References
[1] Frederickson C. Neurobiology of zinc
and zinc-containing neurons.
International Review of Neurobiology.
1989;31:145-238
[2] Vallee B, Falchuk K. The biochemical
basis of zinc physiology. Physiological
Reviews. 1993;73:79-118
[3] Huang E. Metal ions and synaptic
transmission: Think zinc. Proceedings of
the National Academy of Sciences of the
United States of America. 1997;94:
13386-13387
[4] Frederickson CJ, Koh JY, Bush AI.
The neurobiology of zinc in health and
disease. Nature Reviews. Neuroscience.
2005;6:449-462
[5] Perez-Clausell J, Danscher G.
Intravesicular localization of zinc in rat
telencephalic boutons: A histochemical
study. Brain Research. 1985;337:91-98
[6] Harrison NL, Gibbons SJ. Zn
2+ : An
endogenous modulator of ligand- and
voltage-gated ion channels.
Neuropharmacology. 1994;33:935-952
[7] Smart T, Xie X, Krishek B.
Modulation of inhibitory and excitatory
amino acid receptor ion channels by
zinc. Progress in Neurobiology. 1994;42:
393-441
[8] Lin D, Cohen A, Coulter D. Zincinduced augmentation of excitatory
synaptic currents and glutamate
receptor responses in hippocampal CA3
neurons. Journal of Neurophysiology.
2001;85:1185-1196
[9] Ruiz A, Walker M, Fabian-Fine R,
Kullmann D. Endogenous zinc inhibits
GABA (A) receptors in a hippocampal
pathway. Journal of Neurophysiology.
2004;91:1091-1096
[10] Erreger K, Traynellis SF. Allosteric
interaction between zinc and glutamate
binding domains on NR2A causes
desensitization of NMDA receptors. The
Journal of Physiology. 2005;569:381-393
[11] Paoletti P, Vergnano A, Barbour A,
Review CM. Zinc at glutamatergic
synapses. Neuroscience. 2009;158:
126-136
[12] Quinta-Ferreira ME, Sampaio dos
Aidos FDS, Matias CM, Mendes PJ,
Dionísio JC, Santos RM, et al. Modelling
zinc changes at the hippocampal mossy
fiber synaptic cleft. Journal of
Computational Neuroscience. 2016;41:
323-337
[13] Clements J, Lester R, Tong G, Jahr
C, Westbrook G. The time course of
glutamate in the synaptic cleft. Science.
1992;258:1498-1501
[14] Yamada W, Zucker R. Time course
of transmitter release calculated from
stimulations of a calcium diffusion
model. Biophysical Journal. 1992;61:671682
[15] Südhof T. The synaptic vesicle cycle:
A cascade of protein-protein
interactions. Nature. 1995;375:645-653
[16] Clements J. Transmitter timecourse
in the synaptic cleft: Its role in central
synaptic function. Trends in
Neurosciences. 1996;19:163-171
[17] Sensi S, Canzoniero L, Shen P,
Howard S, Koh J, et al. Measurement of
intracellular free zinc in living cortical
neurons: Routes of entry. The Journal of
Neuroscience. 1997;17:9554-9564
[18] Marin P, Israel M, Glowinski J,
Premont J. Routes of zinc entry in
mouse cortical neurons: Role in zincinduced neurotoxicity. The European
Journal of Neuroscience. 2000;12:8-18
[19] Vogt K, Mellor J, Tong G, Nicoll R.
The actions of synaptically released zinc
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