Department of Nutrition and Food Hygiene, School of Public Health, Tianjin Medical University, Tianjin 300070, China.
Department of Nutrition and Food Hygiene, School of Public Health, Tianjin Medical University, Tianjin 300070, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2022 Mar 5;268:120641. doi: 10.1016/j.saa.2021.120641. Epub 2021 Nov 18.
In this work, immune modified graphene quantum dot (GQD) and semiconductor quantum dot (SQD) with blue and red emission respectively were synthesized to assemble a dual-QDs ratios fluorescent probe, which could be efficient used for insulin determination. There may be the dynamic equilibrium of förster resonance energy transfer (FRET) and aggregation-induced emission (AIE) in the internal of the probe, thus emitted special dual fluorescent lights. However, this sate of probe was cleaved upon exposure to target insulin, resulting in changing of the dual fluorescent lights. The resulting ratios response can be correlated quantitatively to the concentration of insulin, and was found to have a detection limit (as low as 0.045 ng mL) and rapid response time (as short as 5 min). It has been preliminarily used for ratiometric sensing of insulin in biological samples and exhibited consistency of the insulin detected results and higher stability compared with conventional ELISA. Therefore, this sensitive, rapid and stable detection system has great potential for next generation of the bioassay platform for clinical diagnosis and other applications.
在这项工作中,分别合成了具有蓝色和红色发射的免疫修饰石墨烯量子点(GQD)和半导体量子点(SQD),组装成一种双量子点比荧光探针,可高效用于胰岛素的测定。在探针内部可能存在Förster 共振能量转移(FRET)和聚集诱导发射(AIE)的动态平衡,从而发出特殊的双荧光。然而,当探针暴露于目标胰岛素时,这种状态会被切割,导致双荧光的变化。所得的比率响应可以与胰岛素的浓度定量相关,并且检测限(低至 0.045ngmL)和快速响应时间(短至 5min)。它已初步用于生物样品中胰岛素的比率传感,并表现出与传统 ELISA 相比,检测结果的一致性和更高的稳定性。因此,这种灵敏、快速和稳定的检测系统具有很大的潜力,可用于下一代临床诊断和其他应用的生物分析平台。