Key result
PTP1B inhibitors restore flow-mediated dilatation to normal levels in mice with heart failure.
Why the study?
Chronic heart failure induces endothelial dysfunction characterized by decreased nitric oxide production in response to flow, and the potential correction by protein tyrosine phosphatase inhibitors was unexplored.
Do PTP1B inhibitors improve peripheral endothelial dysfunction in a mouse model of heart failure?
Do PTP1B inhibitors improve peripheral endothelial dysfunction in a mouse model of heart failure?
PTP1B inhibitors can restore flow-mediated dilatation and improve endothelial dysfunction in a mouse model of heart failure by stimulating eNOS and Akt phosphorylation.
PTP1B inhibitors warrant no clinical use in heart failure; leaves open endothelial-targeted therapy as a research direction.
BACKGROUND: Chronic heart failure (CHF) induces endothelial dysfunction characterized by a decrease in nitric oxide (NO) production in response to flow (flow-mediated dilatation [FMD]). Because activation of endothelial NO synthase (eNOS) by flow requires tyrosine phosphorylation, we tested whether endothelial dysfunction could be corrected by increasing phosphotyrosine levels using protein tyrosine phosphatase (PTP) inhibitors and especially inhibitors of PTP1B. METHODS AND RESULTS: CHF was induced by coronary ligation in mice, and FMD was assessed in isolated and cannulated mesenteric artery segments (2 mm in length and <300 microm in diameter). CHF almost abolished FMD but only moderately affected the response to acetylcholine. In mice with CHF, the PTP1B inhibitors AS279, AS098, and AS713 restored FMD to levels similar to those of normal mice. This restoration was reduced by inhibitors of eNOS and phosphatidylinositol-3 kinase. Polymerase chain reaction and Western blot showed that arteries express PTP1B, and this expression was not affected by CHF. Immunolocalization revealed the presence of PTP1B in the endothelium and the adventitia. Flow induced a transient eNOS phosphorylation that was absent in CHF. PTP1B inhibition stimulated early eNOS phosphorylation and increased phosphorylation of Akt. CONCLUSIONS: Our results demonstrate for the first time that PTP1B inhibitors may be potent treatments for endothelial dysfunction.
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Vercauteren et al. (2006) studied Chronic heart failure. PTP1B inhibitors (AS279, AS098, and AS713) vs. Normal mice was evaluated on Flow-mediated dilatation (FMD). PTP1B inhibitors restored flow-mediated dilatation to levels similar to normal mice in a murine model of chronic heart failure.
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