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3. Loss of GIPR in LEPR cells impairs glucose control by GIP and GIP:GLP-1 co-agonism without affecting body weight and food intake in mice

5. High-calorie diets uncouple hypothalamic oxytocin neurons from a gut-to-brain satiation pathway via κ-opioid signaling

7. Estradiol regulates leptin sensitivity to control feeding via hypothalamic Cited1

9. Validation of Mct8/Oatp1c1 dKO mice as a model organism for the Allan-Herndon-Dudley Syndrome

11. Oxytocin does not acutely improve glucose tolerance in men with type 2 diabetes.

14. Small extracellular vesicle-mediated targeting of hypothalamic AMPKα1 corrects obesity through BAT activation

15. Obesity-associated hyperleptinemia alters the gliovascular interface of the hypothalamus to promote hypertension

17. Prenatal Stress Induces Long-Term Effects in Cell Turnover in the Hippocampus-Hypothalamus-Pituitary Axis in Adult Male Rats

21. Functional identity of hypothalamic melanocortin neurons depends on Tbx3

23. The obesity‐linked human lncRNA AATBC stimulates mitochondrial function in adipocytes

25. Molecular Integration of Incretin and Glucocorticoid Action Reverses Immunometabolic Dysfunction and Obesity

26. Dietary sugars, not lipids, drive hypothalamic inflammation

27. Astrocytic Insulin Signaling Couples Brain Glucose Uptake with Nutrient Availability

29. Streptozotocin-induced β-cell damage, high fat diet, and metformin administration regulate Hes3 expression in the adult mouse brain

30. Diet triggers specific responses of hypothalamic astrocytes in time and region dependent manner

32. Insulin regulates neurovascular coupling through astrocytes

37. Hypothalamic astrocyte control systemic glucose metabolism and energy balance via regulation of extra-synaptic glutamate signaling

40. GLP-1-mediated delivery of the PPAR𝛼/𝛾 dual-agonist Tesaglitazar improves obesity and glucose metabolism in mice

44. The obesity-linked human lncRNA AATBC regulates adipocyte plasticity by stimulating mitochondrial dynamics and respiration

45. GLP-1-mediated delivery of the PPAR\uD835\uDEFC/\uD835\uDEFE dual-agonist Tesaglitazar improves obesity and glucose metabolism in mice

46. Identification and characterization of distinct brown adipocyte subtypes in C57BL/6J mice

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