Chen Haiyan, Li Qiaoyin, You Shumin, Huang Xuemin, Fan Chunmei, Lin Zhenyu, Qiu Bin
Ministry of Education Key Laboratory for Analytical Science of Food Safety and Biology (Fuzhou University), Fujian Provincial Key Laboratory of Analysis and Detection for Food Safety, Fuzhou, Fujian, 350108, People's Republic of China.
College of Food and Bioengineering, Fujian Polytechnic Normal University, Fuqing, 350300, People's Republic of China.
Mikrochim Acta. 2022 Aug 26;189(9):352. doi: 10.1007/s00604-022-05447-7.
A ratiometric fluorescence probe is proposed for sensitive and visual detection of tetracyclinee (TC) based on cascade fluorescence signal amplification induced by bovine serum albumin-stabilized copper nanoclusters (BSA-CuNCs) and yttrium ions (Y). TC can combine with Y to form the complex (TC-Y) to enhance the fluorescence of TC at 515 nm. Then, positively charged TC-Y and negatively charged BSA-CuNCs was bonded together by electrostatic interactions to achieve the fluorescence resonance energy transfer (FRET) process. With the increase of TC concentration, the fluorescence intensity of TC-Y at 515 nm (F) gradually increased; meanwhile, the fluorescence intensity of BSA-CuNCs at 405 nm (F) decreased gradually. The ratio of F and F was used for the quantitative determination of TC. The linear range of the constructed fluorescent probe is 1.0 to 60.0 μM, and the limit of detection is 0.22 μM. The method was successfully applied to the determination of TC in spiked milk with recoveries ranging from 94.3 to 112%. Furthermore, the color of this platform can be observed from dark violet to bright green under the UV lamp. Since the response time of the reaction is less than 10 s, an intelligent sensing platform based on the use of the smartphone as image acquisition equipment was also established to realize rapid on-site and portable detection of TC through the colorimetric recognition application.
提出了一种基于牛血清白蛋白稳定的铜纳米簇(BSA-CuNCs)和钇离子(Y)诱导的级联荧光信号放大的比率荧光探针,用于灵敏且可视化检测四环素(TC)。TC能与Y结合形成复合物(TC-Y),增强TC在515nm处的荧光。然后,带正电荷的TC-Y与带负电荷的BSA-CuNCs通过静电相互作用结合在一起,实现荧光共振能量转移(FRET)过程。随着TC浓度的增加,TC-Y在515nm处的荧光强度(F)逐渐增强;同时,BSA-CuNCs在405nm处的荧光强度(F)逐渐降低。F与F的比值用于TC的定量测定。构建的荧光探针线性范围为1.0至60.0μM,检测限为0.22μM。该方法成功应用于加标牛奶中TC的测定,回收率为94.3%至112%。此外,在紫外灯下可观察到该平台的颜色从深紫色变为亮绿色。由于反应的响应时间小于10秒,还建立了一个基于使用智能手机作为图像采集设备的智能传感平台,通过比色识别应用实现TC的快速现场便携式检测。