Antioxidants (Basel, Switzerland)

Stem Cell Activation of Nrf2 Reduces Oxidative Stress in Eye Pigment Cells Damaged by Hydrogen Peroxide

Updated

Abstract

Coculturing ARPE-19 cells with placenta-derived mesenchymal stem cells (PD-MSCs) led to a decrease in markers by more than 50%.

  • Oxidative stress was induced in ARPE-19 cells using 200 µM hydrogen peroxide for 2 hours.
  • Coculturing with PD-MSCs resulted in increased expression of antioxidant genes compared to hydrogen peroxide treatment alone.
  • Reactive oxygen species (ROS) levels decreased in cells cocultured with PD-MSCs.
  • Markers related to mitochondrial function and dynamics improved in the presence of PD-MSCs.
  • Coculture with PD-MSCs led to reduced expression levels of lipoproteins.
  • PD-MSCs enhanced the expression of retinal pigment epithelium (RPE)-specific genes in oxidative stress-injured cells.

Simplified

Key numbers

MDA levels significantly decreased
Decrease in Lipid Accumulation
Measured by malondialdehyde (MDA) levels in PD-MSC cocultured cells.
mRNA expression of HO-1, SOD1, catalase, GPx1 and Prx3 significantly increased
Increase in Antioxidant Expression
Compared to levels in hydrogen peroxide-treated cells.
Mitochondrial membrane potential significantly increased
Improvement in Mitochondrial Function
Assessed via JC-1 staining in PD-MSC cocultured cells.

Full Text

What this is

  • This research investigates the effects of placenta-derived mesenchymal stem cells (PD-MSCs) on in retinal pigment epithelial (RPE) cells injured by hydrogen peroxide.
  • Age-related macular degeneration (AMD) is a major cause of vision loss linked to oxidative damage, highlighting the need for effective treatments.
  • The study finds that PD-MSCs activate the signaling pathway, enhancing antioxidant defenses and improving mitochondrial function in RPE cells.

Essence

  • PD-MSCs alleviate in hydrogen peroxide-injured RPE cells by activating the pathway, enhancing antioxidant levels, and improving mitochondrial function.

Key takeaways

  • PD-MSCs significantly decreased lipid accumulation in RPE cells exposed to hydrogen peroxide, indicating a protective effect against .
  • The coculture with PD-MSCs led to increased expression of key antioxidant enzymes, suggesting enhanced response in RPE cells.
  • PD-MSCs improved mitochondrial function by increasing mitochondrial membrane potential and modulating dynamics, critical for cell survival under .

Caveats

  • The study was conducted in vitro, which limits the generalizability of the findings to in vivo conditions.
  • The oxidative damage model used was relatively mild, potentially allowing for the persistence of intrinsic cellular defense mechanisms.

Definitions

  • Nrf2: A transcription factor that regulates the expression of antioxidant proteins and protects against oxidative stress.
  • Oxidative stress: An imbalance between reactive oxygen species production and the antioxidant defense system, leading to cellular damage.

Simplified

Funding

Competing interests

G.J.K. is the owner and Hankyu Lee is an employee of PLABiologics Co., Ltd. The authors (S.J.H., J.W.C., Y.S.) have no conflicts of interest to declare.
PubMed

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