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Topologically frustrated dynamics of crowded charged macromolecules in charged hydrogels

机译:带电水凝胶中拥挤的带电大分子的拓扑受阻动力学

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摘要

Movement of charged macromolecules in crowded aqueous environments is a ubiquitous phenomenon vital to the various living processes and formulations of materials for health care. While study of diffusion of tracer amounts of probe macromolecules trapped inside concentrated solutions, gels, or random media has led to an enhanced understanding of this complex process, the collective dynamics of charged macromolecules embedded inside congested charge-bearing matrices still remains to be fully explored. Here we report a frustrated dynamics of DNA and synthetic polyelectrolytes inside a charged host hydrogel where the guest molecules do not diffuse. Instead, they exhibit a family of relaxation processes arising from a combination of conformational entropy and local chain dynamics, which are frustrated by the confinement from the gel. We also have developed a model explaining this new universality class of non-diffusive topologically frustrated dynamics of charged macromolecules.
机译:带电的大分子在拥挤的水环境中的移动是普遍存在的现象,对各种生活过程和卫生保健材料的配制至关重要。虽然对浓溶液,凝胶或随机介质中捕获的示踪大分子的扩散进行了研究,从而使人们对这一复杂过程有了更深入的了解,但嵌入带电电荷基质中的带电大分子的集体动力学仍有待充分探索。 。在这里,我们报告了带电宿主水凝胶内部DNA和合成聚电解质的动态受挫,其中客体分子未扩散。相反,它们表现出由构象熵和局部链动力学的组合引起的一系列松弛过程,这些过程由于受到凝胶的限制而受挫。我们还开发了一个模型来解释带电大分子的非扩散拓扑受阻动力学这一新的通用性类。

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