Ximenes-da-Silva Adriana
Setor de Fisiologia, Instituto de Ciências Biológicas e da Saúde, Universidade Federal de Alagoas Maceió, Brazil.
Front Neurosci. 2016 Jun 1;10:233. doi: 10.3389/fnins.2016.00233. eCollection 2016.
Metal ions such as iron, zinc, and manganese are essential to metabolic functions, protein synthesis, neurotransmission, and antioxidant neuroprotective mechanisms. Conversely, non-essential metals such as mercury and lead are sources of human intoxication due to occupational activities or environmental contamination. Essential or non-essential metal accumulation in the central nervous system (CNS) results in changes in blood-brain barrier (BBB) permeability, as well as triggering microglia activation and astrocyte reactivity and changing water transport through the cells, which could result in brain swelling. Aquaporin-4 is the main water channel in the CNS, is expressed in astrocyte foot processes in brain capillaries and along the circumventricular epithelium in the ventricles, and has important physiological functions in maintaining brain osmotic homeostasis and supporting brain excitability through regulation of the extracellular space. Some evidence has pointed to a role of AQP4 during metal intoxication in the brain, where it may act in a dual form as a neuroprotector or a mediator of the development of oxidative stress in neurons and astrocytes, resulting in brain swelling and neuronal damage. This mini-review presents the way some metal ions affect changes in AQP4 expression in the CNS and discuss the ways in which water transport in brain cells can be involved in brain damage.
铁、锌和锰等金属离子对代谢功能、蛋白质合成、神经传递及抗氧化神经保护机制至关重要。相反,汞和铅等非必需金属因职业活动或环境污染而成为人体中毒的来源。必需或非必需金属在中枢神经系统(CNS)中的蓄积会导致血脑屏障(BBB)通透性改变,引发小胶质细胞活化和星形胶质细胞反应性改变,并改变细胞间的水运输,这可能导致脑肿胀。水通道蛋白4是中枢神经系统中的主要水通道,在脑毛细血管中的星形胶质细胞足突以及脑室周围上皮中表达,通过调节细胞外空间在维持脑渗透压稳态和支持脑兴奋性方面具有重要生理功能。一些证据表明水通道蛋白4在脑金属中毒过程中发挥作用,它可能以双重形式作为神经保护剂或神经元和星形胶质细胞氧化应激发展的介质,导致脑肿胀和神经元损伤。本综述介绍了一些金属离子影响中枢神经系统中水通道蛋白4表达变化的方式,并讨论了脑细胞中的水运输参与脑损伤的方式。