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The zinc paradigm for metalloneurochemistry.

Chelsea A Barr, Shawn C Burdette
Review Essays in biochemistry 2017 19 次引用
PubMed DOI
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Study Design

研究类型
Review
研究人群
Neuroscience (zinc in metalloneurochemistry)
干预措施
The zinc paradigm for metalloneurochemistry. None
对照组
None
主要结局
None
效应方向
Mixed
偏倚风险
Unclear

Abstract

Neurotransmission and sensory perception are shaped through metal ion-protein interactions in various brain regions. The term "metalloneurochemistry" defines the unique field of bioinorganic chemistry focusing on these processes, and zinc has been the leading target of metalloneurochemists in the almost 15 years since the definition was introduced. Zinc in the hippocampus interacts with receptors that dictate ion flow and neurotransmitter release. Understanding the intricacies of these interactions is crucial to uncovering the role that zinc plays in learning and memory. Based on receptor similarities and zinc-enriched neurons (ZENs) in areas of the brain responsible for sensory perception, such as the olfactory bulb (OB), and dorsal cochlear nucleus (DCN), zinc participates in odor and sound perception. Development and improvement of methods which allow for precise detection and immediate manipulation of zinc ions in neuronal cells and in brain slices will be critical in uncovering the synaptic action of zinc and, more broadly, the bioinorganic chemistry of cognition.

简要概述

Development and improvement of methods which allow for precise detection and immediate manipulation of zinc ions in neuronal cells and in brain slices will be critical in uncovering the synaptic action of zinc and, more broadly, the bioinorganic chemistry of cognition.

Used In Evidence Reviews

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