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Published on: September 5, 2016
Molecular Mechanisms Underlying Vascular Liver Diseases: Focus on Thrombosis
Lucia Giuli1, Maria Pallozzi1, Giulia Venturini1
1Hepatology Unit, CEMAD Centro Malattie Dell'Apparato Digerente, Medicina Interna e Gastroenterologia, Fondazione Policlinico Universitario Gemelli IRCCS, 00168 Rome, Italy.
Insights
Vascular liver disorders (VLDs) involve hepatic veins and sinusoids, causing portal hypertension and fibrosis. Understanding VLD molecular mechanisms may reveal anticoagulation as a key treatment strategy.
Area of Science:
- Hepatology
- Vascular Biology
- Thrombosis
Background:
- Vascular liver disorders (VLDs) affect hepatic vasculature in cirrhotic and non-cirrhotic patients.
- VLDs often involve portal/hepatic veins and sinusoids, leading to portal hypertension and fibrosis.
- Many VLDs exhibit a prothrombotic state with incompletely understood pathogenesis.
Purpose of the Study:
- To analyze current knowledge on the molecular mechanisms of VLDs.
- To explore the role of coagulation imbalance in liver disease and fibrogenesis.
- To evaluate anticoagulation as a potential therapeutic strategy for VLDs.
Main Methods:
- Review of existing literature on vascular liver disorders.
- Analysis of molecular mechanisms underlying VLD pathogenesis.
- Investigation into the link between coagulation and liver fibrogenesis.
Main Results:
- VLDs disrupt liver homeostasis, contributing to portal hypertension and fibrosis.
- Prothrombotic phenotypes are common in VLDs, with mechanisms beyond Virchow's triad.
- Coagulation imbalance is increasingly recognized as a driver of liver fibrogenesis.
Conclusions:
- Further research into VLD molecular mechanisms is crucial.
- Anticoagulation shows promise for preventing liver complications and improving patient outcomes.
- Understanding VLDs offers novel therapeutic avenues for liver disease.
Abstract:
Vascular liver disorders (VLDs) comprise a wide spectrum of clinical-pathological entities that primarily affect the hepatic vascular system of both cirrhotic and non-cirrhotic patients. VLDs more frequently involve the portal and the hepatic veins, as well as liver sinusoids, resulting in an imbalance of liver homeostasis with serious consequences, such as the development of portal hypertension and liver fibrosis. Surprisingly, many VLDs are characterized by a prothrombotic phenotype. The molecular mechanisms that cause thrombosis in VLD are only partially explained by the alteration in the Virchow's triad (hypercoagulability, blood stasis, and endothelial damage) and nowadays their pathogenesis is incompletely described and understood. Studies about this topic have been hampered by the low incidence of VLDs in the general population and by the absence of suitable animal models. Recently, the role of coagulation imbalance in liver disease has been postulated as one of the main mechanisms linked to fibrogenesis, so a novel interest in vascular alterations of the liver has been renewed. This review provides a detailed analysis of the current knowledge of molecular mechanisms of VLD. We also focus on the promising role of anticoagulation as a strategy to prevent liver complications and to improve the outcome of these patients.
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