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Synthetic Fluorophores for Visualizing Biomolecules in Living Systems

机译:用于可视化生命系统中生物分子的合成荧光团

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摘要

The last decade has witnessed significant advance in the imaging of living systems using fluorescent markers. This progress has been primarily associated with the discovery of different spectral variants of fluorescent proteins. However, the fluorescent protein technology has its own limitations and, in some cases, the use of low-molecular-weight fluorophores is preferable. In this review, we describe the arsenal of synthetic fluorescent tools that are currently in researchers’ hands and span virtually the entire spectrum, from the UV to visible and, further, to the near-infrared region. An overview of recent advances in site-directed introduction of synthetic fluorophores into target cellular objects is provided. Application of these fluorescent probes to the solution of a wide range of biological problems, in particular, to the determination of local ion concentrations and pH in living systems, is discussed.
机译:过去十年见证了使用荧光标记物对生命系统成像的显着进步。该进展主要与发现荧光蛋白的不同光谱变体有关。然而,荧光蛋白技术具有其自身的局限性,并且在某些情况下,优选使用低分子量荧光团。在这篇评论中,我们描述了目前在研究人员手中的合成荧光工具库,它们涵盖了从紫外线到可见光,再到近红外区域的几乎整个光谱。提供了将合成荧光团定向引入靶细胞物体的最新进展的概述。讨论了这些荧光探针在解决各种生物学问题上的应用,特别是在确定生命系统中局部离子浓度和pH值方面的应用。

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