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1. Stimulating intestinal GIP release reduces food intake and body weight in mice.

2. Relaxin/insulin-like family peptide receptor 4 (Rxfp4) expressing hypothalamic neurons modulate food intake and preference in mice.

3. Nutritional regulation of oligodendrocyte differentiation regulates perineuronal net remodeling in the median eminence.

4. Nutrient sensing in the nucleus of the solitary tract mediates non-aversive suppression of feeding via inhibition of AgRP neurons.

5. Postprandial Hyperglycemia Stimulates Neuroglial Plasticity in Hypothalamic POMC Neurons after a Balanced Meal.

6. Lack of Hypothalamus Polysialylation Inducibility Correlates With Maladaptive Eating Behaviors and Predisposition to Obesity.

7. Brain Control of Plasma Cholesterol Involves Polysialic Acid Molecules in the Hypothalamus.

8. Plasticity of the Melanocortin System: Determinants and Possible Consequences on Food Intake.

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