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从血液中提取核酸:揭示离心微流控中主动气动泵在集成和自动化样品制备过程中的潜力。

Extraction of nucleic acids from blood: unveiling the potential of active pneumatic pumping in centrifugal microfluidics for integration and automation of sample preparation processes.

机构信息

National Research Council of Canada, Life Sciences Division, 75 de Mortagne Boulevard, Boucherville, QC J4B 6Y4, Canada.

Canadian Space Agency, 6767 Route de l'Aéroport, Saint-Hubert, QC J3Y 8Y9, Canada.

出版信息

Lab Chip. 2019 Jun 7;19(11):1941-1952. doi: 10.1039/c9lc00276f. Epub 2019 Apr 18.

DOI:10.1039/c9lc00276f
PMID:30997461
Abstract

This paper describes the development of an on-chip nucleic acid (NA) extraction assay from whole blood using a centrifugal microfluidic platform that allows for pneumatic actuation of liquids during rotation. The combination of pneumatic and centrifugal forces makes it possible to perform fluidic operations without the need for integrating active control elements on the microfluidic cartridge. The cartridge is fabricated from thermoplastic polymers (e.g., Zeonor 1060R) and features a simple design that is compatible with injection molding. In addition, the cartridge is interfaced with two external vials for off-chip storage of the blood sample and retrieval of the eluted NA solution, respectively. On-chip capture of NAs is performed using an embedded solid-phase extraction matrix composed of commercial glass microfiber filters (Whatman GF/D and GF/F). The yield of the automated, on-chip extraction protocol, determined by measuring absorbance at 260 nm, is comparable to some of the best manually operated kits (e.g., Qiagen QIAamp DNA Mini Kit) while providing low assay-to-assay variability due to the high level of control provided by the platform for each processing step. The A260/A280 and A260/A230 ratios of the absorbance spectra also reveal that protein contamination of the sample is negligible. The capability of the pneumatic platform to circulate air flux through the microfluidic conduit was used to dry leftover ethanol residues retained in the capture matrix during washing. This method, applied in combination with localized heating, proved effective for reducing ethanol contamination in eluted samples from ∼12% to 1% (v/v).

摘要

本文介绍了一种基于离心微流控平台的全血中核酸(NA)提取检测方法的开发,该平台允许在旋转过程中通过气动作用来驱动液体。气动和离心力的结合使得在微流控芯片上无需集成主动控制元件即可进行流体操作。该芯片由热塑性聚合物(例如 Zeonor 1060R)制成,具有简单的设计,与注塑成型兼容。此外,该芯片与两个外部小瓶接口,分别用于在芯片外储存血液样本和提取洗脱的 NA 溶液。通过使用商业玻璃微纤维过滤器(Whatman GF/D 和 GF/F)组成的嵌入式固相萃取基质,在芯片上实现 NA 的捕获。通过测量 260nm 处的吸光度来确定自动、芯片上提取方案的产量,与一些最佳的手动操作试剂盒(例如 Qiagen QIAamp DNA Mini Kit)相当,同时由于平台为每个处理步骤提供了高水平的控制,因此具有较低的检测间变异性。吸光度光谱的 A260/A280 和 A260/A230 比值也表明样品中的蛋白质污染可以忽略不计。气动平台通过微流道循环气流的能力被用于在洗涤过程中干燥捕获基质中残留的乙醇。这种方法与局部加热相结合,可有效降低洗脱样品中乙醇的污染,从约 12%(v/v)降至 1%(v/v)。

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