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Rosenblatt-Velin, N.

Publications and source records attributed to Rosenblatt-Velin, N..

2 recordsLinked to original sources

The Brain natriuretic peptide improves the heart regeneration after infarction by stimulating the cardiomyocyte renewal

AimBrain Natriuretic Peptide (BNP) supplementation after infarction increases heart function and decreases heart remodeling. BNP receptors, NPR-A and NPR-B, are expressed on adult cardiomyocytes (CMs). We thus investigated whether a part of the BNP cardioprotective effect in infarcted and unmanipulated hearts is due to modulation of the CM fate. Methods and ResultsBNP was injected in infarcted adult mice and in unmanipulated neonatal and adult mice. CMs were isolated, counted and characterized. Increased number of CMs was detected in the hypoxic area of infarcted hearts, and in unmanipulated neonatal and adult hearts after BNP treatment. Accordingly, Troponin T plasma concentration was significantly reduced 1 and 3 days after infarction in BNP-treated mice, demonstrating less CM death. Furthermore, higher number of small, dedifferentiated and mononucleated CMs were identified in adult BNP-treated hearts when compared to saline-treated hearts. BNP-treated CMs express higher levels of mRNAs coding for hif1 alpha and for the different cyclins than CMs isolated from saline-treated hearts. Higher percentages of CMs undergoing DNA synthesis, expressing Ki67, phospho histone3 and Aurora B were detected in all BNP-treated hearts, which suggests that BNP stimulates CMs to re-enter to the cell cycle. Results in vitro confirmed that BNP stimulates the proliferation of the neonatal CMs and the dedifferentiation of the adult CMs. BNP effect on adult CMs in vivo is mediated by NPR-A binding and activation of the ERK MAP kinase pathway. Interestingly, increased number of CMs was also detected in adult infarcted hearts treated with LCZ696, which inhibits all natriuretic peptide degradations. ConclusionsAltogether, our results identified BNP and all therapies aimed to increase BNPs bioavailability (such as LCZ696 treatment) as new targets to increase heart regeneration. By protecting CMs from cell death, and by stimulating their proliferation, BNP treatment leads to increased number of CMs in neonatal, adult unmanipulated and infarcted hearts.

cell biology↗

Increasing heart vascularisation after myocardial infarction using brain natriuretic peptide stimulation of endothelial and WT1+ epicardium-derived cells.

Brain natriuretic peptide (BNP) treatment increases heart function and decreases heart dilation after myocardial infarction. Here, we investigated whether part of the cardioprotective effect of BNP in infarcted hearts related to improved neovascularisation. Infarcted mice were treated with saline or BNP for 10 days. BNP treatment increased vascularisation and the number of endothelial cells in the infarct border and remote zones of infarcted hearts. Endothelial cell lineage tracing showed that BNP directly stimulated the proliferation of resident mature endothelial cells in both areas of the infarcted hearts, via NPR-A binding and p38 MAP kinase activation. BNP also stimulated the proliferation of WT1+ epicardium-derived cells but only in the hypoxic area of infarcted hearts. Our results demonstrated that these immature cells have a natural capacity to differentiate into endothelial cells in infarcted hearts. BNP treatment increased their proliferation but not their differentiation capacity. We identified new roles for BNP and new therapeutic strategies to improve heart recovery in infarcted hearts.

cell biology↗