Ghrelin
Molecular Metabolism2015Vol. 4(6), pp. 437–460
Citations Over TimeTop 1% of 2015 papers
Timo D. Müller, Rubén Nogueiras, Mark L. Andermann, Zane B. Andrews, Stefan D. Anker, Jesús Argente, Rachel L. Batterham, S.C. Benoit, C. Y. Bowers, Fabio Broglio, Felipe F. Casanueva, David A. D’Alessio, Inge Depoortere, Allan Geliebter, Ezio Ghigo, Philip A. Cole, Michael A. Cowley, D. E. Cummings, Alain Dagher, Sabrina Diano, Suzanne L. Dickson, Carlos Diéguez, Riccarda Granata, Harvey J. Grill, Kelly Grove, Kirk M. Habegger, Kristy M. Heppner, Mark L. Heiman, Laura M. Holsen, Birgitte Holst, Akio Inui, J-O Jansson, Henriette Kirchner, Márta Korbonits, Blandine Laferrère, C.W. LeRoux, Miguel López, Sophie Morin, Michiko Nakazato, Ralf Nass, Diego Pérez–Tilve, Paul T. Pfluger, Thue W. Schwartz, Randy J. Seeley, Mark W. Sleeman, Yuxiang Sun, Lori Sussel, Jenny Tong, Michael O. Thorner, A. J. van der Lely, L. H. T. Van der Ploeg, Jeffrey M. Zigman, Masayasu Kojima, Kenji Kangawa, R G Smith, Tamás L. Horváth, M. Tschöp
Abstract
In recent years, ghrelin has been found to have a plethora of central and peripheral actions in distinct areas including learning and memory, gut motility and gastric acid secretion, sleep/wake rhythm, reward seeking behavior, taste sensation and glucose metabolism.
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