Institute of Environmental Systems Biology, Dalian Maritime University, Dalian, P. R. China.
Dalian Institute of Chemical Physics, Chinese Academy of Sciences, Dalian, P. R. China.
Electrophoresis. 2023 May;44(9-10):825-834. doi: 10.1002/elps.202200185. Epub 2023 Jan 31.
A novel microfluidic DNA extraction protocol based on integrated diaphragm microvalves/pumps and silica-deposited open-channel columns was developed specifically for automated and parallel DNA solid-phase extraction (SPE). The method uses microfluidic chips with a sandwiched structure containing three layers, which are the upper fluidic layer with surface-deposited silica on glass open channels as the extraction phase, the lower actuation layer with valve actuation channels on a glass wafer, and the middle poly(dimethylsiloxane) (PDMS) membrane for reversible bonding of the two glass substrates. These two glass substrates can be reused after thoroughly cleaning and the PDMS membrane can be replaced conveniently, which could effectively decrease the time and cost of chip manufacturing. The normally closed microvalves/pumps were used to automatically control all processes of the on-chip DNA SPE without cross-contamination and leakage, enabling the processing of multiple samples in parallel without changing the microvalve control module. Using the microchip device with integrated microvalves/pumps, automated, programmable, and simultaneous λ-DNA extractions from different samples could be attained, even from complex solutions such as human blood, and the silica-deposited open-channel columns could be reused stably and reliably. Results have demonstrated that most of the eluted λ-DNA was recovered in the second 2 µL of elution buffer with high-purity suitable for successful polymerase chain reaction amplification, making it possible for further integration into microfluidic devices for fully functional and high-throughput genetic analysis.
开发了一种基于集成隔膜微阀/泵和硅沉积开管柱的新型微流控 DNA 提取方案,专门用于自动化和并行 DNA 固相萃取 (SPE)。该方法使用具有夹层结构的微流控芯片,包含三层:上层为玻璃开管表面沉积硅胶的流体层,作为萃取相;下层为玻璃晶圆上具有阀致动通道的致动层;中层为聚二甲基硅氧烷 (PDMS) 膜,用于两块玻璃基板的可逆键合。这两块玻璃基板在经过彻底清洁后可以重复使用,并且可以方便地更换 PDMS 膜,这可以有效地降低芯片制造的时间和成本。常闭微阀/泵用于自动控制芯片上 DNA SPE 的所有过程,无交叉污染和泄漏,可在不改变微阀控制模块的情况下并行处理多个样品。使用具有集成微阀/泵的微芯片装置,可以实现自动化、可编程和同时从不同样品中提取 λ-DNA,即使是从复杂的溶液(如人血)中,硅沉积开管柱也可以稳定可靠地重复使用。结果表明,大部分洗脱的 λ-DNA 可以在第二 2µL 洗脱缓冲液中回收,纯度高,适合成功进行聚合酶链反应扩增,这使得进一步集成到微流控装置中进行全功能和高通量基因分析成为可能。