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基于膦烯的荧光团照亮增强生物成像之路。

Illuminating the Path to Enhanced Bioimaging by Phosphole-based Fluorophores.

作者信息

Schenk Mareike, König Nils, Hey-Hawkins Evamarie, Beck-Sickinger Annette G

机构信息

Leipzig University, Faculty of Life Sciences, Institute of Biochemistry, Brüderstrasse 34, 04103, Leipzig, Germany.

Leipzig University, Faculty of Chemistry and Mineralogy, Institute of Inorganic Chemistry, Johannisallee 29, 04103, Leipzig, Germany.

出版信息

Chembiochem. 2024 Mar 1;25(5):e202300857. doi: 10.1002/cbic.202300857. Epub 2024 Feb 8.

Abstract

As the research of biological systems becomes increasingly complex, there is a growing demand for fluorophores with a diverse range of wavelengths. In this study, we introduce phosphole-based fluorophores that surpass existing options like dansyl chloride. The reactive S-Cl bond in chlorosulfonylimino-5-phenylphosphole derivatives allows rapid and direct coupling to peptides making the fluorophores easily introducible to peptides. This coupling process occurs under mild conditions, demonstrated for [F ,P ]-NPY and its shorter analogues. Peptides linked with our fluorophores exhibit similar receptor activation to the control peptide, while maintaining high stability and low toxicity, making them ideal biolabeling reagents. In fluorescence microscopy experiments, they can be easily visualized even at low concentrations, without suffering from the typical issue of bleaching. These phosphole-based fluorophores represent a significant leap forward in the field. Their versatility, ease of modification, superior performance, and applicability in biological labeling make them a promising choice for researchers seeking advanced tools to unravel the details of complex biological systems.

摘要

随着生物系统研究变得日益复杂,对具有多种波长的荧光团的需求也在不断增长。在本研究中,我们引入了基于膦的荧光团,其性能超越了诸如丹磺酰氯等现有荧光团。氯磺酰基亚氨基-5-苯基膦衍生物中的活性S-Cl键允许与肽快速直接偶联,从而使荧光团易于引入肽中。这种偶联过程在温和条件下发生,[F,P]-NPY及其较短类似物已得到证明。与我们的荧光团连接的肽表现出与对照肽相似的受体激活,同时保持高稳定性和低毒性,使其成为理想的生物标记试剂。在荧光显微镜实验中,即使在低浓度下也能轻松观察到它们,而不会出现典型的光漂白问题。这些基于膦的荧光团代表了该领域的重大飞跃。它们的多功能性、易于修饰、卓越性能以及在生物标记中的适用性,使其成为寻求先进工具以揭示复杂生物系统细节的研究人员的一个有前途的选择。

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