The First Affiliated Hospital of Sun Yat-Sen University, School of Biomedical Engineering, Guangdong Province Key Laboratory of Display Material and Technology, School of Electronics and Information Technology, Sun Yat-Sen University, Guangzhou, 510006, China.
J Mater Chem B. 2020 Sep 14;8(34):7609-7632. doi: 10.1039/d0tb00990c. Epub 2020 Aug 3.
Biosensors have been extensively studied in the areas of biology, electronics, chemistry, biotechnology, medicine, and various engineering fields. The interdisciplinarity creates an ideal platform for scientists to analyze biological species and chemical materials in a direct, efficient, and sensitive manner; this is expected to revolutionize the life sciences, basic medicine, and the healthcare industry. To carry out high-performance biosensing, nanoprobes - with specific nanoscale properties - have been proposed for ultrasensitive and in situ monitoring/detection of tracer biomolecules, cellular behavior, cellular microenvironments, and electrophysiological activity. Here, we review the development of vertical nanowire (VNW) array-based devices for the effective collection of biomedical information at the molecular level, extracellular level, and intracellular level. In particular, we summarize VNW-based technologies in the aspects of detecting biochemical information, cellular information, and bioelectrical information, all of which facilitate the understanding of fundamental biology and development of therapeutic techniques. Finally, we present a conclusion and prospects for the development of VNW platforms in practical biomedical applications, and we identify the challenges and opportunities for VNW-based biosensor systems in future biological research.
生物传感器在生物学、电子学、化学、生物技术、医学和各种工程领域都得到了广泛的研究。这种跨学科性为科学家们提供了一个理想的平台,可直接、高效、灵敏地分析生物物种和化学物质;这有望彻底改变生命科学、基础医学和医疗保健行业。为了进行高性能的生物传感,纳米探针 - 具有特定的纳米级特性 - 已被提出用于超灵敏和原位监测/检测示踪生物分子、细胞行为、细胞微环境和电生理活性。在这里,我们回顾了基于垂直纳米线 (VNW) 阵列的器件的发展,这些器件可在分子水平、细胞外水平和细胞内水平有效收集生物医学信息。特别是,我们总结了基于 VNW 的技术在检测生化信息、细胞信息和生物电信息方面的应用,这些都有助于理解基础生物学和治疗技术的发展。最后,我们对 VNW 平台在实际生物医学应用中的发展提出了结论和展望,并确定了基于 VNW 的生物传感器系统在未来生物研究中的挑战和机遇。