School of Medical Technology, Guangdong Medical University, Dongguan 523808, China.
Faculty of Forensic Medicine, School of Basic Medicine, Guangdong Medical University, Dongguan 523808, China.
Analyst. 2022 Apr 11;147(8):1709-1715. doi: 10.1039/d1an02245h.
We have developed a point-of-care (POC) lateral flow biosensor (LFB) for universal protein detection based on a proximity hybridization-mediated protein-to-DNA signal transducer, isothermal exponential amplification (EXPAR) and catalytic hairpin assembly (CHA) with high sensitivity and specificity. In this assay, a protein signal transducer was employed to convert the input protein to the output DNA signal. Antibody conjugated DNA1 was firstly hybridized with the output DNA (DNA3). The binding of antibody conjugated DNA1 and DNA2 to the same protein was able to increase the local concentrations, resulting in strand displacement between DNA3 and DNA2. DNA3 with nicking endonuclease recognition sequences at the 5' end then hybridized with hairpin probe 1 to mediate EXPAR in the presence of nicking endonuclease and polymerase. A large number of single strand DNA were produced in the circle of nicking, polymerization and strand displacement. The resulting ssDNA products were further amplified by CHA to generate double-stranded DNA products. The double-stranded DNA products were detected with a lateral flow biosensor within 5 min. This proposed assay has very high sensitivity and selectivity with a dynamic response ranging from 1 fM to 100 nM, and the detection limit was 0.74 fM. This work provides a universal and simple method for protein detection.
我们开发了一种基于近邻杂交介导的蛋白质到 DNA 信号转导、等温指数扩增 (EXPAR) 和催化发夹组装 (CHA) 的即时侧向流动生物传感器 (LFB),用于通用蛋白质检测,具有高灵敏度和特异性。在该测定中,蛋白质信号转导物被用于将输入蛋白质转化为输出 DNA 信号。与输出 DNA(DNA3)结合的抗体偶联 DNA1 首先与 DNA2 杂交。抗体偶联 DNA1 和 DNA2 与相同蛋白质的结合能够增加局部浓度,导致 DNA3 和 DNA2 之间的链置换。具有 5'端切口内切酶识别序列的 DNA3 然后与发夹探针 1 杂交,在切口内切酶和聚合酶的存在下介导 EXPAR。在切口、聚合和链置换的循环中产生大量单链 DNA。所得 ssDNA 产物通过 CHA 进一步扩增以生成双链 DNA 产物。双链 DNA 产物在 5 分钟内通过侧向流动生物传感器进行检测。该方法具有很高的灵敏度和选择性,动态响应范围为 1 fM 至 100 nM,检测限为 0.74 fM。这项工作为蛋白质检测提供了一种通用且简单的方法。