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首页> 外文期刊>Advanced Science Letters >Continuous-Flow Microfluidic Polymerase Chain Reaction Chip Using Dry Film Resist on Glass Substrate
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Continuous-Flow Microfluidic Polymerase Chain Reaction Chip Using Dry Film Resist on Glass Substrate

机译:在玻璃基板上使用干膜抗蚀剂的连续流微流聚合酶链反应芯片

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摘要

Continuous-flow microfluidic polymerase chain reaction (PCR) chips have considerable promise because of their speed and low evaporation compared with chamber-type chips. However, conventional polydimethylsiloxane (PDMS)-based chips require a time-consuming and complex manufacturing process including steps such as reactive ion etching to overcome the hydrophobic nature of PDMS. Here, we report the use of dry film resist (DFR) instead, which is inherently hydrophilic and has lower heat conductivity than silicon. The proposed device consists of DFR microchannels created by photolithography, with integrated Pt heaters on a soda-lime glass substrate. The device cycles fluid through zones with different temperatures (94℃, 55℃, and 72℃), which are controlled by a proportional-integral-derivative (PID) controller. The chip is 60 × 15 mm in size, with channels having a width and depth of 200μm, a total length of 0.75 m, and a volume of 30 μl. The temperature distribution across the chip was investigated by experiments and numerical simulation. The proposed continuous-flow chip is cost effective because it is simpler to fabricate than PDMS-based devices, and it is faster than chamber-type PCR chips, which require considerable time for heating and cooling the chamber. This PCR chip is applicable to DNA amplifiers.
机译:与腔室型芯片相比,连续流微流聚合酶链反应(PCR)芯片具有很高的前景,因为它们的速度快且蒸发量低。然而,常规的基于聚二甲基硅氧烷(PDMS)的芯片需要耗时且复杂的制造工艺,包括诸如反应性离子蚀刻的步骤以克服PDMS的疏水性。在这里,我们报告了干膜抗蚀剂(DFR)的使用,该膜本身具有亲水性并且比硅具有较低的导热性。拟议中的设备包括通过光刻技术形成的DFR微通道,在钠钙玻璃衬底上集成了Pt加热器。该设备使流体循环通过温度不同(94℃,55℃和72℃)的区域,这些区域由比例积分微分(PID)控制器控制。芯片尺寸为60×15 mm,通道的宽度和深度为200μm,总长度为0.75m,体积为30μl。通过实验和数值模拟研究了芯片上的温度分布。所提出的连续流芯片具有成本效益,因为它比基于PDMS的设备更容易制造,并且比腔室型PCR芯片要快,后者需要大量时间来加热和冷却腔室。该PCR芯片适用于DNA放大器。

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