Resveratrol Mitigates Oxygen and Glucose Deprivation-Induced Inflammation, NLRP3 Inflammasome, and Oxidative Stress in 3D Neuronal Culture

Oct 14, 2022International journal of molecular sciences

Resveratrol Reduces Inflammation, Immune Response, and Oxidative Stress Caused by Lack of Oxygen and Glucose in 3D Brain Cell Cultures

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Abstract

Resveratrol significantly normalizes OGD-induced changes in SH-SY5Y cell inflammation and oxidative stress.

  • Oxygen glucose deprivation (OGD) is associated with increased hypoxia-induced neurotoxicity in cell cultures.
  • Resveratrol enhances cell viability and reduces levels of inflammatory cytokines (TNF-α, IL-1, and IL-18) elevated by OGD.
  • The treatment improves NF-κB signaling and reduces activation of the under OGD conditions.
  • Resveratrol decreases oxidative stress and increases the expression of antioxidant genes regulated by Nrf2.
  • The neuroprotective effects of resveratrol are influenced by antagonists, indicating AMPK's role in this process.

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Full Text

What this is

  • Resveratrol shows potential as a neuroprotective agent against oxygen glucose deprivation (OGD) in neuronal cultures.
  • The study investigates the effects of resveratrol on inflammation, oxidative stress, and activation.
  • Findings suggest that resveratrol's protective effects are mediated through signaling pathways.

Essence

  • Resveratrol mitigates inflammation and oxidative stress induced by oxygen glucose deprivation in 3D neuronal cultures, primarily through signaling pathways.

Key takeaways

  • Resveratrol significantly improves cell viability in SH-SY5Y cells subjected to OGD. This effect is blocked by the antagonist Compound C, indicating that activation is crucial for resveratrol's protective role.
  • Resveratrol normalizes the expression of inflammatory markers such as TNF-α, IKK, and NF-κB in OGD-treated cells. This suggests that resveratrol effectively reduces neuroinflammation associated with ischemic conditions.
  • Resveratrol enhances the expression of antioxidant genes like Nrf2, SOD, and GPx, counteracting oxidative stress caused by OGD. This indicates its potential to bolster cellular defenses against oxidative damage.

Caveats

  • The study relies on in vitro models, which may not fully replicate the complexities of ischemic stroke in vivo. Further research is needed to validate these findings in animal models.
  • The protective effects of resveratrol are contingent upon activation, and the role of other signaling pathways remains to be explored.

Definitions

  • NLRP3 inflammasome: A multi-protein complex that activates inflammatory responses, particularly in neuroinflammation and apoptosis.
  • AMPK: AMP-activated protein kinase, a key regulator of energy homeostasis and cellular stress responses.

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