Biophysics Graduate Group, University of California, Berkeley, CA, USA.
Lab Chip. 2013 Jan 21;13(2):288-96. doi: 10.1039/c2lc40861a. Epub 2012 Nov 22.
A digitally programmable microfluidic Automaton consisting of a 2-dimensional array of pneumatically actuated microvalves is programmed to perform new multiscale mixing and sample processing operations. Large (μL-scale) volume processing operations are enabled by precise metering of multiple reagents within individual nL-scale valves followed by serial repetitive transfer to programmed locations in the array. A novel process exploiting new combining valve concepts is developed for continuous rapid and complete mixing of reagents in less than 800 ms. Mixing, transfer, storage, and rinsing operations are implemented combinatorially to achieve complex assay automation protocols. The practical utility of this technology is demonstrated by performing automated serial dilution for quantitative analysis as well as the first demonstration of on-chip fluorescent derivatization of biomarker targets (carboxylic acids) for microchip capillary electrophoresis on the Mars Organic Analyzer. A language is developed to describe how unit operations are combined to form a microfluidic program. Finally, this technology is used to develop a novel microfluidic 6-sample processor for combinatorial mixing of large sets (>2(6) unique combinations) of reagents. The digitally programmable microfluidic Automaton is a versatile programmable sample processor for a wide range of process volumes, for multiple samples, and for different types of analyses.
由二维气动微阀阵列组成的数字可编程微流控自动机被编程执行新的多尺度混合和样品处理操作。通过在单个纳升级别的微阀内精确计量多个试剂,然后将其连续重复转移到阵列中的编程位置,实现了大体积(微升级)的处理操作。开发了一种新颖的工艺,利用新的组合阀概念,在不到 800 毫秒的时间内实现试剂的连续快速完全混合。通过组合进行混合、转移、存储和冲洗操作,实现了复杂的分析自动化协议。通过执行自动串行稀释进行定量分析,以及在火星有机物分析仪上首次展示用于微芯片毛细管电泳的生物标志物靶标(羧酸)的芯片上荧光衍生化,证明了这项技术的实际应用。开发了一种语言来描述如何将单元操作组合形成微流控程序。最后,该技术用于开发一种新颖的微流控 6 样本处理器,用于对大量(>2(6)独特组合)试剂进行组合混合。数字可编程微流控自动机是一种通用可编程样本处理器,适用于多种处理体积、多个样本和不同类型的分析。