhesion to the cytoskeleton. The model's results provide a better understanding of the mechanics of tethers pulled from cell membranes.
机译:细胞膜系链是自然形成的(例如在白细胞滚动中),并通过实验来探测膜的性质。在耳蜗的外毛细胞中,质膜是三层侧壁的一部分,该膜通过放射状支柱系统附着在细胞骨架上。这些细胞的力学对耳朵的声音放大和频率选择性很重要。我们提出了一个模型研究,以模拟在外部毛细胞系绳拉动实验中膜的挠曲,弯曲和与细胞骨架的相互作用。在我们的分析中,考虑了膜的三个区域:圆柱形系链的主体,膜与细胞骨架相连并相互作用的区域以及两者之间的过渡区域。通过使用一种计算方法,我们发现在一定范围内的系链长度和在实验中观察到的力范围内,所有三个区域的膜的形状。我们还分析了膜的生物物理特性的影响,包括弯曲模量和膜粘附到细胞骨架的力。该模型的结果可以更好地理解从细胞膜拉出的系链的力学。

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