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首页> 外文期刊>Applied Mechanics Reviews: An Assessment of the World Literature in Engineering Sciences >Discussion of 'Cytoskeletal Mechanics Regulating Amoeboid Cell Locomotion' (Alvarez-Gonzalez, B., Bastounis, E., Meili, R., del Alamo, J. C., Firtel, R. A., and Lasheras, J. C., 2014, ASME Appl. Mech. Rev., 66(5), p. 050804)
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Discussion of 'Cytoskeletal Mechanics Regulating Amoeboid Cell Locomotion' (Alvarez-Gonzalez, B., Bastounis, E., Meili, R., del Alamo, J. C., Firtel, R. A., and Lasheras, J. C., 2014, ASME Appl. Mech. Rev., 66(5), p. 050804)

机译:讨论“调节变形虫细胞运动的细胞骨架力学”(Alvarez-Gonzalez,B.,Bastounis,E.,Meili,R.,del Alamo,JC,Firtel,RA和Lasheras,JC,2014年,ASME Appl。Mech。Rev. 。,66(5),第050804页)

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摘要

A virtually universal feature of adherent cells is their ability to exert traction forces. To measure these forces, several methods have been developed over the past 15 years. In this issue of Applied Mechanics Reviews, Alvarez-Gonzalez and co-workers review their own traction force microscopy approach and its application to the study of amoeboid cell locomotion. They show that the cycle of cell motility is exquisitely synchronized by a cycle of traction forces. In addition, they show how traction forces and cell cycle synchronization are affected by myosin and SCAR/WAVE mutants. Here, I discuss some open questions that derive from the work of the authors and other laboratories as regards the relationship between cell motility and traction forces.
机译:贴壁细胞的真正普遍特征是它们施加牵引力的能力。为了测量这些力,在过去的15年中已经开发了几种方法。在本期《应用力学评论》中,Alvarez-Gonzalez及其同事回顾了他们自己的牵引力显微镜方法及其在变形虫细胞运动研究中的应用。他们表明,细胞运动的周期与牵引力的周期完全同步。此外,它们显示了肌球蛋白和SCAR / WAVE突变体如何影响牵引力和细胞周期同步。在这里,我讨论了一些开放性问题,这些问题来自作者和其他实验室的工作,涉及细胞运动性和牵引力之间的关系。

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