Bioorthogonally activated probes for precise fluorescence imaging.

IF 40.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY Chemical Society Reviews Pub Date : 2024-11-18 DOI:10.1039/d3cs00883e
Youxin Fu, Xing Zhang, Luling Wu, Miaomiao Wu, Tony D James, Run Zhang
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Abstract

Over the past two decades, bioorthogonal chemistry has undergone a remarkable development, challenging traditional assumptions in biology and medicine. Recent advancements in the design of probes tailored for bioorthogonal applications have met the increasing demand for precise imaging, facilitating the exploration of complex biological systems. These state-of-the-art probes enable highly sensitive, low background, in situ imaging of biological species and events within live organisms, achieving resolutions comparable to the size of the biomolecule under investigation. This review provides a comprehensive examination of various categories of bioorthogonally activated in situ fluorescent labels. It highlights the intricate design and benefits of bioorthogonal chemistry for precise in situ imaging, while also discussing future prospects in this rapidly evolving field.

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用于精确荧光成像的生物正交激活探针。
在过去二十年里,生物正交化学经历了令人瞩目的发展,对生物学和医学的传统假设提出了挑战。为生物正交应用量身定制的探针设计取得了最新进展,满足了对精确成像日益增长的需求,促进了对复杂生物系统的探索。这些最先进的探针能够对生物物种和活体生物体内的事件进行高灵敏度、低背景的原位成像,实现与所研究生物分子大小相当的分辨率。本综述全面探讨了各类生物原位激活荧光标签。它强调了生物正交化学在精确原位成像方面的复杂设计和优势,同时还讨论了这一快速发展领域的未来前景。
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来源期刊
Chemical Society Reviews
Chemical Society Reviews 化学-化学综合
CiteScore
80.80
自引率
1.10%
发文量
345
审稿时长
6.0 months
期刊介绍: Chemical Society Reviews is published by: Royal Society of Chemistry. Focus: Review articles on topics of current interest in chemistry; Predecessors: Quarterly Reviews, Chemical Society (1947–1971); Current title: Since 1971; Impact factor: 60.615 (2021); Themed issues: Occasional themed issues on new and emerging areas of research in the chemical sciences
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Recent advances in peptide macrocyclization strategies. A critical review on Li-ion transport, chemistry and structure of ceramic-polymer composite electrolytes for solid state batteries. Bioorthogonally activated probes for precise fluorescence imaging. Back cover Daisy chain architectures: from discrete molecular entities to polymer materials
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