Li Liangchun, Zheng Renlin, Sun Rongqin
School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China.
School of Life Science and Engineering, Southwest University of Science and Technology, Mianyang 621010, China.
J Adv Res. 2025 Mar;69:91-106. doi: 10.1016/j.jare.2024.03.028. Epub 2024 Apr 1.
The construction of gels from low molecular weight gelators (LMWG) has been extensively studied in the fields of bio-nanotechnology and other fields. However, the understanding gaps still prevent the prediction of LMWG from the full design of those gel systems. Gels with multicomponent become even more complicated because of the multiple interference effects coexist in the composite gel systems.
This review emphasizes systems view on the understanding of multicomponent low molecular weight gels (MLMWGs), and summarizes recent progress on the construction of desired networks of MLMWGs, including self-sorting and co-assembly, as well as the challenges and approaches to understanding MLMWGs, with the hope that the opportunities from natural products and peptides can speed up the understanding process and close the gaps between the design and prediction of structures.
This review is focused on three key concepts. Firstly, understanding the complicated multicomponent gels systems requires a systems perspective on MLMWGs. Secondly, several protocols can be applied to control self-sorting and co-assembly behaviors in those multicomponent gels system, including the certain complementary structures, chirality inducing and dynamic control. Thirdly, the discussion is anchored in challenges and strategies of understanding MLMWGs, and some examples are provided for the understanding of multicomponent gels constructed from small natural products and subtle designed short peptides.
在生物纳米技术及其他领域,由低分子量凝胶剂(LMWG)构建凝胶已得到广泛研究。然而,认知差距仍阻碍着从那些凝胶体系的完整设计来预测LMWG。由于复合凝胶体系中多种干扰效应共存,多组分凝胶变得更加复杂。
本综述强调从系统角度理解多组分低分子量凝胶(MLMWG),总结构建理想MLMWG网络的最新进展,包括自分类和共组装,以及理解MLMWG的挑战和方法,希望来自天然产物和肽的机遇能加速理解进程,并缩小结构设计与预测之间的差距。
本综述聚焦于三个关键概念。首先,理解复杂的多组分凝胶体系需要从系统角度看待MLMWG。其次,有几种方案可用于控制那些多组分凝胶体系中的自分类和共组装行为,包括特定的互补结构、手性诱导和动态控制。第三,讨论围绕理解MLMWG的挑战和策略展开,并提供了一些用于理解由小型天然产物和精心设计的短肽构建的多组分凝胶的示例。