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1. Mechanisms involved in dual vasopressin/apelin neuron dysfunction during aging.

2. Infected erythrocyte choline carrier inhibitors: exploring some potentialities inside Plasmodium phospholipid metabolism for eventual resistance acquisition

4. Structure of the vasopressin hormone–V2 receptor–β-arrestin1 ternary complex

5. Cryo–electron microscopy structure of the antidiuretic hormone arginine-vasopressin V2 receptor signaling complex

6. Structure of the antidiuretic hormone vasopressin receptor signalling complex

7. Design, synthesis and biological studies of a library of NK1-Receptor Ligands Based on a 5-arylthiosubstituted 2-amino-4,6-diaryl-3-cyano-4 H -pyran core: Switch from antagonist to agonist effect by chemical modification

8. V 1b vasopressin receptor trafficking and signaling: Role of arrestins, G proteins and Src kinase

9. Green mamba peptide targets type-2 vasopressin receptor against polycystic kidney disease

10. Differential Coupling of the Vasopressin V1b Receptor through Compartmentalization within the Plasma Membrane

11. The Vasopressin Receptors Colocalize with Vasopressin in the Magnocellular Neurons of the Rat Supraoptic Nucleus and Are Modulated by Water Balance

12. Pharmacological characterization of volume-sensitive, taurine permeable anion channels in rat supraoptic glial cells

13. Heterodimerization with Its Splice Variant Blocks the Ghrelin Receptor 1a in a Non-signaling Conformation

14. Selective fluorescent nonpeptidic antagonists for vasopressin V₂ GPCR: application to ligand screening and oligomerization assays

15. Structural insights into biased G protein-coupled receptor signaling revealed by fluorescence spectroscopy

16. Infected erythrocyte choline carrier inhibitors: exploring some potentialities inside Plasmodium phospholipid metabolism for eventual resistance acquisition

17. Leukotriene BLT2 receptor monomers activate the G(i2) GTP-binding protein more efficiently than dimers.: G protein activation by monomeric and dimeric GPCRs

18. Past, present and future of vasopressin and oxytocin receptor oligomers, prototypical GPCR models to study dimerization processes

19. Interleukin-6 activates arginine vasopressin neurons in the supraoptic nucleus during immune challenge in rats

20. Age-impaired fluid homeostasis depends on the balance of IL-6/IGF-I in the rat supraoptic nuclei

21. Structural difference between heteromeric somatic and homomeric axonal glycine receptors in the hypothalamo-neurohypophysial system

22. Immunocytochemical localization of vasopressin v1a receptors in the rat pituitary gonadotropes

23. A peptide nucleic acid (PNA) is more rapidly internalized in cultured neurons when coupled to a retro-inverso delivery peptide. The antisense activity depresses the target mRNA and protein in magnocellular oxytocin neurons

24. The V 1a and V 1b , But Not V 2 , Vasopressin Receptor Genes Are Expressed in the Supraoptic Nucleus of the Rat Hypothalamus, and the Transcripts Are Essentially Colocalized in the Vasopressinergic Magnocellular Neurons

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