Department of Chemical Biology, School of Pharmaceutical Sciences, Peking University, Beijing 100083, China.
Anal Chim Acta. 2013 Sep 2;793:79-85. doi: 10.1016/j.aca.2013.07.037. Epub 2013 Jul 26.
In this work, we reported a new, simple and sensitive method for determination of N-acetylcysteine (NAC) based on quenching of the red fluorescence of oligonuleotide-protected silver nanoculsters (Ag NCs) with the quantum yield of 68.3±0.3%. This method was successfully used for the assay of NAC granules presenting a linear range from 100 nM to 1200 nM (LOD of 50 nM) with minimal interferences from potential coexisting substances. It is for the first time that quenching performance of the thiol-containing compound was found to follow a non-linear Stern-Volmer profile, indicative of a complicated quenching mechanism with static quenching dominating, in which DNA-template of Ag NCs was partly replaced by NAC, as elucidated by spectral investigations. This study extended the analytical application of silver nanoclusters as well as provided a more insightful understanding of the quenching mechanism of thiol-compounds on the fluorescence of Ag NCs.
在这项工作中,我们报道了一种新的、简单而灵敏的测定 N-乙酰半胱氨酸(NAC)的方法,该方法基于寡核苷酸保护的银纳米簇(Ag NCs)的红色荧光的猝灭,量子产率为 68.3±0.3%。该方法成功地用于测定 NAC 颗粒,其线性范围为 100 nM 至 1200 nM(LOD 为 50 nM),几乎没有潜在共存物质的干扰。这是首次发现含巯基化合物的猝灭性能遵循非线性 Stern-Volmer 曲线,表明存在一种复杂的猝灭机制,其中静态猝灭占主导地位,通过光谱研究表明,Ag NCs 的 DNA 模板部分被 NAC 取代。这项研究扩展了银纳米簇的分析应用,并提供了对巯基化合物对 Ag NCs 荧光猝灭机制的更深入理解。