College of Chemistry, Zhengzhou University, Zhengzhou, 450001, China.
Henan Provincial Fair Competition Review Affairs Center, Zhengzhou, 450001, China.
Anal Chim Acta. 2024 Oct 9;1325:343090. doi: 10.1016/j.aca.2024.343090. Epub 2024 Aug 10.
Curcumin has been used in traditional medicine because of its pharmacological activity, including antioxidant, antibacterial, anticancer, and anticarcinogenic properties. Therefore, sensitive and selective monitoring of curcumin is highly demand for practical application.
In this study, we describe the construction of a fluorescence method for curcumin assay based on nitrogen-doped MoS quantum dots (N-MoS QDs). The N-MoS QDs are constructed by a solvothermal method using sodium molybdate and Cys as precursors. With the addition of curcumin, the bright blue fluorescence of N-MoS QDs is quenched by the inner filter effect (IFE). The QDs emitted bright blue fluorescence and could be quenched by the addition of curcumin via IFE. The dynamic range is the range of 0.1-10 μM for curcumin detection, with a detection limit of 59 nM. N-MoS QDs were applied for curcumin assay in real samples with good recovery. In addition, the N-MoS QDs exhibited relative low cytotoxicity and could be applied for fluorescence-based imaging in biological samples.
Our study indicates that the sensor possesses good selectivity to monitor curcumin in water samples, human urine samples, ginger powder samples, mustard samples, and curry samples with satisfactory recoveries. The N-MoS QDs possess less cytotoxicity with excellent biocompatibility and were applied for in vitro cell imaging.
姜黄素因其药理活性,包括抗氧化、抗菌、抗癌和抗癌特性,在传统医学中得到了应用。因此,对姜黄素进行敏感和选择性监测在实际应用中是非常有需求的。
在本研究中,我们描述了一种基于氮掺杂 MoS 量子点(N-MoS QDs)的姜黄素测定荧光法的构建。N-MoS QDs 是通过使用钼酸钠和 Cys 作为前体制备的溶剂热法构建的。随着姜黄素的加入,N-MoS QDs 的亮蓝色荧光被内滤效应(IFE)猝灭。N-MoS QDs 发出亮蓝色荧光,并可通过 IFE 被姜黄素猝灭。姜黄素检测的动态范围为 0.1-10 μM,检测限为 59 nM。N-MoS QDs 用于实际样品中姜黄素的测定,具有良好的回收率。此外,N-MoS QDs 表现出相对较低的细胞毒性,可用于生物样品中的荧光成像。
我们的研究表明,该传感器对水样、人尿样、姜粉样、芥末样和咖喱样中的姜黄素具有良好的选择性,回收率令人满意。N-MoS QDs 具有较低的细胞毒性,具有良好的生物相容性,并可用于体外细胞成像。