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Blood|July 19, 2018
AMPK-ACC signaling modulates platelet phospholipids and potentiates thrombus formationSophie Lepropre, Shakeel Kautbally, Marie Octave, et al.BMJ Global Health|June 6, 2024
Mapping the international health regulations monitoring and evaluation framework: an expert consultation, triangulation crosswalk and quantitative analysisRobert Nguni, Nirmal Kandel, Cynthia Bell, et al.Data in Brief|January 7, 2022
SIPIBEL observatory: Data on usual pollutants (solids, organic matter, nutrients, ions) and micropollutants (pharmaceuticals, surfactants, metals), biological and ecotoxicity indicators in hospital and urban wastewater, in treated effluent and sludge from wastewater treatment plant, and in surface and groundwaterJean-Luc Bertrand-Krajewski, Rémy Bournique, Vivien Lecomte, et al.Basic Research in Cardiology|February 10, 2021
AMPKα1 deletion in myofibroblasts exacerbates post-myocardial infarction fibrosis by a connexin 43 mechanismCécile Dufeys, Evangelos-Panagiotis Daskalopoulos, Diego Castanares-Zapatero, et al.Ebiomedicine|August 9, 2024
Plasma myo-inositol elevation in heart failure: clinical implications and prognostic significance. Results from the BElgian and CAnadian MEtabolomics in HFpEF (BECAME-HF) research projectAnne-Catherine Pouleur, Nassiba Menghoum, Julien Cumps, et al.Acta Physiologica (Oxford, England)|October 6, 2020
Protein O-GlcNAcylation levels are regulated independently of dietary intake in a tissue and time-specific manner during rat postnatal developmentThomas Dupas, Manon Denis, Justine Dontaine, et al.Blood Advances|July 3, 2025
Deleting ACC1 in platelets alters phospholipidome and reduces platelet activation and thrombosis in miceMarie Octave, Laurence Pirotton, Emma de Cartier d'Yves, et al.Nature Communications|January 27, 2018
AMPK activation counteracts cardiac hypertrophy by reducing O-GlcNAcylationRoselle Gélinas, Florence Mailleux, Justine Dontaine, et al.Circulation|March 12, 2025
An NRF2/β3-Adrenoreceptor Axis Drives a Sustained Antioxidant and Metabolic Rewiring Through the Pentose-Phosphate Pathway to Alleviate Cardiac StressLauriane Y M Michel, Hrag Esfahani, Delphine De Mulder, et al.Circulation|November 6, 2013
Enhanced expression of β3-adrenoceptors in cardiac myocytes attenuates neurohormone-induced hypertrophic remodeling through nitric oxide synthaseCatharina Belge, Joanna Hammond, Emilie Dubois-Deruy, et al.Pageof 17