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1. Single nucleus transcriptomic analysis of rat nucleus accumbens reveals cell type-specific patterns of gene expression associated with volitional morphine intake

2. Hypothalamus-hippocampus circuitry regulates impulsivity via melanin-concentrating hormone

3. Corrination of a GLP-1 Receptor Agonist for Glycemic Control without Emesis

4. The long-acting amylin/calcitonin receptor agonist ZP5461 suppresses food intake and body weight in male rats

5. Signaling in rat brainstem via Gpr160 is required for the anorexigenic and antidipsogenic actions of cocaine- and amphetamine-regulated transcript peptide

6. A novel regulator of thirst behavior: phoenixin

7. The role of glia in the physiology and pharmacology of glucagon‐like peptide‐1: implications for obesity, diabetes, neurodegeneration and glaucoma

8. Activation of GLP-1 receptors attenuates oxycodone taking and seeking without compromising the antinociceptive effects of oxycodone in rats

9. Hypothalamus-hippocampus circuitry regulates impulsivity via melanin-concentrating hormone

11. Past, Present and Future of Cocaine- and Amphetamine-Regulated Transcript Peptide

12. W72. SINGLE-NUCLEI TRANSCRIPTOMICS OF SCHIZOPHRENIA PREFRONTAL CORTEX PRIMARILY IMPLICATES NEURONAL SUBTYPES

13. Single-nuclei transcriptomics of schizophrenia prefrontal cortex primarily implicates neuronal subtypes

14. Corrination of a GLP-1 Receptor Agonist for Glycemic Control without Emesis

15. Dorsal vagal complex and hypothalamic glia differentially respond to leptin and energy balance dysregulation

16. A second-generation glucagon-like peptide-1 receptor agonist mitigates vomiting and anorexia while retaining glucoregulatory potency in lean diabetic and emetic mammalian models

17. Early life overnutrition impairs plasticity of non-neuronal brainstem cells and drives obesity in offspring across development in rats

18. The phoenixins: From discovery of the hormone to identification of the receptor and potential physiologic actions

19. Novel regulator of vasopressin secretion: phoenixin

20. Combined Amylin/GLP-1 pharmacotherapy to promote and sustain long-lasting weight loss

21. Short- and long-access palatable food self-administration results in different phenotypes of binge-type eating

22. Leptin Induced Satiety and the Contribution of Brainstem Astrocytes

24. Hypophagia induced by hindbrain serotonin is mediated through central GLP-1 signaling and involves 5-HT2C and 5-HT3 receptor activation

25. Liraglutide pharmacotherapy reduces body weight and improves glycemic control in juvenile obese / hyperglycemic male and female rats

26. Hypothalamic action of phoenixin to control reproductive hormone secretion in females: importance of the orphan G protein-coupled receptor Gpr173

27. Hypoglycemia unawareness prevention: Targeting glucagon production

28. Aging-related impairment of urine-concentrating mechanisms correlates with dysregulation of adrenocortical angiotensin type 1 receptors in male Fischer rats

29. Neuronostatin acts via GPR107 to increase cAMP-independent PKA phosphorylation and proglucagon mRNA accumulation in pancreatic α-cells

30. Cover Image, Volume 20, Issue 5

32. Neuropeptides and Control of the Anterior Pituitary☆

33. Novel Small Peptide Hormones

34. Adropin acts in brain to inhibit water drinking: potential interaction with the orphan G protein-coupled receptor, GPR19

35. Neutrophils are required for 3-methylcholanthrene-initiated, butylated hydroxytoluene-promoted lung carcinogenesis

36. Understanding Peptide Biology: The Discovery and Characterization of the Novel Hormone, Neuronostatin

37. Identification of a Candidate Adropin Receptor

38. GLP‐1 linked to an α2‐adrenergic antagonist enhances glucose disposal (1108.2)

39. Adropin Enhances Glucose Disposal and Cardiovascular Function in Rats (LB761)

40. Regulation of Alr1 Mg transporter activity by intracellular magnesium

42. A two model receptor system of the alpha1D adrenergic receptor to describe interactions with epinephrine and BMY7378

43. Abstract 301: Ccl17 and Ccr4 co-localize in mouse lung adenomas in vivo and are associated with epithelial cell migration in vitro

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