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Updated: Apr 14, 2026

Characterization of MLKL-mediated Plasma Membrane Rupture in Necroptosis
Published on: August 7, 2018
RIPK3 expression in cervical cancer cells is required for PolyIC-induced necroptosis, IL-1α release, and efficient
Susanne V Schmidt1, Stefanie Seibert2, Barbara Walch-Rückheim2
1Center for Molecular Medicine Cologne and Institute of Virology, University of Cologne, Germany.
Abstract:
Previous studies have shown that cervical cancer cells only release low levels of pro-inflammatory cytokines owing to infection with human papillomaviruses. This results in low immunogenicity of the cancer cells. The viral dsRNA analog PolyIC has been suggested as a promising adjuvant for cervical cancer immunotherapy. However, little is known about the molecular requirements resulting in successful immune activation. Here, we demonstrate that stimulation of cervical cancer cells with PolyIC induced necroptotic cell death, which was strictly dependent on the expression of the receptor-interacting protein kinase RIPK3. Necroptotic cancer cells released interleukin-1α (IL-1α), which was required for powerful activation of dendritic cells (DC) to produce IL-12, a cytokine critical for anti-tumor responses. Again both, IL-1α release and DC activation, were strictly dependent on RIPK3 expression in the tumor cells. Of note, our in situ analyses revealed heterogeneous RIPK3 expression patterns in cervical squamous cell carcinomas and adenocarcinomas. In summary, our study identified a novel RIPK3-dependent mechanism that explains how PolyIC-treatment of cervical cancer cells leads to potent DC activation. Our findings suggest that the RIPK3 expression status in cervical cancer cells might critically influence the outcome of PolyIC-based immunotherapeutic approaches and should therefore be assessed prior to immunotherapy.
Insights
PolyIC treatment induces RIPK3-dependent necroptosis in cervical cancer cells, releasing IL-1α to activate dendritic cells. RIPK3 expression is crucial for this immune response and may predict immunotherapy success.
Area of Science:
- Immunology
- Oncology
- Molecular Biology
Background:
- Cervical cancer exhibits low immunogenicity due to reduced pro-inflammatory cytokine release from human papillomavirus infection.
- PolyIC, a viral dsRNA analog, is a potential adjuvant for cervical cancer immunotherapy, but its immune activation mechanisms are unclear.
Purpose of the Study:
- To elucidate the molecular requirements for PolyIC-induced immune activation in cervical cancer.
- To investigate the role of receptor-interacting protein kinase RIPK3 in PolyIC immunotherapy response.
Main Methods:
- Stimulation of cervical cancer cells with PolyIC.
- Assessment of cell death pathways, cytokine release (IL-1α), and dendritic cell (DC) activation (IL-12 production).
- Analysis of RIPK3 expression in tumor tissues.
Main Results:
- PolyIC induced RIPK3-dependent necroptotic cell death in cervical cancer cells.
- Necroptotic cells released IL-1α, which was essential for potent DC activation and IL-12 production.
- RIPK3 expression was heterogeneous in cervical cancer subtypes, impacting IL-1α release and DC activation.
Conclusions:
- A novel RIPK3-dependent mechanism links PolyIC treatment to potent DC activation via IL-1α release.
- RIPK3 expression in cervical cancer cells is a critical factor for successful PolyIC-based immunotherapy.
- Assessing RIPK3 status in tumors is recommended before initiating PolyIC immunotherapy.
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