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手持式注射器作为一种便携式塑料泵,用于芯片上连续流动 PCR:样品注入装置的微型化。

Hand-held syringe as a portable plastic pump for on-chip continuous-flow PCR: miniaturization of sample injection device.

机构信息

BioNanotechnology Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, 305-600, Korea.

出版信息

Analyst. 2012 Feb 21;137(4):983-90. doi: 10.1039/c2an15860d. Epub 2011 Dec 21.

Abstract

On-chip continuous-flow polymerase chain reactions (PCRs) generally require peripheral apparatus such as a pump for injecting a sample liquid into the fluidic channel. This makes the overall instrumentation bulky, limiting integration. In this study, we propose a new scheme for injecting a sample employing a hand-held syringe as a portable plastic pump, and apply it to an on-chip continuous-flow PCR. In the proposed injection scheme, sample actuation was realized inside a highly gas-permeable and blunt-ended fluidic conduit connected to a hand-held plastic syringe filled with compressed air. In this system, the degree of air diffusion via the walls of the gas-permeable conduit becomes greater in the anterior (closer to the outlet) end of the sample plug than the posterior (closer to the inlet) end, because a relatively larger quantity of air is retained inside the syringe at the posterior end of the sample plug. This creates a pressure gradient at the inlet and outlet of the fluidic conduit and propels the sample forward toward the outlet. Preliminary experiments were performed for the quantitative analyses and evaluation of the proposed sample injection scheme using gas-permeable silicone tubes. As practical applications, a 230 bp gene fragment from a plasmid vector and the first 282 bp of the interferon-beta (IFN-β) promoter from a human genomic DNA were successfully amplified on a microdevice coupled with a hand-held syringe as a portable sample actuation device, greatly enhancing device portability for on-site analyses.

摘要

芯片上连续流动聚合酶链反应 (PCR) 通常需要外围设备,如将样品液注入流体通道的泵。这使得整体仪器庞大,限制了集成。在这项研究中,我们提出了一种新的方案,使用手持式注射器作为便携式塑料泵来注入样品,并将其应用于芯片上连续流动 PCR。在提出的注射方案中,样品的驱动是在与充满压缩空气的手持式塑料注射器相连的高透气性钝端流体导管内部实现的。在该系统中,由于在样品塞的后端,注射器内保留了相对较大的空气量,因此通过透气性导管壁的空气扩散程度在前部(更靠近出口)比后部(更靠近入口)更大。这在流体导管的入口和出口处产生压力梯度,并将样品向前推进到出口。使用透气性硅酮管进行了初步实验,以对所提出的样品注射方案进行定量分析和评估。作为实际应用,成功地在与手持式注射器耦合的微器件上扩增了质粒载体的 230 bp 基因片段和人基因组 DNA 中干扰素-β (IFN-β) 启动子的前 282 bp,极大地提高了现场分析的设备便携性。

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