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首页> 外文期刊>RSC Advances >Polypyridyl substituted BODIPY derivatives; water switchable imaging probes that exhibit halogen substituent dependent localisation in live cells
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Polypyridyl substituted BODIPY derivatives; water switchable imaging probes that exhibit halogen substituent dependent localisation in live cells

机译:聚吡啶基取代的BODIPY衍生物;在活细胞中表现出卤素取代基依赖性定位的水可转换成像探针

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The synthesis and photophysical properties of water responsive 1,10-phenanthrolyl and 2,2′-bipyridyl substituted BODIPY derivatives prepared as lipid probes for cell imaging are reported. These compounds exhibit intense emission in non-aqueous media that is reversibly extinguished in aqueous media. Halogen substitution at the BODIPY indacene core decreases the emission quantum yields and causes red spectral shifts of emission maxima of the order H > Br > I. The emission was quenched on binding of the phenanthrolyl or bipyridyl to cations Fe2+, Cu2+ and Zn2+. The origin of the water switching effect and the impact of halogen substitution was investigated by modelling the electronic structure of the fluorophore using DFT methods. All compounds showed excellent permeability to live cells and were found, under imaging conditions, to generally exhibit low cytotoxicity. The absence of emission in the aqueous environment facilitated the collection of high contrast images from membranous regions and lipid droplets in live cells. The staining pattern in HeLa cells was found to depend on halogen substitution. Across both bpy and phen derivatives the halogenated probes showed the strongest targeting of lipid droplets within cells whilst the parent unsubstituted compounds were more widely dispersed in the cytoplasm. Resonance Raman imaging was used to map the distribution of probes within the cell and confirmed that the compounds showed strong co-localisation with lipid rich regions of the cell.
机译:报告了水响应的1,10-菲咯基和2,2'-联吡啶基取代的BODIPY衍生物的合成和光物理性质,这些衍生物被制备为用于细胞成像的脂质探针。这些化合物在非水介质中表现出强烈的发射,而在水介质中可逆地熄灭。 BODIPY茚并茂核上的卤素取代降低了发射量子产率,并导致发射最大值H> Br> I的红色光谱偏移。发射反应在菲咯啉或联吡啶与阳离子Fe 2结合后被猝灭+ ,Cu 2 + 和Zn 2 + 。通过使用DFT方法对荧光团的电子结构进行建模,研究了水开关效应的起源和卤素取代的影响。所有化合物均显示出对活细胞的极好的渗透性,并且在成像条件下发现通常显示出低细胞毒性。在水性环境中不存在发射促进了从活细胞中的膜区域和脂质滴收集高对比度图像。发现HeLa细胞中的染色模式取决于卤素取代。跨过bpy和phen衍生物,卤化探针显示出对细胞内脂质滴的最强靶向性,而亲本未取代的化合物则更广泛地分散在细胞质中。共振拉曼成像用于绘制探针在细胞内的分布图,并证实这些化合物与细胞的脂质富集区域表现出强烈的共定位作用。

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