Metal Toxicity at the Synapse: Presynaptic, Postsynaptic, and Long-Term Effects

Author:

Sadiq Sanah1,Ghazala Zena1,Chowdhury Arnab1,Büsselberg Dietrich1

Affiliation:

1. Weill Cornell Medical College in Qatar, Qatar Foundation—Education City, P.O. Box 24144, Doha, Qatar

Abstract

Metal neurotoxicity is a global health concern. This paper summarizes the evidence for metal interactions with synaptic transmission and synaptic plasticity.Presynapticallymetal ions modulate neurotransmitter release through their interaction with synaptic vesicles, ion channels, and the metabolism of neurotransmitters (NT). Many metals (e.g., , , and ) also interact with intracellular signaling pathways.Postsynaptically, processes associated with the binding of NT to their receptors, activation of channels, and degradation of NT are altered by metals. , , , , , , , , and methylmercury modulate NMDA, AMPA/kainate, and/or GABA receptors activity. , , , and also impairsynaptic plasticityby targeting molecules such as CaM, PKC, and NOS as well as the transcription machinery involved in the maintenance of synaptic plasticity. The multiple effects of metals might occur simultaneously and are based on the specific metal species, metal concentrations, and the types of neurons involved.

Publisher

Hindawi Limited

Subject

Pharmacology,Toxicology

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