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Platelet Shape Change Induced by Marginal Band Instability.

机译:边缘带不稳定性引起的血小板形状变化。

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摘要

Terminal platelet production and platelet activation involve considerable cytoskeletal reorganization. The morphological changes brought about by this remodeling are es- sential for proper platelet function. Recent discoveries suggest that the marginal band of microtubules found at the equator of platelets and certain platelet precursors, un- dergoes a similar instability. This buckling instability serves, in one case, as the final differentiator of platelet production, and in the other, as an early step in the activation pathway. We aim to understand the mechanical principles governing these processes. To accomplish this, we construct a theoretical framework describing a growing, elastic ring confined within a flexible vesicle. With this method we construct two phase diagrams. The first corresponds to an instability due the curvature elasticity of the membrane, and the second to the same instability, but resulting from the strain energy of the membrane cortex. Next, we develop a coarse-grained Monte Carlo model of a growing marginal band within the platelet/preplatelet cytoskeleton. With this model we observe that the confining membrane suppresses the instability more readily for smaller marginal bands, thereby increasing the stability of platelets compared to their precursors.
机译:终末血小板的产生和血小板的活化涉及大量的细胞骨架重组。这种重塑所引起的形态变化对于正常的血小板功能是必不可少的。最近的发现表明,在血小板和某些血小板前体的赤道处发现的微管边缘带也经历了类似的不稳定。这种屈曲不稳定性在一种情况下充当血小板产生的最终区别因素,而在另一种情况下充当激活途径的早期步骤。我们旨在了解控制这些过程的机械原理。为此,我们构建了一个理论框架,描述了一个限制在柔性囊泡中的成长性弹性环。使用这种方法,我们可以构造两个相图。第一个对应于由于膜的曲率弹性引起的不稳定性,第二个对应于相同的不稳定性,但是是由于膜皮质的应变能引起的。接下来,我们建立了血小板/血小板前细胞骨架内边缘带增长的粗粒蒙特卡洛模型。通过该模型,我们观察到限制膜对于较小的边缘带更容易抑制不稳定性,从而与它们的前体相比增加了血小板的稳定性。

著录项

  • 作者

    Stroberg, T. Wylie.;

  • 作者单位

    Northwestern University.;

  • 授予单位 Northwestern University.;
  • 学科 Mechanics.;Morphology.;Biophysics.
  • 学位 Ph.D.
  • 年度 2016
  • 页码 108 p.
  • 总页数 108
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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