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The Molecular Mechanisms of Zinc Neurotoxicity and the Pathogenesis of Vascular Type Senile Dementia

机译:锌神经毒性的分子机制与血管性老年性痴呆的发病机制

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Zinc (Zn) is an essential trace element that is abundantly present in the brain. Despite its importance in normal brain functions, excess Zn is neurotoxic and causes neurodegeneration following transient global ischemia and plays a crucial role in the pathogenesis of vascular-type dementia (VD). We have investigated the molecular mechanisms of Zn-induced neurotoxicity using immortalized hypothalamic neurons (GT1–7 cells) and found that carnosine (β-alanyl histidine) and histidine (His) inhibited Zn2+-induced neuronal death. A DNA microarray analysis revealed that the expression of several genes, including metal-related genes (metallothionein and Zn transporter 1), endoplasmic reticulum (ER)-stress related genes (GADD34, GADD45, and p8), and the calcium (Ca)-related gene Arc (activity-related cytoskeleton protein), were affected after Zn exposure. The co-existence of carnosine or His inhibited the expression of GADD34, p8, and Arc, although they did not influence the expression of the metal-related genes. Therefore, ER-stress and the disruption of Ca homeostasis may underlie the mechanisms of Zn-induced neurotoxicity, and carnosine might be a possible drug candidate for the treatment of VD.
机译:锌(Zn)是大脑中大量存在的必需微量元素。尽管其在正常的脑功能中具有重要意义,但过量的锌仍具有神经毒性,并会在短暂性整体缺血后引起神经退行性变,并在血管性痴呆(VD)的发病机理中发挥关键作用。我们使用永生的下丘脑神经元(GT1–7细胞)研究了锌诱导的神经毒性的分子机制,发现肌肽(β-丙氨酰组氨酸)和组氨酸(组氨酸)抑制了Zn 2 + 诱导的神经元死亡。 DNA微阵列分析显示了几种基因的表达,包括金属相关基因(金属硫蛋白和锌转运蛋白1),内质网(ER)-应激相关基因(GADD34,GADD45和p8)以及钙(Ca)-锌暴露后,相关基因Arc(活性相关的细胞骨架蛋白)受到了影响。肌肽或His的共存抑制了GADD34,p8和Arc的表达,尽管它们不影响金属相关基因的表达。因此,内质网应激和Ca稳态的破坏可能是Zn引起神经毒性的机制的基础,肌肽可能是治疗VD的候选药物。

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