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Published on: May 19, 2017
Endothelial β1 Integrin-Mediated Adaptation to Myocardial Ischemia
Carina Henning1, Anna Branopolski1,2, Paula Follert1
1Institute of Metabolic Physiology, Department of Biology, Heinrich-Heine-University, Düsseldorf, Germany.
Insights
Endothelial beta1 integrin is crucial for heart adaptation to ischemia and protection against myocardial infarction. Its absence impairs blood vessel growth and cardiac function following heart attacks.
Area of Science:
- Cardiovascular Research
- Integrin Signaling
- Ischemic Heart Disease
Background:
- Short episodes of myocardial ischemia offer protection against myocardial infarction.
- The specific role of endothelial beta1 integrin in these cardioprotective effects remains largely unknown.
Purpose of the Study:
- To investigate if endothelial beta1 integrin is essential for cardiac adaptation to ischemia.
- To determine its role in protecting the heart from myocardial infarction.
Main Methods:
- Utilized mouse models with transient and permanent left anterior descending artery (LAD) occlusions.
- Inhibited beta1 integrin via function-blocking antibodies and endothelial cell-specific gene deletion.
- Assessed endothelial cell proliferation, arteriole formation, infarct size, and cardiac function using immunohistochemistry, MRI, and echocardiography.
Main Results:
- Transient LAD occlusions increased endothelial cell proliferation and arteriole formation, dependent on endothelial beta1 integrin.
- Beta1 integrin was necessary for cardioprotection during transient ischemia.
- Absence of endothelial beta1 integrin led to impaired vascularization of infarcted tissue and reduced cardiac function after permanent LAD occlusion.
Conclusions:
- Endothelial beta1 integrin plays a critical role in the heart's adaptation to ischemic conditions.
- This integrin is required for protection against myocardial infarction, highlighting its therapeutic potential.
Background:
Short episodes of myocardial ischemia can protect from myocardial infarction. However, the role of endothelial β1 integrin in these cardioprotective ischemic events is largely unknown.
Objective:
In this study we investigated whether endothelial β1 integrin is required for cardiac adaptation to ischemia and protection from myocardial infarction.
Methods:
Here we introduced transient and permanent left anterior descending artery (LAD) occlusions in mice. We inhibited β1 integrin by intravenous injection of function-blocking antibodies and tamoxifen-induced endothelial cell (EC)-specific deletion of Itgb1. Furthermore, human ITGB1 was silenced in primary human coronary artery ECs using small interfering RNA. We analyzed the numbers of proliferating ECs and arterioles by immunohistochemistry, determined infarct size by magnetic resonance imaging (MRI) and triphenyl tetrazolium chloride staining, and analyzed cardiac function by MRI and echocardiography.
Results:
Transient LAD occlusions were found to increase EC proliferation and arteriole formation in the entire myocardium. These effects required β1 integrin on ECs, except for arteriole formation in the ischemic part of the myocardium. Furthermore, this integrin subunit was also relevant for basal and mechanically induced proliferation of human coronary artery ECs. Notably, β1 integrin was needed for cardioprotection induced by transient LAD occlusions, and the absence of endothelial β1 integrin resulted in impaired growth of blood vessels into the infarcted myocardium and reduced cardiac function after permanent LAD occlusion.
Conclusion:
We showed that endothelial β1 integrin is required for adaptation of the heart to cardiac ischemia and protection from myocardial infarction.
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