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Melatonin ameliorates Parkinson's disease via regulating microglia polarization in a RORα-dependent pathway.

Jingwen Li, Hanshu Liu, Xinyi Wang, Yun Xia, Jinsha Huang et al.
Other NPJ Parkinson's disease 2022
PubMed DOI PDF
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Study Design

Тип исследования
Controlled Clinical Trial
Популяция
MPTP-induced Parkinson's disease mice
Вмешательство
Melatonin ameliorates Parkinson's disease via regulating microglia polarization in a RORα-dependent pathway. None
Препарат сравнения
MPTP model control
Первичный исход
Microglia polarization and neuroinflammation
Направление эффекта
Positive
Риск систематической ошибки
Unclear

Abstract

An important pathophysiological component of Parkinson's Disease (PD) is circadian rhythm disorder, closely related to a decrease in circulated melatonin (MLT) level. It has been reported recently that retinoic acid-associated orphan nuclear receptor (RORα), for the potentiallyendogenous ligand MLT, plays an important role in various diseases. However, the function of RORα in the pathogenesis of neurodegenerative diseases remains much unclear. Here, we showed in a cellular PD model that RORα expression was down-regulated in 1 methyl 4 phenyl pyridinium ion (MPP+)-treated BV2 cells but up-regulated by MLT. Of a 1-methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) - induced mouse model with RORα levels reduced in the midbrain tissue, MLT treatment (intraperitoneal 20 mg/kg/d for 7 days) significantly increased the RORα levels and protected dopamine neurons, with decreased inflammation and increased anti-inflammatory M2-like phenotype in the microglia. Furthermore, siRNA-mediated knockdown implied the involvement of signal transducer and activator of transcription (STAT) pathway. In conclusion, MLT ameliorates neuroinflammation by inhibiting STAT-related pro-inflammatory (M1-like) polarization of microglia, revealing alternative options for neuroprotective treatment of PD.

Кратко

MLT ameliorates neuroinflammation by inhibiting STAT-related pro-inflammatory (M1-like) polarization of microglia, revealing alternative options for neuroprotective treatment of PD.

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