| Literature DB >> 33430344 |
Linda Bilonda Mutala1,2,3, Cécile Deleine2,3, Matilde Karakachoff4, Delphine Dansette5, Kathleen Ducoin2,3, Romain Oger2,3, Olivia Rousseau4, Juliette Podevin6, Emilie Duchalais6, Pierre Fourquier7, Wassila El Alami Thomas8, Pierre-Antoine Gourraud4, Jaafar Bennouna9, Camille Brochier1, Nadine Gervois2,3, Céline Bossard2,3,5, Anne Jarry2,3.
Abstract
In colorectal cancer (CRC), a high density of T lymphocytes represents a strong prognostic marker in subtypes of CRC. Optimized immunotherapy strategies to boost this T-cell response are still needed. A good candidate is the inflammasome pathway, an emerging player in cancer immunology that bridges innate and adaptive immunity. Its effector protein caspase-1 matures IL-18 that can promote a T-helper/cytotoxic (Th1/Tc1) response. It is still unknown whether tumor cells from CRC possess a functional caspase-1/IL-18 axis that could modulate the Th1/Tc1 response. We used two independent cohorts of CRC patients to assess IL-18 and caspase-1 expression by tumor cells in relation to the density of TILs and the microsatellite status of CRC. Functional and multiparametric approaches at the protein and mRNA levels were performed on an ex vivo CRC explant culture model. We show that, in the majority of CRCs, tumor cells display an activated and functional caspase-1/IL-18 axis that contributes to drive a Th1/Tc1 response elicited by TILs expressing IL-18Rα. Furthermore, unsupervised clustering identified three clusters of CRCs according to the caspase-1/IL-18/TIL density/interferon gamma (IFNγ) axis and microsatellite status. Together, our results strongly suggest that targeting the caspase-1/IL-18 axis can improve the anti-tumor immune response in subgroups of CRC.Entities:
Keywords: Th1/Tc1 (IFNγ) response; caspase-1/IL-18 axis; colorectal cancer; ex vivo explant culture; inflammasome; tumor-infiltrating T lymphocytes (TILs)
Year: 2021 PMID: 33430344 PMCID: PMC7825767 DOI: 10.3390/cancers13020189
Source DB: PubMed Journal: Cancers (Basel) ISSN: 2072-6694 Impact factor: 6.639