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基于丰富颜色演变的荧光试纸传感器,用于快速、直观地监测人体尿液中的内源性 Cu。

Profuse color-evolution-based fluorescent test paper sensor for rapid and visual monitoring of endogenous Cu in human urine.

机构信息

School of Pharmacy, Nanjing Medical University, Nanjing, Jiangsu 211166, China.

School of Pharmacy, Nanjing Medical University, Nanjing, Jiangsu 211166, China.

出版信息

Biosens Bioelectron. 2018 Jan 15;99:332-337. doi: 10.1016/j.bios.2017.07.072. Epub 2017 Jul 31.

DOI:10.1016/j.bios.2017.07.072
PMID:28787679
Abstract

The fluorescent paper for colorimetric detection of metal ions has been widely fabricated using various sensing probes, but it still remains an elusive task to design a test paper with multicolor variation with target dosages for accurate determination. Herein, we report a profuse color-evolution-based fluorescent test paper sensor for rapid and visual monitoring of Cu in human urine by printing tricolor probe onto filter paper. The tricolor probe consists of blue-emission carbon dots (bCDs), green-emission quantum dots (gQDs) and red-emission quantum dots (rQDs), which is based on the principle that the fluorescence of gQDs and rQDs are simultaneously quenched by Cu, whereas the bCDs as the photostable internal standard is insensitive to Cu. Upon the addition of different amounts of Cu, the ratiometric fluorescence intensity of the tricolor probe continuously varied, leading to color changes from shallow pink to blue with a detection limit of 1.3nM. When the tricolor probe solution was printed onto a sheet of filter paper, as-obtained test paper displayed a more profuse color evolution from shallow pink to light salmon to dark orange to olive drab to dark olive green to slate blue to royal blue and to final dark blue with the increase of Cu concentration compared with dual-color probe-based test paper, and dosage scale as low as 6.0nM was clearly discriminated. The sensing test paper is simple, rapid and inexpensive, and serves as a visual platform for ultrasensitive monitoring of endogenous Cu in human urine.

摘要

用于金属离子比色检测的荧光试纸已经通过各种传感探针广泛制备,但是设计一种具有多色变化且针对目标剂量用于准确测定的试纸仍然是一项艰巨的任务。在此,我们报道了一种基于丰富颜色演变的荧光试纸传感器,通过将三色探针打印到滤纸上,用于快速和可视化监测人尿中的 Cu。三色探针由蓝色发射碳点(bCDs)、绿色发射量子点(gQDs)和红色发射量子点(rQDs)组成,其原理是 gQDs 和 rQDs 的荧光同时被 Cu 猝灭,而 bCDs 作为光稳定的内标对 Cu 不敏感。随着 Cu 加入量的不同,三色探针的相对荧光强度连续变化,导致颜色从浅粉色变为蓝色,检测限为 1.3nM。当三色探针溶液打印到滤纸上时,与基于双色探针的试纸相比,获得的试纸显示出更丰富的颜色演变,从浅粉色到浅鲑鱼色到深橙色到橄榄褐色到深橄榄绿色到石板蓝色到皇家蓝色,最终变为深蓝色,Cu 浓度的增加可清晰区分,甚至低至 6.0nM 的剂量也可明显区分。传感试纸简单、快速且廉价,可作为用于人尿中内源性 Cu 的超灵敏监测的可视化平台。

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