Roßmann Kilian, Akkaya Kerem C, Poc Pascal, Charbonnier Corentin, Eichhorst Jenny, Gonschior Hannes, Valavalkar Abha, Wendler Nicolas, Cordes Thorben, Dietzek-Ivanšić Benjamin, Jones Ben, Lehmann Martin, Broichhagen Johannes
Leibniz-Forschungsinstitut für Molekulare Pharmakologie Berlin Germany
Leibniz Institute for Photonic Technology Jena e.V. (Leibniz-IPHT), Research Department Functional Interfaces Jena Germany.
Chem Sci. 2022 Jun 28;13(29):8605-8617. doi: 10.1039/d1sc06466e. eCollection 2022 Jul 29.
Rhodamine fluorophores are setting benchmarks in fluorescence microscopy. Herein, we report the deuterium (d12) congeners of tetramethyl(silicon)rhodamine, obtained by isotopic labelling of the four methyl groups, show improved photophysical parameters ( brightness, lifetimes) and reduced chemical bleaching. We explore this finding for SNAP- and Halo-tag labelling in live cells, and highlight enhanced properties in several applications, such as fluorescence activated cell sorting, fluorescence lifetime microscopy, stimulated emission depletion nanoscopy and single-molecule Förster-resonance energy transfer. We finally extend this idea to other dye families and envision deuteration as a generalizable concept to improve existing and to develop new chemical biology probes.
罗丹明荧光团正在为荧光显微镜设定基准。在此,我们报告了通过对四个甲基进行同位素标记获得的四甲基(硅)罗丹明的氘代(d12)同系物,其显示出改善的光物理参数(亮度、寿命)并减少了化学漂白。我们在活细胞中探索了用于SNAP和Halo标签标记的这一发现,并强调了其在几种应用中的增强特性,如荧光激活细胞分选、荧光寿命显微镜、受激发射损耗纳米显微镜和单分子Förster共振能量转移。我们最终将这一想法扩展到其他染料家族,并设想氘代作为一个可推广的概念,以改进现有并开发新的化学生物学探针。