Han Luxuan, Zhu Xuecheng, Zhang Dianwei, Liu Huilin, Sun Baoguo
Beijing Technology and Business University, 11 Fucheng Road, Beijing100048, China.
ACS Sens. 2023 Feb 24;8(2):694-703. doi: 10.1021/acssensors.2c02197. Epub 2023 Jan 27.
A visual and digital platform was constructed by peptide-based molecularly imprinted polymers (PMIPs) for specific recognition and detection of ethyl carbamate (EC). Here, the optosensing core was creatively constructed by the covalent assembly of dipeptides (H-Phe-Phe-OH) and genipin biomolecules for high fluorescence quantum yield and dual-signal response capability. MIPs were wrapped in the shell of the optosensing core for selectivity of EC from actual samples of alcoholic beverages. The genipin-FF nanoparticles (GFPNs)@PMIPs exhibited dual-band red-blue fluorescence image with a low detection limit of 0.817 and 1.65 μg L, respectively, in the optimal linear range of 2-240 μg L. The accuracy of this method was verified by the spiked recovery experiment, and a good recovery from 83.97 to 106.75% of the proposed optosensing method was obtained. In addition, a smartphone application was coupled with GFPNs@PMIPs to realize online real-time detection of EC. With the addition of EC, the color change of G and B values was negligible compared with the value. This work also provides a potential method for on-site visual detection of analytes.
通过基于肽的分子印迹聚合物(PMIPs)构建了一个视觉和数字平台,用于氨基甲酸乙酯(EC)的特异性识别和检测。在此,通过二肽(H-Phe-Phe-OH)和京尼平生物分子的共价组装创造性地构建了光传感核心,以实现高荧光量子产率和双信号响应能力。分子印迹聚合物包裹在光传感核心的外壳中,用于从酒精饮料实际样品中选择性识别EC。京尼平-FF纳米颗粒(GFPNs)@PMIPs在2-240μg L的最佳线性范围内分别呈现出双波段红-蓝荧光图像,检测限低至0.817和1.65μg L。通过加标回收率实验验证了该方法的准确性,所提出的光传感方法的回收率在83.97%至106.75%之间。此外,将智能手机应用程序与GFPNs@PMIPs相结合,实现了对EC的在线实时检测。加入EC后,与 值相比,G和B值的颜色变化可忽略不计。这项工作还为分析物的现场视觉检测提供了一种潜在方法。