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MMP9 inhibition increases autophagic flux in chronic heart failure
Shyam S Nandi1, Kenichi Katsurada1, Neeru M Sharma1
1Department of Cellular and Integrative Physiology, University of Nebraska Medical Center, Omaha, Nebraska.
Abstract:
Increased matrix metalloprotease 9 (MMP9) after myocardial infarction (MI) exacerbates ischemia-induced chronic heart failure (CHF). Autophagy is cardioprotective during CHF; however, whether increased MMP9 suppresses autophagic activity in CHF is unknown. This study aimed to determine whether increased MMP9 suppressed autophagic flux and MMP9 inhibition increased autophagic flux in the heart of rats with post-MI CHF. Sprague-Dawley rats underwent either sham surgery or coronary artery ligation 6-8 wk before being treated with MMP9 inhibitor for 7 days, followed by cardiac autophagic flux measurement with lysosomal inhibitor bafilomycin A1. Furthermore, autophagic flux was measured in vitro by treating H9c2 cardiomyocytes with two independent pharmacological MMP9 inhibitors, salvianolic acid B (SalB) and MMP9 inhibitor-I, and CRISPR/cas9-mediated MMP9 genetic ablation. CHF rats showed cardiac infarct, significantly increased left ventricular end-diastolic pressure (LVEDP), and increased MMP9 activity and fibrosis in the peri-infarct areas of left ventricular myocardium. Measurement of the autophagic markers LC3B-II and p62 with lysosomal inhibition showed decreased autophagic flux in the peri-infarct myocardium. Treatment with SalB for 7 days in CHF rats decreased MMP9 activity and cardiac fibrosis but increased autophagic flux in the peri-infarct myocardium. As an in vitro corollary study, measurement of autophagic flux in H9c2 cardiomyocytes and fibroblasts showed that pharmacological inhibition or genetic ablation of MMP9 upregulates autophagic flux. These data are consistent with our observations that MMP9 inhibition upregulates autophagic flux in the heart of rats with CHF. In conclusion, the results in this study suggest that the beneficial outcome of MMP9 inhibition in pathological cardiac remodeling is in part mediated by improved autophagic flux.NEW & NOTEWORTHY This study elucidates that the improved cardiac extracellular matrix (ECM) remodeling and cardioprotective effect of matrix metalloprotease 9 (MMP9) inhibition in chronic heart failure (CHF) are via increased autophagic flux. Autophagy is cardioprotective; however, the mechanism of autophagy suppression in CHF is unknown. We for the first time demonstrated here that increased MMP9 suppressed cardiac autophagy and ablation of MMP9 increased cardiac autophagic flux in CHF rats. Restoring the physiological level of autophagy in the failing heart is a challenge, and our study addressed this challenge. The novelty and highlights of this report are as follows: 1) MMP9 regulates cardiomyocyte and fibroblast autophagy, 2) MMP9 inhibition protects CHF after myocardial infarction (MI) via increased cardiac autophagic flux, 3) MMP9 inhibition increased cardiac autophagy via activation of AMP-activated protein kinase (AMPK)α, Beclin-1, Atg7 pathway and suppressed mechanistic target of rapamycin (mTOR) pathway.
Insights
Matrix metalloprotease 9 (MMP9) inhibition improves cardiac function in chronic heart failure (CHF) by enhancing autophagy. This study shows MMP9 suppression increases autophagic flux, offering a novel therapeutic strategy for post-myocardial infarction (MI) heart failure.
Area of Science:
- Cardiovascular Biology
- Cellular Biology
- Molecular Medicine
Background:
- Increased matrix metalloprotease 9 (MMP9) activity post-myocardial infarction (MI) contributes to chronic heart failure (CHF).
- Autophagy plays a crucial role in cardioprotection during CHF, but its regulation by MMP9 in this context is unclear.
Purpose of the Study:
- To investigate if elevated MMP9 suppresses autophagic flux in the failing heart following MI.
- To determine if MMP9 inhibition can restore or enhance autophagic flux in a rat model of post-MI CHF.
Main Methods:
- Utilized a rat model of post-MI CHF, treated with MMP9 inhibitors (salvianolic acid B or MMP9 inhibitor-I) or subjected to genetic MMP9 ablation.
- Assessed cardiac function, MMP9 activity, fibrosis, and autophagic flux using biochemical markers (LC3B-II, p62) and lysosomal inhibitors (bafilomycin A1).
- Conducted in vitro studies using H9c2 cardiomyocytes and fibroblasts to confirm MMP9's role in regulating autophagy.
Main Results:
- CHF rats exhibited cardiac dysfunction, increased MMP9 activity, fibrosis, and reduced autophagic flux in the myocardium.
- Pharmacological or genetic inhibition of MMP9 significantly decreased cardiac fibrosis and increased autophagic flux in both in vivo and in vitro models.
- MMP9 inhibition upregulated autophagy via the AMPKα, Beclin-1, and Atg7 pathways while suppressing the mTOR pathway.
Conclusions:
- Elevated MMP9 activity suppresses cardiac autophagic flux in chronic heart failure post-myocardial infarction.
- MMP9 inhibition represents a promising therapeutic strategy for pathological cardiac remodeling in CHF by enhancing autophagic flux.
- The cardioprotective effects of MMP9 inhibition are, in part, mediated by the restoration of cardiac autophagy.
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