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Coenzyme Q10 provides neuroprotection in iron-induced apoptosis in dopaminergic neurons

机译:辅酶Q10 在多巴胺能神经元铁诱导的细胞凋亡中提供神经保护

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摘要

The exact molecular mechanism of progressive loss of neuromelanin containing nigrostriatal dopaminergic neurons in Parkinson's disease (PD) remains unknown, yet evidence suggests that iron might play an important role in PD pathology. In this study we have determined the neuroprotective role of coenzyme Q10 (CoQ10) in iron-induced apoptosis in cultured human dopaminergic (SK-N-SH) neurons, in metallothionein gene-manipulated mice, and in α-synuclein knockout (α-synko) mice with a primary objective to assess a possible therapeutic and anti-inflammatory potential for CoQ10 in PD. Iron-induced mitochondrial damage and apoptosis were characterized by reactive oxygen species production, increased metallothionein and glutathione synthesis, caspase-3 activation, NF-κB induction, and decreased Bcl-2 expression, without any significant change in Bax expression. Lower concentrations of FeSO4 (1–10 μM) induced perinuclear aggregation of mitochondria, whereas higher concentrations (100–250 μM) induced CoQ10 depletion, plasma membrane perforations, mitochondrial damage, and nuclear DNA condensation and fragmentation. FeSO4-induced deleterious changes were attenuated by pretreatment with CoQ10 and by deferoxamine, a potent iron chelator, in SK-N-SH cells. 1-Methyl, 4-phenyl, 1,2,3,6-tetrahydropyridine (MPTP)-induced striatal release of free iron, and NF-κB expression were significantly increased; whereas ferritin and melanin synthesis were significnatly reduced in the substantia nigra pars compacta (SN pc) of MTdko mice as compared with controlwt mice, MTtrans mice, and α-synko mice. CoQ10 treatment inhibited MPTP-induced NF-κB induction in all of the genotypes. These data suggest that glutathione and metallothionein synthesis might be induced as an attempt to combat iron-induced oxidative stress, whereas exogenous administration of CoQ10 or of metallothionein induction might provide CoQ10-mediated neuroprotection in PD.
机译:帕金森氏病(PD)中含有黑质纹状体多巴胺能神经元的神经黑色素进行性丧失的确切分子机制仍然未知,但证据表明铁可能在PD病理学中起重要作用。在这项研究中,我们已经确定了辅酶Q10 (CoQ10 )在铁诱导的人多巴胺能(SK-N-SH)神经元,金属硫蛋白基因操纵的小鼠以及小鼠中的凋亡中的神经保护作用。 α-突触核蛋白敲除(α-synko)小鼠的主要目的是评估CoQ10 在PD中可能的治疗和抗炎潜力。铁诱导的线粒体损伤和凋亡的特征在于活性氧的产生,金属硫蛋白和谷胱甘肽合成的增加,caspase-3激活,NF-κB的诱导和Bcl-2表达的降低,而Bax表达没有任何显着变化。较低浓度的FeSO4 (1–10μM)引起线粒体的核周聚集,而较高浓度的(100–250μM)引起辅酶Q10 耗竭,质膜穿孔,线粒体损伤以及核DNA缩合和断裂。用CoQ10 预处理和强铁螯合剂去铁胺对SK-N-SH细胞中的FeSO4 诱导的有害变化减弱。 1-甲基,4-苯基,1,2,3,6-四氢吡啶(MPTP)诱导纹状体释放游离铁,且NF-κB表达显着增加;而与对照组,MTtrans和α-synko小鼠相比,MTdko小鼠的黑质致密部(SN pc)中铁蛋白和黑色素的合成显着减少。 CoQ10 处理可抑制MPTP诱导的所有基因型的NF-κB诱导。这些数据表明,诱导谷胱甘肽和金属硫蛋白的合成可能是对抗铁诱导的氧化应激的一种尝试,而外源施用CoQ10 或金属硫蛋白诱导可能在PD中提供CoQ10 介导的神经保护作用。

著录项

  • 来源
    《Journal of Molecular Neuroscience》 |2006年第2期|125-141|共17页
  • 作者单位

    Department of Pharmacology University of North Dakota School of Medicine and Health Sciences 58201 Grand Forks ND;

    Department of Pharmacology University of North Dakota School of Medicine and Health Sciences 58201 Grand Forks ND;

    Department of Pharmacology University of North Dakota School of Medicine and Health Sciences 58201 Grand Forks ND;

    Department of Pharmacology University of North Dakota School of Medicine and Health Sciences 58201 Grand Forks ND;

    Department of Pharmacology University of North Dakota School of Medicine and Health Sciences 58201 Grand Forks ND;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Iron; coenzyme Q10; apoptosis; ferritin; melanin; Parkinson's disease;

    机译:铁;辅酶Q10;凋亡;铁蛋白;黑色素;帕金森氏病;

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