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Niger J Physiol Sci. 2021 Dec 31;36(2):123-147. doi: 10.54548/njps.v36i2.1.
Metals are natural component of the ecosystem present throughout the layers of atmosphere; their abundant expression in the brain indicates their importance in the central nervous system (CNS). Within the brain tissue, their distribution is highly compartmentalized, the pattern of which is determined by their primary roles. Bio-imaging of the brain to reveal spatial distribution of metals within specific regions has provided a unique understanding of brain biochemistry and architecture, linking both the structures and the functions through several metal mediated activities. Bioavailability of essential trace metal is needed for normal brain function. However, disrupted metal homeostasis can influence several biochemical pathways in different fields of metabolism and cause characteristic neurological disorders with a typical disease process usually linked with aberrant metal accumulations. In this review we give a brief overview of roles of key essential metals (Iron, Copper and Zinc) including their molecular mechanisms and bio-distribution in the brain as well as their possible involvement in the pathogenesis of related neurodegenerative diseases. In addition, we also reviewed recent applications of Laser Ablation Inductively Couple Plasma Mass Spectrophotometry (LA-ICP-MS) in the detection of both toxic and essential metal dyshomeostasis in neuroscience research and other related brain diseases.
金属是大气各层中存在的生态系统的天然组成部分;它们在大脑中的丰富表达表明它们在中枢神经系统(CNS)中的重要性。在脑组织中,它们的分布高度分区,其模式由它们的主要作用决定。通过对大脑进行生物成像来揭示特定区域内金属的空间分布,为理解大脑的生物化学和结构提供了独特的认识,通过几种金属介导的活性将结构和功能联系起来。必需微量元素的生物利用度是大脑正常功能所必需的。然而,金属内稳态的破坏会影响代谢不同领域的几个生化途径,并导致典型的神经退行性疾病,其典型的疾病过程通常与异常金属积累有关。在这篇综述中,我们简要概述了关键必需金属(铁、铜和锌)的作用,包括它们在大脑中的分子机制和生物分布,以及它们在相关神经退行性疾病发病机制中的可能参与。此外,我们还回顾了激光烧蚀电感耦合等离子体质谱(LA-ICP-MS)在神经科学研究和其他相关脑疾病中检测有毒和必需金属动态平衡失调的最新应用。