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Published on: November 27, 2019
Complement and the alternative pathway play an important role in LPS/D-GalN-induced fulminant hepatic failure
Shihui Sun1, Yan Guo, Guangyu Zhao
1State Key Laboratory of Pathogen and Biosecurity, Beijing Institute of Microbiology and Epidemiology, Beijing, China.
Insights
Complement system activation drives fulminant hepatic failure (FHF) in mice. Inhibiting complement components C3a and C5a significantly reduced liver injury, suggesting complement blockade as a potential FHF treatment.
Area of Science:
- Immunology
- Hepatology
- Pathophysiology
Background:
- Fulminant hepatic failure (FHF) is a severe liver injury with high mortality.
- The complement system's role in FHF pathogenesis is not fully understood.
- Evidence suggests complement involvement in various liver disorders.
Purpose of the Study:
- To investigate the role of the complement system in LPS/D-GalN-induced FHF.
- To evaluate the therapeutic potential of complement inhibition in FHF.
Main Methods:
- Used wild-type, C3-deficient, and complement-inhibitor-treated mice.
- Administered LPS/D-GalN to induce FHF.
- Analyzed hepatic complement deposition (C3, C5b-9), serum C3a levels, and receptor expression (C3aR, C5aR).
Main Results:
- LPS/D-GalN induced complement activation, evidenced by hepatic C3/C5b-9 deposition and elevated serum C3a.
- C3a and C5a receptor expression was upregulated.
- C3-deficient mice and those treated with complement inhibitors showed reduced liver inflammation, attenuated damage, and increased survival.
Conclusions:
- The alternative complement pathway, generating C3a and C5a, plays a critical role in LPS/D-GalN-induced FHF.
- Complement inhibition represents a promising adjunctive therapeutic strategy for FHF.
Abstract:
Fulminant hepatic failure (FHF) is a clinically severe type of liver injury with an extremely high mortality rate. Although the pathological mechanisms of FHF are not well understood, evidence suggests that the complement system is involved in the pathogenesis of a variety of liver disorders. In the present study, to investigate the role of complement in FHF, we examined groups of mice following intraperitoneal injection of LPS/D-GalN: wild-type C57BL/6 mice, wild-type mice treated with a C3aR antagonist, C5aR monoclonal antibody (C5aRmAb) or CR2-Factor H (CR2-fH, an inhibitor of the alternative pathway), and C3 deficient mice (C3⁻/⁻ mice). The animals were euthanized and samples analyzed at specific times after LPS/D-GalN injection. The results show that intraperitoneal administration of LPS/D-GalN activated the complement pathway, as evidenced by the hepatic deposition of C3 and C5b-9 and elevated serum levels of the complement activation product C3a, the level of which was associated with the severity of the liver damage. C3a receptor (C3aR) and C5a receptor (C5aR) expression was also upregulated. Compared with wild-type mice, C3⁻/⁻ mice survived significantly longer and displayed reduced liver inflammation and attenuated pathological damage following LPS/D-GalN injection. Similar levels of protection were seen in mice treated with C3aR antagonist,C5aRmAb or CR2-fH. These data indicate an important role for the C3a and C5a generated by the alternative pathway in LPS/D-GalN-induced FHF. The data further suggest that complement inhibition may be an effective strategy for the adjunctive treatment of fulminant hepatic failure.
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