State Key Laboratory of Chemo/Bio-sensing & Chemometrics, College of Chemistry & Chemical Engineering, Hunan University, Changsha 410082, People's Republic of China.
Methods Appl Fluoresc. 2018 Dec 17;7(1):014002. doi: 10.1088/2050-6120/aae9c4.
Hydrogen sulfide is an important gasotransmitter that exhibits various functions in physiological processes. We present a ratiometric fluorescence probe (SN-N) for HS by functionalizing naphthalene imide with 4-(azidomethyl)benzene as a HS recognition moiety and morpholine moiety as a lysosomal targeting unit. After reaction with HS, the azido moiety is reduced to amine group, and the probe releases the self-immolative linker and regenerates the fluorophore with internal charge transfer effect. SN-N is responsive to HS in a ratiometric mode, exhibiting excellent sensitivity and high selectivity. The probe is demonstrated to be localized in lysosomes with high specificity. More importantly, SN-N is successfully demonstrated to image lysosomal HS in a ratiometric manner. Our design provides a novel tool to image HS in living cells that would hold great potential in exploring various HS-related physiological and pathological cellular processes.
硫化氢是一种重要的气体信号分子,在生理过程中表现出多种功能。我们通过将萘酰亚胺与 4-(叠氮甲基)苯反应,将其功能化为 HS 的比率荧光探针 (SN-N),将叠氮基作为 HS 识别部分,将吗啉部分作为溶酶体靶向单元。与 HS 反应后,叠氮基被还原为胺基,探针释放自毁性连接子,并通过内部电荷转移效应重新生成荧光团。SN-N 以比率模式响应 HS,表现出优异的灵敏度和高选择性。该探针被证明能够以高特异性定位于溶酶体中。更重要的是,SN-N 成功地以比率方式对溶酶体 HS 进行成像。我们的设计为在活细胞中成像 HS 提供了一种新工具,这将在探索各种与 HS 相关的生理和病理细胞过程中具有巨大潜力。