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Anomalous Self-Diffusion and Sticky Rouse Dynamics in Associative Protein Hydrogels

机译:缔合蛋白水凝胶的反常自我扩散和粘滞动力学

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摘要

Natural and synthetic materials based on associating polymers possess diverse mechanical behavior, transport properties and responsiveness to external stimuli. Although much is known about their dynamics on the molecular and macroscopic level, knowledge of self-diffusive dynamics of the network-forming constituents remains limited. Using forced Rayleigh scattering, anomalous self-diffusion is observed in model associating protein hydrogels originating from the interconversion between species that diffuse in both the molecular and associated state. The diffusion can be quantitatively modeled using a two-state model for polymers in the gel, where diffusivity in the associated state is critical to the super diffusive behavior. The dissociation time from bulk rheology measurements was 2-3 orders of magnitude smaller than the one measured by diffusion, because the former characterizes submolecular dissociation dynamics, whereas the latter depicts single protein molecules completely disengaging from the network. Rheological data also show a sticky Rouse-like relaxation at long times due to collective relaxation of large groups of proteins, suggesting mobility of associated molecules. This study experimentally demonstrates a hierarchy of relaxation processes in associating polymer networks, and it is anticipated that the results can be generalized to other associative systems to better understand the relationship of dynamics among sticky bonds, single molecules, and the entire network.
机译:基于缔合聚合物的天然和合成材料具有多种机械性能,运输特性和对外部刺激的响应能力。尽管人们对它们在分子和宏观水平上的动力学知之甚少,但对形成网络的成分的自扩散动力学的认识仍然有限。使用强制瑞利散射,在模型关联的蛋白质水凝胶中观察到异常的自扩散,这种蛋白质水凝胶源于以分子和缔合状态扩散的物种之间的相互转换。可以使用凝胶中的聚合物的两态模型对扩散进行定量建模,其中关联状态下的扩散性对于超扩散行为至关重要。本体流变学测量的解离时间比扩散测量的解离时间小2-3个数量级,因为前者表征亚分子解离动力学,而后者描述单个蛋白质分子完全脱离网络。流变学数据还显示,由于大量蛋白质的集体松弛,长时间后仍呈粘稠的Rouse样松弛,表明相关分子的迁移性。这项研究实验证明了在缔合聚合物网络时松弛过程的层次结构,并且可以预期将结果推广到其他缔合系统,以更好地理解粘性键,单分子和整个网络之间的动力学关系。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2015年第11期|3946-3957|共12页
  • 作者单位

    Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Department of Chemical Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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