School of Chemical and Material Engineering, Jiangnan University, Wuxi 214122, PR China.
Talanta. 2011 Jan 15;83(3):943-7. doi: 10.1016/j.talanta.2010.10.047. Epub 2010 Nov 4.
The importance of cysteine (Cys) in biological systems has stimulated a great deal of efforts in the development of analytical methods for the determination of this amino acid. In this work, a novel fluorescent probe for Cys based on citrate (Cit)-capped CdS quantum dots (QDs) is reported. The Cit-capped CdS QDs fluorescent probe offers good sensitivity and selectivity for detecting Cys. A good linear relationship was obtained from 1.0 × 10(-8)mol L(-1) to 5.0 × 10(-5)mol L(-1) for Cys. The detection limit was calculated as 5.4 × 10(-9)mol L(-1). The proposed method was applied to detect Cys in human urine samples, which showed satisfactory results. This assay is based on both the lability of Cit and the strong affinity of thiols to the surface of CdS QDs. The addition of Cys improved the passivation of the surface traps of CdS QDs and enhanced the fluorescence intensity.
半胱氨酸(Cys)在生物系统中的重要性激发了人们开发分析方法来测定这种氨基酸的大量努力。在这项工作中,报道了一种基于柠檬酸盐(Cit)封端的 CdS 量子点(QDs)的新型 Cys 荧光探针。Cit 封端的 CdS QDs 荧光探针对 Cys 的检测具有良好的灵敏度和选择性。对于 Cys,从 1.0×10(-8)mol L(-1)到 5.0×10(-5)mol L(-1) 得到了良好的线性关系。检测限计算为 5.4×10(-9)mol L(-1)。该方法已应用于人尿样中 Cys 的检测,结果令人满意。该测定法基于 Cit 的不稳定性和巯基与 CdS QDs 表面的强亲和力。Cys 的加入改善了 CdS QDs 表面陷阱的钝化作用,并增强了荧光强度。