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Reversible ratiometric detection of highly reactive hydropersulfides using a FRET-based dual emission fluorescent probe

机译:使用基于FRET的双发射荧光探针可逆比例检测高反应性氢过硫化物

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摘要

Hydropersulfide (R–SSH) is an important class of reactive sulfur species (RSS) involved in a variety of physiological processes in mammals. A fluorescent probe capable of real-time detection of hydropersulfide levels in living cells would be a versatile tool to elucidate its roles in cell signalling and redox homeostasis. In this paper, we report a ratiometric fluorescent probe for hydropersulfide sensing, based on a fluorescence resonance energy transfer (FRET) mechanism. This sensing mechanism involves a nucleophilic reaction of a hydropersulfide with the pyronine-unit of the probe, which modulates the intramolecular FRET efficiency to induce a dual-emission change. The reversible nature of this reaction allows us to detect increases and decreases of hydropersulfide levels in a real-time manner. The probe fluorometrically sensed highly reactive hydropersulfides, such as H2S2 and Cys-SSH, while the fluorescence response to biologically abundant cysteine and glutathione was negligible. Taking advantage of the reversible and selective sensing properties, this probe was successfully applied to the ratiometric imaging of concentration dynamics of endogenously produced hydropersulfides in living cells.
机译:氢过硫化物(R–SSH)是一类重要的反应性硫物质(RSS),涉及哺乳动物的各种生理过程。能够实时检测活细胞中氢过硫化物水平的荧光探针将是一种通用工具,可阐明其在细胞信号传导和氧化还原稳态中的作用。在本文中,我们报告了一种基于荧光共振能量转移(FRET)机理的用于氢过硫化物传感的比例式荧光探针。该感测机制涉及氢过硫化物与探针的吡喃酮单元的亲核反应,该反应调节分子内FRET效率以诱导双重发射变化。该反应的可逆性质使我们能够实时检测氢过硫化物水平的升高和降低。探针通过荧光检测可检测到高反应性氢过硫化物,例如H2S2和Cys-SSH,而对生物丰富的半胱氨酸和谷胱甘肽的荧光反应则可忽略不计。利用可逆和选择性的传感特性,该探针已成功应用于活细胞中内生产生的氢过硫化物浓度动态的比例成像。

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