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使用简单的 PDMS 微流控芯片和标准实验室设备进行数字 PCR。

Digital PCR using a simple PDMS microfluidic chip and standard laboratory equipment.

机构信息

Materials Fabrication Laboratory, RIKEN Cluster for Pioneering Research, 2-1 Hirosawa, Wako, Saitama, 351-0198, Japan.

出版信息

Anal Sci. 2023 Dec;39(12):2067-2074. doi: 10.1007/s44211-023-00425-2. Epub 2023 Sep 14.

Abstract

Digital PCR (dPCR) enables sensitive and precise quantification of template nucleic acid without calibration. However, dPCR is not yet in widespread use, probably due to the need for expensive specialized instruments. In this paper, we describe a dPCR system using a simple microfluidic chip and common laboratory tools. The microfluidic chip consists of two parts: a PDMS part with 24,840 × 0.25 nL microwells and a PDMS-coated flat glass plate. Human RNase P gene was adopted as the model template. Commercial products of human genomic DNA and real-time PCR reagents were mixed to make a PCR mixture. The PCR mixture was confined to the microwells by the PDMS degas-driven liquid control technique. The thermal cycling was performed on a common well-type thermal cycler with a minor modification. During the thermal cycling, evaporation of the PCR mixture was prevented with a handmade water holder. In the fluorescence image, bright (positive) microwells and dim (negative) ones were clearly discriminated. The number of the positive microwells was counted using software, and was used for estimation of the template concentration in the sample based on the theory of the Poisson distribution. The estimated concentrations well agreed with the input template concentrations in the range from 1.32 copies/µL to 13 200 copies/µL. The techniques presented in this paper will pave the way for facile dPCR in a broad range of laboratories without the need for expensive instruments.

摘要

数字 PCR(dPCR)可实现模板核酸的灵敏且精确定量,而无需校准。然而,dPCR 尚未得到广泛应用,这可能是由于需要昂贵的专用仪器。在本文中,我们描述了一种使用简单微流控芯片和常见实验室工具的 dPCR 系统。微流控芯片由两部分组成:带有 24,840×0.25 nL 微井的 PDMS 部分和涂有 PDMS 的平板玻璃。我们采用人 RNase P 基因作为模板。将商用的人基因组 DNA 产品和实时 PCR 试剂混合以制备 PCR 混合物。PDMS 脱气驱动的液体控制技术将 PCR 混合物限制在微井中。热循环在经过轻微修改的普通孔式热循环仪上进行。在热循环过程中,通过手工制作的水夹防止 PCR 混合物蒸发。在荧光图像中,可以清楚地区分明亮(阳性)微井和暗淡(阴性)微井。使用软件对阳性微井的数量进行计数,并根据泊松分布理论,基于该计数来估计样品中的模板浓度。在 1.32 拷贝/μL 至 13200 拷贝/μL 的范围内,估计浓度与输入模板浓度吻合良好。本文介绍的技术将为广泛的实验室提供便捷的 dPCR 方法,而无需使用昂贵的仪器。

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