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基于碱基修饰的超分子聚合物的氢键相互作用:合成、自组装和生物医学应用。

Hydrogen-Bonding Interactions from Nucleobase-Decorated Supramolecular Polymer: Synthesis, Self-Assembly and Biomedical Applications.

机构信息

Department of Natural Science, Faculty of Mathematics and Natural Science, Universitas Negeri Surabaya, Surabaya 60231, Indonesia.

Department of Chemistry, College of Natural and Computational Sciences, Debre Markos University, P.O. Box 269, Debre Markos 00000, Ethiopia.

出版信息

ACS Biomater Sci Eng. 2024 Jan 8;10(1):234-254. doi: 10.1021/acsbiomaterials.3c01097. Epub 2023 Dec 16.

Abstract

The fabrication of supramolecular materials for biomedical applications such as drug delivery, bioimaging, wound-dressing, adhesion materials, photodynamic/photothermal therapy, infection control (as antibacterial), etc. has grown tremendously, due to their unique properties, especially the formation of hydrogen bonding. Nevertheless, void space in the integration process, lack of feasibility in the construction of supramolecular materials of natural origin in living biological systems, potential toxicity, the need for complex synthesis protocols, and costly production process limits the actual application of nanomaterials for advanced biomedical applications. On the other hand, hydrogen bonding from nucleobases is one of the strategies that shed light on the blurred deployment of nanomaterials in medical applications, given the increasing reports of supramolecular polymers that promote advanced technologies. Herein, we review the extensive body of literature about supramolecular functional biomaterials based on nucleobase hydrogen bonding pertinent to different biomedical applications. It focuses on the fundamental understanding about the synthesis, nucleobase-decorated supramolecular architecture, and novel properties with special emphasis on the recent developments in the assembly of nanostructures via hydrogen-bonding interactions of nucleobase. Moreover, the challenges, plausible solutions, and prospects of the so-called hydrogen bonding interaction from nucleobase for the fabrication of functional biomaterials are outlined.

摘要

由于其独特的性质,特别是氢键的形成,用于药物输送、生物成像、伤口敷料、粘附材料、光动力/光热治疗、感染控制(如抗菌)等生物医学应用的超分子材料的制造得到了极大的发展。然而,在整合过程中的空隙、在活的生物系统中构建天然来源的超分子材料的可行性缺乏、潜在的毒性、对复杂合成方案的需求以及昂贵的生产过程限制了纳米材料在先进生物医学应用中的实际应用。另一方面,碱基氢键是阐明纳米材料在医学应用中模糊部署的策略之一,因为越来越多的关于促进先进技术的超分子聚合物的报道。在本文中,我们综述了大量关于基于碱基氢键的超分子功能生物材料的文献,这些材料与不同的生物医学应用有关。它侧重于对基于碱基氢键的超分子功能生物材料的合成、碱基修饰的超分子结构以及新型性质的基本理解,特别强调了通过碱基氢键相互作用组装纳米结构的最新进展。此外,还概述了所谓的碱基氢键在制造功能生物材料方面的挑战、可能的解决方案和前景。

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