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Pharmacological Inhibition of Necroptosis Protects from Dopaminergic Neuronal Cell Death in Parkinson's Disease Models

Academic Article
Publication Date:
2018
abstract:
Dysfunctions in mitochondrial dynamics and metabolism are common pathological processes associated with Parkinson's disease (PD). It was recently shown that an inherited form of PD and dementia is caused by mutations in the OPA1 gene, which encodes for a key player in mitochondrial fusion and structure. iPSC-derived neural cells from these patients exhibited severe mitochondrial fragmentation, respiration impairment, ATP deficits, and heightened oxidative stress. Reconstitution of normal levels of OPA1 in PD-derived neural cells normalized mitochondria morphology and function. OPA1-mutated neuronal cultures showed reduced survival in vitro. Intriguingly, selective inhibition of necroptosis effectively rescued this survival deficit. Additionally, dampening necroptosis in MPTP-treated mice protected from DA neuronal cell loss. This human iPSC-based model captures both early pathological events in OPA1 mutant neural cells and the beneficial effects of blocking necroptosis, highlighting this cell death process as a potential therapeutic target for PD.
Iris type:
01.01 Articolo in rivista
Keywords:
apoptosis; cell death; iPSCs; mitochondria; necroptosis; necrosis; neurodegeneration; OPA1; Parkinson's disease
List of contributors:
RUBIO GARRIDO, Alicia; Broccoli, Vania
Authors of the University:
BROCCOLI VANIA
Handle:
https://iris.cnr.it/handle/20.500.14243/350830
Published in:
CELL REPORTS
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S2211124718301530
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