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用合成水凝胶模拟活性生物聚合物网络。

Mimicking Active Biopolymer Networks with a Synthetic Hydrogel.

机构信息

SupraPolix BV , Horsten 1 , 5612 AX , Eindhoven , The Netherlands.

出版信息

J Am Chem Soc. 2019 Feb 6;141(5):1989-1997. doi: 10.1021/jacs.8b10659. Epub 2019 Jan 25.

Abstract

Stiffening due to internal stress generation is of paramount importance in living systems and is the foundation for many biomechanical processes. For example, cells stiffen their surrounding matrix by pulling on collagen and fibrin fibers. At the subcellular level, molecular motors prompt fluidization and actively stiffen the cytoskeleton by sliding polar actin filaments in opposite directions. Here, we demonstrate that chemical cross-linking of a fibrous matrix of synthetic semiflexible polymers with thermoresponsive poly( N-isopropylacrylamide) (PNIPAM) produces internal stress by induction of a coil-to-globule transition upon crossing the lower critical solution temperature of PNIPAM, resulting in a macroscopic stiffening response that spans more than 3 orders of magnitude in modulus. The forces generated through collapsing PNIPAM are sufficient to drive a fluid material into a stiff gel within a few seconds. Moreover, rigidified networks dramatically stiffen in response to applied shear stress featuring power law rheology with exponents that match those of reconstituted collagen and actomyosin networks prestressed by molecular motors. This concept holds potential for the rational design of synthetic materials that are fluid at room temperature and rapidly rigidify at body temperature to form hydrogels mechanically and structurally akin to cells and tissues.

摘要

由于内应力的产生而导致的刚性化在生命系统中至关重要,是许多生物力学过程的基础。例如,细胞通过拉动胶原蛋白和纤维蛋白纤维来使周围基质变硬。在亚细胞水平上,分子马达通过在相反方向上滑动极性肌动蛋白丝来促使流动性并主动使细胞骨架变硬。在这里,我们证明了通过用热响应性聚(N-异丙基丙烯酰胺)(PNIPAM)交联合成的半刚性聚合物的纤维基质,可以在跨越 PNIPAM 的低临界溶液温度时通过诱导构象从线圈到球转变产生内应力,从而产生宏观的刚性响应,其模量跨越 3 个数量级以上。通过使 PNIPAM 塌陷产生的力足以在几秒钟内将流体材料驱动到硬凝胶中。此外,刚性化网络在受到施加的剪切应力时会剧烈变硬,表现出幂律流变学,其指数与由分子马达预加应力的重组胶原蛋白和肌球蛋白网络的指数相匹配。这个概念为设计在室温下为流体但在体温下迅速变硬以形成水凝胶的合成材料提供了可能性,这些水凝胶在机械和结构上类似于细胞和组织。

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