Zhao Wenjie, Hu Jiawei, Liu Jinlong, Li Xin, Sun Sheng, Luan Xiaofeng, Zhao Yang, Wei Shuhua, Li Mingxiao, Zhang Qingzhu, Huang Chengjun
Institute of Microelectronics, Chinese Academy of Sciences, Beijing, 100029 People's Republic of China.
School of Future Technology, University of Chinese Academy of Sciences, Beijing, 100049 People's Republic of China.
Microsyst Nanoeng. 2022 May 30;8:57. doi: 10.1038/s41378-022-00387-x. eCollection 2022.
Exosomes are highly important in clinical diagnosis due to their high homology with their parental cells. However, conventional exosome detection methods still face the challenges of expensive equipment, low sensitivity, and complex procedures. Field effect transistors (FETs) are not only the most essential electronic component in the modern microelectronics industry but also show great potential for biomolecule detection owing to the advantages of rapid response, high sensitivity, and label-free detection. In this study, we proposed a Si nanowire field-effect transistor (Si-NW Bio-FET) device chemically modified with specific antibodies for the electrical and label-free detection of exosomes. The Si-NW FETs were fabricated by standard microelectronic processes with 45 nm width nanowires and packaged in a polydimethylsiloxane (PDMS) microfluidic channel. The nanowires were further modified with the specific CD63 antibody to form a Si-NW Bio-FET. The use of the developed Si-NW Bio-FET for the electrical and label-free detection of exosomes was successfully demonstrated with a limit of detection (LOD) of 2159 particles/mL. In contrast to other technologies, in this study, Si-NW Bio-FET provides a unique strategy for directly quantifying and real-time detecting exosomes without labeling, indicating its potential as a tool for the early diagnosis of cancer.
由于外泌体与其亲代细胞具有高度同源性,因此在临床诊断中非常重要。然而,传统的外泌体检测方法仍然面临设备昂贵、灵敏度低和程序复杂等挑战。场效应晶体管(FET)不仅是现代微电子工业中最基本的电子元件,而且由于其响应迅速、灵敏度高和无需标记检测等优点,在生物分子检测方面也显示出巨大潜力。在本研究中,我们提出了一种用特异性抗体进行化学修饰的硅纳米线场效应晶体管(Si-NW Bio-FET)器件,用于外泌体的电学和无标记检测。Si-NW FET通过标准微电子工艺制造,纳米线宽度为45nm,并封装在聚二甲基硅氧烷(PDMS)微流控通道中。纳米线进一步用特异性CD63抗体修饰,形成Si-NW Bio-FET。已成功证明所开发的Si-NW Bio-FET用于外泌体的电学和无标记检测,检测限(LOD)为2159个颗粒/毫升。与其他技术相比,在本研究中,Si-NW Bio-FET提供了一种无需标记直接定量和实时检测外泌体的独特策略,表明其作为癌症早期诊断工具的潜力。