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Active Biological Materials

机译:活性生物材料

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摘要

Cells make use of dynamic internal structures to control shape and create movement. By consuming energy to assemble into highly organized systems of interacting parts, these structures can generate force and resist compression, as well as adaptively change in response to their environment. Recent progress in reconstituting cytoskeletal structures in vitro has provided an opportunity to characterize the mechanics and dynamics of filament networks formed from purified proteins. Results indicate that a complex interplay between length scales and timescales underlies the mechanical responses of these systems and that energy consumption, as manifested in molecular motor activity and cytoskeletal filament growth, can drive transitions between distinct material states. This review discusses the basic characteristics of these active biological materials that set them apart from conventional materials and that create a rich array of unique behaviors.
机译:细胞利用动态内部结构来控制形状并产生运动。通过消耗能量将它们组装成相互作用部分的高度组织化的系统,这些结构可以产生力并抵抗压缩,并且可以根据其环境进行自适应更改。体外重建细胞骨架结构的最新进展为表征由纯化蛋白形成的细丝网络的力学和动力学提供了机会。结果表明,长度标度和时间标度之间的复杂相互作用是这些系统的机械响应的基础,并且以分子运动活性和细胞骨架丝生长所表明的能量消耗可以驱动不同物质状态之间的转变。这篇综述讨论了这些活性生物材料的基本特性,这些特性使它们与传统材料不同,并创造出一系列独特的行为。

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