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Latest assessment methods for mitochondrial homeostasis in cognitive diseases

Wei You, Yue Li, Kaixi Liu, Xinning Mi, Yitong Li, Xiangyang Guo, Zhengqian Li

2023Neural Regeneration Research24 citationsDOIOpen Access PDF

Abstract

Mitochondria play an essential role in neural function, such as supporting normal energy metabolism, regulating reactive oxygen species, buffering physiological calcium loads, and maintaining the balance of morphology, subcellular distribution, and overall health through mitochondrial dynamics. Given the recent technological advances in the assessment of mitochondrial structure and functions, mitochondrial dysfunction has been regarded as the early and key pathophysiological mechanism of cognitive disorders such as Alzheimer's disease, Parkinson's disease, Huntington's disease, mild cognitive impairment, and postoperative cognitive dysfunction. This review will focus on the recent advances in mitochondrial medicine and research methodology in the field of cognitive sciences, from the perspectives of energy metabolism, oxidative stress, calcium homeostasis, and mitochondrial dynamics (including fission-fusion, transport, and mitophagy).

Topics & Concepts

NeuroscienceMitophagyMitochondrionOxidative stressDiseasemitochondrial fusionCognitionMedicineCognitive declineMechanism (biology)BioinformaticsBiologyPathologyCell biologyDementiaEndocrinologyMitochondrial DNAAutophagyBiochemistryPhysicsQuantum mechanicsApoptosisGeneMitochondrial Function and PathologyAlzheimer's disease research and treatmentsTryptophan and brain disorders
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