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铜介导的神经毒性和神经退行性疾病背景下秀丽隐杆线虫的遗传易感性。

Copper-mediated neurotoxicity and genetic vulnerability in the background of neurodegenerative diseases in C. elegans.

机构信息

Food Chemistry with Focus on Toxicology, Faculty of Mathematics and Natural Sciences, University of Wuppertal, 42119 Wuppertal, Germany.

TraceAge-DFG Research Unit on Interactions of Essential Trace Elements in Healthy and Diseased Elderly (FOR 2558), Berlin, Potsdam, Jena, Wuppertal, Germany.

出版信息

Toxicol Sci. 2024 Oct 1;201(2):254-262. doi: 10.1093/toxsci/kfae092.

Abstract

The mechanisms associated with neurodegenerative diseases, such as Alzheimer's disease (AD) and Parkinson's disease (PD), have yet to be fully characterized, and genetic as well as environmental factors in their disease etiology are underappreciated. Although mutations in genes such as PARKIN and LRRK2 have been linked to PD, the idiopathic component of the disease suggests a contribution of environmental risk factors, including metals, such as copper (Cu). Cu overexposure has been reported to cause oxidative stress and neurotoxicity, but its role in neurodegenerative diseases is rarely studied. Using Caenorhabditis elegans (C. elegans) as a model organism for neurotoxicity, we assessed the effects of Cu oversupply in AD and PD models. Our findings reveal that although copper treatment did not induce neurodegeneration in wild-type worms or the AD model, it significantly exacerbated neurodegeneration in the PD-associated mutants PARKIN and LRRK2. These results suggest that genetic predisposition for PD enhances the sensitivity to copper toxicity, highlighting the multifactorial nature of neurodegenerative diseases. Furthermore, our study provides insight into the mechanisms underlying Cu-induced neurotoxicity in PD models, including disruptions in dopamine levels, altered dopamine-dependent behavior and degraded dopaminergic neurons. Overall, our novel findings contribute to a better understanding of the complex interactions between genetic susceptibility, environmental factors, and neurodegenerative disease pathogenesis, emphasizing the importance of a tightly regulated Cu homeostasis in the etiology of PD. Copper oversupply exacerbated neurodegeneration in Caenorhabditis elegans models of Parkinson's disease, highlighting the genetic susceptibility and emphasizing the crucial role of tightly regulated copper homeostasis in Parkinson's disease pathogenesis.

摘要

与神经退行性疾病相关的机制,如阿尔茨海默病(AD)和帕金森病(PD),尚未被充分描述,其发病机制中的遗传和环境因素还未被充分认识。虽然 PARKIN 和 LRRK2 等基因突变与 PD 有关,但该疾病的特发性成分表明环境危险因素(包括铜(Cu)等金属)有一定的贡献。已有报道称 Cu 暴露过度会导致氧化应激和神经毒性,但它在神经退行性疾病中的作用很少被研究。我们使用秀丽隐杆线虫(C. elegans)作为神经毒性的模型生物,评估了 Cu 供应过量对 AD 和 PD 模型的影响。我们的研究结果表明,尽管铜处理不会在野生型蠕虫或 AD 模型中引起神经退行性病变,但它会显著加剧与 PD 相关的突变体 PARKIN 和 LRRK2 的神经退行性病变。这些结果表明,PD 的遗传易感性增强了对铜毒性的敏感性,突出了神经退行性疾病的多因素性质。此外,我们的研究提供了对 PD 模型中 Cu 诱导的神经毒性的机制的深入了解,包括多巴胺水平的破坏、多巴胺依赖行为的改变和多巴胺能神经元的退化。总的来说,我们的新发现有助于更好地理解遗传易感性、环境因素和神经退行性疾病发病机制之间的复杂相互作用,强调了 PD 发病机制中铜稳态的严格调控的重要性。

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