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微纳电子技术在生命科学中的应用模块。

Technology modules from micro- and nano-electronics for the life sciences.

机构信息

Innovations for High Performance Microelectronics, Frankfurt (Oder), Germany.

出版信息

Wiley Interdiscip Rev Nanomed Nanobiotechnol. 2016 May;8(3):355-77. doi: 10.1002/wnan.1367. Epub 2015 Sep 22.

Abstract

The capabilities of modern semiconductor manufacturing offer remarkable possibilities to be applied in life science research as well as for its commercialization. In this review, the technology modules available in micro- and nano-electronics are exemplarily presented for the case of 250 and 130 nm technology nodes. Preparation procedures and the different transistor types as available in complementary metal-oxide-silicon devices (CMOS) and BipolarCMOS (BiCMOS) technologies are introduced as key elements of comprehensive chip architectures. Techniques for circuit design and the elements of completely integrated bioelectronics systems are outlined. The possibility for life scientists to make use of these technology modules for their research and development projects via so-called multi-project wafer services is emphasized. Various examples from diverse fields such as (1) immobilization of biomolecules and cells on semiconductor surfaces, (2) biosensors operating by different principles such as affinity viscosimetry, impedance spectroscopy, and dielectrophoresis, (3) complete systems for human body implants and monitors for bioreactors, and (4) the combination of microelectronics with microfluidics either by chip-in-polymer integration as well as Si-based microfluidics are demonstrated from joint developments with partners from biotechnology and medicine. WIREs Nanomed Nanobiotechnol 2016, 8:355-377. doi: 10.1002/wnan.1367 For further resources related to this article, please visit the WIREs website.

摘要

现代半导体制造技术在生命科学研究及其商业化方面具有显著的应用潜力。在这篇综述中,以 250nm 和 130nm 技术节点为例,介绍了微电子和纳电子技术中可用的技术模块。介绍了制备程序和互补金属氧化物半导体(CMOS)和双极 CMOS(BiCMOS)技术中可用的不同晶体管类型作为综合芯片架构的关键元件。概述了电路设计技术和完全集成的生物电子系统元件。强调了生命科学家可以通过所谓的多项目晶圆服务,利用这些技术模块进行其研发项目。从生物技术和医学合作伙伴的联合开发中,从不同领域展示了各种示例,例如(1)生物分子和细胞在半导体表面的固定化,(2)基于亲和力粘度、阻抗谱和介电泳等不同原理工作的生物传感器,(3)用于人体植入物和生物反应器监测器的完整系统,以及(4)微电子与微流控的结合,无论是通过芯片上聚合物集成还是基于 Si 的微流控。WIREs Nanomed Nanobiotechnol 2016, 8:355-377. doi: 10.1002/wnan.1367 如需了解本文相关资源,请访问 WIREs 网站。

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