Yang Lin, Qu Weisong, Zhang Xiao, Hang Yandi, Hua Jianli
Key Laboratory for Advanced Materials and Institute of Fine Chemicals, East China University of Science and Technology, 130 Meilong Road, Shanghai 200237, China.
Analyst. 2015 Jan 7;140(1):182-9. doi: 10.1039/c4an01732c.
A molecular chemodosimeter , with a naphthalimide fluorophore connected to a newly designed phenazine energy acceptor, for the selective detection of cysteine was effectively synthesized. featured efficient intramolecular fluorescence resonance energy transfer (FRET) based on spectral overlap between the emission of naphthalimide and the absorption of phenazine. A cystamine chain with a S-S bond was applied to play the role of recognition moiety and the linker part. The specific reaction between the biological thiols and gave rise to an obvious fluorescence intensity enhancement at 540 nm, which is induced by cleavage of the disulfide bond followed by elimination of the FRET effect. High sensitivity and selectivity for cysteine over homocysteine and glutathione were also achieved. In addition, upon excitation at 400 nm, a relatively weak NIR emission provided an internal standard making a promising ratiometric sensor for cellular detection of cysteine.
一种分子化学计量器被有效合成,它带有连接到新设计的吩嗪能量受体上的萘酰亚胺荧光团,用于选择性检测半胱氨酸。其基于萘酰亚胺发射光谱与吩嗪吸收光谱的光谱重叠,具有高效的分子内荧光共振能量转移(FRET)。一条带有S-S键的胱胺链被用作识别部分和连接部分。生物硫醇之间的特异性反应导致在540nm处荧光强度明显增强,这是由二硫键断裂并消除FRET效应所诱导的。该化学计量器还实现了对半胱氨酸相对于同型半胱氨酸和谷胱甘肽的高灵敏度和高选择性。此外,在400nm激发下,相对较弱的近红外发射提供了一个内标,使其成为用于细胞内半胱氨酸检测的有前景的比率传感器。