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首页> 外文期刊>Journal of Materials Chemistry, B. materials for biology and medicine >Dual-site lysosome-targeted fluorescent probe for separate detection of endogenous biothiols and SO2 in living cells
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Dual-site lysosome-targeted fluorescent probe for separate detection of endogenous biothiols and SO2 in living cells

机译:双位点溶酶体靶向荧光探针,用于单独检测活细胞中的内源性生物素和SO2

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摘要

Biothiols and SO2 play crucial roles in many physiological and pathological processes. To unravel their complicated interrelationship and cellular cross-talk, it would be highly desirable to develop single-molecule fluorescent probes that can selectively detect biothiols and SO2 via different emission channels. Here, a novel chromenylium derivative, BPO-Py-diNO(2), based on the rational design of dual recognition sites for biothiols and SO2 selectively and sensitively responded to biothiols with near-infrared fluorescence, and to SO2 with green fluorescence. The emission shift for the two channels was 170 nm. BPO-Py-diNO(2) was selectively enriched in lysosomes. It could also be used to evaluate dual-channel imaging of endogenous biothiols and SO2 in living HeLa cells, and it could be used for monitoring the mutual interconversion of biothiols and SO2.
机译:生物醇和SO2在许多生理和病理过程中起重要作用。 为了解开其复杂的相互关系和细胞串扰,非常希望开发单分子荧光探针,其可以通过不同的发射通道选择性地检测生物离子和SO 2。 这里,基于Biothiols和SO2的双识别位点的合理设计,一种新的铬基烯基衍生物,BPO-PY-DINO(2)选择性地和敏感地响应具有近红外荧光的生物醇和绿色荧光。 两个通道的发射移位为170nm。 在溶酶体中选择性地富集BPO-PY-DINO(2)。 它还可以用于评估活性HeLa细胞中内源性生物噻噻枯草和SO2的双通道成像,可用于监测生物醇和SO2的相互互连。

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