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首页> 外文期刊>Annual Review of Physical Chemistry >Complex Fluids: Probing Mechanical Properties of Biological Systems with Optical Tweezers
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Complex Fluids: Probing Mechanical Properties of Biological Systems with Optical Tweezers

机译:复杂的流体:用光镊探测生物系统的机械性能

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The mechanical properties of cells are crucial for cell sensing and reaction to mechanical environments. This review describes the basic principles of optical tweezers and their use as force sensors for studying the mechanical properties of biological systems. It covers experiments of four groups of biological systems arranged by increasing complexity: (a) packaging DNA into viral capsids by bacteriophage portal motors and the dynamical stiffness of DNA upon protein binding, (b) actin-coated giant vesicles and the myosin-II embedded actin polymer network, (c) suspension cells, and (d) adhesion cells. These examples demonstrate how optical tweezers have been used to improve the understanding of the mechanical properties of biological systems at subcellular and molecular levels.
机译:细胞的机械性质对于细胞感测和对机械环境的反应至关重要。这篇综述描述了光镊的基本原理及其作为力传感器的用途,以研究生物系统的机械性能。它涵盖了四类生物系统的实验,这些生物系统以越来越高的复杂性排列:(a)通过噬菌体门马达将DNA包装到病毒衣壳中,以及蛋白质结合后DNA的动态刚度,(b)肌动蛋白包被的大囊泡和肌球蛋白II嵌入肌动蛋白聚合物网络,(c)悬浮细胞和(d)粘附细胞。这些例子说明了如何使用光镊来改善对亚细胞和分子水平的生物系统机械性能的理解。

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