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Role of Galectin in Cardiovascular Conditions including Cirrhotic Cardiomyopathy
Hongqun Liu1, Sang-Youn Hwang1,2, Samuel S Lee1
1Liver Unit, University of Calgary Cumming School of Medicine, Calgary, AB T2N 4N1, Canada.
Insights
Cirrhotic cardiomyopathy, abnormal heart function in cirrhosis, involves galectins. Galectin-3 inhibitors show promise for treating this condition by reducing inflammation and apoptosis.
Area of Science:
- Cardiology
- Hepatology
- Biochemistry
Background:
- Cirrhotic cardiomyopathy is abnormal cardiac function in cirrhosis without primary heart disease.
- Pathogenesis involves liver synthetic failure and portal hypertension, leading to gut dysfunction, endotoxemia, and systemic inflammation.
- Galectins contribute to inflammation, oxidative stress, and apoptosis in various organs, including the heart.
Purpose of the Study:
- To review the role of galectins in cardiovascular complications of cirrhosis, specifically cirrhotic cardiomyopathy.
- To examine the therapeutic potential of galectin-3 inhibitors for cirrhotic cardiomyopathy.
Main Methods:
- Literature review of galectin physiology and pathophysiology.
- Analysis of galectin's role in cardiac disease and cirrhosis-related cardiovascular complications.
- Review of therapeutic studies on galectin-3 inhibitors in cirrhotic cardiomyopathy.
Main Results:
- Galectins mediate pro-inflammatory, pro-apoptotic, and oxidative stress mechanisms relevant to cirrhotic cardiomyopathy.
- Galectin-3 inhibitors demonstrate anti-apoptotic, anti-oxidative, and anti-inflammatory effects.
- Existing therapies for heart failure are often unsuitable for cirrhotic patients.
Conclusions:
- Galectin-3 inhibitors represent a promising therapeutic avenue for cirrhotic cardiomyopathy.
- Targeting galectin-3 may mitigate cardiac dysfunction in patients with cirrhosis.
- Further research into galectin-3 inhibitors is warranted for cirrhotic cardiomyopathy treatment.
Abstract:
Abnormal cardiac function in the setting of cirrhosis and in the absence of a primary cardiac disease is known as cirrhotic cardiomyopathy. The pathogenesis of cirrhotic cardiomyopathy is multifactorial but broadly is comprised of two pathways. The first is due to cirrhosis and synthetic liver failure with abnormal structure and function of many substances, including proteins, lipids, hormones, and carbohydrates such as lectins. The second is due to portal hypertension which invariably accompanies cirrhosis. Portal hypertension leads to a leaky, congested gut with resultant endotoxemia and systemic inflammation. This inflammatory phenotype comprises oxidative stress, cellular apoptosis, and inflammatory cell infiltration. Galectins exert all these pro-inflammatory mechanisms across many different tissues and organs, including the heart. Effective therapies for improving cardiac function in patients with cirrhosis are not available. Conventional strategies for other noncirrhotic heart diseases, including vasodilators, are not feasible because of the significant baseline vasodilation in cirrhotic patients. Therefore, exploring new treatment modalities for cirrhotic cardiomyopathy is of great importance. Galectin-3 inhibitors such as modified citrus pectin, N-acetyllactosamine, TD139 and GB0139 exert anti-apoptotic, anti-oxidative and anti-inflammatory effects and thus have potential therapeutic interest. This review briefly summarizes the physiological and pathophysiological role of galectin and specifically examines its role in cardiac disease processes. We present a more detailed discussion of galectin in cardiovascular complications of cirrhosis, particularly cirrhotic cardiomyopathy. Finally, therapeutic studies of galectin-3 inhibitors in cirrhotic cardiomyopathy are reviewed.
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