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Matrix metalloproteinases in the progression of heart failure: potential therapeutic implications
1Cardiovascular Institute, University of Pittsburgh School of Medicine, Pennsylvania 15213, USA. liyuny@pitt.edu
Abstract:
Matrix metalloproteinases (MMPs) are a family of functionally related zinc-containing enzymes that denature and degrade fibrillar collagens and other components of the extracellular matrix. Myocardial extracellular matrix remodelling and fibrosis regulated by MMPs are believed to be important contributors to the progression of heart failure. The role of MMPs in cardiac fibrosis and the progression of heart failure, along with the possibility of halting the progression of heart failure by modulating extracellular matrix remodelling are important issues under intense study. MMPs are increased in the failing hearts of both animal models and patients with heart failure. MMP inhibition may therefore modulate extracellular matrix remodelling and the progression of heart failure. It is a great advantage that various MMP inhibitors have been developed initially for the treatment of cancer, arthritis and other diseases believed to be associated with increased MMP activity. Several preclinical studies have shown that treatment of heart failure in animal models with MMP inhibitors results in less collagen matrix damage, favourable extracellular matrix remodelling, and improved cardiac structure and function. The results suggest that modulation of MMP activity can prevent myocardial dysfunction and the progression of heart failure through alterations in the remodelling process of extracellular matrix and the left ventricle. Although these promising results suggest potential benefits of MMP inhibition for human heart failure, no clinical data evaluating MMP inhibitors in heart failure have been reported. As the preclinical evidence continues to grow and the potential of MMP inhibition for the treatment of heart failure continues to unfold, MMP inhibition may prove to be an effective treatment for heart failure.
Insights
Matrix metalloproteinases (MMPs) are key enzymes in heart failure progression. Inhibiting MMPs in preclinical models improved cardiac function and structure, suggesting potential therapeutic benefits.
Area of Science:
- Cardiovascular Biology
- Enzymology
- Extracellular Matrix Biology
Background:
- Matrix metalloproteinases (MMPs) are zinc-dependent enzymes crucial for extracellular matrix (ECM) remodeling.
- Dysregulated MMP activity and ECM fibrosis are implicated in the progression of heart failure.
- MMPs are elevated in failing hearts of both animal models and human patients.
Purpose of the Study:
- To investigate the role of MMPs in cardiac fibrosis and heart failure progression.
- To explore the potential of MMP inhibition as a therapeutic strategy for heart failure.
- To evaluate the impact of MMP modulation on ECM remodeling and cardiac function.
Main Methods:
- Review of preclinical studies investigating MMP inhibitors in animal models of heart failure.
- Analysis of the effects of MMP inhibition on collagen matrix, ECM remodeling, and cardiac performance.
- Comparison of MMP activity in healthy versus failing hearts.
Main Results:
- Preclinical studies demonstrate that MMP inhibitors reduce collagen damage and promote favorable ECM remodeling in heart failure models.
- Treatment with MMP inhibitors improved cardiac structure and function in animal models.
- MMP activity is significantly increased in failing hearts, highlighting their pathological role.
Conclusions:
- Modulating MMP activity can prevent myocardial dysfunction and heart failure progression by altering ECM remodeling.
- MMP inhibitors, initially developed for other diseases, show promise for treating heart failure.
- While preclinical data are compelling, further clinical evaluation of MMP inhibitors in human heart failure is warranted.
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