基于大环的超分子荧光生物传感

Jia-Hong Tian , Haiqi Xu , Xin-Yue Hu , Dong-Sheng Guo
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引用次数: 0

摘要

荧光传感利用荧光信号对特定分析物进行定性或定量检测,从而将化学事件转化为可测量的读数。超分子化学依赖于非共价相互作用,已成为传感应用的有力范例,引起了学术界的极大关注。在传感领域采用超分子化学具有几个显著优势,包括易于构建、反应迅速、动态可逆以及与模式识别兼容。值得注意的是,分子识别是超分子传感的一个关键方面。在超分子化学的组成成分中,一系列大环化合物具有显著的分子识别特性,适用于各种客体分子,并在荧光传感中得到广泛应用。本综述重点介绍了植根于冠醚、环糊精、钙烯、葫芦素和其他大环化合物的荧光传感器在单一传感、差异传感和生物成像方面的重要贡献。这些传感器用途广泛,可用于各种介质,包括水环境、缓冲溶液和生物流体基质。此外,本综述还对超分子传感和成像领域的未来努力和即将出现的研究方向提出了见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Supramolecular fluorescence biosensing based on macrocycles

Supramolecular fluorescence biosensing based on macrocycles

Fluorescence sensing converts chemical events into measurable readings by utilizing fluorescence signals for the qualitative or quantitative detection of specific analytes. Supramolecular chemistry, reliant upon non-covalent interactions, has emerged as a potent paradigm for sensing applications, garnering significant scholarly attention. The adoption of supramolecular chemistry within the realm of sensing offers several significant advantages, including easy construction, rapid response, dynamic reversibility, and compatibility with pattern recognition. Notably, molecular recognition stands as a pivotal facet of supramolecular sensing. Among the integral constituents of supramolecular chemistry, an array of macrocyclic compounds boasts remarkable molecular recognition properties, apt for diverse guest molecules, and finds extensive utility in fluorescence sensing. This review highlights the pivotal contributions of fluorescent sensors rooted in crown ethers, cyclodextrins, calixarenes, cucurbiturils, and other macrocycles in single sensing, differential sensing and bioimaging. The versatility of these sensors extends to diverse media, encompassing aqueous environments, buffer solutions, and biofluid matrices. Additionally, this review provides insights into the future endeavors and forthcoming research directions in the field of supramolecular sensing and imaging.

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CiteScore
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