Micro-Nano Innovations (MiNI) Laboratory, Department of Biomedical Engineering, University of California, Davis, CA, USA.
Ann Biomed Eng. 2011 Feb;39(2):600-20. doi: 10.1007/s10439-010-0218-9. Epub 2010 Dec 14.
This review is motivated by the growing demand for low-cost, easy-to-use, compact-size yet powerful micro-nanofabrication technology to address emerging challenges of fundamental biology and translational medicine in regular laboratory settings. Recent advancements in the field benefit considerably from rapidly expanding material selections, ranging from inorganics to organics and from nanoparticles to self-assembled molecules. Meanwhile a great number of novel methodologies, employing off-the-shelf consumer electronics, intriguing interfacial phenomena, bottom-up self-assembly principles, etc., have been implemented to transit micro-nanofabrication from a cleanroom environment to a desktop setup. Furthermore, the latest application of micro-nanofabrication to emerging biomedical research will be presented in detail, which includes point-of-care diagnostics, on-chip cell culture as well as bio-manipulation. While significant progresses have been made in the rapidly growing field, both apparent and unrevealed roadblocks will need to be addressed in the future. We conclude this review by offering our perspectives on the current technical challenges and future research opportunities.
这篇综述的撰写动机是为了满足日益增长的需求,即在常规实验室环境中解决基础生物学和转化医学领域新兴挑战所需的低成本、易于使用、小巧但功能强大的微纳制造技术。该领域的最新进展得益于材料选择的迅速扩展,从无机物到有机物,从纳米颗粒到自组装分子。与此同时,大量采用现成的消费电子产品、有趣的界面现象、自下而上的自组装原理等新颖方法已被用于将微纳制造从洁净室环境转移到台式设备上。此外,还将详细介绍微纳制造在新兴生物医学研究中的最新应用,包括即时诊断、芯片上细胞培养和生物操作。尽管在这个快速发展的领域已经取得了重大进展,但未来仍需要解决明显和未被揭示的障碍。我们通过提供对当前技术挑战和未来研究机会的看法来结束这篇综述。