Julolidine-based fluorescent molecular rotor: a versatile tool for sensing and diagnosis

IF 3.5 Q2 CHEMISTRY, ANALYTICAL
Nabashree Chakraborty, Akshay Silswal and Apurba Lal Koner
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引用次数: 0

Abstract

Fluorescent molecular rotors incorporating julolidine have found diverse applications in various fields. Recently, researchers have explored their utility in polymerization, metal ion detection, self-assembly, aggregation, and detection of proteins and nucleic acids. These julolidine-based molecular rotors primarily serve as fluorescent turn-on probes, showcasing their effectiveness in sensing local environmental properties such as polarity, pH, viscosity, protein folding, and misfolding. This comprehensive review covers an array of julolidine-based fluorescent molecular rotors, along with their pertinent uses in the field of biological research and monitoring changes in the microenvironment through solvent dielectric constant, viscosity, self-assembled polymers, and submicrometer-sized membrane-bound compartments in live cellular systems. The discourse supports ongoing research concerning their diverse applications and provides a forward-looking perspective on their potential advancements.

Abstract Image

基于久洛尼定的荧光分子旋转器:传感和诊断的多功能工具
含有久洛尼定的荧光分子转子在各个领域都有不同的应用。最近,研究人员探索了它们在聚合、金属离子检测、自组装、聚集以及蛋白质和核酸检测方面的用途。这些基于鸦胆子碱的分子转子主要用作荧光开启探针,在感知极性、pH 值、粘度、蛋白质折叠和错误折叠等局部环境特性方面展示了其有效性。本综述涵盖了一系列基于鸦胆子碱的荧光分子转子,以及它们在生物研究领域的相关用途,并通过溶剂介电常数、粘度、自组装聚合物和活细胞系统中亚微米大小的膜结合区块来监测微环境的变化。这些论述支持正在进行的有关其各种应用的研究,并为其潜在的发展提供了前瞻性视角。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
2.30
自引率
0.00%
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0
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