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❤️Our March issue is out❤️Read about an AI model using echocardiography images improves cardiac diagnosis, LVAD unloading alleviates cellular senescence, inhibition of a hematopoietic death regulator shows cardioprotection, and more. www.nature.com/natcardiovas...
Research | Lazarevic et al. reveal a shared loss of a TBX5-dependent atrial gene network in cardiomyocytes and a disease-specific network gain in activated fibroblasts across atrial fibrillation and heart failure models. www.nature.com/articles/s44...
Research | Da Pra et al. show physiological glucocorticoids suppress growth-factor-induced cardiomyocyte regeneration by inhibiting ERK signaling and propose glucocorticoid receptor antagonism as a strategy to enhance their regenerative effects. www.nature.com/articles/s44... rdcu.be/e2Fa9
21/01/2026 ❤️Our January issue is out❤️Read about pathogenic mechanism of mutated ribosomal protein PRL3L, identification of cardiac progenitor lineage linked to congenital heart disease, multimodal vision graph for drug repurposing, and more. www.nature.com/natcardiovas...
Research | Kathiriya et al identify a cardiac Tbx5+/Mef2cAHF+progenitor lineage that bisects the intraventricular septum during the development and show that alterations in this lineage lead to congenital heart disease. www.nature.com/articles/s44... rdcu.be/eZGiu
Big thanks to the Science Ministry of Serbia and our speakers, Drs. Knoblich, Guilliatt, Stewart, & Turco, and Profs. Radisic, Hedtrich, Clevers, Vunjak-Novakovic, Trayanova, Lütolf, Heilshorn, Dvir, Cho & Singh for the great event! www.youtube.com/watch?v=4wmn...
❤️Our December issue is out❤️Read about a method to measure mitochondrial membrane potential in intact hearts, gene therapy for myocardial infarction, genetic association between thromboembolism and long COVID, and more. www.nature.com/natcardiovas...
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Lazarevic et al. reveal a shared loss of a TBX5-dependent atrial gene network in cardiomyocytes and a disease-specific network gain in activated fibroblasts across atrial fibrillation and heart failur...
A reduced TBX5-dependent gene regulatory network links atrial fibrillation and heart failure - Nature Cardiovascular Research
www.nature.com
Da Pra, Boriati and colleagues show that physiological glucocorticoids suppress growth-factor-induced cardiomyocyte regeneration by inhibiting ERK signaling and propose glucocorticoid receptor antagon...
www.nature.com
Kathiriya et al. identify a cardiac progenitor lineage with expression of Tbx5 and anterior heart field-specific expression of Mef2c that bisects the intraventricular septum during development and sho...
www.nature.com
Harnessing glucocorticoid receptor antagonism to enhance the efficacy of cardiac regenerative growth factors and cytokines - Nature Cardiovascular Research
A disrupted compartment boundary underlies abnormal cardiac patterning and congenital heart defects - Nature Cardiovascular Research
Research | Neo et al. map blood emergence from three hemogenic endothelial (HE) populations biased toward distinct blood fates. HE primed for stem progenitors shows elevated chromatin and RNA splicing gene expression and greater isoform diversity. doi.org/10.1038/s441... rdcu.be/eQxPN
Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research
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Research|Chen et al. developed a self-powered smart magnetoelastic stent for real-time hemodynamic monitoring and stenosis detection. www.nature.com/articles/s44...
❤️Our February issue is out❤️Read about self-powered stent for real-time monitoring, cardiomyocyte regeneration through glucocorticoid receptor antagonism, immunometabolic targeting for type 2 diabetic cardiomyopathy, and more. www.nature.com/natcardiovas...
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Chen et al. developed a self-powered smart magnetoelastic stent for real-time hemodynamic monitoring and stenosis detection.
www.nature.com
Self-powered in-stent restenosis diagnosis via magnetoelastic stents - Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research
Nature Cardiovascular Research