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Red blood cell dynamics: from cell deformation to ATP release

机译:红细胞动力学:从细胞变形到ATP释放

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摘要

The mechanisms of red blood cell (RBC) deformation under both static and dynamic, i.e., flow, conditions have been studied extensively since the mid 1960s. Deformation-induced biochemical reactions and possible signaling in RBCs, however, were proposed only fifteen years ago. Therefore, the fundamental relationship between RBC deformation and cellular signaling dynamics i.e., mechanotransduction, remains incompletely understood. Quantitative understanding of the mechanotransductive pathways in RBCs requires integrative studies of physical models of RBC deformation and cellular biochemical reactions. In this article we review the physical models of RBC deformation, spanning from continuum membrane mechanics to cellular skeleton dynamics under both static and flow conditions, and elaborate the mechanistic links involved in deformation-induced ATP release.
机译:自1960年代中期以来,已经广泛研究了在静态和动态(即流动)条件下红细胞(RBC)变形的机理。然而,仅在15年前提出了由变形引起的生化反应以及RBC中可能的信号传导。因此,RBC变形与细胞信号传导动力学即机械转导之间的基本关系仍未完全理解。对RBC中机械转导途径的定量理解需要对RBC变形和细胞生化反应的物理模型进行综合研究。在本文中,我们回顾了RBC变形的物理模型,涵盖了在静态和流动条件下从连续膜力学到细胞骨架动力学的所有过程,并详细阐述了由变形引起的ATP释放的机理。

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  • 来源
    《Integrative Biology》 |2011年第10期|p.972-981|共10页
  • 作者单位

    1. Department of Mechanical and Aerospace Engineering,Princeton University, Princeton, USA;

    1. Department of Mechanical and Aerospace Engineering,Princeton University, Princeton, USA;

    1. Department of Mechanical and Aerospace Engineering,Princeton University, Princeton, USA;

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