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Generation of a Rat Model of Acute Liver Failure by Combining 70% Partial Hepatectomy and Acetaminophen
Published on: November 27, 2019
Sterile inflammation in acetaminophen-induced liver injury is mediated by Cot/tpl2
Carlos Sanz-Garcia1, Gemma Ferrer-Mayorga, Águeda González-Rodríguez
1Instituto Investigaciones Biomédicas Alberto Sols, CISC-UAM, 28029 Madrid, Spain.
Abstract:
Cot/tpl2 (MAP3K8) activates MKK1/2-Erk1/2 following stimulation of the Toll-like/IL-1 receptor superfamily. Here, we investigated the role of Cot/tpl2 in sterile inflammation and drug-induced liver toxicity. Cot/tpl2 KO mice exhibited reduced hepatic injury after acetaminophen challenge, as evidenced by decreased serum levels of both alanine and aspartate aminotransferases, decreased hepatic necrosis, and increased survival relative to Wt mice. Serum levels of both alanine and aspartate aminotransferases were also lower after intraperitoneal injection of acetaminophen in mice expressing an inactive form of Cot/tpl2 compared with Wt mice, suggesting that Cot/tpl2 activity contributes to acetaminophen-induced liver injury. Furthermore, Cot/tpl2 deficiency reduced neutrophil and macrophage infiltration in the liver of mice treated with acetaminophen, as well as their hepatic and systemic levels of IL-1α. Intraperitoneal injection of damage-associated molecular patterns from necrotic hepatocytes also impaired the recruitment of leukocytes and decreased the levels of several cytokines in the peritoneal cavity in Cot/tpl2 KO mice compared with Wt counterparts. Moreover, similar activation profiles of intracellular pathways were observed in Wt macrophages stimulated with Wt or Cot/tpl2 KO damage-associated molecular patterns. However, upon stimulation with damage-associated molecular patterns, the activation of Erk1/2 and JNK was deficient in Cot/tpl2 KO macrophages compared with their Wt counterparts; an effect accompanied by weaker release of several cytokines, including IL-1α, an important component in the development of sterile inflammation. Taken together, these findings indicate that Cot/tpl2 contributes to acetaminophen-induced liver injury, providing some insight into the underlying molecular mechanisms.
Insights
Cot/tpl2 (MAP3K8) plays a key role in acetaminophen-induced liver injury and sterile inflammation. Its deficiency reduces liver damage and immune cell infiltration, offering therapeutic insights.
Area of Science:
- Immunology
- Hepatology
- Molecular Biology
Background:
- Cot/tpl2 (MAP3K8) is known to activate MKK1/2-Erk1/2 signaling pathways.
- Its role in sterile inflammation and drug-induced liver toxicity remains largely unexplored.
Purpose of the Study:
- To investigate the role of Cot/tpl2 in acetaminophen-induced liver injury.
- To elucidate the molecular mechanisms underlying Cot/tpl2's involvement in sterile inflammation.
Main Methods:
- Utilized Cot/tpl2 knockout (KO) mice and mice expressing an inactive form of Cot/tpl2.
- Administered acetaminophen to induce liver injury and damage-associated molecular patterns (DAMPs) to assess sterile inflammation.
- Analyzed liver injury markers (ALT, AST), hepatic necrosis, survival rates, immune cell infiltration (neutrophils, macrophages), and cytokine levels (IL-1α).
- Examined intracellular pathway activation (Erk1/2, JNK) in macrophages.
Main Results:
- Cot/tpl2 KO mice showed significantly reduced hepatic injury, lower serum ALT/AST levels, decreased necrosis, and increased survival after acetaminophen challenge.
- Cot/tpl2 deficiency attenuated neutrophil and macrophage infiltration in the liver and reduced hepatic/systemic IL-1α levels.
- Cot/tpl2 KO mice exhibited impaired leukocyte recruitment and reduced cytokine levels in response to DAMPs.
- Cot/tpl2 deficiency in macrophages impaired Erk1/2 and JNK activation and reduced IL-1α release upon DAMP stimulation.
Conclusions:
- Cot/tpl2 is a critical mediator of acetaminophen-induced liver injury.
- Cot/tpl2 signaling contributes to sterile inflammation by promoting immune cell infiltration and cytokine release.
- Targeting Cot/tpl2 may represent a therapeutic strategy for managing drug-induced liver toxicity and sterile inflammatory conditions.
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