Gazizadeh Masoud, Dehghan Gholamreza, Soleymani Jafar
Department of Animal Biology, Faculty of Natural Sciences, University of Tabriz Tabriz Iran
Pharmaceutical Analysis Research Center, Tabriz University of Medical Sciences Tabriz Iran
RSC Adv. 2022 Aug 10;12(34):22255-22265. doi: 10.1039/d2ra02611b. eCollection 2022 Aug 4.
Metformin (MTF), an effective biguanide and oral antihyperglycemic agent, is utilized to control blood glucose levels in patients with type II diabetes mellitus, and the determination of its concentration in biological fluids is one of the main issues in pharmacology and medicine. In this work, highly luminescent nitrogen-doped graphene quantum dots (N-GQDs) were modified using terbium (Tb)-1,10-phenanthroline (Phen) nanoparticles (NPs) to develop a dual-emission ratiometric fluorescent sensor for the determination of MTF in biological samples. The synthesized N-GQDs/Tb-Phen NPs were characterized using different techniques to confirm their physicochemical properties. The N-GQDs/Tb-Phen NPs showed two characteristic emission peaks at 450 nm and 630 nm by exciting at 340 nm that belong to N-GQDs and Tb-Phen NPs, respectively. The results indicated that the emission intensity of both N-GQDs and Tb-Phen NPs enhanced upon interaction with MTF in a concentration-dependent manner. Also, a good linear correlation between the enhanced fluorescence intensity of the system and MTF concentration was observed in the range of 1.0 nM-7.0 μM and the limit of detection (LOD) value obtained was 0.76 nM. In addition, the prepared probe was successfully used for the estimation of MTF concentration in spiked human serum samples. In conclusion, the reported dual-emission ratiometric fluorescent sensor can be used as a sensitive and simple fluorimetric method for the detection of MTF in real samples.
二甲双胍(MTF)是一种有效的双胍类口服降糖药,用于控制II型糖尿病患者的血糖水平,其在生物体液中的浓度测定是药理学和医学中的主要问题之一。在这项工作中,使用铽(Tb)-1,10-菲咯啉(Phen)纳米颗粒(NPs)对高发光性的氮掺杂石墨烯量子点(N-GQDs)进行修饰,以开发一种用于测定生物样品中MTF的双发射比率荧光传感器。采用不同技术对合成的N-GQDs/Tb-Phen NPs进行表征,以确认其物理化学性质。通过在340 nm处激发,N-GQDs/Tb-Phen NPs在450 nm和630 nm处分别显示出两个特征发射峰,分别属于N-GQDs和Tb-Phen NPs。结果表明,N-GQDs和Tb-Phen NPs与MTF相互作用后,发射强度均以浓度依赖的方式增强。此外,在1.0 nM - 7.0 μM范围内,系统增强的荧光强度与MTF浓度之间呈现良好的线性相关性,获得的检测限(LOD)值为0.76 nM。此外,制备的探针成功用于加标人血清样品中MTF浓度的测定。总之,所报道的双发射比率荧光传感器可作为一种灵敏且简单的荧光法用于实际样品中MTF的检测。