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A new structure–activity relationship for cyanine dyes to improve photostability and fluorescence properties for live cell imaging

机译:花青染料的新的结构-活性关系可改善活细胞成像的光稳定性和荧光特性

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A new set of cyanine-indole dyes was synthesized, characterized by optical and cytotoxic properties and subsequently applied for live cell imaging. Furthermore, these dyes were postsynthetically linked covalently to the 2′-position of uridine anchors in presynthesized oligonucleotides using the copper( I )-catalyzed azide–alkyne cycloaddition in order to evaluate their photostability and imaging properties in living cells. The nucleophilicity at position C-2 of the indole part of the dyes was elucidated as key for a new structure–activity relationship that served as a rational guide to improve the photostability and optical properties of these green-emitting dyes for live cell imaging of nucleic acids. While the photostability rises exponentially with decreasing nucleophilicity, thermal bleaching experiments confirmed an opposite trend supposing that the superoxide radical anion is mainly responsible for the photobleaching of the dyes. Furthermore, the cytotoxicities of the dyes were tested in HeLa cells and moderate to low LD _(50) values were obtained. This interdisciplinary strategy allowed us to identify one dye with excellent optical properties and even better photostability and decreased cytotoxicity compared to a cyanine-indole dye that bears an additional cyclooctatetraene group as a triplet state quencher.
机译:合成了一组新的花青-吲哚染料,其具有光学和细胞毒性特性,随后用于活细胞成像。此外,使用铜(I)催化的叠氮化物-炔烃环加成反应将这些染料与合成后的寡核苷酸中尿苷锚的2'-位共价后连接,以评估其在活细胞中的光稳定性和成像特性。阐明了吲哚部分C-2位的亲核性是新的结构-活性关系的关键,该关系可作为合理指导,以改善这些绿色发光染料的活细胞成像的光稳定性和光学性质。酸。虽然光稳定性随亲核性的降低呈指数增长,但热漂白实验证实了相反的趋势,认为超氧自由基阴离子主要负责染料的光漂白。此外,在HeLa细胞中测试了染料的细胞毒性,并获得了中低LD_(50)值。这种跨学科的策略使我们能够鉴定出一种具有优异光学性能,甚至具有更好的光稳定性和降低的细胞毒性的染料,而该染料与带有一个额外的环辛酸酯基的三重态猝灭剂相比,花菁-吲哚染料更是如此。

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