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For: Yoshimura M, Conway-Campbell B, Ueta Y. Arginine vasopressin: Direct and indirect action on metabolism. Peptides 2021;142:170555. [PMID: 33905792 DOI: 10.1016/j.peptides.2021.170555] [Cited by in Crossref: 3] [Cited by in F6Publishing: 2] [Article Influence: 3.0] [Reference Citation Analysis]
Number Citing Articles
1 Jeong JK, Dow SA, Young CN. Sensory Circumventricular Organs, Neuroendocrine Control, and Metabolic Regulation. Metabolites 2021;11:494. [PMID: 34436435 DOI: 10.3390/metabo11080494] [Reference Citation Analysis]
2 Adachi T, Takeuchi Y, Takaki A, Oyama A, Wada N, Onishi H, Shiraha H, Okada H. Management of Cirrhotic Ascites under the Add-on Administration of Tolvaptan. Int J Mol Sci 2021;22:5582. [PMID: 34070416 DOI: 10.3390/ijms22115582] [Reference Citation Analysis]
3 Sanada K, Yoshimura M, Ikeda N, Baba K, Nishimura H, Nishimura K, Nonaka Y, Maruyama T, Miyamoto T, Mori M, Conway-Campbell B, Lightman S, Kataoka M, Ueta Y. Chemogenetic activation of endogenous arginine vasopressin exerts anorexigenic effects via central nesfatin-1/NucB2 pathway. J Physiol Sci 2021;71:18. [PMID: 34134629 DOI: 10.1186/s12576-021-00802-4] [Reference Citation Analysis]
4 Meadows JD, Breuer JA, Lavalle SN, Hirschenberger MR, Patel MM, Nguyen D, Kim A, Cassin J, Gorman MR, Welsh DK, Mellon PL, Hoffmann HM. Deletion of Six3 in post-proliferative neurons produces weakened SCN circadian output, improved metabolic function, and dwarfism in male mice. Mol Metab 2021;:101431. [PMID: 34974160 DOI: 10.1016/j.molmet.2021.101431] [Reference Citation Analysis]