School of Chemistry and Chemical Engineering, Qufu Normal University, Qufu, Shandong, 273165, People's Republic of China.
Key Laboratory of Optic-electric Sensing and Analytical Chemistry for Life Science, MOE, Shandong Key Laboratory of Biochemical Analysis, College of Chemistry and Molecular Engineering, Qingdao University of Science and Technology, Qingdao, Shandong, 266042, People's Republic of China.
Mikrochim Acta. 2021 Jul 16;188(8):259. doi: 10.1007/s00604-021-04914-x.
A novel ratiometric fluorescence nanoprobe based on carbon dots (CDs) and Cu nanoclusters (CuNCs) was designed for the label-free determination of uric acid (UA). The metal-organic framework (MOF) encapsulated CuNCs (ZIF-CuNC), and nitrogen-doped CDs can self-assemble into well-defined spherical nanocomposites (CD@ZIF-CuNC) due to physical adsorption. Under the excitation wavelength of 360 nm, the CD@ZIF-CuNC nanocomposites exhibit two evident intrinsic emissions peaked at 460 nm (CDs) and 620 nm (ZIF-CuNC), respectively. In the presence of HO, the fluorescence of CD@ZIF-CuNC at 620 nm is quenched remarkably within 1 min, while little effect on the emission at 460 nm is observed. Therefore, taking the fluorescence at 620 nm as the report signal and 460 nm as the reference signal, ratiometric quantitative determination of HO was achieved with a linear range of 1-100 μM and a detection limit of 0.30 μM. The CD@ZIF-CuNC nanoprobe was successfully applied to the determination of UA that is catalyzed by uricase to produce HO, obtaining the linear range of 1-30 μM and the detection limit of 0.33 μM. Eventually, this strategy has been successfully applied to the determination of UA in human urine samples. A novel and convenient CDs@ZIF-CuNCs-based nanoplatform was constructed for sensitive ratiometric fluorescence determination of UA.
一种基于碳点(CDs)和铜纳米簇(CuNCs)的新型比率荧光纳米探针被设计用于尿酸(UA)的无标记测定。金属-有机骨架(MOF)封装的 CuNCs(ZIF-CuNC)和氮掺杂的 CDs 可以由于物理吸附而自组装成具有良好定义的球形纳米复合材料(CD@ZIF-CuNC)。在 360nm 的激发波长下,CD@ZIF-CuNC 纳米复合材料分别在 460nm(CDs)和 620nm(ZIF-CuNC)处显示出两个明显的本征发射峰。在 HO 的存在下,CD@ZIF-CuNC 在 620nm 处的荧光在 1 分钟内显著猝灭,而在 460nm 处的发射几乎没有影响。因此,以 620nm 处的荧光作为报告信号,以 460nm 处的荧光作为参考信号,实现了 HO 的比率定量测定,线性范围为 1-100μM,检测限为 0.30μM。CD@ZIF-CuNC 纳米探针成功应用于尿酸酶催化产生 HO 的 UA 的测定,获得了 1-30μM 的线性范围和 0.33μM 的检测限。最终,该策略成功应用于人尿样中 UA 的测定。构建了一种新型简便的基于 CDs@ZIF-CuNCs 的纳米平台,用于尿酸的灵敏比率荧光测定。