 
    Marc Claret
Grup de recerca
- Control neuronal del metabolisme Group leader (R4)
Publicacions destacades
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                    POMC neuronal heterogeneity in energy balance and beyond: an integrated viewAutors:Referència: Nature Metabolism 2021.
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                    p53 in AgRP neurons is required for protection against diet-induced obesity via JNK1Autors:Referència: Nature Communications 2018.
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                    Mitochondrial Dynamics Mediated by Mitofusin 1 Is Required for POMC Neuron Glucose-Sensing and Insulin Release Control.Autors:Referència: Cell Metabolism 2017.
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                    Akkermansia muciniphila inversely correlates with the onset of inflammation, altered adipose tissue metabolism and metabolic disorders during obesity in miceAutors:Referència: Scientific Reports 2015.
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                    Reduced α-MSH Underlies Hypothalamic ER-Stress-Induced Hepatic GluconeogenesisAutors:Referència: Cell Reports 2015.
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                    Hypothalamic and brainstem neurocircuitries controlling homeostatic energy balanceAutors:Referència: Journal Of Endocrinology 2014.
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                    Mitofusin 2 in POMC neurons connects ER stress with leptin resistance and energy imbalanceAutors:Referència: Cell 2013.
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                    Deletion of miRNA processing enzyme Dicer in POMC-expressing cells leads to pituitary dysfunction, neurodegeneration and development of obesityAutors:Referència: Molecular Metabolism 2013.
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                    Deletion of Lkb1 in pro-opiomelanocortin neurons impairs peripheral glucose homeostasis in miceAutors:Referència: Diabetes 2011.
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                    AMPK is essential for energy homeostasis regulation and glucose sensing by POMC and AgRP neurons.Autors:Referència: Journal Of Clinical Investigation 2007.
Projectes destacats
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                Hypothalamic control of gut function and microbiota composition: implications for energy balance regulation (NeuroGut)Investigador/a principal: Marc Claret CarlesFinançador: La CaixaCodi: HR18-00100Durada: 01/11/2019 - 31/10/2022
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                Mitochondrial fusion in endothelial cells: impact on systemic energy and glucose homeostasisInvestigador/a principal: Marc Claret CarlesFinançador: European Foundation for the Study of Diabetes (EFSD)Codi: EFSD/NOVO_17_01Durada: 15/02/2018 - 14/02/2020
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                Decoding mitochondrial nutrient-sensing programs in POMC neurons as key determinants of metabolic health (MITOSENSING)Investigador/a principal: Marc Claret CarlesFinançador: European Research Council (ERC)Codi: 725004Durada: 01/04/2017 - 31/03/2022
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                Investigating the role of hypothalamic POMC neuron-derived neurosteroids as critical regulators of energy balance and metabolismInvestigador/a principal: Marc Claret CarlesFinançador: Instituto de Salud Carlos III (ISCIII)Codi: PI16/00963Durada: 01/01/2017 - 31/12/2019
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                Estudio del papel de la fusión mitocondrial en neuronas hipotalámicas sobre el control del apetito y la regulación del peso corporal: Opa 1 como potencial diana terapéutica para el tratamiento de la obesidadInvestigador/a principal: Marc Claret CarlesFinançador: Fundación BBVACodi: BBM-MED-1172Durada: 11/11/2015 - 31/01/2018
