antioxidants free full-text mitochondrial damage
antioxidants free full-text mitochondrial damage
antioxidants free full-text mitochondrial damage
antioxidants free full-text mitochondrial damage
antioxidants free full-text mitochondrial damage
antioxidants | free full-text | mitochondrial dysfunction, oxidative

Antioxidants | Free Full-Text | Mitochondrial Dysfunction, Oxidative

Oxidative stress develops as a response to injury and reflects a breach in the cell¡¯s antioxidant capacity. Therefore, the fine-tuning of reactive oxygen species (ROS) generation is crucial for preserving cell¡¯s homeostasis. Mitochondria are a major source and an immediate target of ROS. Under different stimuli, including oxidative stress and impaired quality control, mitochondrial

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antioxidants | free full-text | mitochondria-targeted antioxidants and

Antioxidants | Free Full-Text | Mitochondria-Targeted Antioxidants and

1. Introduction Reactive oxygen species (ROS) are continuously produced by skeletal muscle from a number of mitochondrial and non-mitochondrial sources, with production being increased during contractile activity [ 1 ].

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antioxidants | free full-text | improvement of oxidative stress and

Antioxidants | Free Full-Text | Improvement of Oxidative Stress and

Mitochondrial dysfunction results in a series of defective cellular events, including decreased adenosine triphosphate (ATP) production, enhanced reactive oxygen species (ROS) output, and altered proteastasis and cellular quality control.

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oxidative stress, mitochondrial damage and neurodegenerative diseases

Oxidative stress, mitochondrial damage and neurodegenerative diseases

Oxidative stress is characterized by the overproduction of reactive oxygen species, which can induce mitochondrial DNA mutations, damage the mitochondrial respiratory chain, alter membrane permeability, and influence Ca 2+ homeostasis and mitochondrial defense systems.

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mitochondrial antioxidants and the maintenance of cellular ... - hindawi

Mitochondrial Antioxidants and the Maintenance of Cellular ... - Hindawi

For over 40 years, mitochondrial reactive oxygen species (ROS) production and balance has been studied in the context of oxidative distress and tissue damage. However, research over the past decade has demonstrated that the mitochondria have a more complicated relationship with ROS. Superoxide (O2•−) and hydrogen peroxide (H2O2) are the

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full article: cranberry antioxidant power on oxidative stress

Full article: Cranberry antioxidant power on oxidative stress

Cranberry antioxidant power on oxidative stress, inflammation and mitochondrial damage Ana Paula Silva Caldas , Olivia Gon?alves Le?o Coelho & Josefina Bressan Pages 582-592 | Received 04 Jul 2017, Accepted 22 Nov 2017, Published online: 04 May 2018 Cite this article https://doi.org/10.1080/10942912.2017.1409758 In this article Full Article

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cranberry antioxidant power on oxidative stress, inflammation, and

Cranberry antioxidant power on oxidative stress, inflammation, and

The American cranberry (Vaccinium macrocarpon) is one of the fruits containing antioxidants in great quantity and of high quality. From recent research it is evident that both cranberry and its...

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mitochondria-targeted antioxidant mitoq10 improves endothelial function

Mitochondria-Targeted Antioxidant MitoQ10 Improves Endothelial Function

Mitochondria are normally protected from oxidative damage by a multilayer network of mitochondrial antioxidant systems. 10,11 These include the mitochondrial matrix enzyme manganese superoxide dismutase, which converts the O 2? anion to hydrogen peroxide, glutathione peroxidase, and peroxiredoxins 3 and 5, which readily convert hydrogen peroxide...

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mitochondria©targeted antioxidants - oyewole - 2015 - the faseb journal

Mitochondria©targeted antioxidants - Oyewole - 2015 - The FASEB Journal

Mitochondria-targeted antioxidants have shown great potential because they cross the mitochondrial phospholipid bilayer and eliminate ROS at the heart of the source. Growing evidence has identified mitochondria-targeted antioxidants, such as MitoQ and tiron, as potentially effective antioxidant therapies against the damage caused by enhanced

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the effects and mechanisms of mitochondrial nutrient ¦Á

The Effects and Mechanisms of Mitochondrial Nutrient ¦Á

We have identify a group of mitochondrial targeting nutrients and named them as ¡°mitochondrial nutrients¡±, which can (1) Preventing the generation of oxidants; (2) Scavenging oxidants or Inhibiting oxidant reactivity; (3) Repairing oxidative damage to lipids, proteins/enzymes, and RNA/DNA by enhancing antioxidant defense systems, and (4) Cofacto...

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