Czech Tim L, Nelson Philipp P, Thölken Clemens, Meyer Patrick, Hess Timo, Chung Ho-Ryun, Adhikary Till
Institute for Medical Bioinformatics and Biostatistics (IMBB), Philipps University of Marburg, Hans-Meerwein-Strasse 6, 35032 Marburg, Germany.
Centre for Tumour Biology and Immunology (ZTI), Philipps University of Marburg, Hans-Meerwein-Strasse 3, 35043 Marburg, Germany.
HardwareX. 2024 Mar 5;18:e00517. doi: 10.1016/j.ohx.2024.e00517. eCollection 2024 Jun.
The advent of single cell technologies resulted in growing demand for microfluidics in the biological sciences. Commercial platforms have remained expensive, inflexible, and non-customizable black boxes. We developed an open source, multichannel, zero-backflow microfluidics device based on syringe pumps controlled by a Raspberry Pi computer. It uses both readily available and 3D-printed parts as well as a custom PCB and is easily serviceable. Moreover, it is fully customizable for various applications. Total cost is under €600. We equipped one channel with a custom Peltier-based temperature controller for precise heating or cooling and a mixer mechanism to prevent sedimentation of the cells within the syringe. Depending on the cells in the sample, heating and cooling can be useful to maintain a beneficial environment or to slow down cellular processes and cell death, respectively. Combined with microfluidics consumables and a microscope, the device is capable of integration into a high quality droplet-based single cell RNA sequencing workflow as shown here. Analysis of a mixture of human and insect cells resulted in a dataset of 17,769 single cells and demonstrates reliable operation and separation.
单细胞技术的出现导致生物科学领域对微流体技术的需求不断增长。商业平台仍然价格昂贵、缺乏灵活性且不可定制,犹如黑匣子一般。我们基于由树莓派计算机控制的注射泵,开发了一种开源、多通道、无回流的微流体装置。它既使用现成的部件和3D打印部件,也使用定制的印刷电路板,并且易于维修。此外,它可针对各种应用进行完全定制。总成本低于600欧元。我们为一个通道配备了基于珀尔帖效应的定制温度控制器,用于精确加热或冷却,还配备了一个混合器机制,以防止细胞在注射器内沉淀。根据样品中的细胞情况,加热和冷却分别有助于维持有利环境或减缓细胞进程及细胞死亡。结合微流体耗材和显微镜,该装置能够集成到高质量的基于液滴的单细胞RNA测序工作流程中,如下所示。对人类和昆虫细胞混合物的分析产生了一个包含17,769个单细胞的数据集,证明了其可靠的操作和分离能力。