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Amino Acids|May 28, 2003
Neuronal transmembrane chloride electrochemical gradient: a key player in GABA A receptor activation physiological effectA CupelloBiochimica Et Biophysica Acta|January 30, 1989
Dependence of the conductance of the alpha-latrotoxin channel on applied potential and potassium concentrationM RobelloThe International Journal of Neuroscience|November 1, 1986
Binding experiment KD values and physiologically active GABA concentrations: an only apparent contradiction?A Cupello, H HydénBrain Research|December 9, 1985
Evaluation of the electrophysiological consequences of GABA removal from the synaptic cleft by Na+ ion transport-coupled neuronal uptakeA Cupello, H HydénBrain Research|September 2, 1985
A calculation method for evaluating the time course of GABA removal from a synaptic cleft by presynaptic uptake systemsA Cupello, H HydenExperientia|January 1, 1976
Poly(A) associated RNA from mitochondria and microsomes of rat brainA Cupello, G RosadiniNeurochemical Research|May 19, 2001
Pretreatment of rat brain synaptosomes with GABA increases subsequent GABA uptake via GABA(B) receptor activationA Cupello, S ScarroneJournal of Neuroscience Research|January 1, 1981
On the presence of met 5-enkephalin receptors on the plasma membrane of Deiters' neurons and their modulation of GABA transportA Cupello, H HydénExperimental Brain Research|January 18, 1978
Studies of RNA metabolism in the nerve cells of hippocampus during training in ratsA Cupello, H HydénNeurochemical Research|November 1, 1986
Calcium ions in the presence of exogenous phosphatidylserine interfere with GABA diffusion through the Deiters' neuron membraneH Hydén, A CupelloPageof 31