Laboratory for MEMS Applications, Department of Microsystems Engineering (IMTEK), University of Freiburg, Georges-Koehler-Allee 106, 79110 Freiburg, Germany.
Lab Chip. 2010 Jun 7;10(11):1365-86. doi: 10.1039/c001195a.
This critical review is motivated by an increasing interest of the microfluidics community in developing complete Lab-on-a-Chip solutions based on thin and flexible films (Lab-on-a-Foil). Those implementations benefit from a broad range of fabrication methods that are partly adopted from well-established macroscale processes or are completely new and promising. In addition, thin and flexible foils enable various features like low thermal resistance for efficient thermocycling or integration of easily deformable chambers paving the way for new means of on-chip reagent storage or fluid transport. From an economical perspective, Lab-on-a-Foil systems are characterised by low material consumption and often low-cost materials which are attractive for cost-effective high-volume fabrication of self-contained disposable chips. The first part of this review focuses on available materials, fabrication processes and approaches for integration of microfluidic functions including liquid control and transport as well as storage and release of reagents. In the second part, an analysis of the state of Lab-on-a-Foil applications is provided with a special focus on nucleic acid analysis, immunoassays, cell-based assays and home care testing. We conclude that the Lab-on-a-Foil approach is very versatile and significantly expands the toolbox for the development of Lab-on-a-Chip solutions.
这篇评论文章的撰写动机是,微流控领域越来越感兴趣的是基于薄而灵活的薄膜(箔片上的实验室)来开发完整的芯片实验室解决方案。这些实施得益于广泛的制造方法,其中部分方法是从成熟的宏观工艺中采用的,或者是全新的、有前途的方法。此外,薄而灵活的箔片能够实现各种功能,例如低热阻以实现高效热循环,或集成易于变形的腔室,为芯片上试剂储存或流体传输的新方法铺平道路。从经济角度来看,箔片上的实验室系统的特点是材料消耗低,通常使用低成本材料,这对于具有成本效益的大规模生产独立一次性芯片非常有吸引力。本文的第一部分重点介绍了可用的材料、制造工艺以及集成微流控功能的方法,包括液体控制和传输以及试剂的储存和释放。在第二部分中,我们对箔片上的实验室应用的现状进行了分析,特别关注了核酸分析、免疫分析、基于细胞的分析和家庭护理测试。我们的结论是,箔片上的实验室方法非常多样化,极大地扩展了开发芯片实验室解决方案的工具包。