4.7 Article

EVOO Polyphenols Relieve Synergistically Autophagy Dysregulation in a Cellular Model of Alzheimer's Disease

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出版社

MDPI
DOI: 10.3390/ijms22137225

关键词

autophagy; polyphenols; Alzheimer's disease; oligomers

资金

  1. ANCC-COOP/Airalzh ONLUS [0043966.30-10-359 2014-u]
  2. Fondazione Umberto Veronesi through University of Florence

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The study demonstrates that olive oil polyphenols, particularly oleuropein aglycone and hydroxytyrosol, synergistically activate the autophagic flux to protect against Aβ (1-42) oligomer-induced cell damage, reduce ROS production, and improve mitochondrial function, potentially providing a promising strategy to combat neurodegeneration associated with aging.
(1) Background: Autophagy, the major cytoplasmic process of substrate turnover, declines with age, contributing to proteostasis decline, accumulation of harmful protein aggregates, damaged mitochondria and to ROS production. Accordingly, abnormalities in the autophagic flux may contribute to many different pathophysiological conditions associated with ageing, including neurodegeneration. Recent data have shown that extra-virgin olive oil (EVOO) polyphenols stimulate cell defenses against plaque-induced neurodegeneration, mainly, through autophagy induction. (2) Methods: We carried out a set of in vitro experiments on SH-SY5Y human neuroblastoma cells exposed to toxic A beta(1-42) oligomers to investigate the molecular mechanisms involved in autophagy activation by two olive oil polyphenols, oleuropein aglycone (OleA), arising from the hydrolysis of oleuropein (Ole), the main polyphenol found in olive leaves and drupes and its main metabolite, hydroxytyrosol (HT). (3) Results: Our data show that the mixture of the two polyphenols activates synergistically the autophagic flux preventing cell damage by A beta(1-42) oligomers., in terms of ROS production, and impairment of mitochondria. (4) Conclusion: Our results support the idea that EVOO polyphenols act synergistically in autophagy modulation against neurodegeneration. These data confirm and provide the rationale to consider these molecules, alone or in combination, as promising candidates to contrast ageing-associated neurodegeneration.

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