PI3Kγ promotes obesity-associated hepatocellular carcinoma by regulating metabolism and inflammation

Barbara Becattini1, Ludovic Breasson1, Claudia Sardi1

  • 1The Wallenberg Laboratory, Department of Molecular and Clinical Medicine at Institute of Medicine, University of Gothenburg, Sahlgrenska University Hospital, Gothenburg, Sweden.

Abstract

Insights

Selective inhibition of phosphatidylinositides-3 kinase gamma (PI3Kγ) reduces hepatocellular carcinoma (HCC) development in obesity-promoted models. This approach may offer a novel therapeutic strategy for managing HCC, particularly in obese individuals.

Area of Science:

  • Oncology
  • Molecular Biology
  • Metabolic Diseases

Background:

  • Phosphatidylinositides-3 kinases (PI3Ks) are key targets in cancer therapy.
  • Complete PI3K inhibition causes adverse effects like liver damage and metabolic disturbances.
  • The specific role of PI3Kγ in hepatocellular carcinoma (HCC) was previously unknown.

Purpose of the Study:

  • To investigate the role of PI3Kγ in hepatocellular carcinoma (HCC) development.
  • To determine if selective PI3Kγ ablation impacts HCC initiation and progression in obesity-promoted models.

Main Methods:

  • Histopathological, metabolic, and molecular phenotyping of mice with genetic PI3Kγ ablation.
  • Utilized models of carcinogen-initiated (diethylnitrosamine) and obesity-promoted HCC.
  • Investigated PI3Kγ's role in leukocytes and endothelial cells in obese mice.

Main Results:

  • PI3Kγ ablation reduced tumor growth in obesity-promoted HCC models, linked to lower insulinemia, steatosis, and inflammatory cytokines.
  • In obese mice, PI3Kγ deficiency in leukocytes and endothelial cells reduced tumor number, neutrophil infiltration, and hepatocyte proliferation.
  • Loss of PI3Kγ did not affect HCC development in lean mice.

Conclusions:

  • PI3Kγ deficiency mitigates obesity-promoted HCC via improved metabolic state and reduced inflammation and proliferation.
  • Selective PI3Kγ inhibition may be a viable therapeutic strategy for HCC, especially in obese patients.
  • The findings highlight PI3Kγ's multifaceted role in HCC development across different cell types and mechanisms.

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