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Safeguarding the brain from oxidative damage
Kyung Hee Lee1, Un Jeng Kim2, Bae Hwan Lee3
1Department of Dental Hygiene, Division of Health Science, Dongseo University, Busan, 47011, South Korea.
Abstract:
Oxidative stress imposes a substantial cellular burden on the brain and contributes to diverse neurodegenerative diseases. Various antioxidant signaling pathways have been implicated in oxidative stress and have a protective effect on brain cells by increasing the release of numerous enzymes and through anti-inflammatory responses to oxidative damage caused by abnormal levels of reactive oxygen species (ROS). Although many molecules evaluated as antioxidants have shown therapeutic potentials in preclinical studies, the results of clinical trials have been less than satisfactory. This review focuses on several signaling pathways involved in oxidative stress that are associated with antioxidants. These pathways have a protective effect against stressors by increasing the release of various enzymes and also exert anti-inflammatory responses against oxidative damage. There is no doubt that oxidative stress is a crucial therapeutic target in the treatment of neurological diseases. Therefore, it is essential to understand the discovery of multiple routes that can efficiently repair the damage caused by ROS and prevent neurodegenerative disorders. This paper aims to provide a concise and objective review of the oxidative and antioxidant pathways and their potential therapeutic applications in treating oxidative injury in the brain.
Insights
Oxidative stress damages the brain and causes neurodegenerative diseases. Antioxidant pathways protect brain cells by releasing enzymes and reducing inflammation, offering potential therapeutic strategies for neurological disorders.
Area of Science:
- Neuroscience
- Biochemistry
- Cell Biology
Background:
- Oxidative stress significantly burdens brain cells, contributing to neurodegenerative diseases.
- Reactive oxygen species (ROS) cause oxidative damage, triggering inflammatory responses.
- Antioxidant signaling pathways offer neuroprotection by releasing enzymes and modulating inflammation.
Purpose of the Study:
- To review oxidative and antioxidant pathways in the brain.
- To explore their therapeutic potential in treating oxidative injury and neurodegenerative diseases.
- To highlight the importance of understanding ROS-scavenging mechanisms.
Main Methods:
- Literature review of oxidative stress and antioxidant signaling pathways.
- Analysis of preclinical and clinical trial data on antioxidant therapeutics.
- Focus on enzymatic release and anti-inflammatory responses.
Main Results:
- Antioxidant pathways demonstrate neuroprotective effects against oxidative damage.
- Preclinical promise of antioxidants has not translated effectively to clinical success.
- Identifying multiple repair routes for ROS damage is crucial.
Conclusions:
- Oxidative stress is a key therapeutic target for neurological diseases.
- Further research into antioxidant pathways is essential for developing effective treatments.
- Understanding these pathways can lead to novel strategies for preventing neurodegeneration.
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