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World-to-chip microfluidic interface with built-in valves for multichamber chip-based PCR assays

机译:带有内置阀的世界芯片微流体接口,用于基于多室芯片的PCR分析

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摘要

We report a practical world-to-chip microfluidic interfacing method with built-in valves suitable for microscale multichamber chip-based assays. One of the primary challenges associated with the successful commercialization of fully integrated microfluidic systems has been the lack of reliable world-to-chip microfluidic interconnections. After sample loading and sealing, leakage tests were conducted at 100 degrees C for 30 min and no detectable leakage flows were found during the test for 100 microchambers. To demonstrate the utility of our world-to-chip microfluidic interface, we designed a microscale PCR chip with four chambers and performed PCR assays. The PCR results yielded a 100% success rate with no contamination or leakage failures. In conclusion, we have introduced a simple and inexpensive microfluidic interfacing system for both sample loading and sealing with no dead volume, no leakage flow and biochemical compatibility.
机译:我们报告了一种实用的世界芯片微流体接口方法,其内置阀门适用于基于微型多室芯片的分析。与完全集成的微流体系统的成功商业化相关的主要挑战之一是缺乏可靠的世界到芯片的微流体互连。样品装入并密封后,在100摄氏度下进行了30分钟的泄漏测试,在100个微腔室的测试过程中未发现可检测到的泄漏流。为了证明我们的世界芯片微流体接口的实用性,我们设计了一个带有四个小室的微型PCR芯片,并进行了PCR分析。 PCR结果产生了100%的成功率,没有污染或泄漏失败。总之,我们为样品的装载和密封引入了一种简单而廉价的微流体接口系统,无死体积,无泄漏流和生化相容性。

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