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Updated: May 10, 2026

An Advanced Murine Model for Nonalcoholic Steatohepatitis in Association with Type 2 Diabetes
Published on: April 26, 2019
Insulin hypersensitivity induced by hepatic PTEN gene ablation protects from murine endotoxemia
Philipp M Guenzl1, Roman Raim, Julia Kral
1Institute for Physiology, Center for Physiology and Pharmacology, Medical University of Vienna, Vienna, Austria.
Abstract:
Sepsis still remains a major cause for morbidity and mortality in patients. The molecular mechanisms underlying the disease are still enigmatic. A great number of therapeutic approaches have failed and treatment strategies are limited to date. Among those few admitted for clinical intervention, intensive insulin treatment has proven to be effective in the reduction of disease related complications in critically ill patients. Insulin effectively reduces glucose levels and thereby contributes to protection. On the other hand insulin is a potent signaling pathway activator. One of those is the PI3K signaling axis. Activation of PI3K is known to limit pro-inflammatory gene expression. Here we can show that in a mouse model of insulin hypersensitivity induced by the deletion of the PI3K antagonist PTEN, specifically in hepatic tissue, significant protection is conferred in murine models of lethal endotoxemia and sepsis. Acute inflammatory responses are diminished, glucose metabolism normalized and vascular activation is reduced. Furthermore we investigated the hepatic gene expression profile of relevant anti-inflammatory genes in PTEN deficient mice and found marked upregulation of PPARγ and HO-1. We conclude from our data that insulin hypersensitivity via sustained activation of the PI3K signaling pathway exerts protective effects in acute inflammatory processes.
Insights
Insulin hypersensitivity, achieved by deleting PTEN in liver cells, protects mice from sepsis. This approach reduces inflammation and improves glucose metabolism by activating the PI3K signaling pathway.
Area of Science:
- Immunology
- Metabolic pathways
- Molecular biology
Background:
- Sepsis is a leading cause of death with limited treatment options.
- Insulin therapy can mitigate complications in critically ill patients.
- Insulin activates the phosphoinositide 3-kinase (PI3K) signaling pathway, which can reduce inflammation.
Purpose of the Study:
- To investigate the protective effects of insulin hypersensitivity in a mouse model of sepsis.
- To explore the role of the PI3K signaling axis in sepsis-induced inflammation.
- To identify molecular mechanisms underlying sepsis protection.
Main Methods:
- A mouse model with PTEN deletion in hepatic tissue was used to induce insulin hypersensitivity.
- Mice were subjected to lethal endotoxemia and sepsis models.
- Hepatic gene expression of anti-inflammatory markers was analyzed.
Main Results:
- Insulin hypersensitivity conferred significant protection against lethal endotoxemia and sepsis.
- Acute inflammatory responses, glucose metabolism, and vascular activation were improved.
- PTEN-deficient mice showed upregulation of anti-inflammatory genes, including PPARγ and HO-1.
Conclusions:
- Sustained PI3K signaling activation through insulin hypersensitivity provides protection in acute inflammatory conditions.
- Targeting insulin signaling pathways may offer novel therapeutic strategies for sepsis.

