生物医学应用的超分子大环人工离子通道

IF 6.3 3区 综合性期刊 Q1 Multidisciplinary
Yamin Liu , Dao Shi , Bowen Li , Yimin Jin , Daishun Ling , Fangyuan Li
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引用次数: 0

摘要

生物离子通道对离子和分子的运输至关重要,在维持细胞平衡和调节细胞生长、激素分泌和神经-肌肉相互作用等重要生理功能方面起着至关重要的作用。从大自然中汲取灵感,研究人员利用单分子和自组装方法制作了一系列超分子人工离子通道(aic)。值得注意的是,基于环糊精、冠醚和柱芳烃等大环分子的aic具有明显的优势,包括生物相容性、精确的结构设计、易于定制和制备简单。本文综述了以大环为基础的生物启发aic的最新进展及其在生物医学领域的应用。我们首先概述了生物通道的重要性和用于形成超分子人工通道的策略。随后,我们浏览了分子设计、结构调制和基于大环的aic所展示的离子传输能力的复杂景观。此外,我们还探讨了这些aic在生物医学上的应用前景,包括抗菌措施、抗癌干预、生物传感技术和通道病变治疗方面的作用。最后,我们提出了该领域持续存在的挑战,并阐明了该领域的前景,最终目标是指导未来超分子aic发展的创新。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supramolecular macrocyclic artificial ion channels for biomedical applications
Biological ion channels are essential for ion and molecule transport, playing a critical role in maintaining cellular equilibrium and regulating vital physiological functions such as cell growth, hormone secretion, and nerve-muscle interactions. Drawing inspiration from nature, researchers have crafted an array of supramolecular artificial ion channels (AICs) using both unimolecular and self-assembly approaches. Notably, AICs based on macrocyclic molecules, such as cyclodextrins, crown ethers, and pillararenes, offer distinct advantages, including biocompatibility, precise structural design, ease of customization, and simple preparation. This review spotlights recent progress in bioinspired AICs rooted in macrocycles and their applications in the realm of biomedicine. We commence with an overview of the significance of biological channels and the strategies employed for fashioning supramolecular artificial channels. Subsequently, we navigate through the intricate landscape of molecular design, structural modulation, and the ion transport prowess exhibited by macrocycle-based AICs. Furthermore, we explore the promising biomedical applications of these AICs, encompassing roles in antibacterial measures, anticancer interventions, biosensing technologies, and treatments for channelopathies. Finally, we address the persisting challenges and illuminate prospects within this field, with the ultimate aim of steering future innovations in the development of supramolecular AICs.
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来源期刊
Fundamental Research
Fundamental Research Multidisciplinary-Multidisciplinary
CiteScore
4.00
自引率
1.60%
发文量
294
审稿时长
79 days
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