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Endocrine Development|May 9, 2013
Ghrelin function in insulin release and glucose metabolismKatsuya DezakiPeptides|November 3, 2021
Status of ghrelin as an islet hormone and paracrine/autocrine regulator of insulin secretionKatsuya Dezaki, Toshihiko YadaMethods in Enzymology|September 15, 2012
Islet β-cell ghrelin signaling for inhibition of insulin secretionKatsuya Dezaki, Toshihiko YadaPharmacology & Therapeutics|April 25, 2008
Ghrelin is a physiological regulator of insulin release in pancreatic islets and glucose homeostasisKatsuya Dezaki, Hedeyuki Sone, Toshihiko YadaNihon Yakurigaku Zasshi. Folia Pharmacologica Japonica|October 27, 2004
[Methods for preparation and functional analysis of islet beta-cells]Masafumi Kakei, Katsuya Dezaki, Toshihiko YadaAmerican Journal of Physiology. Cell Physiology|April 17, 2025
GLP-1 and ghrelin inversely regulate insulin secretion and action in pancreatic islets, vagal afferents, and hypothalamus for controlling glycemia and feedingToshihiko Yada, Katsuya Dezaki, Yusaku IwasakiDiabetes|June 19, 2007
Ghrelin uses Galphai2 and activates voltage-dependent K+ channels to attenuate glucose-induced Ca2+ signaling and insulin release in islet beta-cells: novel signal transduction of ghrelinKatsuya Dezaki, Masafumi Kakei, Toshihiko YadaNeuropeptides|July 4, 2015
Ghrelin counteracts insulin-induced activation of vagal afferent neurons via growth hormone secretagogue receptorYusaku Iwasaki, Katsuya Dezaki, Parmila Kumari, et al.Apoptosis : an International Journal on Programmed Cell Death|March 31, 2012
Early-phase occurrence of K+ and Cl- efflux in addition to Ca 2+ mobilization is a prerequisite to apoptosis in HeLa cellsKatsuya Dezaki, Emi Maeno, Kaori Sato, et al.Regulatory Peptides|September 18, 2007
Neuropeptide W in the rat pancreas: potentiation of glucose-induced insulin release and Ca2+ influx through L-type Ca2+ channels in beta-cells and localization in isletsKatsuya Dezaki, Haruaki Kageyama, Mayumi Seki, et al.Pageof 6