4.7 Article

Pairing cells of different sizes in a microfluidic device for immunological synapse monitoring

期刊

LAB ON A CHIP
卷 22, 期 5, 页码 908-920

出版社

ROYAL SOC CHEMISTRY
DOI: 10.1039/d1lc01156a

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资金

  1. Contrat de Plan Etat-Region CPER Cancer 2015-2020 fellowship
  2. Contrat de Plan Etat-Region CPER Cancer 2015-2020
  3. INSERM
  4. CNRS
  5. Ligue contre le cancer (Septentrion)
  6. Ligue nationale contre le cancer
  7. ARC
  8. Institut de Recherche sur le Cancer de Lille (IRCL)
  9. Lille Hospital
  10. Hauts de France Region

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Analyzing cell-cell interaction is crucial for understanding immune cell functions. This study introduces a method that uses hydrodynamic flow focusing to capture cells of different sizes and analyze their activities through calcium imaging.
Analyzing cell-cell interaction is essential to investigate how immune cells function. Elegant designs have been demonstrated to study lymphocytes and their interaction partners. However, these devices have been targeting cells of similar dimensions. T lymphocytes are smaller, more deformable, and more sensitive to pressure than many cells. This work aims to fill the gap of a method for pairing cells with different dimensions. The developed method uses hydrodynamic flow focusing in the z-direction for on-site modulation of effective channel height to capture smaller cells as single cells. Due to immune cells' sensitivity to pressure, the proposed method provides a stable system without any change in flow conditions at the analysis area throughout experiments. Paired live cells have their activities analyzed with calcium imaging at the immunological synapse formed under a controlled environment. The method is demonstrated with primary human T lymphocytes, acute myeloid leukemia (AML) cell lines, and primary AML blasts.

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