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Brain Research|July 17, 1992
Xanthine derivatives IBMX and S-9977-2 potentiate transmission at an Aplysia central cholinergic synapseL E Trudeau, P Fossier, G Baux, et al.Neuroscience|March 1, 1993
Transmitter release and calcium currents at an Aplysia buccal ganglion synapse--I. CharacterizationL E Trudeau, G Baux, P Fossier, et al.Comptes Rendus De L'Academie Des Sciences. Serie III, Sciences De La Vie|January 1, 1988
[Ganglionic synapses of Aplysia as a model for the study of the mechanism of action of botulinum neurotoxins]B Poulain, L Tauc, E A Maisey, et al.Brain Research|July 10, 1989
Demonstration of functional acetylcholinesterase on the soma of individual neurones of Aplysia by in vivo microspectrophotometryP Fossier, G Testylier, G Baux, et al.FEBS Letters|August 14, 1989
Light chain of tetanus toxin intracellularly inhibits acetylcholine release at neuro-neuronal synapses, and its internalization is mediated by heavy chainS Mochida, B Poulain, U Weller, et al.Physiological Research|January 1, 1996
Opposite effects of nitric oxide on identified inhibitory and excitatory cholinergic synapses of Aplysia californicaJ P Mothet, P Fossier, A Schirar, et al.Journal of Neurochemistry|September 1, 1993
Antibodies against rat brain vesicle-associated membrane protein (synaptobrevin) prevent inhibition of acetylcholine release by tetanus toxin or botulinum neurotoxin type BB Poulain, O Rossetto, F Deloye, et al.Neuroscience|August 28, 1999
Nitric oxide transforms serotonin into an inactive form and this affects neuromodulationP Fossier, B Blanchard, C Ducrocq, et al.Neuroscience Letters|May 25, 1992
Differences in the temperature dependencies of uptake of botulinum and tetanus toxins in Aplysia neuronsB Poulain, A de Paiva, J O Dolly, et al.The EMBO Journal|October 1, 1992
Tetanus toxin is a zinc protein and its inhibition of neurotransmitter release and protease activity depend on zincG Schiavo, B Poulain, O Rossetto, et al.Pageof 8