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A mechanical cell disruption microfluidic platform based on an on-chip micropump.

Yinuo ChengYue WangZhiyuan WangLiang HuangMingzhao BiWenxiao XuWenhui WangXiongying Ye
Published in: Biomicrofluidics (2017)
Cell disruption plays a vital role in detection of intracellular components which contain information about genetic and disease characteristics. In this paper, we demonstrate a novel microfluidic platform based on an on-chip micropump for mechanical cell disruption and sample transport. A 50 μl cell sample can be effectively lysed through on-chip multi-disruption in 36 s without introducing any chemical agent and suffering from clogging by cellular debris. After 30 cycles of circulating disruption, 80.6% and 90.5% cell disruption rates were achieved for the HEK293 cell sample and human natural killer cell sample, respectively. Profiting from the feature of pump-on-chip, the highly integrated platform enables more convenient and cost-effective cell disruption for the analysis of intracellular components.
Keyphrases
  • single cell
  • high throughput
  • cell therapy
  • circulating tumor cells
  • machine learning
  • healthcare
  • endothelial cells
  • bone marrow
  • social media
  • deep learning
  • health information
  • induced pluripotent stem cells
  • quantum dots