Clemence Blouet

Affiliations: 
2003-2007 Nutrition AgroParisTech 
 2007-2014 Medicine Albert Einstein College of Medicine, New York, New York, United States 
 2014- University of Cambridge, Cambridge, England, United Kingdom 
Area:
energy balance, hypothalamus, brainstem, leucine
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"Clemence Blouet"
Mean distance: 17.24 (cluster 19)
 
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Publications

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Liu S, Marcelin G, Blouet C, et al. (2017) A gut-brain axis regulating glucose metabolism mediated by bile acids and competitive fibroblast growth factor actions at the hypothalamus. Molecular Metabolism
Burke LK, Darwish T, Cavanaugh AR, et al. (2017) mTORC1 in AGRP neurons integrates exteroceptive and interoceptive food-related cues in the modulation of adaptive energy expenditure in mice. Elife. 6
Jeong JH, Lee DK, Blouet C, et al. (2015) Cholinergic neurons in the dorsomedial hypothalamus regulate mouse brown adipose tissue metabolism. Molecular Metabolism. 4: 483-92
Cavanaugh AR, Schwartz GJ, Blouet C. (2015) High-fat feeding impairs nutrient sensing and gut brain integration in the caudomedial nucleus of the solitary tract in mice. Plos One. 10: e0118888
Marcelin G, Jo YH, Li X, et al. (2014) Central action of FGF19 reduces hypothalamic AGRP/NPY neuron activity and improves glucose metabolism. Molecular Metabolism. 3: 19-28
Blouet C. (2013) [Role of the nucleus of the solitary tract in the detection and integration of multiple metabolic signals]. MéDecine Sciences : M/S. 29: 449-52
Blouet C, Schwartz GJ. (2012) Duodenal lipid sensing activates vagal afferents to regulate non-shivering brown fat thermogenesis in rats. Plos One. 7: e51898
Blouet C, Schwartz GJ. (2012) Brainstem nutrient sensing in the nucleus of the solitary tract inhibits feeding. Cell Metabolism. 16: 579-87
Blouet C, Liu SM, Jo YH, et al. (2012) TXNIP in Agrp neurons regulates adiposity, energy expenditure, and central leptin sensitivity. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 32: 9870-7
Blouet C, Schwartz GJ. (2011) Nutrient-sensing hypothalamic TXNIP links nutrient excess to energy imbalance in mice. The Journal of Neuroscience : the Official Journal of the Society For Neuroscience. 31: 6019-27
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