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Toxicon : Official Journal of the International Society on Toxinology|August 20, 2013
Botulinum neurotoxin A2 reduces incidence of seizures in mouse models of temporal lobe epilepsyKeiko Kato, Norio Akaike, Tomoko Kohda, et al.
Frontiers in Neurology|July 9, 2014
Spinal Central Effects of Peripherally Applied Botulinum Neurotoxin A in Comparison between Its Subtypes A1 and A2Hidetaka Koizumi, Satoshi Goto, Shinya Okita, et al.
Brain Research|June 9, 2007
Effects of various K+ channel blockers on spontaneous glycine release at rat spinal neuronsKiyomitsu Shoudai, Kiku Nonaka, Megumi Maeda, et al.
Toxicon : Official Journal of the International Society on Toxinology|January 10, 2012
Effects of tetanus toxin on spontaneous and evoked transmitter release at inhibitory and excitatory synapses in the rat SDCN neuronsMin-Chul Shin, Kiku Nonaka, Masahito Wakita, et al.
Toxicon : Official Journal of the International Society on Toxinology|August 3, 2010
Effects of A2 type botulinum toxin on spontaneous miniature and evoked transmitter release from the rat spinal excitatory and inhibitory synapsesNorio Akaike, Yushi Ito, Min-Chul Shin, et al.
The Journal of Physiology|October 31, 2012
Transsynaptic inhibition of spinal transmission by A2 botulinum toxinNorio Akaike, Min-Chul Shin, Masahito Wakita, et al.
Journal of Pharmacological Sciences|December 14, 2011
Inhibition of membrane Na+ channels by A type botulinum toxin at femtomolar concentrations in central and peripheral neuronsMin-Chul Shin, Masahito Wakita, Du-Jie Xie, et al.
Journal of Pharmacological Sciences|February 26, 2020
Inhibition of Membrane Na+ Channels by A Type Botulinum Toxin at Femtomolar Concentrations in Central and Peripheral NeuronsMin-Chul Shin, Masahito Wakita, Du-Jie Xie, et al.
Journal of Pharmacological Sciences|November 30, 2011
Type A1 but not type A2 botulinum toxin decreases the grip strength of the contralateral foreleg through axonal transport from the toxin-treated foreleg of ratsYasushi Torii, Norio Akaike, Tetsuhiro Harakawa, et al.
General Physiology and Biophysics|January 23, 2014
Potent cough suppression by physiologically active substance in human plasmaNorio Akaike, Yushi Ito, Sachie K Ogawa, et al.
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