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Citations to this article

TNF superfamily receptor OX40 triggers invariant NKT cell pyroptosis and liver injury
Peixiang Lan, … , Xiang Xiao, Xian Chang Li
Peixiang Lan, … , Xiang Xiao, Xian Chang Li
Published April 24, 2017
Citation Information: J Clin Invest. 2017;127(6):2222-2234. https://doi.org/10.1172/JCI91075.
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Research Article Immunology Inflammation Article has an altmetric score of 20

TNF superfamily receptor OX40 triggers invariant NKT cell pyroptosis and liver injury

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Abstract

Tissue-resident immune cells play a key role in local and systemic immune responses. The liver, in particular, hosts a large number of invariant natural killer T (iNKT) cells, which are involved in diverse immune responses. However, the mechanisms that regulate survival and homeostasis of liver iNKT cells are poorly defined. Here we have found that liver iNKT cells constitutively express the costimulatory TNF superfamily receptor OX40 and that OX40 stimulation results in massive pyroptotic death of iNKT cells, characterized by the release of potent proinflammatory cytokines that induce liver injury. This OX40/NKT pyroptosis pathway also plays a key role in concanavalin A–induced murine hepatitis. Mechanistically, we demonstrated that liver iNKT cells express high levels of caspase 1 and that OX40 stimulation activates caspase 1 via TNF receptor–associated factor 6–mediated recruitment of the paracaspase MALT1. We also found that activation of caspase 1 in iNKT cells results in processing of pro–IL-1β to mature IL-1β as well as cleavage of the pyroptotic protein gasdermin D, which generates a membrane pore–forming fragment to produce pyroptotic cell death. Thus, our study has identified OX40 as a death receptor for iNKT cells and uncovered a molecular mechanism of pyroptotic cell death. These findings may have important clinical implications in the development of OX40-directed therapies.

Authors

Peixiang Lan, Yihui Fan, Yue Zhao, Xiaohua Lou, Howard P. Monsour, Xiaolong Zhang, Yongwon Choi, Yaling Dou, Naoto Ishii, Rafik M. Ghobrial, Xiang Xiao, Xian Chang Li

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Total citations by year

Year: 2025 2024 2023 2022 2021 2020 2019 2018 2017 2009 Total
Citations: 2 4 3 6 3 4 5 5 6 1 39
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Citations to this article (39)

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Molecular Biomedicine 2025
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Xu Z, Xu Z, Fan X, Qu MM, Wang H, Li J, Gao L, Jiao YM, Shi J, Wang FS
Hepatology communications 2025
Hypermethylation of glutathione peroxidase 4 promoter predicts poor prognosis of hepatitis B virus-associated acute-on-chronic liver failure.
Xing Su, Ying Zhang, Pengyu Luo, Shuai Gao, Yuchen Fan, kai wang
Frontiers in Molecular Biosciences 2024
CCR2+TREM-1+ monocytes promote natural killer T cell dysfunction contributing towards HBV disease progression.
Wu X, Zhao W, Miao Q, Shi S, Wei B, Luo L, Cai B
Immunologic research 2024
Gpx4 Regulates Invariant NKT Cell Homeostasis and Function by Preventing Lipid Peroxidation and Ferroptosis.
Sok SPM, Pipkin K, Popescu NI, Reidy M, Li B, Van Remmen H, Kinter M, Sun XH, Fan Z, Zhao M
Journal of immunology (Baltimore, Md. : 1950) 2024
Unveiling the nexus: pyroptosis and its crucial implications in liver diseases.
Miao Z, Zhang X, Xu Y, Liu Y, Yang Q
Molecular and cellular biochemistry 2024
Classic costimulatory interactions in MAIT cell responses: from gene expression to immune regulation
Wang NI, Ninkov M, Haeryfar SM
Clinical & Experimental Immunology 2023
Different types of cell death and their shift in shaping disease
Shen S, Shao Y, Li C
Cell Death Discovery 2023
Programmed Cell Death in Liver Fibrosis
Gao R, Tang H, Mao J
Journal of inflammation research 2023
Multi‐faceted role of pyroptosis mediated by inflammasome in liver fibrosis
H Yang, J Wang, Z Liu
Journal of Cellular and Molecular Medicine 2022
Aberrant blood MALT1 and its relevance with multiple organic dysfunctions, T helper cells, inflammation, and mortality risk of sepsis patients
Y Wang, Q Huang, F He
Journal of Clinical Laboratory Analysis 2022
Insights into inflammasome regulation: cellular, molecular, and pathogenic control of inflammasome activation
N Challagundla, B Saha, R Agrawal-Rajput
Immunologic Research 2022
The emerging role of pyroptosis in pediatric cancers: from mechanism to therapy
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Yang B, Xie X, Lv D, Hu J, Chen Y, Wu Z, Luo S, Zhang S
British Journal of Cancer 2022
Hepatic HRC induces hepatocyte pyroptosis and HSCs activation via NLRP3/caspase-1 pathway.
Wu J, Zhang M, Xia S, Han P, Zhao K, Peng K, Zhou W, Tian D, Liao J, Liu J
Journal of Molecular Medicine 2022
Peroxiredoxin 3 Inhibits Acetaminophen-Induced Liver Pyroptosis Through the Regulation of Mitochondrial ROS
Y Wang, Y Zhao, Z Wang, R Sun, B Zou, R Li, D Liu, M Lin, J Zhou, S Ning, X Tian, J Yao
Frontiers in immunology 2021
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FASEB bioAdvances 2021
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H Cao, L Wu, X Tian, W Zheng, M Yuan, X Li, X Tian, Y Wang, H Song, Z Shen
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JCI Insight 2019
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M Zheng, Z Tian
Frontiers in immunology 2019
Pyroptosis in Liver Disease: New Insights into Disease Mechanisms
J Wu, S Lin, B Wan, B Velani, Y Zhu
Aging and disease 2019
Gasdermin D: Evidence of pyroptosis in spontaneous preterm labor with sterile intra‐amniotic inflammation or intra‐amniotic infection
N GomezLopez, R Romero, AL Tarca, D Miller, B Panaitescu, G Schwenkel, DW Gudicha, SS Hassan, P Pacora, E Jung, CD Hsu
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NKT cells in liver diseases
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The Role of Invariant NKT in Autoimmune Liver Disease: Can Vitamin D Act as an Immunomodulator?
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