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C-二肽的共组装:溶液和沉淀中的凝胶化。

Coassembly of C-Dipeptides: Gelations from Solutions and Precipitations.

机构信息

College of Food Science and Technology, Huazhong Agricultural University, No. 1 Shizishan Road, Wuhan, Hubei 430070, PR China.

Key Laboratory of Environment Correlative Dietology, Huazhong Agricultural University, Ministry of Education, Wuhan, Hubei 430070, PR China.

出版信息

Biomacromolecules. 2020 Dec 14;21(12):5256-5268. doi: 10.1021/acs.biomac.0c01325. Epub 2020 Nov 17.

Abstract

C-dipeptides that did not gel on their own were found to form hydrogels when combined with mixtures (coassembly). At pH = 4.6, by mixing negatively charged C-WD (C-WD and/or C-WD) with C-KW or C-YK, where the side chain of K carried positive charge, two composite hydrogels with different mechanical properties were formed. The gels exhibited various fiber structures that would account for their individual functionalities. According to molecular dynamics computer simulations, the composite systems formed spherical micelles through hydrophobic interactions that further aggregate to form gels through electrostatic interactions. The electrostatic repulsions between C-WD molecules were interfered by insertions of C-KW or C-YK molecules, which result in gel formation in the composite systems. The results of computer simulations well explained the experimental observations, which provided new insights into the design and selection strategies for peptide gelators.

摘要

自身不形成凝胶的 C-二肽在与混合物(共组装)结合时被发现可以形成水凝胶。在 pH = 4.6 时,通过将带正电荷的 K 侧链的负电荷 C-WD(C-WD 和/或 C-WD)与 C-KW 或 C-YK 混合,形成了两种具有不同机械性能的复合水凝胶。凝胶表现出不同的纤维结构,这解释了它们各自的功能。根据分子动力学计算机模拟,复合体系通过疏水相互作用形成球形胶束,进一步通过静电相互作用聚集形成凝胶。C-WD 分子之间的静电排斥被 C-KW 或 C-YK 分子的插入所干扰,这导致复合体系中形成凝胶。计算机模拟结果很好地解释了实验观察结果,为肽凝胶剂的设计和选择策略提供了新的见解。

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