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Depletion of Small HDL Subclasses Predicts Poor Survival in Liver Cirrhosis
Anja Pammer1, Tobias Madl2,3, Hansjörg Habisch3,4
1Division of Pharmacology, Otto Loewi Research Center, Medical University of Graz, 8010 Graz, Austria.
Insights
Cirrhosis depletes small high-density lipoprotein (HDL) particles, linked to oxidative stress and increased mortality risk in compensated liver disease patients. This finding offers new insights into HDL
Area of Science:
- Biochemistry
- Hepatology
- Cardiovascular Research
Background:
- Liver cirrhosis involves oxidative stress, inflammation, and metabolic dysfunction, leading to severe complications and mortality.
- High-density lipoprotein (HDL) possesses antioxidant and anti-inflammatory properties, with small subclasses being particularly important.
Purpose of the Study:
- To investigate alterations in HDL subclass distribution and composition in patients with liver cirrhosis.
- To assess the prognostic significance of these HDL changes for patient mortality.
Main Methods:
- Analysis of HDL profiles using nuclear magnetic resonance spectroscopy.
- Inclusion of patients with compensated (n=205) and decompensated (n=158) cirrhosis, alongside healthy controls (n=16).
Main Results:
- Cirrhotic patients exhibited decreased cholesterol and elevated triglycerides across all HDL subclasses.
- A significant reduction in small and extra-small HDL particles was observed, more pronounced in decompensated cirrhosis.
- Lower levels of small HDL particles correlated with increased oxidative stress and liver dysfunction, and predicted 12-month mortality in compensated cirrhosis.
Conclusions:
- Depletion of small and extra-small HDL particles is a characteristic feature of liver cirrhosis.
- This HDL subclass reduction is associated with oxidative stress and serves as an independent predictor of mortality in compensated cirrhosis.
Abstract:
Liver cirrhosis is a complex condition characterized by oxidative stress, inflammation, and metabolic dysfunction, contributing to systemic complications and high mortality. High-density lipoprotein (HDL), particularly its small subclasses, is known for its antioxidant, anti-inflammatory, and cholesterol efflux capacities. This study examined changes in HDL subclass distribution and composition in cirrhosis and assessed their prognostic relevance for mortality. We analyzed HDL profiles using nuclear magnetic resonance spectroscopy in patients with compensated (n = 205) and decompensated (n = 158) cirrhosis, compared to healthy controls (n = 16). Across all HDL subclasses in cirrhotic patients, cholesterol content was decreased, and triglyceride levels were elevated. In particular, compensated cirrhosis was associated with a marked reduction in small and extra-small HDL particles, while large HDL levels remained unchanged. This reduction was even more pronounced in decompensated disease. Small HDL particle levels were inversely correlated with oxidative stress markers and liver dysfunction and independently predicted 12-month mortality in patients with compensated cirrhosis, even after adjusting for MELD score. In conclusion, our findings highlight a substantial depletion of small and extra-small HDL particles as a key feature of cirrhosis, linked to oxidative stress and mortality in the compensated stage.
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