Chemistry and Chemical Engineering Department, Taiyuan Institute of Technology, Taiyuan, Shanxi, China.
School of Chemical Engineering and Technology, North University of China, Taiyuan, Shanxi, China.
Luminescence. 2019 Nov;34(7):767-773. doi: 10.1002/bio.3672. Epub 2019 Jul 2.
Taking advantage of the compelling properties of d-penicillamine (d-PA) combined with copper, a method for the sensitive and selective determination of d-PA was established using copper nanocluster (Cu NC)-based fluorescence enhancement. d-PA molecules containing a thiol compound showed a strong tendency to combine with the surface of Cu NCs, causing the re-dispersion of nanoclusters and therefore fluorescence intensity was enhanced. Fluorescence enhancement efficiency of Cu NCs induced by d-PA was linear, with the d-PA concentration varying from 0.6-30 μg ml (R = 0.9952) and with a detection limit of 0.54 μg ml . d-PA content in human urine samples was detected with recoveries of 104.8-112.99%. Fluorescence-enhanced determination of d-PA using Cu NCs was established for the first time and this rapid, easy and sensitive method should attract much attention for this application.
利用 D-青霉胺(d-PA)与铜结合的强特性,建立了一种基于铜纳米簇(Cu NC)荧光增强的灵敏选择性测定 D-青霉胺的方法。含有巯基化合物的 D-PA 分子表现出与 Cu NC 表面强烈结合的趋势,导致纳米簇重新分散,因此荧光强度增强。d-PA 诱导的 Cu NCs 的荧光增强效率呈线性关系,d-PA 浓度在 0.6-30μg/ml 范围内(R=0.9952),检测限为 0.54μg/ml。用该方法检测人尿样中的 d-PA,回收率为 104.8-112.99%。首次建立了使用 Cu NCs 增强荧光测定 D-PA 的方法,该方法快速、简便、灵敏,应引起人们对此应用的关注。