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Novel strategy of constructing fluorescent probe for MAO-B via cascade reaction and its application in imaging MAO-B in human astrocyte 被引量:2

Novel strategy of constructing fluorescent probe for MAO-B via cascade reaction and its application in imaging MAO-B in human astrocyte
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摘要 To detect monoamine oxidase B(MAO-B), the level of which is one of the most important indicators of neurodegenerative diseases such as Parkinson's disease, a new type of cascade reaction based on the formation of coumarin was applied in this research. After the reaction with MAO-B, the protecting group of hydroxyl group in probes(DEAN-MA and DEAB-MA) was removed, and the fluorescence intensity significantly increased(l_(em) 456 nm) as the structure of coumarin was formed subsequently. The probes showed excellent sensitivity and selectivity to MAO-B. The detection limit of DEAN-MA and DEAB-MA were 0.6ng/mL and 0.2 ng/mL, respectively. We succeeded in detecting MAO-B in vitro and imaging it in human astrocyte(U87). To detect monoamine oxidase B(MAO-B), the level of which is one of the most important indicators of neurodegenerative diseases such as Parkinson's disease, a new type of cascade reaction based on the formation of coumarin was applied in this research. After the reaction with MAO-B, the protecting group of hydroxyl group in probes(DEAN-MA and DEAB-MA) was removed, and the fluorescence intensity significantly increased(l_(em) 456 nm) as the structure of coumarin was formed subsequently. The probes showed excellent sensitivity and selectivity to MAO-B. The detection limit of DEAN-MA and DEAB-MA were 0.6ng/mL and 0.2 ng/mL, respectively. We succeeded in detecting MAO-B in vitro and imaging it in human astrocyte(U87).
出处 《Chinese Chemical Letters》 SCIE CAS CSCD 2019年第1期71-74,共4页 中国化学快报(英文版)
基金 financially supported by the National Natural Science Foundation of China (Nos. 21572147 and 21472131)
关键词 MONOAMINE oxidase-B Fluorescent probe Covalent-assembly COUMARIN Cell IMAGING Monoamine oxidase-B Fluorescent probe Covalent-assembly Coumarin Cell imaging
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