Han Ziyang, Gong Pengfei, Su Hengxiang, Gao Zehang, Feng Shilun, Zhao Jianlong
State Key Laboratory of Transducer Technology, Shanghai Institute of Microsystem and Information Technology, Chinese Academy of Sciences, Shanghai 200050, China.
Xiangfu Laboratory, Jiashan 314102, China.
Micromachines (Basel). 2025 May 27;16(6):630. doi: 10.3390/mi16060630.
Conventional laboratory methods for handling valuable biological samples typically use pipettes or needles, which are prone to issues such as dead volume and sample waste. Furthermore, the sampling and processing of pathogenic bacteria, such as () in environmental wastewater, require labor-intensive procedures with multiple complex steps. To overcome these limitations, we developed a pipette integrated with a microfluidic chip for bacteria sampling and delivery. This pipette can provide the negative pressure to microfluidic chips for sampling, the constant temperature unit for biological reaction, and programs for automatic control (suction, heating, liquid discharge, and cleaning) and display. The droplet chip employs a cross-channel structure to generate droplets and incorporates a designated droplet storage and detection area. Utilizing this innovative device, we have demonstrated the generation, transportation, and storage of pL droplets, as well as quantitatively detected samples across various concentrations. The test results have demonstrated the overall reliability and data consistency of the system. Overall, our device achieves the precise sampling of pL volumes, offering a simple yet promising solution for the sampling and delivery of bio-samples in remote settings.
处理珍贵生物样本的传统实验室方法通常使用移液器或针头,这些方法容易出现死体积和样本浪费等问题。此外,对环境废水中的()等致病细菌进行采样和处理需要多步骤的劳动密集型程序。为克服这些限制,我们开发了一种集成微流控芯片的移液器用于细菌采样和输送。这种移液器可为微流控芯片提供采样所需的负压、生物反应所需的恒温单元以及自动控制(抽吸、加热、排液和清洗)和显示程序。液滴芯片采用交叉通道结构来产生液滴,并设有指定的液滴存储和检测区域。利用这一创新设备,我们展示了皮升级液滴的产生、运输和存储,以及对不同浓度的样本进行定量检测。测试结果证明了该系统的整体可靠性和数据一致性。总体而言,我们的设备实现了皮升级体积的精确采样,为偏远地区生物样本的采样和输送提供了一种简单而有前景的解决方案。