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用于增强生物实体稳定性和功能性能的网状化学

Reticular Chemistry for Enhancing Bioentity Stability and Functional Performance.

作者信息

Feng Mengchu, Xing Chunyan, Jin Yehao, Feng Xiao, Zhang Yuanyuan, Wang Bo

机构信息

Frontiers Science Center for High Energy Material, Advanced Technology Research Institute (Jinan), Key Laboratory of Cluster Science (Ministry of Education), Beijing Key Laboratory of Photoelectronic/Electrophotonic Conversion Materials, Advanced Research Institute of Multidisciplinary Science, School of Chemistry and Chemical Engineering, Beijing Institute of Technology, Beijing 100081, P. R. China.

出版信息

J Am Chem Soc. 2024 Dec 4;146(48):32883-32905. doi: 10.1021/jacs.4c09259. Epub 2024 Nov 19.

Abstract

Addressing the fragility of bioentities that results in instability and compromised performance during storage and applications, reticular chemistry, specifically through metal-organic frameworks (MOFs) and covalent organic frameworks (COFs), offers versatile platforms for stabilization and enhancement of bioentities. These highly porous frameworks facilitate efficient loading and mass transfer, offer confined environments and selective permeability for stabilization and protection, and enable finely tunable biointerfacial interactions and microenvironments for function optimization, significantly broadening the applications of various bioentities, including enzymes, nucleic acids, cells, etc. This Perspective outlines strategies for integrating bioentities with reticular frameworks, highlighting new design ideas for existing issues within these strategies. It emphasizes the crucial roles of these frameworks for bioentities in enhancing stability, boosting activity, imparting non-native functions, and synergizing bioentity systems. Concluding with a discussion of the challenges and prospects in the design, characterization, and practical applications of these biocomposites, this Perspective aims to inspire further development of high-performance biocomposites in this promising field.

摘要

针对生物实体在储存和应用过程中导致不稳定和性能受损的脆弱性,网状化学,特别是通过金属有机框架(MOF)和共价有机框架(COF),为生物实体的稳定和增强提供了多功能平台。这些高度多孔的框架促进了高效负载和传质,为稳定和保护提供了受限环境和选择性渗透性,并实现了可精细调节的生物界面相互作用和微环境以优化功能,显著拓宽了包括酶、核酸、细胞等各种生物实体的应用。本综述概述了将生物实体与网状框架整合的策略,突出了这些策略中现有问题的新设计思路。它强调了这些框架对生物实体在增强稳定性、提高活性、赋予非天然功能以及协同生物实体系统方面的关键作用。本综述最后讨论了这些生物复合材料在设计、表征和实际应用中的挑战与前景,旨在激发这一有前景领域中高性能生物复合材料的进一步发展。

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