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A High-Throughput and Uniform Amplification Method for Cell Spheroids.

Liyuan LiuHaixia LiuXiaowen HuangXiaoli LiuChengyun Zheng
Published in: Micromachines (2022)
Cell culture is an important life science technology. Compared with the traditional two-dimensional cell culture, three-dimensional cell culture can simulate the natural environment and structure specificity of cell growth in vivo. As such, it has become a research hotspot. The existing three-dimensional cell culture techniques include the hanging drop method, spinner flask method, etc., making it difficult to ensure uniform morphology of the obtained cell spheroids while performing high-throughput. Here, we report a method for amplifying cell spheroids with the advantages of quickly enlarging the culture scale and obtaining cell spheroids with uniform morphology and a survival rate of over 95%. Technically, it is easy to operate and convenient to change substances. These results indicate that this method has the potential to become a promising approach for cell-cell, cell-stroma, cell-organ mutual interaction research, tissue engineering, and anti-cancer drug screening.
Keyphrases
  • single cell
  • high throughput
  • cell therapy
  • emergency department
  • mesenchymal stem cells
  • tissue engineering
  • climate change
  • risk assessment
  • bone marrow