School of Chemistry and Chemical Engineering, Yancheng Institute of Technology, Yancheng, 224051, China.
State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing, 210023, China.
Analyst. 2023 Sep 11;148(18):4339-4345. doi: 10.1039/d3an01211e.
Meloxicam (Mel), as a powerful and effective anti-inflammatory drug, is commonly employed for the treatment of various inflammatory diseases; however, the use of Mel at high doses or for extended periods could cause severe side effects in human visceral organs. Therefore, a simple, rapid, and reliable method is urgently needed to monitor Mel in biological samples. Herein, novel water-soluble luminescent nano-carbon dots (nano-Cdots) with outstanding physicochemical properties were prepared by a one-pot high-temperature hydrothermal process of ellagic acid and guanidine. The nano-Cdots were further used as an optical probe for the sensitive detection of Mel in serum samples through the cooperative mechanisms of the inner filter effect and photoelectron transfer. By employing this sensor, an excellent linear correlation was achieved between the relative luminescent intensity [(PL - PL)/PL] and the concentration of Mel in the range of 0.1 to 200 μM, with a limit of detection of 34.68 nM (3/). This sensor was effectively employed for the analysis of Mel in real serum samples, implying its potential development prospects for the advancement of drug analysis with carbon-based probes.
美洛昔康(Mel)是一种强效且有效的抗炎药物,常用于治疗各种炎症性疾病;然而,高剂量或长期使用 Mel 可能会对人体内脏器官造成严重的副作用。因此,急需一种简单、快速、可靠的方法来监测生物样本中的 Mel。在此,我们通过一步高温水热法,由鞣花酸和胍制备了具有优异理化性质的新型水溶性发光纳米碳点(nano-Cdots)。通过内滤效应和光电子转移的协同机制,这些纳米碳点进一步被用作血清样品中 Mel 敏感检测的光学探针。通过使用该传感器,在 0.1 至 200 μM 的范围内,相对发光强度 [(PL - PL)/PL] 与 Mel 浓度之间实现了出色的线性相关性,检测限为 34.68 nM(3/)。该传感器有效地用于真实血清样品中 Mel 的分析,这表明其具有基于碳探针的药物分析进展的潜在开发前景。