Non-canonical NLRC4 inflammasomes in astrocytes contribute to glioma malignancy.

JeongMin Sim, Ju Won Ahn, JeongMan Park, Yu Jin Kim, Ju-Yeon Jeong, Ji Min Lee, Kyunggi Cho, Hee Jung Ahn, Kyoung Su Sung, Jong-Seok Moon, Ju Hyung Moon, Jaejoon Lim

Journal: Inflammation research : official journal of the European Histamine Research Society ... [et al.] 2023;72(4):813-827

PMID: 36899084

Abstract

BACKGROUND

The present study was designed to explore the pathological role of non-canonical NLRC4 inflammasome in glioma.

METHODS

This retrospective study included bioinformatical analysis, including survival, gene ontology, ssGSEA, cox regression, IPA and drug repositioning with TCGA and DepMap database. Experimental validations were conducted in glioma patient's sample and evaluated with histological or cellular functional analysis.

RESULT

Clinical dataset analysis revealed that non-canonical NLRC4 inflammasomes significantly contribute to glioma progression and poor survival rates. Experimental validation was revealed that the expression of non-canonical NLRC4 inflammasomes were co-localized with astrocytes in malignant gliomas, with a sustained clinical correlation observed between astrocytes and inflammasome signatures. Indeed, the formation of an inflammatory microenvironment increased in malignant gliomas, leading to pyroptosis, known as inflammatory cell death. Molecular interaction analysis revealed that NF-κB pathways potentially serve as the connecting point between the canonical and noncanonical pathways of the NLRC4 inflammasome. Finally, drug repositioning analysis of non-canonical NLRC4 inflammasome-associated molecules revealed that MK-5108, PF4981517, and CTEP may represent effective options for glioma therapy.

CONCLUSION

The findings of this study suggest that non-canonical NLRC4 inflammasomes contribute to poor prognosis in patients with glioma and induce an inflammatory microenvironment. We propose the pathological phenomenon of non-canonical NLRC4 inflammasomes and several therapeutic strategies based on the modulation of the inflammatory tumor microenvironment.

© 2023. The Author(s), under exclusive licence to Springer Nature Switzerland AG.

Address: Department of Neurosurgery, Bundang CHA Medical Center, CHA University College of Medicine, 59 Yatap-ro, Bundang-gu, Seongnam, 13496, Republic of Korea.; Department of Biomedical Science, College of Life Science, CHA University, Seongnam, Republic of Korea.; CHA Future Medicine Research Institute, CHA Bundang Medical Center, Seongnam, Korea.; Department of Pathology, CHA Bundang Medical Center, CHA University College of Medicine, Seongnam, Korea.; Department of Neurosurgery, Dong-A University Hospital, Dong-A University College of Medicine, Busan, Korea.; Soonchunhyang Institution of Medi-Bio Science (SIMS), Soonchunhyang University, Cheonan, Korea.; Department of Neurosurgery, Brain Tumor Center, Severance Hospital, Yonsei University College of Medicine, 50-1 Yonsei-ro, Seodaemun-gu, Seoul, 03772, Republic of Korea. [email protected].; Department of Neurosurgery, Bundang CHA Medical Center, CHA University College of Medicine, 59 Yatap-ro, Bundang-gu, Seongnam, 13496, Republic of Korea. [email protected].; Department of Biomedical Science, College of Life Science, CHA University, Seongnam, Republic of Korea. [email protected].

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