Results 41 to 50 of about 378 (120)
Molecular Mechanism of Functional Ingredients in Barley to Combat Human Chronic Diseases
Oxidative Medicine and Cellular Longevity, Volume 2020, Issue 1, 2020., 2020 Barley plays an important role in health and civilization of human migration from Africa to Asia, later to Eurasia. We demonstrated the systematic mechanism of functional ingredients in barley to combat chronic diseases, based on PubMed, CNKI, and ISI Web of Science databases from 2004 to 2020.Yawen Zeng, Xiaoying Pu, Juan Du, Xiaomeng Yang, Xia Li, Md. Siddikun Nabi Mandal, Tao Yang, Jiazhen Yang, Cinzia Domenicotti +8 morewiley +1 more sourceGABAergic System in Stress: Implications of GABAergic Neuron Subpopulations and the Gut‐Vagus‐Brain Pathway
Neural Plasticity, Volume 2020, Issue 1, 2020., 2020 Stress can cause a variety of central nervous system disorders, which are critically mediated by the γ‐aminobutyric acid (GABA) system in various brain structures. GABAergic neurons have different subsets, some of which coexpress certain neuropeptides that can be found in the digestive system. Accumulating evidence demonstrates that the gut‐brain axis, Xueqin Hou, Cuiping Rong, Fugang Wang, Xiaoqian Liu, Yi Sun, Han-Ting Zhang, Fushun Wang +6 morewiley +1 more sourceComparative distribution of relaxin-3 inputs and calcium-binding protein-positive neurons in rat amygdala
Frontiers in Neuroanatomy, 2016 The neural circuits involved in mediating complex behaviors are being rapidly elucidated using various newly developed and powerful anatomical and molecular techniques, providing insights into the neural basis for anxiety disorders, depression, addiction,Fabio N Santos, Celia W Pereira, Ana M Sanchez-perez, Marcos eOtero, Sherie K Ma, Andrew L Gundlach, Andrew L Gundlach, Francisco E Olucha-Bordonau +7 moredoaj +1 more sourceThe Concise Guide to PHARMACOLOGY 2025/26: G protein‐coupled receptors
British Journal of Pharmacology, Volume 182, Issue S1, Page S24-S151, December 2025.The Concise Guide to Pharmacology 2025/26 marks the seventh edition in this series of biennial publications in the British Journal of Pharmacology. Presented in landscape format, the guide provides a comparative overview of the pharmacology of drug target families. The concise nature of the Concise Guide refers to the style of presentation, being clear,Stephen P. H. Alexander, Anthony P. Davenport, Eamonn Kelly, Alasdair J. Gibb, Alistair A. Mathie, Chloe J. Peach, Emma L. Veale, Jane F. Armstrong, Elena Faccenda, Simon D. Harding, Christopher Southan, Jamie A. Davies, Maria Pia Abbracchio, George R. Abraham, Alexander Agoulnik, Wayne Alexander, Khaled Al‐hosaini, Magnus Bäck, Jillian G. Baker, Nicholas M. Barnes, Ross Bathgate, Jean‐Martin Beaulieu, Annette G. Beck‐Sickinger, Maik Behrens, Kirstie A. Bennett, Kenneth E. Bernstein, Bernhard Bettler, Nigel J. M. Birdsall, Victoria A. Blaho, Pascal Bonaventure, Francois Boulay, Corinne Bousquet, Hans Bräuner‐Osborne, Andrew J. Brown, Geoffrey Burnstock, Marta Busnelli, Girolamo Caló, Vanni Caruso, Justo P. Castaño, Kevin J. Catt, Stefania Ceruti, Paul Chazot, Nan Chiang, Bice Chini, Arthur Christopoulos, Jerold Chun, Antonia Cianciulli, Olivier Civelli, Lucie H. Clapp, Réjean Couture, Helen M. Cox, Zsolt Csaba, Claes Dahlgren, Frank M. Dautzenberg, Gordon Dent, Steven D. Douglas, Pascal Dournaud, Margarita L. Dubocovich, Satoru Eguchi, Emanuel Escher, Edward J. Filardo, Tung Fong, Huamei Fu Forsman, Marta Fumagalli, Raul R. Gainetdinov, Michael L. Garelja, Marc de Gasparo, Florence Gbahou, Craig Gerard, Marvin Gershengorn, Michelle Glass, David E. Gloriam, Fernand Gobeil, Theodore L. Goodfriend, Cyril Goudet, Lukas Grätz, Karen J. Gregory, Christian Gruber, Andrew L. Gundlach, Jörg Hamann, Julien Hanson, Deborah S. Hartman, Richard L. Hauger, Debbie L. Hay, Akos Heinemann, Laura Heitman, Deron R. Herr, Morley D. Hollenberg, Nicholas D. Holliday, Birgitte Holst, Mastgugu Horiuchi, Daniel Hoyer, László Hunyady, Ahsan Husain, Adriaan P. IJzerman, Tadashi Inagami, Paul A. Insel, Kenneth A. Jacobson, Laura H. Jacobson, Robert T. Jensen, Ralf Jockers, Deepa Jonnalagadda, Sadashiva Karnik, Klemens Kaupmann, Jacqueline Kemp, Charles Kennedy, Yasuyuki Kihara, Julia Kinsolving, Takio Kitazawa, Pawel Kozielewicz, Hans‐Jürgen Kreienkamp, Jyrki P. Kukkonen, Luxmichan Laishram, Tobias Langenhan, Christopher J. Langmead, Dan Larhammar, Katie Leach, Davide Lecca, John D. Lee, Susan E. Leeman, Jérôme Leprince, Rob Leurs, Xaria X. Li, Ines Liebscher, Stephen J. Lolait, Amelie Lupp, Robyn Macrae, Janet J. Maguire, Davide Malfacini, Maurice Manning, Davide Marangon, Kirill Martemyanov, Jean Mazella, Craig A. McArdle, Shlomo Melmed, Martin C. Michel, Laurence J. Miller, Vincenzo Mitolo, Bernard Mouillac, Christa E. Müller, Philip M. Murphy, Jean‐Louis Nahon, Richard R. Neubig, Tony Ngo, Xavier Norel, Duuamene Nyimanu, Anne‐Marie O’Carroll, Stefan Offermanns, Maria Antonietta Panaro, Marc Parmentier, Nicole Perry‐Hauser, Roger G. Pertwee, Jean‐Philippe Pin, Eric R. Prossnitz, Helena Chengxue Qin, Mark Quinn, Stefano Raffaele, Rithwik Ramachandran, Manisha Ray, Rainer K. Reinscheid, Alejandro Romeral Buzón, Philippe Rondard, Mette M. Rosenkilde, G. Enrico Rovati, Chiara Ruzza, Gareth J. Sanger, Nicole Scholz, Torsten Schöneberg, Gunnar Schulte, Stefan Schulz, Deborah L. Segaloff, Charles N. Serhan, Arun K. Shukla, Khuraijam Dhanachandra Singh, Craig M. Smith, Nicola J. Smith, Claudia Stäubert, Leigh A. Stoddart, Yukihiko Sugimoto, Roger Summers, Valerie P. Tan, David M. Thal, Walter ( Wally) Thomas, Pieter B. M. W. M. Timmermans, Kalyan Tirupula, Lawrence Toll, Giovanni Tulipano, Hamiyet Unal, Thomas Unger, Celine Valant, Patrick Vanderheyden, David Vaudry, Hubert Vaudry, Joseph G. Verbalis, Jean‐Pierre Vilardaga, Christopher S. Walker, Ji Ming Wang, Donald T. Ward, Hans‐Jürgen Wester, Gary B. Willars, Tom Lloyd Williams, Trent M. Woodruff, Huixian Wu, Cheng Yang, Chengcan Yao, Richard D. Ye, Nathan Zaidman +206 morewiley +1 more sourceRelaxin-3-deficient mice showed slight alteration in anxiety-related behavior
Frontiers in Behavioral Neuroscience, 2011 Relaxin-3 is a neuropeptide belonging to the relaxin/insulin superfamily. Studies using rodents have revealed that relaxin-3 is predominantly expressed in neurons in the nucleus incertus of the pons, the axons of which project to forebrain regions ...Yoshihisa eWatanabe, Atsushi eTsujimura, Keizo eTakao, Kazunori eNishi, Yasuaki eIto, Yoshitaka eYasuhara, Yasuhito eNakatomi, Chihiro eYokoyama, Kenji eFukui, Tsuyoshi eMiyakawa, Masaki eTanaka +10 moredoaj +1 more sourceTheta synchronization between the hippocampus and the nucleus incertus in urethane-anesthetized rats
Experimental Brain Research, 2011 Note on the Postprint This document is the postprint version of the article titled "Theta synchronization between the hippocampus and the nucleus incertus in urethane-anesthetized rats", originally published in the journal Experimental Brain Research.Cervera-Ferri, Ana, Guerrero-Martínez, Juan, Bataller-Mompeán, Manuel, Taberner-Cortés, Alida, Martínez-Ricós, Joana, Ruiz Torner, Amparo, Teruel-Martí, Vicent +6 moreopenaire +4 more sourcesSeptal GABA and Glutamate Neurons Express RXFP3 mRNA and Depletion of Septal RXFP3 Impaired Spatial Search Strategy and Long-Term Reference Memory in Adult Mice
Frontiers in Neuroanatomy, 2019 Relaxin-3 is a highly conserved neuropeptide abundantly expressed in neurons of the nucleus incertus (NI), which project to nodes of the septohippocampal system (SHS) including the medial septum/diagonal band of Broca (MS/DB) and dorsal hippocampus, as ...Mouna Haidar, Mouna Haidar, Kimberly Tin, Kimberly Tin, Cary Zhang, Mohsen Nategh, João Covita, João Covita, Alexander D. Wykes, Alexander D. Wykes, Jake Rogers, Jake Rogers, Andrew L. Gundlach, Andrew L. Gundlach, Andrew L. Gundlach +14 moredoaj +1 more sourceModulation of hippocampal theta oscillations and spatial memory by relaxin-3 neurons of the nucleus incertus [PDF]
Learning & Memory, 2009 Hippocampal theta rhythm is thought to underlie learning and memory, and it is well established that “pacemaker” neurons in medial septum (MS) modulate theta activity. Recent studies in the rat demonstrated that brainstem-generated theta rhythm occurs through a multisynaptic pathway via the nucleus incertus (NI), which is the primary source of the ...Sherie, Ma, Francisco E, Olucha-Bordonau, M Akhter, Hossain, Feng, Lin, Chester, Kuei, Changlu, Liu, John D, Wade, Steven W, Sutton, Angel, Nuñez, Andrew L, Gundlach +9 moreopenaire +2 more sourcesRelaxin-3 mRNA levels in nucleus incertus correlate with alcohol and sucrose intake in rats [PDF]
Drug and Alcohol Dependence, 2014 Chronic alcohol intake produces multiple neuroadaptive changes, including up- and down-regulation of neuropeptides and receptors. There are widespread projections of relaxin-3 containing neurons to, and abundant relaxin family peptide 3 receptor (RXFP3) expression within, brain regions involved in modulating alcohol intake. Recently we demonstrated the Ryan, PJ, Krstew, EV, Sarwar, M, Gundlach, AL, Lawrence, AJ +4 moreopenaire +3 more sources