Targeting Mitochondrial Dysfunction in Cerebral Ischemia: Advances in Pharmacological Interventions
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Abstract
Abstract: The study of mitochondrial dysfunction has become increasingly pivotal in elucidating
the pathophysiology of various cerebral pathologies, particularly neurodegenerative
disorders. Mitochondria are essential for cellular energy metabolism, regulation of
reactive oxygen species (ROS), calcium homeostasis, and the execution of apoptotic processes.
Disruptions in mitochondrial function, driven by factors such as oxidative stress,
excitotoxicity, and altered ion balance, lead to neuronal death and contribute to cognitive
impairments in several brain diseases. Mitochondrial dysfunction can arise from genetic
mutations, ischemic events, hypoxia, and other environmental factors. This article highlights
the critical role of mitochondrial dysfunction in the progression of neurodegenerative
diseases and discusses the need for targeted therapeutic strategies to attenuate cellular
damage, restore mitochondrial function, and enhance neuroprotection.
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Targeting Mitochondrial Dysfunction in Cerebral Ischemia: Advances in Pharmacological Interventions / I. Belenichev, O. Popazova, S. Pavlov, E. Suprun, V.Oksenych, O. Kamyshnyi // Antioxidants. – 2025. - № 14. - P.108- 154. - https://doi.org/10.3390/antiox14010108.