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芳环折叠体衍生的跨膜转运蛋白。

Aromatic foldamer-derived transmembrane transporters.

机构信息

College of Chemistry Fuzhou University Fuzhou, Fujian 350116, China.

出版信息

Chem Commun (Camb). 2024 Nov 14;60(92):13468-13491. doi: 10.1039/d4cc04388j.

Abstract

This review is the first to focus on transmembrane transporters derived from aromatic foldamers, with most studies reported over the past decade. These foldamers have made significant strides in mimicking the essential functions of natural ion channel proteins. With their aromatic backbones rigidified by intramolecular hydrogen bonds or differential repulsive forces, this innovative family of molecules stands out for its structural diversity and functional adaptability. They achieve efficient and selective ion and molecule transport across lipid bilayers carefully designed helical structures and tunable large cavities. Recent developments in this field highlight the transformative potential of foldamers in therapeutic applications and biomaterial engineering. Key advances include innovative molecular engineering strategies that enable highly selective ion transport by fine-tuning structural and functional attributes. Specific modifications to macrocyclic or helical foldamer structures have allowed precise control over ion selectivity and transport efficiency, with notable selectivity for K, Li, H and water molecules. Although challenges remain, future directions may focus on more innovative molecular designs, optimizing synthetic methods, improving membrane transport properties, integrating responsive designs that adapt to environmental stimuli, and fostering interdisciplinary collaborations. By emphasizing the pivotal role of aromatic foldamers in modern chemistry, this review aims to inspire further development, offering new molecular toolboxes and strategies to address technological and biological challenges in chemistry, biology, medicine, and materials science.

摘要

这是第一篇专注于源于芳香折叠体的跨膜转运蛋白的综述,其中大部分研究是在过去十年中报道的。这些折叠体在模拟天然离子通道蛋白的基本功能方面取得了重大进展。它们的分子内氢键或差分斥力刚性化的芳香骨架,具有结构多样性和功能适应性。这些创新的分子家族通过精心设计的螺旋结构和可调谐的大腔实现了对脂双层的高效和选择性离子及分子转运。该领域的最新进展突显了折叠体在治疗应用和生物材料工程中的变革潜力。关键的进展包括创新的分子工程策略,通过精细调整结构和功能属性实现高度选择性的离子转运。对大环或螺旋折叠体结构的特定修饰允许对离子选择性和转运效率进行精确控制,对 K、Li、H 和水分子具有显著的选择性。尽管仍然存在挑战,但未来的方向可能集中在更具创新性的分子设计、优化合成方法、改善膜转运性能、整合响应设计以适应环境刺激以及促进跨学科合作上。通过强调芳香折叠体在现代化学中的关键作用,这篇综述旨在激发进一步的发展,为化学、生物学、医学和材料科学中的技术和生物学挑战提供新的分子工具包和策略。

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