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Rotatable Reagent Cartridge for High-Performance Microvalve System on a Centrifugal Microfluidic Device

机译:离心微流控设备上用于高性能微阀系统的可旋转试剂盒

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Recently, microfluidic lab-on-a-CD (LabCD) has attracted attentions of researchers for its potential for pumpless, compact, and chip-inclusive on-site bioassay. To control the fluids in the LabCD, microvalves such as capillary, hydrophobic, siphon, and sacrificial valves have been employed. However, no microvalve can regulate more than one channel. In a complicated bioassay with many sequential mixing, washing, and wasting steps, thus, an intricate fluidic network with many microchannels, microvalves, and reservoirs is required, which increases assay costs in terms of both system development and chip preparation. To address this issue, we developed a rotatable reagent cartridge (RRC), which was a column-shaped tank and has several rooms to store different reagents. By embedding and rotating the RRC in the LabCD with a simple mechanical force, only the reagent in the room connected to the following channel was injected. By regulating the angle of the RRC to the LabCD, conservation and ejection of each reagent could be switched. Our developed RRC had no air vent hole, which was achieved by the gas-permeable gap between the bottle and cap parts of the RRC. The RRC could inject 230 nL-10 μL of reagents with good recoveries more than 96%. Finally, an enzymatic assay of L-lactate was demonstrated, where the number of valves and reservoirs were well minimized, significantly simplifying the fluidic system and increasing the channel integratability. Well quantitative analyses of 0-100 μM L-lactate could easily be carried out with R~2 > 0.999, indicating the practical utility of the RRC for microfluidic bioanalysis.
机译:最近,微流体CD上实验室(LabCD)由于其无泵,紧凑且包含芯片的现场生物测定的潜力而吸引了研究人员的注意。为了控制LabCD中的流体,已使用微阀,例如毛细管阀,疏水阀,虹吸管和牺牲阀。但是,没有微阀可以调节一个以上的通道。因此,在具有许多连续的混合,洗涤和浪费步骤的复杂生物测定中,需要具有许多微通道,微阀和储液器的复杂流体网络,这增加了系统开发和芯片制备方面的测定成本。为了解决这个问题,我们开发了一种可旋转的试剂盒(RRC),它是一个圆柱状的容器,并具有多个用于存储不同试剂的房间。通过用简单的机械力将RRC嵌入并旋转到LabCD中,仅注射了连接到下一个通道的房间中的试剂。通过调节RRC与LabCD的角度,可以切换每种试剂的保存和排出。我们开发的RRC没有通气孔,这是通过RRC的瓶子和瓶盖部分之间的透气间隙实现的。 RRC可以注入230 nL-10μL试剂,回收率超过96%。最后,证明了L-乳酸的酶促测定,其中阀和贮存器的数量被最小化,显着简化了流体系统并增加了通道的可整合性。 R〜2> 0.999可以很容易地对0-100μML-乳酸进行定量分析,这表明RRC在微流体生物分析中的实际应用。

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