首页> 外文期刊>Ultrasound in Medicine and Biology >Proliferation and viability of adherent cells manipulated by standing-wave ultrasound in a microfluidic chip.
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Proliferation and viability of adherent cells manipulated by standing-wave ultrasound in a microfluidic chip.

机译:微流控芯片中通过驻波超声处理的贴壁细胞的增殖和活力。

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摘要

Ultrasonic-standing-wave (USW) technology has potential to become a standard method for gentle and contactless cell handling in microfluidic chips. We investigate the viability of adherent cells exposed to USWs by studying the proliferation rate of recultured cells following ultrasonic trapping and aggregation of low cell numbers in a microfluidic chip. The cells form 2-D aggregates inside the chip and the aggregates are held against a continuous flow of cell culture medium perpendicular to the propagation direction of the standing wave. No deviations in the doubling time from expected values (24 to 48 h) were observed for COS-7 cells held in the trap at acoustic pressure amplitudes up to 0.85 MPa and for times ranging between 30 and 75 min. Thus, the results demonstrate the potential of ultrasonic standing waves as a tool for gentle manipulation of low cell numbers in microfluidic systems.
机译:超声波驻波(USW)技术有可能成为微流控芯片中温和无接触细胞处理的标准方法。我们通过研究超声捕获和微流控芯片中低细胞数聚集后再培养细胞的增殖率,来研究暴露于USWs的贴壁细胞的活力。细胞在芯片内部形成2-D聚集体,并且聚集体与垂直于驻波传播方向的连续细胞培养基流保持相对。对于保持在阱中的COS-7细胞,在声压振幅高达0.85 MPa且时间介于30和75分钟之间的时间内,没有观察到倍增时间与预期值(24至48 h)之间的偏差。因此,结果证明了超声波驻波作为微流控系统中低细胞数的温和操纵工具的潜力。

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