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Ischemic Brain Injury: Involvement of Lipids in the Pathophysiology of Stroke and Therapeutic Strategies
Stroke is a devastating neurological disorder that is characterized by the sudden disruption of blood flow to the brain. Lipids are essential components of brain structure and function and play pivotal roles in stroke pathophysiology. Dysregulation of lipid signaling pathways modulates key cellular...
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Published in: | Antioxidants 2024-05, Vol.13 (6), p.634 |
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creator | Bernoud-Hubac, Nathalie Lo Van, Amanda Lazar, Adina-Nicoleta Lagarde, Michel |
description | Stroke is a devastating neurological disorder that is characterized by the sudden disruption of blood flow to the brain. Lipids are essential components of brain structure and function and play pivotal roles in stroke pathophysiology. Dysregulation of lipid signaling pathways modulates key cellular processes such as apoptosis, inflammation, and oxidative stress, exacerbating ischemic brain injury. In the present review, we summarize the roles of lipids in stroke pathology in different models (cell cultures, animal, and human studies). Additionally, the potential of lipids, especially polyunsaturated fatty acids, to promote neuroprotection and their use as biomarkers in stroke are discussed. |
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subjects | Animal models Antioxidants Apoptosis Blood clots Blood flow Blood pressure Blood vessels brain Brain injury Cell culture Cerebral blood flow Cytochrome Disability Fatty acids Free radicals Functional anatomy Hydrogen peroxide Hypoxia Ischemia ischemic stroke Lipids Metabolism Mortality Neuroprotection Nutrients Oxidative stress Pathogenesis Pathophysiology Permeability Polyunsaturated fatty acids Prevention Review Stroke Structure-function relationships Substance abuse treatment therapeutic strategies Traumatic brain injury |
title | Ischemic Brain Injury: Involvement of Lipids in the Pathophysiology of Stroke and Therapeutic Strategies |
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