基于有机分子的免洗荧光工具:设计原则和生物医学应用

IF 22.5
Jingyun Tan, Chunfei Wang, Zhangjun Hu, Xuanjun Zhang
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引用次数: 0

摘要

基于有机分子的荧光辅助工具已广泛应用于以非侵入方式询问复杂的生物过程,具有良好的灵敏度,高分辨率和丰富的对比度。然而,在高保真度的图像采集过程中,信噪比是一个必须考虑的重要因素。鉴于此,无洗涤策略被证明是提高信噪比的重要途径,因此,本文对基于有机分子的无洗涤荧光工具进行了全面的介绍。首先,对免洗分子荧光工具的设计原理进行了概括和总结。随后,为了使分子设计思想更加清晰,最近的研究从四个不同但紧密结合的方面强调了免洗策略:(1)特殊化学结构,(2)分子相互作用,(3)生物正交反应,(4)非生物反应。与此同时,生物医学应用,包括生物成像、生物检测和治疗,已经准备好伴随。最后,对wft的发展前景进行了阐述和讨论。本文对荧光引导生物医学应用中的无洗涤策略进行了综述,以期将荧光引导生物医学应用推向前沿,加快其在生物学和医学领域的广泛应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Wash-free fluorescent tools based on organic molecules: Design principles and biomedical applications

Wash-free fluorescent tools based on organic molecules: Design principles and biomedical applications

Fluorescence-assisted tools based on organic molecules have been extensively applied to interrogate complex biological processes in a non-invasive manner with good sensitivity, high resolution, and rich contrast. However, the signal-to-noise ratio is an essential factor to be reckoned with during collecting images for high fidelity. In view of this, the wash-free strategy is proven as a promising and important approach to improve the signal-to-noise ratio, thus a thorough introduction is presented in the current review about wash-free fluorescent tools based on organic molecules. Firstly, generalization and summarization of the principles for designing wash-free molecular fluorescent tools (WFTs) are made. Subsequently, to make the thought of molecule design more legible, a wash-free strategy is highlighted in recent studies from four diverse but tightly binding aspects: (1) special chemical structures, (2) molecular interactions, (3) bio-orthogonal reactions, (4) abiotic reactions. Meanwhile, biomedical applications including bioimaging, biodetection, and therapy, are ready to be accompanied by. Finally, the prospects for WFTs are elaborated and discussed. This review is a timely conclusion about wash-free strategy in the fluorescence-guided biomedical applications, which may bring WFTs to the forefront and accelerate their extensive applications in biology and medicine.

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CiteScore
17.20
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