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Updated: Jul 18, 2026

Experimental and Imaging Techniques for Examining Fibrin Clot Structures in Normal and Diseased States
Published on: April 1, 2015
[Wine, fibrinolysis and health]
Consuelo Pasten1, Hernán Grenett
1Division of Cardiovascular Disease, Department of Medicine, University of Alabama at Birmingham, Alabama 35294, USA.
Insights
Moderate wine consumption may reduce cardiovascular disease risk by enhancing the body's natural clot-dissolving processes. Ethanol and polyphenols in wine increase fibrinolysis, promoting healthier blood flow.
Area of Science:
- Cardiovascular Science
- Molecular Biology
- Hemostasis and Thrombosis
Context:
- Cardiovascular diseases are the leading global cause of mortality.
- Moderate wine consumption is epidemiologically linked to reduced cardiovascular disease incidence.
- Ethanol and polyphenols in wine are proposed mechanisms for this cardioprotective effect.
Purpose:
- To review the molecular and physiological mechanisms by which moderate wine consumption influences fibrinolysis.
- To explore the role of endothelial cells in wine-mediated cardiovascular risk reduction.
- To elucidate how wine components modulate key proteins in the fibrinolytic system.
Summary:
- Moderate wine intake (1-2 glasses/day) is associated with decreased cardiovascular disease risk.
- Wine's cardioprotective effects may stem from ethanol and polyphenols modulating fibrinolysis.
- Wine components enhance endothelial cell-localized fibrinolysis by upregulating t-PA and u-PA activity and downregulating PAI-1.
Impact:
- Provides insight into the molecular basis of wine's potential cardiovascular benefits.
- Highlights the role of endothelial cells and fibrinolysis in wine's cardioprotective effects.
- Suggests potential therapeutic targets for cardiovascular disease prevention through dietary interventions.
Abstract:
Cardiovascular diseases are the leading cause of death in both men and women in the world. Epidemiological and experimental studies have associated moderate wine consumption (1 to 2 glasses/day) with a decrease in cardiovascular diseases. This decrease is probably due to the effect of ethanol and polyphenols present in the wine. The cardioprotective benefit of wine may be due, in part, to a modulation of the expression of proteins involved in fibrinolysis. Endothelial cells (ECs) play a major role in maintaining normal hemostasis, regulating the balance between the synthesis and interaction of proteins that promote clot formation (thrombosis) and fibrinolytic proteins that facilitate clot lysis. These cells are a major site of synthesis of fibrinolytic proteins, such as tissue type plasminogen activator (t-PA), urokinase-type plasminogen activator (u-PA) and the major inhibitor/regulator of fibrinolysis, PAI-1. EC-mediated fibrinolysis is regulated and localized to the EC surface through specific receptors for u-PA, t-PA and plasminogen. Evidence indicates that ethanol and polyphenols present in wine increase EC localized fibrinolisis. Upregulation of t-PA and u-PA activity and downregulation of PAI-1 may account, at least in part, for this net increase in fibrinolytic activity. The purpose of this review is to cover the main molecular and physiological aspects of moderate wine consumption mediated increase in fibrinolysis and reduction in cardiovascular risk.
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