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Overview of Syntheses and Molecular-Design Strategies for Tetrazine-Based Fluorogenic Probes

机译:基于四嗪类荧光探针的合成与分子设计策略概述

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摘要

Various bioorthogonal chemistries have been used for fluorescent imaging owing to the advantageous reactions they employ. Recent advances in bioorthogonal chemistry have revolutionized labeling strategies for fluorescence imaging, with inverse electron demand Diels–Alder (iEDDA) reactions in particular attracting recent attention owing to their fast kinetics and excellent specificity. One of the most interesting features of the iEDDA labeling strategy is that tetrazine-functionalized dyes are known to act as fluorogenic probes. In this review, we will focus on the synthesis, molecular-design strategies, and bioimaging applications of tetrazine-functionalized fluorogenic probes. Traditional Pinner reaction and “Pinner-like” reactions for tetrazine synthesis are discussed here, as well as metal-catalyzed C–C bond formations with convenient tetrazine intermediates and the fabrication of tetrazine-conjugated fluorophores. In addition, four different quenching mechanisms for tetrazine-modified fluorophores are presented.
机译:由于它们采用的有利反应,各种生物正交化学已被用于荧光成像。生物正交化学的最新进展已经彻底改变了荧光成像标记策略,反向电子需求Diels-Alder(IEDDA)特别是由于其快速动力学和优异的特异性而吸引最近的关注。 IEDDA标签策略的最有趣特征之一是已知四嗪官能化染料作为荧光探针。在本综述中,我们将专注于四斋官能化荧光探针的合成,分子设计策略和生物体积应用。这里讨论了传统的Pinner反应和“像素样”反应的四嗪合成,以及具有方便四嗪中间体的金属催化的C-C键组和四嗪缀合的荧光团的制造。此外,提出了四种不同的四嗪改性荧光团的猝灭机制。

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