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Near-infrared and lysosome-targetable fluorescent probe based on phenoxazinium for hydrogen peroxide detection

机译:基于苯恶嗪鎓的近红外和可靶向溶酶体的荧光探针用于过氧化氢检测

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A new near-infrared and lysosome-targetable fluorescent probe based on phenoxazinium was designed and prepared for hydrogen peroxide detection. This probe used phenoxazinium as the fluorophore acceptor and a methyl(phenyl)sulfane unit as the recognition group through a photoinduced electron transfer mechanism. With the addition of H2O2, the methyl(phenyl)sulfane unit of the probe was oxidized to a sulfoxide unit, causing enhanced fluorescence intensity at 676 nm due to the inhibition of photoinduced electron transfer. This probe not only showed competitive sensitivity, good selectivity, and a relatively fast response time, but also selectively targeted lysosomes of HeLa cells, indicating that it could be applied to detecting and visualizing H2O2 in HeLa cell lysosomes.
机译:设计并制备了一种新的基于苯恶嗪的近红外和可靶向溶酶体的荧光探针,用于过氧化氢检测。该探针通过光致电子转移机理,使用苯恶嗪鎓作为荧光团受体,使用甲基(苯基)硫烷单元作为识别基团。随着H 2 O 2的加入,探针的甲基(苯基)亚砜单元被氧化为亚砜单元,由于抑制了光诱导的电子转移,导致在676 nm处的荧光强度增强。该探针不仅显示出竞争敏感性,良好的选择性和相对较快的响应时间,而且还选择性靶向HeLa细胞的溶酶体,表明它可用于检测和可视化HeLa细胞溶酶体中的H2O2。

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