Seo YoungTae, Jeong Sunil, Lee JuKyung, Choi Hak Soo, Kim Jonghan, Lee HeaYeon
1Department of Computer Science, Queens College of the City University of New York, Flushing, NY 11367 USA.
Mara Nanotech New York, Inc., New York, NY 10031 USA.
Nano Converg. 2018;5(1):9. doi: 10.1186/s40580-018-0141-6. Epub 2018 Apr 11.
Nanostructured biosensors have pioneered biomedical engineering by providing highly sensitive analyses of biomolecules. The nanowell array (NWA)-based biosensing platform is particularly innovative, where the small size of NWs within the array permits extremely profound sensing of a small quantity of biomolecules. Undoubtedly, the NWA geometry of a gently-sloped vertical wall is critical for selective docking of specific proteins without capillary resistances, and nanoprocessing has contributed to the fabrication of NWA electrodes on gold substrate such as molding process, e-beam lithography, and krypton-fluoride (KrF) stepper semiconductor method. The Lee group at the Mara Nanotech has established this NW-based biosensing technology during the past two decades by engineering highly sensitive electrochemical sensors and providing a broad range of detection methods from large molecules (e.g., cells or proteins) to small molecules (e.g., DNA and RNA). Nanosized gold dots in the NWA enhance the detection of electrochemical biosensing to the range of zeptomoles in precision against the complementary target DNA molecules. In this review, we discuss recent innovations in biomedical nanoengineering with a specific focus on novel NWA-based biosensors. We also describe our continuous efforts in achieving a label-free detection without non-specific binding while maintaining the activity and stability of immobilized biomolecules. This research can lay the foundation of a new platform for biomedical nanoengineering systems.
纳米结构生物传感器通过对生物分子进行高灵敏度分析,开创了生物医学工程领域。基于纳米阱阵列(NWA)的生物传感平台尤其具有创新性,该阵列中纳米阱的小尺寸使得能够对少量生物分子进行极其深入的传感。毫无疑问,具有缓坡垂直壁的NWA几何形状对于特定蛋白质的选择性对接且无毛细管阻力至关重要,并且纳米加工技术有助于在金基板上制造NWA电极,如模塑工艺、电子束光刻和氟化氪(KrF)步进半导体方法。在过去二十年中,Mara Nanotech的Lee团队通过设计高灵敏度电化学传感器并提供从大分子(如细胞或蛋白质)到小分子(如DNA和RNA)的广泛检测方法,建立了这种基于纳米阱的生物传感技术。NWA中的纳米金点将电化学生物传感的检测精度提高到了zeptomole范围,以检测互补靶DNA分子。在这篇综述中,我们讨论生物医学纳米工程领域的最新创新,特别关注新型基于NWA的生物传感器。我们还描述了我们在实现无标记检测且无非特异性结合的同时,保持固定化生物分子的活性和稳定性方面所做的持续努力。这项研究可为生物医学纳米工程系统的新平台奠定基础。