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首页> 外文期刊>International Journal of Polymeric Materials >Physical and mechanical properties of thermosensitive xanthan/collagen-inspired protein composite hydrogels
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Physical and mechanical properties of thermosensitive xanthan/collagen-inspired protein composite hydrogels

机译:热敏黄原胶/胶原蛋白启发的蛋白质复合水凝胶的物理和机械性能

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摘要

Functionalization of xanthan hydrogels is of interest for biomaterial applications. The authors report characterization of electrostatic complexation of xanthan with a recombinant collagen-inspired triblock protein polymer. This polymer has one charged polylysine end-block that can bind to xanthan by electrostatic interactions, and another end-block that can self-assemble into thermosensitive collagen-like triple helices; the end-blocks are connected by a neutral, hydrophilic, mostly inert random coil. The protein modifies the xanthan/protein composite hydrogels in three ways: (a) a significant increase in storage modulus, (b) thermosensitivity, and (c) a two-step strain softening in nonlinear rheology.
机译:黄原胶水凝胶的功能化对于生物材料应用是令人感兴趣的。作者报告了黄原胶与重组胶原启发的三嵌段蛋白聚合物的静电络合特征。该聚合物具有一个带电荷的聚赖氨酸末端嵌段,可以通过静电相互作用与黄原胶结合,另一个具有可以自组装成热敏性胶原状三螺旋的末端嵌段。末端嵌段通过中性,亲水性,主要为惰性的无规线圈连接。蛋白质通过三种方式修饰黄原胶/蛋白质复合水凝胶:(a)储能模量显着增加;(b)热敏性;(c)非线性流变学中的两步应变软化。

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