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Original Article

The Mechanism by Which Intracellular GABA Increases Cl Outward Permeability Across Deiters' Neurone Plasma Membranes

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Pages 71-74 | Received 06 Sep 1988, Published online: 07 Jul 2009

References

  • Bormann J., Hamill O. P., Sackmann B. Mechanism of anion permeation through channels gated by glycine and γ-amino-butyric acid in mouse cultured spinal neurones. Journal of Physiology 1987; 385: 243–286
  • Hydén H., Cupello A. Inhibition in the mammalian brain: a new theory of GABA mechanism of action. Acta Physiologica Scandinavica, 130 Suppl 1987; 561: 1–77
  • Hydén H., Cupello A., Palm A. γ-amino-butyric acid stimulates chloride permeability across microdissected Deiters' neuronal membrane. Brain Research 1986; 379: 167–171
  • Hydén H., Cupello A., Palm A. GABAA receptors complexes are present on both sides of a GABA-acceptive neuronal membrane. International Journal of Neuroscience 1987; 37: 19–26
  • Rapallino M. V., Cupello A., Hydén H. GABAA receptors on the cytoplasmic side of the Deiters' neurone plasma membrane: mechanism and functional implications. International Journal of Neuroscience 1988a
  • Rapallino M. V., Cupello A., Hydén H. Direct evidence for the presence of GABAA receptors on the cytoplasmic side of the Deiters' neurone membrane. Brain Research 1988b; 462: 350–353

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