Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, School of Materials Science and Engineering, University of Jinan, Jinan, Shandong 250022, PR China.
Institute of Fluorescent Probes for Biological Imaging, School of Chemistry and Chemical Engineering, School of Materials Science and Engineering, University of Jinan, Jinan, Shandong 250022, PR China.
Anal Chim Acta. 2017 Aug 15;981:86-93. doi: 10.1016/j.aca.2017.05.016. Epub 2017 Jun 1.
Biothiols, as reactive sulfur species (RSS), play important roles in human physiology, and they have a close connection of generation and metabolism pathways among of them. It is challenging to discriminate biothiols from each other due to the similar chemical structures and properties of them. Herein, we develop a fluorescent hybrid dyad (CS-NBD) for efficiently discriminating cysteine (Cys)/homocysteine (Hcy) from glutathione (GSH) and hydrogen sulfide (HS) by a dual-channel detection method. CS-NBD performs inherently no fluorescence in ranging from visible to near infrared region. However, upon addition of Cys (2-150 μM)/Hcy (2-200 μM), CS-NBD generates significant fluorescence enhancement in two distinct emission bands (Green-Red), while encounter of GSH (2-100 μM) or HS (2-70 μM) induces the fluorescence increase only in the red channel. The detection limit was determined to be 0.021 μM for Cys, 0.037 μM for Hcy, 0.028 μM for GSH, and 0.015 μM for HS, respectively (S/N = 3). The interval distance between two emission bands is up to 163 nm, which is favourable to acquire the accurate data in measurement due to the reducing of crosstalk signals. CS-NBD is also successfully applied to distinguish Cys/Hcy in cellular context by dual-color fluorescence imaging.
生物硫醇作为活性硫物种 (RSS),在人体生理中发挥着重要作用,它们之间的生成和代谢途径密切相关。由于它们的化学结构和性质相似,因此很难将生物硫醇彼此区分开来。在这里,我们开发了一种荧光杂合二聚体 (CS-NBD),通过双通道检测方法,可有效区分半胱氨酸 (Cys)/同型半胱氨酸 (Hcy) 与谷胱甘肽 (GSH) 和硫化氢 (HS)。CS-NBD 在可见到近红外区域范围内本身没有荧光。然而,当加入 Cys(2-150 μM)/Hcy(2-200 μM)时,CS-NBD 在两个独特的发射带(绿-红)中产生显著的荧光增强,而 GSH(2-100 μM)或 HS(2-70 μM)的存在仅会导致红色通道中的荧光增加。Cys 的检测限为 0.021 μM,Hcy 为 0.037 μM,GSH 为 0.028 μM,HS 为 0.015 μM(S/N = 3)。两个发射带之间的间隔距离高达 163nm,这有利于在测量中获得准确的数据,因为减少了串扰信号。CS-NBD 还成功地应用于通过双荧光成像来区分细胞环境中的 Cys/Hcy。