纳米技术
桥接(联网)
生物医学
纳米结构
生物相容性
制作
材料科学
转化式学习
计算机科学
合理设计
背景(考古学)
化学
化学过程
作者
Caiyun Yang,Yuchen Qian,Qiaoran Li,Qiao Ye,Linna Pan,Hanchen Wei,Bo Huang,Guang Yang
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2026-07-24
卷期号:27 (8): 4972-4983
标识
DOI:10.1021/acs.biomac.6c00449
摘要
Glycopolymer-based nanostructures (glyco-nanostructures) have garnered significant interest in biomedicine due to their exceptional biocompatibility and programmable multivalent recognition. However, traditional fabrication methods driven by physical forces face critical limitations in reproducibility and solid content. To overcome these challenges, chemical reaction-induced self-assembly (RISA) has emerged as a transformative alternative. In this review, we introduce RISA as a generalized framework encompassing various reaction-driven processes, including polymerization, deprotection, enzymatic catalysis, and interfacial induction, which enable the quantitative, in situ preparation of well-defined glyco-nanoassemblies at high concentrations. While RISA is a universal strategy, this review specifically highlights its application to glycopolymers. We systematically summarize recent advances in fabrication methodologies, underlying chemical mechanisms, and expanding biomedical applications. By bridging chemical dynamics with nanostructural function, this work establishes a foundational framework for the rational design of next-generation glyconanomaterials, aiming to stimulate further innovation and clinical translation in this evolving field.
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