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Nanoliter scale microloop reactor with rapid mixing ability for biochemical reaction

机译:具有快速混合能力的纳升级微环反应器,用于生化反应

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摘要

The mixing rate is a crucial factor in determining the reaction rate and product distribution in reactors for academic and industrial application. Especially, in pharmaceutical or dangerous chemistry, it is essential to create rapidly homogeneous mixture under the control of a small volume of precious sample. In this study, we propose a microloop reactor that is capable of rapid mixing for homogeneous reaction by utilizing programmable actuated microvalves (PAVs), which can generate the rotary flow rapid mixing in the reactor. The microloop reactor is composed of a stacked layered structure, which is prepared by a soft lithography method. The top layer (fluidic layer) has microchannels for supplying each reagent that is assembled with the bottom layer (control layer). The bottom layer has ultrathin polymer membrane, which can be an on-off valve to precisely control the nanoliter-scale volume of reagents in the reactor. To evaluate mixing performance, we use peroxidase reaction that produces fluorescent by-product (resorufin), thereby observing how fast they are mixed together. We quantify the uniformity of fluorescent intensity throughout the reaction loop, indicating that our proposed microloop reactor exhibits a homogeneous reaction. We envision the microreactor has potential to provide optimized microenvironments in which to perform dangerous chemistry, pharmaceuticals.
机译:混合速率是确定学术和工业应用反应器中反应速率和产物分布的关键因素。特别是在制药或危险化学领域,必须在少量珍贵样品的控制下迅速形成均匀的混合物。在这项研究中,我们提出了一种微回路反应器,该反应器能够通过利用可编程驱动微阀(PAV)快速混合以进行均相反应,从而在反应器中产生旋转流快速混合。微回路反应器由通过软光刻法制备的堆叠的层状结构组成。顶层(流体层)具有微通道,用于供应与底层(控制层)组装在一起的每种试剂。底层具有超薄聚合物膜,该膜可以是开关阀,以精确控制反应器中纳升级试剂的体积。为了评估混合性能,我们使用过氧化物酶反应产生荧光副产物(试卤灵),从而观察它们混合在一起的速度。我们量化整个反应回路中荧光强度的均匀性,表明我们提出的微回路反应器表现出均相反应。我们认为微型反应器有潜力提供优化的微环境,以执行危险的化学药品。

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