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@article{1833143, author = {MahoneyandSanchez, L. and Bouchaoui, H. and Ayton, S. and Devos, D. and Duce, JA. and Devedjian, JC.}, article_location = {OXFORD}, article_number = {January 2021}, doi = {http://dx.doi.org/10.1016/j.pneurobio.2020.101890}, keywords = {Parkinson's Disease; Non apoptotic cell death; Ferroptosis; Iron metabolism; Oxidative stress; Lipid peroxidation; Alpha synuclein}, language = {eng}, issn = {0301-0082}, journal = {PROGRESS IN NEUROBIOLOGY}, note = {FairPark II}, title = {Ferroptosis and its potential role in the physiopathology of Parkinson's Disease}, url = {https://www.sciencedirect.com/science/article/pii/S0301008220301453?via%3Dihub}, volume = {196}, year = {2021} }
TY - JOUR ID - 1833143 AU - Mahoney-Sanchez, L. - Bouchaoui, H. - Ayton, S. - Devos, D. - Duce, JA. - Devedjian, JC. PY - 2021 TI - Ferroptosis and its potential role in the physiopathology of Parkinson's Disease JF - PROGRESS IN NEUROBIOLOGY VL - 196 IS - January 2021 SP - 1-12 EP - 1-12 PB - PERGAMON-ELSEVIER SCIENCE LTD SN - 03010082 N1 - FairPark II KW - Parkinson's Disease KW - Non apoptotic cell death KW - Ferroptosis KW - Iron metabolism KW - Oxidative stress KW - Lipid peroxidation KW - Alpha synuclein UR - https://www.sciencedirect.com/science/article/pii/S0301008220301453?via%3Dihub N2 - Parkinson's Disease (PD) is a common and progressive neurodegenerative disorder characterised by motor impairments as well as non-motor symptoms. While dopamine-based therapies are effective in fighting the symptoms in the early stages of the disease, a lack of neuroprotective drugs means that the disease continues to progress. Along with the traditionally recognised pathological hallmarks of dopaminergic neuronal death and intracellular a-synuclein (alpha-syn) depositions, iron accumulation, elevated oxidative stress and lipid peroxidation damage are further conspicuous features of PD pathophysiology. However, the underlying mechanisms linking these pathological hallmarks with neurodegeneration still remain unclear. Ferroptosis, a regulated iron dependent cell death pathway involving a lethal accumulation of lipid peroxides, shares several features with PD pathophysiology. Interestingly, alpha-syn has been functionally linked with the metabolism of both iron and lipid, suggesting a possible interplay between dysregulated alpha-syn and other PD pathological hallmarks related to ferroptosis. This review will address the importance for understanding these disease mechanisms that could be targeted therapeutically. Anti-ferroptosis molecules are neuroprotective in PD animal models and the anti-ferroptotic iron chelator, deferiprone, slowed disease progression and improved motor function in two independent clinical trials for PD. An ongoing larger multi-centre phase 2 clinical trial will confirm the therapeutic potential of deferiprone and the relevance of ferroptosis in PD. This review addresses the known pathological features of PD in relation to the ferroptosis pathway with therapeutic implications of targeting this cell death pathway. ER -
MAHONEY-SANCHEZ, L., H. BOUCHAOUI, S. AYTON, D. DEVOS, JA. DUCE a JC. DEVEDJIAN. Ferroptosis and its potential role in the physiopathology of Parkinson's Disease. \textit{PROGRESS IN NEUROBIOLOGY}. OXFORD: PERGAMON-ELSEVIER SCIENCE LTD, 2021, roč.~196, January 2021, s.~1-12. ISSN~0301-0082. Dostupné z: https://dx.doi.org/10.1016/j.pneurobio.2020.101890.
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