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Establishing a Swine Model of Post-myocardial Infarction Heart Failure for Stem Cell Treatment
Published on: May 25, 2020
Anti-inflammatory therapies in myocardial infarction: failures, hopes and challenges
Shuaibo Huang1,2, Nikolaos G Frangogiannis1
1The Wilf Family Cardiovascular Research Institute, Department of Medicine (Cardiology), Albert Einstein College of Medicine, Bronx, NY, 10461, USA.
Insights
Inflammation after heart attack is complex, aiding repair but also causing damage. Targeting specific inflammatory signals, not broad suppression, shows promise for treating heart attack complications and preventing heart failure.
Area of Science:
- Cardiovascular Biology
- Immunology
- Pharmacology
Background:
- Myocardial infarction triggers inflammatory responses via damage-associated molecular patterns.
- Inflammation is crucial for clearing debris and initiating repair but can also cause adverse remodeling and cardiomyocyte apoptosis.
- Dysregulated inflammation post-infarction is linked to heart failure and other complications.
Purpose of the Study:
- To review the cell biology of post-infarction inflammation.
- To discuss pharmacological interventions targeting inflammation after myocardial infarction.
- To explore the potential of specific anti-inflammatory targets for improved patient outcomes.
Main Methods:
- Review of existing literature on post-infarction inflammatory processes.
- Analysis of preclinical studies on pharmacological interventions.
- Discussion of clinical translation challenges and potential therapeutic strategies.
Main Results:
- Broad anti-inflammatory therapies can inhibit beneficial repair pathways.
- Targeting specific inflammatory mediators (e.g., complement, chemokines, cytokines like IL-1) shows therapeutic potential.
- Targeting IL-1 may offer benefits beyond reducing adverse remodeling, including plaque stabilization and arrhythmia inhibition.
Conclusions:
- Specific targeting of inflammatory pathways, rather than broad immunosuppression, is crucial for effective post-myocardial infarction therapy.
- Identifying therapeutic windows and stratifying patients using biomarkers are key for successful clinical translation.
- Targeting IL-1 represents a promising strategy for managing post-infarction inflammation and its complications.
Abstract:
In the infarcted heart, the damage-associated molecular pattern proteins released by necrotic cells trigger both myocardial and systemic inflammatory responses. Induction of chemokines and cytokines and up-regulation of endothelial adhesion molecules mediate leukocyte recruitment in the infarcted myocardium. Inflammatory cells clear the infarct of dead cells and matrix debris and activate repair by myofibroblasts and vascular cells, but may also contribute to adverse fibrotic remodelling of viable segments, accentuate cardiomyocyte apoptosis and exert arrhythmogenic actions. Excessive, prolonged and dysregulated inflammation has been implicated in the pathogenesis of complications and may be involved in the development of heart failure following infarction. Studies in animal models of myocardial infarction (MI) have suggested the effectiveness of pharmacological interventions targeting the inflammatory response. This article provides a brief overview of the cell biology of the post-infarction inflammatory response and discusses the use of pharmacological interventions targeting inflammation following infarction. Therapy with broad anti-inflammatory and immunomodulatory agents may also inhibit important repair pathways, thus exerting detrimental actions in patients with MI. Extensive experimental evidence suggests that targeting specific inflammatory signals, such as the complement cascade, chemokines, cytokines, proteases, selectins and leukocyte integrins, may hold promise. However, clinical translation has proved challenging. Targeting IL-1 may benefit patients with exaggerated post-MI inflammatory responses following infarction, not only by attenuating adverse remodelling but also by stabilizing the atherosclerotic plaque and by inhibiting arrhythmia generation. Identification of the therapeutic window for specific interventions and pathophysiological stratification of MI patients using inflammatory biomarkers and imaging strategies are critical for optimal therapeutic design.
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