Ching Terry, Vasudevan Jyothsna, Tan Hsih Yin, Lim Chwee Teck, Fernandez Javier, Toh Yi-Chin, Hashimoto Michinao
Pillar of Engineering Product Development, Singapore University of Technology and Design, Singapore.
Digital Manufacturing and Design (DManD) Centre, Singapore University of Technology and Design, Singapore.
HardwareX. 2021 May 17;10:e00202. doi: 10.1016/j.ohx.2021.e00202. eCollection 2021 Oct.
Commercially available peristaltic pumps for microfluidics are usually bulky, expensive, and not customizable. Herein, we developed a cost-effective kit to build a micro-peristaltic pump (~ 50 USD) consisting of 3D-printed and off-the-shelf components. We demonstrated fabricating two variants of pumps with different sizes and operating flowrates using the developed kit. The assembled pumps offered a flowrate of 0.02 ~ 727.3 μL/min, and the smallest pump assembled with this kit was 20 × 50 × 28 mm. This kit was designed with modular components (, each component followed a standardized unit) to achieve (1) customizability (users can easily reconfigure various components to comply with their experiments), (2) forward compatibility (new parts with the standardized unit can be designed and easily interfaced to the current kit), and (3) easy replacement of the parts experiencing wear and tear. To demonstrate the forward compatibility, we developed a flowrate calibration tool that was readily interfaced with the developed pump system. The pumps exhibited good repeatability in flowrates and functioned inside a cell incubator (at 37 °C and 95 % humidity) for seven days without noticeable issues in the performance. This cost-effective, highly customizable pump kit should find use in lab-on-a-chip, organs-on-a-chip, and point-of-care microfluidic applications.
市售的用于微流控的蠕动泵通常体积庞大、价格昂贵且无法定制。在此,我们开发了一种经济高效的套件来构建一个微型蠕动泵(约50美元),该套件由3D打印部件和现成部件组成。我们展示了使用开发的套件制造两种不同尺寸和工作流速的泵变体。组装后的泵流速为0.02~727.3微升/分钟,用该套件组装的最小泵尺寸为20×50×28毫米。该套件采用模块化部件设计(每个部件都遵循标准化单元),以实现(1)可定制性(用户可以轻松重新配置各种部件以符合他们的实验要求)、(2)向前兼容性(可以设计具有标准化单元的新部件并轻松连接到当前套件)以及(3)易于更换磨损的部件。为了展示向前兼容性,我们开发了一种流速校准工具,它可以很容易地与开发的泵系统连接。这些泵在流速方面表现出良好的重复性,并且在细胞培养箱(37°C和95%湿度)内运行了七天,性能没有明显问题。这种经济高效、高度可定制的泵套件应可用于芯片实验室、芯片器官和即时护理微流控应用。