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首页> 外文期刊>RSC Advances >Diameter-definable tubing-microchips for applications in both continuous-flow and TEC-modulated on-chip qPCRs with reaction signal analyzed between different types of Teflon-polymers: PTFE and FEP
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Diameter-definable tubing-microchips for applications in both continuous-flow and TEC-modulated on-chip qPCRs with reaction signal analyzed between different types of Teflon-polymers: PTFE and FEP

机译:用于连续流动和TEC调制的片上QPCR的应用直径可定义的管道微芯片,其在不同类型的Teflon-Polymers之间分析的反应信号:PTFE和FEP

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Recently, the tubing microfluidic system has attracted significant research interest because it waives complicated microfabrication machineries and bonding procedures during the manufacture of microchips; however, due to the limited dimensions in the market, the commercially available micro-tubes are generally fixed in diameters and are unmodifiable in radius; this makes it a challenge to obtain a randomly defined channel-dimension for a tubing microsystem. To solve this problem, herein, we proposed a novel and simple method to obtain a tubing-channel with gradually changed diameter. Both the tensile forces and spectrophotometric properties have been analyzed in this study for systemic characterization; as a proof-of-concept, the inner diameter (ID) of a fluorinated ethylene propylene (FEP) tube has been modified from 0.5?mm to 0.3 mm, and the FEP tube has been further applied to both the thermoelectric (TEC)-modulated on-chip polymerase chain reactions (PCRs) and the continuous flow on-chip PCRs. To the best of our knowledge, this is the first time that an FEP tube with so small ID has been applied to on-chip qPCRs. Based on the comparison with polytetrafluoroethylene (PTFE) regarding the fluorescence signal inside the tube, it can be verified that FEP has much better detection sensitivity than PTFE although these two materials are reckoned to be belonging to the same type of polymer family, generally referred to as Teflon.
机译:最近,管道微流体系统引起了显着的研究兴趣,因为它在微芯片制造过程中放弃了复杂的微制造机械和粘合程序;然而,由于市场的尺寸有限,市售的微管通常是直径固定的,并且在半径中是不可改造的;这使得为​​管道微系统获得随机定义的通道维度的挑战。为了解决这个问题,这里,我们提出了一种新颖的简单方法,以获得逐渐改变直径的管道通道。在该研究中已经分析了拉伸力和分光光度法的性质,用于全身表征;作为概念验证,氟化乙烯丙烯(FEP)管的内径(ID)已经改变为0.5Ω至0.3mm,并且FEP管进一步应用于热电(TEC) - 调制片上聚合酶链反应(PCR)和连续流量的片上PCR。据我们所知,这是第一次使用如此小ID的FEP管已应用于片上QPCR。基于与管内荧光信号的聚四氟乙烯(PTFE)的比较,可以验证FEP比PTFE具有更好的检测灵敏度,尽管这两种材料被估计属于相同类型的聚合物家族,通常称为作为teflon。

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