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Open AccessJournal ArticleDOI

Oxidative Stress in Alzheimer's and Parkinson's Diseases: Insights from the Yeast Saccharomyces cerevisiae

TLDR
The latest knowledge on the role of oxidative stress in neurodegenerative disorders, with emphasis on AD and PD, is summarized and an overview of the work undertaken to study AD andPD in yeast is provided, focusing the use of this model to understand the effect of oxidative Stress in both diseases.
Abstract
Alzheimer's (AD) and Parkinson's (PD) diseases are the two most common causes of dementia in aged population. Both are protein-misfolding diseases characterized by the presence of protein deposits in the brain. Despite growing evidence suggesting that oxidative stress is critical to neuronal death, its precise role in disease etiology and progression has not yet been fully understood. Budding yeast Saccharomyces cerevisiae shares conserved biological processes with all eukaryotic cells, including neurons. This fact together with the possibility of simple and quick genetic manipulation highlights this organism as a valuable tool to unravel complex and fundamental mechanisms underlying neurodegeneration. In this paper, we summarize the latest knowledge on the role of oxidative stress in neurodegenerative disorders, with emphasis on AD and PD. Additionally, we provide an overview of the work undertaken to study AD and PD in yeast, focusing the use of this model to understand the effect of oxidative stress in both diseases.

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Citations
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Journal ArticleDOI

The Role of Oxidative Stress in Parkinson’s Disease

TL;DR: Animal models of PD have yielded some insights into the molecular pathways of neuronal degeneration and highlighted previously unknown mechanisms by which oxidative stress contributes to PD, but therapeutic attempts to target the general state of oxidative stress in clinical trials have failed to demonstrate an impact on disease progression.
Journal ArticleDOI

Melatonin and its metabolites vs oxidative stress: From individual actions to collective protection

TL;DR: Melatonin's family is rather exceptional, offering versatile and collective antioxidant protection against OS, and it certainly seems that melatonin is one of nature's defenses against oxidative damage.
Book ChapterDOI

Reactive Oxygen Species and Cellular Defense System

TL;DR: This chapter highlights the main themes from studies on free radicals, antioxidants, and oxidative stress and effect of oxidative stress in diseases.
Book ChapterDOI

Neurotoxicity of Metal Mixtures.

TL;DR: The sources, disposition, transport to the brain, mechanisms of toxicity, and effects in the central nervous system (CNS) and in the hematopoietic system of each one of these metals will be described.
References
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Journal ArticleDOI

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Journal ArticleDOI

Mutation in the α-synuclein gene identified in families with Parkinson's disease

TL;DR: A mutation was identified in the α-synuclein gene, which codes for a presynaptic protein thought to be involved in neuronal plasticity, in the Italian kindred and in three unrelated families of Greek origin with autosomal dominant inheritance for the PD phenotype.
Journal ArticleDOI

Alpha-synuclein in Lewy bodies.

TL;DR: Strong staining of Lewy bodies from idiopathic Parkinson's disease with antibodies for α-synuclein, a presynaptic protein of unknown function which is mutated in some familial cases of the disease, indicates that the LewY bodies from these two diseases may have identical compositions.
Journal ArticleDOI

Mitochondrial dysfunction and oxidative stress in neurodegenerative diseases

TL;DR: Treatments targeting basic mitochondrial processes, such as energy metabolism or free-radical generation, or specific interactions of disease-related proteins with mitochondria hold great promise in ageing-related neurodegenerative diseases.
Journal ArticleDOI

Chronic Parkinsonism in humans due to a product of meperidine-analog synthesis

TL;DR: It is proposed that this chemical selectively damages cells in the substantia nigra in patients who developed marked parkinsonism after using an illicit drug intravenously.
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