A dual-channel fluorescent chemosensor for discriminative detection of glutathione based on functionalized carbon quantum dots

碳量子点 荧光 纳米探针 检出限 化学 结合 半胱氨酸 光化学 谷胱甘肽 组合化学 色谱法 生物化学 量子力学 物理 数学分析 数学
作者
Yuanyuan Huang,Jin Zhou,Hui Feng,Jieyu Zheng,Huimin Ma,Weidong Liu,Cong Tang,Hang Ao,Meizhi Zhao,Zhaosheng Qian
出处
期刊:Biosensors and Bioelectronics [Elsevier BV]
卷期号:86: 748-755 被引量:61
标识
DOI:10.1016/j.bios.2016.07.081
摘要

A convenient, fluorescent dual-channel chemosensor on the basis of bis(3-pyridylmethyl)amine-functionalized carbon quantum dots (BPMA-CQDs) nanoprobe was constructed, and it can discriminatively detect glutathione from its analogues cysteine and homocysteine based on two distinctive strategies. Two distinct fluorescence responses of BPMA-CQDs probe to Cu(II) and Ag(I) were identified and further employed to achieve selective detection of Cu(II) and Ag(I) respectively. Based on the BPMA-CQDs/Cu(II) conjugate, discriminative detection of GSH was achieved in terms of correlation between the amounts of GSH and fluorescence recovery. The addition of GSH into BPMA-CQDs/Cu(II) system induces the reduction of Cu(II) to Cu(I), which could efficiently block PET process resulting in the following fluorescence recovery. Based on the BPMA-CQDs/Ag(I) conjugate, GSH assay could also be established on the basis of fluorescence response to GSH. The introduction of GSH into the preceding system triggers the competitive coordination to Ag(I) between BPMA and GSH, and silver ions are finally taken away by GSH from the probe, where the fluorescence is restored to its original weak state. Both of the detection strategies can achieve discriminative detection of GSH from Cys and Hcy. The assays showed good stability and repeatability, and covered a broad linear range of up to 13.3μM with a lowest detection limit of 42.0nM. Moreover, both of them were utilized to monitor GSH level in live cells.

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