Microfluidic Approach to Resolve Simultaneous and Sequential Cytokine Secretion of Individual Polyfunctional Cells

Aline Linder1, Kevin Portmann1, Luca Johannes Schlotheuber1

  • 1Laboratory for Functional Immune Repertoire Analysis, Institute of Pharmaceutical Sciences, Department of Chemistry and Applied Biosciences, ETH Zürich.

Insights

A new microfluidic droplet platform enables single-cell analysis of cytokine secretion dynamics. This tool quantifies multiple cytokines in parallel, revealing immune cell heterogeneity and aiding drug development.

Area of Science:

  • Immunology
  • Biotechnology
  • Microfluidics

Background:

  • Cytokine responses are crucial in immunity but complex to study at the single-cell level.
  • Existing tools lack the resolution to capture dynamic, multi-cytokine secretion from individual immune cells.

Purpose of the Study:

  • To develop and validate a microfluidic droplet platform for time-resolved, single-cell measurement of cytokine secretion dynamics.
  • To characterize cytokine secretion heterogeneity in immune cell populations.

Main Methods:

  • Encapsulation of single cells and immunoassay reagents within microfluidic droplets.
  • Multiplexed quantification of cytokine concentrations using fluorescent imaging.
  • Time-resolved analysis of secreted cytokine dynamics from individual cells.

Main Results:

  • The platform successfully measured parallel cytokine secretion dynamics at the single-cell level.
  • Distinct cytokine secretion profiles were identified for different cell populations, highlighting phenotypic heterogeneity.
  • Demonstrated application using lipopolysaccharide-stimulated human peripheral blood mononuclear cells.

Conclusions:

  • The microfluidic droplet platform provides a novel tool for dissecting complex immune responses.
  • This technology can advance understanding of immune dysregulation and inform therapeutic strategies.
  • The modular assay design allows broad applicability for studying various proteins and cell types.

Related Concept Videos