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Protein C inhibitor regulates hepatocyte growth factor activator-mediated liver regeneration in mice
T Hamada1, H Kamada, T Hayashi
1Department of Molecular Pathobiology, Mie University Graduate School of Medicine, Edobashi 2-174, Tsu-city, Mie 514-8507, Japan.
Background:
We recently reported that human protein C inhibitor (PCI), a major inhibitor of activated protein C (APC), inhibits hepatocyte growth factor activator (HGFA) by forming HGFA-PCI complexes in vitro. In this study, we evaluated whether PCI regulates HGFA-mediated liver regeneration in a human PCI gene transgenic (hPCI-Tg) mouse model.
Methods And Results:
After partial hepatectomy in hPCI-Tg and wild-type (WT) mice, the degree of liver regeneration, protein and mRNA expression of HGFA, proHGF activation, plasma levels of PCI and HGFA-PCI complex, and other markers were evaluated in the remnant liver. We also evaluated the effect of anti-human PCI antibody on liver regeneration, which significantly decreased in hPCI-Tg mice compared to WT mice. HGFA mRNA levels in naive and remnant livers after hepatectomy were the same in both WT and hPCI-Tg mice; however, plasma HGFA levels and HGF activation in the liver were lower in hPCI-Tg than in WT mice. There was no difference in plasma levels of transaminases and inflammatory cytokines. However, sinusoidal congestion and bleeding were detected and the serum hyaluronic acid level was elevated in hPCI-Tg mice, indicating that human PCI aggravates sinusoidal injury by inhibiting the cytoprotective effect of APC. APC decreased thrombin-induced IL-6 production in isolated hepatic nonparenchymal cells (NPCs) in vitro. This impaired liver regeneration was reversed by anti-human PCI antibody treatment in vivo.
Conclusion:
PCI regulates liver regeneration after hepatectomy by forming an HGFA-PCI complex and aggravates hepatic NPC injury by inhibiting the cytoprotective effect of APC. Anti-PCI antibody treatment may be a novel therapy for improving liver regeneration.
Insights
Protein C inhibitor (PCI) regulates liver regeneration by forming HGFA-PCI complexes. Human PCI exacerbates liver injury by inhibiting APC's protective effects, but anti-PCI antibody treatment can improve regeneration.
Area of Science:
- Hepatology
- Biochemistry
- Immunology
Background:
- Human protein C inhibitor (PCI) is a key inhibitor of activated protein C (APC).
- PCI has been shown to inhibit hepatocyte growth factor activator (HGFA) in vitro.
- The role of PCI in liver regeneration mediated by HGFA was not previously understood.
Purpose of the Study:
- To investigate the role of PCI in regulating HGFA-mediated liver regeneration.
- To evaluate the effect of human PCI on liver regeneration in a transgenic mouse model.
Main Methods:
- Utilized a human PCI gene transgenic (hPCI-Tg) mouse model and wild-type (WT) littermates.
- Assessed liver regeneration, HGFA expression and activation, and plasma markers after partial hepatectomy.
- Administered anti-human PCI antibody to evaluate its therapeutic effect on liver regeneration.
Main Results:
- hPCI-Tg mice exhibited impaired liver regeneration compared to WT mice after hepatectomy.
- While HGFA mRNA levels were similar, plasma HGFA and HGF activation were lower in hPCI-Tg mice.
- Human PCI aggravated sinusoidal injury by inhibiting APC's cytoprotective effects, leading to increased serum hyaluronic acid and impaired IL-6 suppression in hepatic nonparenchymal cells.
Conclusions:
- PCI regulates liver regeneration post-hepatectomy via HGFA-PCI complex formation.
- PCI exacerbates hepatic injury by inhibiting APC's cytoprotective function.
- Anti-PCI antibody treatment shows potential as a novel therapeutic strategy for enhancing liver regeneration.
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