HMGB1 released by mesothelial cells drives the development of asbestos-induced mesothelioma

Author:

Suarez Joelle S.1,Novelli Flavia1ORCID,Goto Keisuke12,Ehara Michiko3ORCID,Steele Mika1,Kim Jin-Hee1,Zolondick Alicia A.14ORCID,Xue Jiaming15,Xu Ronghui1ORCID,Saito Mai1,Pastorino Sandra1ORCID,Minaai Michael1,Takanishi Yasutaka1,Emi Mitsuru1,Pagano Ian1ORCID,Wakeham Andrew6,Berger Thorsten6,Pass Harvey I.7ORCID,Gaudino Giovanni1,Mak Tak W.689ORCID,Carbone Michele1ORCID,Yang Haining1ORCID

Affiliation:

1. Thoracic Oncology, University of Hawaii Cancer Center, Honolulu, HI 96813

2. Department of Urology, Graduate School of Biomedical and Health Sciences, Hiroshima University, Hiroshima 734-8551, Japan

3. Department of Oral Pathology, Division of Oral Pathogenesis and Disease Control, School of Dentistry, Asahi University, Mizuho Gifu 501-0296, Japan

4. Department of Molecular Biosciences and Bioengineering, University of Hawaii at Manoa, Honolulu, HI 96822

5. John A. Burns, School of Medicine, University of Hawai’i, Honolulu, HI 96813

6. Princess Margaret Cancer Center, University Health Network, Toronto, ON M5G 2M9, Canada

7. Department of Cardiothoracic Surgery, New York University, New York, NY 10016

8. Department of Pathology, School of Clinical Medicine, Li Ka Shing Faculty of Medicine, The University of Hong Kong, Hong Kong SAR 999077, China

9. Centre for Oncology and Immunology, Hong Kong Science Park, Hong Kong SAR 999077, China

Abstract

Asbestos is the main cause of malignant mesothelioma. Previous studies have linked asbestos-induced mesothelioma to the release of HMGB1 from the nucleus to the cytoplasm, and from the cytoplasm to the extracellular space. In the cytoplasm, HMGB1 induces autophagy impairing asbestos-induced cell death. Extracellularly, HMGB1 stimulates the secretion of TNFα . Jointly, these two cytokines kick-start a chronic inflammatory process that over time promotes mesothelioma development. Whether the main source of extracellular HMGB1 were the mesothelial cells, the inflammatory cells, or both was unsolved. This information is critical to identify the targets and design preventive/therapeutic strategies to interfere with asbestos-induced mesothelioma. To address this issue, we developed the conditional mesothelial HMGB1-knockout ( Hmgb1 ΔpMeso ) and the conditional myelomonocytic-lineage HMGB1-knockout ( Hmgb1 ΔMylc ) mouse models. We establish here that HMGB1 is mainly produced and released by the mesothelial cells during the early phases of inflammation following asbestos exposure. The release of HMGB1 from mesothelial cells leads to atypical mesothelial hyperplasia, and in some animals, this evolves over the years into mesothelioma. We found that Hmgb1 ΔpMeso , whose mesothelial cells cannot produce HMGB1, show a greatly reduced inflammatory response to asbestos, and their mesothelial cells express and secrete significantly reduced levels of TNFα . Moreover, the tissue microenvironment in areas of asbestos deposits displays an increased fraction of M1-polarized macrophages compared to M2 macrophages. Supporting the biological significance of these findings, Hmgb1 ΔpMeso mice showed a delayed and reduced incidence of mesothelioma and an increased mesothelioma-specific survival. Altogether, our study provides a biological explanation for HMGB1 as a driver of asbestos-induced mesothelioma.

Funder

HHS | National Institutes of Health

HHS | NIH | National Institute of Environmental Health Sciences

HHS | NIH | National Cancer Institute

U.S. Department of Defense

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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