Center for Applied NanoBioscience and Medicine, University of Arizona, 145 S 79th St, Suite 16, Chandler, AZ 85226, USA.
Analyst. 2012 Dec 7;137(23):5510-9. doi: 10.1039/c2an35768b. Epub 2012 Sep 12.
This study reports the design, prototyping, and assay development of multiplexed polymerase chain reaction (PCR) on a plastic microfluidic device. Amplification of 17 DNA loci is carried out directly on-chip as part of a system for continuous workflow processing from sample preparation (SP) to capillary electrophoresis (CE). For enhanced performance of on-chip PCR amplification, improved control systems have been developed making use of customized Peltier assemblies, valve actuators, software, and amplification chemistry protocols. Multiple enhancements to the microfluidic chip design have been enacted to improve the reliability of sample delivery through the various on-chip modules. This work has been enabled by the encapsulation of PCR reagents into a solid phase material through an optimized Solid Phase Encapsulating Assay Mix (SPEAM) bead-based hydrogel fabrication process. SPEAM bead technology is reliably coupled with precise microfluidic metering and dispensing for efficient amplification and subsequent DNA short tandem repeat (STR) fragment analysis. This provides a means of on-chip reagent storage suitable for microfluidic automation, with the long shelf-life necessary for point-of-care (POC) or field deployable applications. This paper reports the first high quality 17-plex forensic STR amplification from a reference sample in a microfluidic chip with preloaded solid phase reagents, that is designed for integration with up and downstream processing.
本研究报告了在塑料微流控装置上进行多重聚合酶链反应(PCR)的设计、原型制作和分析方法开发。17 个 DNA 基因座的扩增直接在芯片上进行,作为从样品制备(SP)到毛细管电泳(CE)的连续工作流程处理系统的一部分。为了增强芯片上 PCR 扩增的性能,我们开发了改进的控制系统,利用定制的珀耳帖组件、阀致动器、软件和扩增化学方案。对微流控芯片设计进行了多次改进,以提高通过各种芯片模块的样品输送的可靠性。这项工作是通过将 PCR 试剂封装到固相材料中实现的,这是通过优化的固相包埋分析物混合(SPEAM)珠基水凝胶制造工艺完成的。SPEAM 珠技术与精确的微流控计量和分配可靠结合,实现了高效的扩增和随后的 DNA 短串联重复(STR)片段分析。这为微流控自动化提供了一种适合的芯片试剂储存方式,具有适用于即时检测(POC)或现场部署应用的长保质期。本文报告了第一个使用预加载固相试剂的微流控芯片中高质量的 17 重法医 STR 扩增,该芯片旨在与上下游处理集成。