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Metals in Neurobiology: Probing Their Chemistry and Biology with Molecular Imaging

机译:神经生物学中的金属:通过分子成像探索其化学和生物学

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摘要

The brain is a singular organ of unique biological complexity that serves as the command center for cognitive and motor function. As such, this specialized system also possesses a unique chemical composition and reactivity at the molecular level. In this regard, two vital distinguishing features of the brain are its requirements for the highest concentrations of metal ions in the body1, 2 and the highest per-weight consumption of body oxygen.3 In humans, the brain accounts for only 2% of total body mass but consumes 20% of the oxygen that is taken in through respiration.3 As a consequence of high oxygen demand and cell complexity, distinctly high metal levels pervade all regions of the brain and central nervous system. Structural roles for metal ions in the brain and the body include the stabilization of biomolecules in static (e.g., Mg2+ for nucleic acid folds, Zn2+ in zinc-finger transcription factors) or dynamic (e.g., Na+ and K+ in ion channels, Ca2+ in neuronal cell signaling) modes, and catalytic roles for brain metal ions are also numerous and often of special demand.
机译:大脑是具有独特生物复杂性的单一器官,是认知和运动功能的指挥中心。这样,该专用系统在分子水平上也具有独特的化学组成和反应性。在这方面,大脑的两个至关重要的区别特征是其对人体中金属离子最高浓度1、2的要求以及对人体氧的最高单位消耗量。3在人类中,大脑仅占总量的2%体重,但消耗了通过呼吸吸收的氧气的20%。3由于氧气需求量高和细胞复杂,大量高水平的金属渗透到大脑和中枢神经系统的所有区域。金属离子在大脑和身体中的结构作用包括稳定生物分子的静态(例如,核酸折叠的Mg2 +,锌指转录因子中的Zn2 +)或动态(例如,离子通道中的Na +和K +,神经元中的Ca2 +)的稳定化。细胞信号传导模式以及脑金属离子的催化作用也很多,而且通常有特殊要求。

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