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Updated: Nov 14, 2025

Tailoring In Vivo Cytotoxicity Assays to Study Immunodominance in Tumor-specific CD8+ T Cell Responses
Published on: May 6, 2019
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.
Abstract:
Interfering with signalling pathways by targeting cell surface proteins has become an important strategy in the development of novel therapeutic agents. Notably, interfering with cytokine signalling revolutionised the treatment of chronic diseases. Cytokines can induce a range of effects that are not always accounted for in assays detecting cytokine binding to cell surface receptors and/or proximal signalling interference. Hence, robust assays are needed to characterise the activity of potential drug candidates targeting such effects. We chose interleukin-7 (IL7) as a cytokine model due to its long-term effect on T-cells. In this report we describe the development and refinement of an in vitro assay for measuring the long-term effect of IL7, more specifically on CD4+ T-cells, while the assay could be adapted to look at CD8+ T-cells. PBMCs and/or purified CD4+ T-cells stained with VPD450 (cell cycle dye) were expanded for 5 days using the mitogen Phytohemagglutinin and/or CD3/CD28 agonists. This resulted in cell proliferation (VPD450 dilution) and activation-induced cell death (7-AAD uptake) which was rescued by the addition of IL7, resulting in cell survival over a further 5 days. JAK-inhibitor (Tofactinib) or a blocking anti-IL7Rα antibody (clone R34.34) abolished cell survival suggesting antagonism, while another antibody (clone A019D5) displayed an agonist effect. These results were confirmed at the proximal signalling level using an IL7/STAT5-luciferase reporter assay. This novel assay for a biological long term effect may be useful for the characterisation of potential therapeutic drugs targeting the IL7/IL7R in CD4+ T-cells.
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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