Key Laboratory of Analysis and Detection for Food Safety (MOE & Fujian Province), Collaborative Innovation Center of Detection Technology for Haixi Food Safety and Products (Fujian Province), State Key Laboratory of Photocatalysis on Energy and Environment, Department of Chemistry, Fuzhou University , Fuzhou 350108, People's Republic of China.
Anal Chem. 2017 May 2;89(9):5152-5160. doi: 10.1021/acs.analchem.7b00989. Epub 2017 Apr 12.
An all-in-one paper-based analytical device (PAD) was successfully developed for visual fluorescence detection of carcinoembryonic antigen (CEA) on CdTe/CdSe quantum dot (QD)-enzyme-impregnated paper by coupling with a bioresponsive controlled-release system from DNA-gated mesoporous silica nanocontainers (MSNs). The assay was carried out in a centrifuge tube by using glucose-loaded MSNs with a CEA aptamer and a QD-enzyme-paper attached on the lid. Initially, single-strand complementary DNA to a CEA aptamer was covalently conjugated to the aminated MSN, and then glucose (enzyme substrate) molecules were gated into the pore with the help of the aptamer. Glucose oxidase (GOD) and CdTe/CdSe QDs were coimmobilized on paper for the visual fluorescence signal output. Upon target CEA introduction in the detection cell, the analyte specifically reacted with the immobilized aptamer on the MSN to open the pore, thereby resulting in the glucose release. The released glucose was oxidized by the immobilized GOD on paper to produce gluconic acid and hydrogen peroxide, and the latter quenched the fluorescence of CdTe/CdSe QDs, which could be determined by the naked eye on a portable smartphone and a commercial fluorospectrometer. Under optimal conditions, the PAD-based sensing system enabled sensitive discrimination of target CEA against other biomarkers or proteins in a linear range of 0.05-20 ng mL with a limit of detection of 6.7 pg mL (ppt). In addition, our strategy displayed high specificity, good reproducibility, and acceptable accuracy for analyzing human serum specimens with a commercial human CEA ELISA kit. Importantly, this methodology offers promise for simple analysis of biological samples and is suitable for use in the mass production of miniaturized devices, thus opening new opportunities for protein diagnostics and biosecurity.
一种基于纸的一体式分析设备 (PAD) 成功开发,用于通过与 DNA 门控介孔硅纳米容器 (MSNs) 的生物响应控制释放系统相结合,在 CdTe/CdSe 量子点 (QD)-酶浸渍纸上可视化荧光检测癌胚抗原 (CEA)。该测定在离心管中进行,使用载有葡萄糖的 MSNs,其带有 CEA 适体和附着在盖子上的 QD-酶纸。最初,将 CEA 适体的单链互补 DNA 共价连接到氨基化 MSN 上,然后借助适体将葡萄糖(酶底物)分子门控到孔中。葡萄糖氧化酶 (GOD) 和 CdTe/CdSe QD 共同固定在纸上用于视觉荧光信号输出。当目标 CEA 引入检测单元时,分析物特异性地与 MSN 上固定的适体反应以打开孔,从而导致葡萄糖释放。释放的葡萄糖被固定在纸上的 GOD 氧化生成葡萄糖酸和过氧化氢,后者猝灭 CdTe/CdSe QD 的荧光,可通过便携式智能手机和商业荧光计进行肉眼观察。在最佳条件下,基于 PAD 的传感系统能够在 0.05-20 ng mL 的线性范围内对目标 CEA 与其他生物标志物或蛋白质进行灵敏区分,检测限为 6.7 pg mL(ppt)。此外,我们的策略对分析人血清标本具有高特异性、良好的重现性和可接受的准确性,使用商业人 CEA ELISA 试剂盒。重要的是,该方法为生物样品的简单分析提供了前景,适用于小型化设备的大规模生产,从而为蛋白质诊断和生物安全开辟了新的机会。