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1.
Quarta, C. et al.: Functional identity of hypothalamic melanocortin neurons depends on Tbx3. Nat. Metab. 1, 222-235 (2019)
2.
Pfuhlmann, K. et al.: Calcineurin A beta deficiency ameliorates HFD-induced hypothalamic astrocytosis in mice. J. Neuroinflamm. 15:35 (2018)
3.
Suwandhi, L. et al.: Chronic d-serine supplementation impairs insulin secretion. Mol. Metab., accepted (2018)
4.
Caceres, C.G. et al.: Astrocytic UCP2 is required for hypothalamic response to metabolic challenges. Glia 65, E217-E218 (2017)
5.
Gao, Y. et al.: Dietary sugars, not lipids, drive hypothalamic inflammation. Mol. Metab. 6, 897-908 (2017)
6.
Gao, Y. et al.: Disruption of lipid uptake in astroglia exacerbates diet induced obesity. Diabetes 66, 2555-2563 (2017)
7.
Gruber, T. et al.: Hypercaloric environment triggers chronic remodeling of the hypothalamic vasculature via astroglial HIF1 alpha and VEGF signaling. Glia 65, E511-E511 (2017)
8.
Le Thuc, O. et al.: Hypothalamic astrocyte activity state determines systemic glucose metabolism in mice. Glia 65, E218-E218 (2017)
9.
Legutko, B. et al.: Astrocytic leptin and insulin signals interact to maintain systemic metabolic homeostasis. Glia 65, E219-E219 (2017)
10.
Quarta, C. et al.: Molecular integration of incretin and glucocorticoid action reverses immunometabolic dysfunction and obesity. Cell Metab. 26, 620-632.e6 (2017)
11.
Yi, C.-X. et al.: TNFα drives mitochondrial stress in POMC neurons in obesity. Nat. Commun. 8:15143 (2017)
12.
García-Cáceres, C. et al.: Astrocytic insulin signaling couples brain glucose uptake with nutrient availability. Cell 166, 867-880 (2016)
13.
Kabra, D.G. et al.: Hypothalamic leptin action is mediated by histone deacetylase 5. Nat. Commun. 7:10782 (2016)
14.
Clemmensen, C. et al.: Dual melanocortin-4 receptor and GLP-1 receptor agonism amplifies metabolic benefits in diet-induced obese mice. EMBO Mol. Med. 7, 288-298 (2015)