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Clioquinol Protects Against Cell Death in Parkinson's Disease Models In Vivo and In Vitro

机译:Clioquinol在体内和体外体内保护帕金森病模型的细胞死亡

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Parkinson's disease (PD) is characterized by the loss of dopaminergic neurons located in the substantia nigra (SN). Data from our group and others indicate that metals, oxidative stress, and bioavailable reductants provide a possible mechanism for theneurodegeneration observed in PD. 6-Hydroxydopamine (6-OHDA) injection into the nigra of mice resulted in quantified loss of dopaminergic neurons. Oral administration of the metal-protein binding compound clioquinol (CQ) commencing on the day of lesionled to a significant reduction in lesion size. This finding elaborates upon our previous study that long-term pre-treatment with CQ reduced the susceptibility of SN neurons to another neurotoxin, l-methyl-4-phenyl-1,2,3,6-tetrapyridine (MPTP) (Kaur et al. 2003), suggesting metals as a common pathway for propagation of these lesions. Human neuroblastoma M17 cells were susceptible to metal, 6-OHDA and dopamine-induced cell death that was partially recoverable by co-incubation with CQ or catalase. These results support the concept that CQ or a similar moderate-affinity transition metal ligand could modulate neuronal oxidative stress and therefore may be a novel class of drug that may be useful for the treatment of PD.
机译:帕金森氏病(PD)的特征在于位于黑质(SN)多巴胺能神经元的损失。从我们的数据组和其它指示的金属,氧化应激和生物可利用的还原剂提供了在PD观察theneurodegeneration的可能机制。 6-羟(6-OHDA)注射到小鼠的黑质导致多巴胺能神经元的量化损失。金属 - 蛋白结合化合物氯碘羟喹(CQ)上开始的lesionled到在损伤尺寸一显著减少一天的口服给药。在我们以前的研究,与CQ长期预处理SN神经元的敏感性降低到另一个神经毒素,1-甲基-4-苯基-1,2,3,6- tetrapyridine(MPTP)(考尔等这一发现详解。2003),这表明金属作为对这些病变的传播的共同途径。人神经母M17细胞易受金属,6-OHDA和多巴胺诱导的细胞死亡,这是通过共孵育CQ或过氧化氢酶部分地恢复。这些结果支持了CQ或类似的中等亲和力的过渡金属配位体可以调节神经元的氧化应激,并因此可以是一类新的药物可能对PD的治疗是有用的概念。

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