Development of a long-term, IL7 dependent cell death rescue assay in CD4+ T-cells

Daniel Perez-Witzke1, Rekha Parmar1, Ileana Blancq1

  • 1Leeds Institute of Rheumatic and Musculoskeletal Medicine, University of Leeds, UK.

Insights

A new assay measures the long-term effects of interleukin-7 (IL7) on CD4+ T-cells, aiding the development of drugs targeting the IL7 receptor. This method assesses cell survival and proliferation, crucial for therapeutic development.

Area of Science:

  • Immunology
  • Cell Biology
  • Pharmacology

Background:

  • Targeting cell surface proteins and cytokine signaling is key for novel therapeutics.
  • Existing assays often fail to capture the full spectrum of cytokine effects.
  • Robust assays are needed to characterize drug candidates impacting cytokine signaling.

Purpose of the Study:

  • To develop and refine an in vitro assay for measuring the long-term effects of interleukin-7 (IL7) on CD4+ T-cells.
  • To assess the utility of this assay in characterizing potential therapeutic drugs targeting the IL7/IL7R pathway.

Main Methods:

  • Peripheral blood mononuclear cells (PBMCs) or CD4+ T-cells were stained with a cell cycle dye (VPD450).
  • Cells were expanded using mitogens and/or CD3/CD28 agonists for 5 days.
  • IL7's effect on cell proliferation (VPD450 dilution) and survival was measured over an additional 5 days. Assays included JAK-inhibitor and anti-IL7Rα antibody treatments, and a luciferase reporter assay.

Main Results:

  • IL7 addition rescued activation-induced cell death and promoted CD4+ T-cell survival and proliferation.
  • A blocking anti-IL7Rα antibody (clone R34.34) antagonized IL7's effect, while another antibody (clone A019D5) showed an agonist effect.
  • Results were validated at the proximal signaling level using an IL7/STAT5-luciferase reporter assay.

Conclusions:

  • A novel in vitro assay effectively measures the long-term biological effects of IL7 on CD4+ T-cells.
  • This assay can differentiate between agonist and antagonist effects of IL7R modulators.
  • The assay is valuable for characterizing therapeutic drugs targeting the IL7/IL7R pathway in CD4+ T-cells.

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