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Invasive Hemodynamic Characterization of the Portal-hypertensive Syndrome in Cirrhotic Rats
Published on: August 1, 2018
Infection as a Trigger for Portal Hypertension
Christian J Steib1, Julia Schewe, Alexander L Gerbes
1Department of Medicine II, University Hospital LMU Munich, Liver Center Munich, Munich, Germany.
Background:
Microbial infections are a relevant problem for patients with liver cirrhosis. Different types of bacteria are responsible for different kinds of infections: Escherichia coli and Klebsiella pneumoniae are frequently observed in spontaneous bacterial peritonitis or urinary tract infections, and Streptococcus pneumoniae and Mycoplasma pneumoniae in pulmonary infections. Mortality is up to 4-fold higher in infected patients with liver cirrhosis than in patients without infections. Key Messages: Infections in patients with liver cirrhosis are due to three major reasons: bacterial translocation, immune deficiency and an increased incidence of systemic infections. Nonparenchymal liver cells like Kupffer cells, sinusoidal endothelial cells and hepatic stellate cells are the first liver cells to come into contact with microbial products when systemic infection or bacterial translocation occurs. Kupffer cell (KC) activation by Toll-like receptor (TLR) agonists and endothelial sinusoidal dysfunction have been shown to be important mechanisms increasing portal pressure following intraperitoneal lipopolysaccharide pretreatment in cirrhotic rat livers. Reduced intrahepatic vasodilation and increased intrahepatic vasoconstriction are the relevant pathophysiological pathways. Thromboxane A2 and leukotriene (LT) C4/D4 have been identified as important vasoconstrictors. Accordingly, treatment with montelukast to inhibit the cysteinyl-LT1 receptor reduced portal pressure in cirrhotic rat livers. Clinical studies have demonstrated that activation of KCs, estimated by the amount of soluble CD163 in the blood, correlates with the risk for variceal bleeding. Additionally, intestinal decontamination with rifaximin in patients with alcohol-associated liver cirrhosis reduced the portal pressure and the risk for variceal bleeding.
Conclusions:
TLR activation of nonparenchymal liver cells by pathogens results in portal hypertension. This might explain the pathophysiologic correlation between microbial infections and portal hypertension in patients with liver cirrhosis. These findings are the basis for both better risk stratifying and new treatment options, such as specific inhibition of TLR for patients with liver cirrhosis and portal hypertension.
Insights
Microbial infections increase mortality in liver cirrhosis patients. Toll-like receptor (TLR) activation by pathogens in liver cells contributes to portal hypertension, offering new treatment targets.
Area of Science:
- Hepatology
- Immunology
- Microbiology
Background:
- Liver cirrhosis patients face high mortality from microbial infections like spontaneous bacterial peritonitis and urinary tract infections.
- Infections stem from bacterial translocation, immune deficiency, and increased systemic infections, impacting liver cells such as Kupffer cells.
- Kupffer cell activation and sinusoidal dysfunction elevate portal pressure, involving vasoconstrictors like Thromboxane A2 and leukotriene C4/D4.
Purpose of the Study:
- To investigate the role of microbial infections and Toll-like receptor (TLR) activation in liver cirrhosis pathophysiology.
- To explore the mechanisms linking infection, nonparenchymal liver cell activation, and portal hypertension.
- To assess potential therapeutic strategies targeting these pathways.
Main Methods:
- Utilized cirrhotic rat models with intraperitoneal lipopolysaccharide to study Kupffer cell activation and portal pressure.
- Investigated the effects of montelukast, a cysteinyl-LT1 receptor inhibitor, on portal pressure.
- Analyzed clinical data correlating soluble CD163 levels with variceal bleeding risk and the impact of rifaximin on portal pressure.
Main Results:
- TLR activation of Kupffer cells and sinusoidal endothelial cells increases portal pressure in cirrhotic rat livers.
- Inhibition of cysteinyl-LT1 receptors with montelukast reduced portal pressure.
- Clinical findings showed soluble CD163 correlates with variceal bleeding risk, and rifaximin reduced portal pressure and bleeding risk.
Conclusions:
- TLR activation by pathogens in nonparenchymal liver cells is a key mechanism driving portal hypertension in liver cirrhosis.
- This understanding provides a basis for improved risk stratification and novel therapeutic approaches, including TLR inhibition.
- Targeting TLR pathways offers potential for managing portal hypertension and its complications in liver cirrhosis.
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