Oxidative stress and inflammation in the pathogenesis of neurological disorders: Mechanisms and implications

Окислительный стресс и воспаление в патогенезе неврологических заболеваний: механизмы и последствия
Umesh Chandra Dash, Nitish Kumar Bhol, Sandeep Kumar Swain, Rashmi Rekha Samal, P. K. Nayak, Vishakha Raina, Sandeep Kumar Panda, Rout George Kerry, Asim K. Duttaroy, Atala Bihari Jena
2024-10-16

neurodegenerative disordersneuroinflammationneuroprotectionoxidative stressreactive oxygen species
Neuroprotection is a proactive approach to safeguarding the nervous system, including the brain, spinal cord, and peripheral nerves, by preventing or limiting damage to nerve cells and other components. It primarily defends the central nervous system against injury from acute and progressive neurodegenerative disorders. Oxidative stress, an imbalance between the body's natural defense mechanisms and the generation of reactive oxygen species, is crucial in developing neurological disorders. Due to its high metabolic rate and oxygen consumption, the brain is particularly vulnerable to oxidative stress. Excessive ROS damages the essential biomolecules, leading to cellular malfunction and neurodegeneration. Several neurological disorders, including Alzheimer's, Parkinson's, Amyotrophic lateral sclerosis, multiple sclerosis, and ischemic stroke, are associated with oxidative stress. Understanding the impact of oxidative stress in these conditions is crucial for developing new treatment methods. Researchers are exploring using antioxidants and other molecules to mitigate oxidative stress, aiming to prevent or slow down the progression of brain diseases. By understanding the intricate interplay between oxidative stress and neurological disorders, scientists hope to pave the way for innovative therapeutic and preventive approaches, ultimately improving individuals' living standards.
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Antioxidants and other molecules are being investigated as strategies to reduce oxidative stress and prevent or slow neurological disease progression.
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Excessive reactive oxygen species damage essential biomolecules, causing cellular dysfunction and contributing to neurodegeneration.
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Oxidative stress is implicated in Alzheimer’s disease, Parkinson’s disease, amyotrophic lateral sclerosis, multiple sclerosis, and ischemic stroke.
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Oxidative stress, defined by excessive reactive oxygen species relative to natural defenses, is a major contributor to neurological disease pathogenesis.
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The brain is especially vulnerable to oxidative stress because of its high metabolic rate and oxygen consumption.

Neurological disorders, including Alzheimer’s disease, Parkinson’s disease, amyotrophic lateral sclerosis, multiple sclerosis, and ischemic stroke

The role and mechanisms of oxidative stress and inflammation in disease pathogenesis, neurodegeneration, and potential neuroprotective intervention

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2024-10-16
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Authors
Umesh Chandra Dash
Nitish Kumar Bhol
Sandeep Kumar Swain
Rashmi Rekha Samal
P. K. Nayak
Vishakha Raina
Sandeep Kumar Panda
Rout George Kerry
Asim K. Duttaroy
Atala Bihari Jena
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