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Molecular Brain|May 20, 2023
Interneuronal GluK1 kainate receptors control maturation of GABAergic transmission and network synchrony in the hippocampusSimo Ojanen, Tatiana Kuznetsova, Zoia Kharybina, et al.EMBO Reports|November 8, 2011
AMIGO is an auxiliary subunit of the Kv2.1 potassium channelMarjaana A Peltola, Juha Kuja-Panula, Sari E Lauri, et al.Neuropharmacology|July 12, 2024
Arginine vasopressin activates serotonergic neurons in the dorsal raphe nucleus during neonatal development in vitro and in vivoEster Orav, Bojana Kokinovic, Heidi Teppola, et al.Journal of Neurophysiology|April 26, 2008
Altered synaptic dynamics and hippocampal excitability but normal long-term plasticity in mice lacking hyperpolarizing GABA A receptor-mediated inhibition in CA1 pyramidal neuronsRuusu Riekki, Ivan Pavlov, Janne Tornberg, et al.Neuropharmacology|August 22, 2006
Presynaptic mechanisms involved in the expression of STP and LTP at CA1 synapses in the hippocampusSari E Lauri, Mary Palmer, Mikael Segerstrale, et al.Neuropharmacology|December 19, 2012
Mechanisms underlying induction of LTP-associated changes in short-term dynamics of transmission at immature synapsesNatalia V Luchkina, Marko Sallert, Vernon R J Clarke, et al.Experimental Neurology|May 1, 2026
Drugs targeting synaptic RNA m6A methylation regulate synaptic transmission and plasticity in the rat hippocampusRahaf Keskinen, Jun Kyu Rhee, Indrek Teino, et al.Molecular Psychiatry|June 28, 2025
Parvalbumin interneurons gate amygdala excitability and response to chronic stress via kainate receptor-driven tonic GABAB receptor-mediated inhibitionMaria Ryazantseva, Maj Liiwand, Vasilii Shteinikov, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|December 16, 2014
Activity-dependent upregulation of presynaptic kainate receptors at immature CA3-CA1 synapsesVernon R J Clarke, Svetlana M Molchanova, Teemu Hirvonen, et al.The Journal of Neuroscience : the Official Journal of the Society for Neuroscience|May 14, 2010
High firing rate of neonatal hippocampal interneurons is caused by attenuation of afterhyperpolarizing potassium currents by tonically active kainate receptorsMikael Segerstråle, Juuso Juuri, Frédéric Lanore, et al.Pageof 6