Liu Yong, Liang Mingyi, Xu Shanshan, Yan Sheng
Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, China.
College of Mechatronics and Control Engineering, Shenzhen University, Shenzhen, 518060, China.
Adv Sci (Weinh). 2025 Aug;12(30):e07041. doi: 10.1002/advs.202507041. Epub 2025 May 23.
Microfluidics can achieve the spatiotemporal manipulation of particles and cells in the microscale fluids, but highly relies on the accuracy of the pumping systems. To overcome this issue, a pump-free, hydraulic-amplification oscillatory microfluidic (PHOMF) device is presented, which can be actuated by fingers to handle particles and cells within the microchannel. The PHOMF device has a hydraulic-amplification module for pressure transfer and a soft microchannel module for the generation of oscillatory flows. This is made possible by the periodic transfer of finger-driven liquid pressure to the soft microchannel. This pressure causes the soft microchannel to deform and then drives the reciprocating flow of fluid volumes within the microchannel. In the oscillatory flow, particles and cells achieve single-line focusing driven by the spatially accumulated inertial and elastic lift forces. The particle elasto-inertial focusing theory in the PHOMF microchannel has been revealed. To demonstrate the system's practicality, the PHOMF device is utilized to achieve the early observation of platelet clots (3 min) and the rapid staining of cancer cells (8 min). The PHOMF device provides a miniaturized, inexpensive, and efficient detection tool for lab-on-a-chip, and has the potential to become a mass-produced, widely available, and convenient disease detection product.
微流控技术能够在微尺度流体中实现对颗粒和细胞的时空操控,但高度依赖于泵系统的精度。为克服这一问题,本文提出了一种无泵、液压放大振荡微流控(PHOMF)装置,该装置可通过手指驱动来操控微通道内的颗粒和细胞。PHOMF装置有一个用于压力传递的液压放大模块和一个用于产生振荡流的柔性微通道模块。这是通过将手指驱动的液体压力周期性地传递到柔性微通道来实现的。这种压力使柔性微通道变形,进而驱动微通道内流体体积的往复流动。在振荡流中,颗粒和细胞在空间累积的惯性和弹性升力作用下实现单线聚焦。揭示了PHOMF微通道中的颗粒弹性惯性聚焦理论。为证明该系统的实用性,利用PHOMF装置实现了血小板凝块的早期观察(3分钟)和癌细胞的快速染色(8分钟)。PHOMF装置为芯片实验室提供了一种小型化、低成本且高效的检测工具,并且有潜力成为一种大规模生产、广泛可用且便捷的疾病检测产品。