The Nrf2/HMGB1/NF-κB axis modulates chondrocyte apoptosis and extracellular matrix degradation in osteoarthritis

Insights

The Nrf2/HMGB1 pathway regulates osteoarthritis by controlling chondrocyte apoptosis, inflammation, and ECM degradation. Lower Nrf2 and higher HMGB1 levels are linked to OA development.

Area of Science:

  • Biochemistry
  • Molecular Biology
  • Pathology

Background:

  • Osteoarthritis (OA) is a degenerative joint disease where chondrocytes undergo stress.
  • Nuclear factor erythroid 2-related factor 2 (Nrf2) acts as a regulator of stress responses, exhibiting antioxidant and anti-inflammatory properties in chondrocytes.

Purpose of the Study:

  • To investigate the role of Nrf2 and its downstream pathway in osteoarthritis development.
  • To elucidate the interaction between Nrf2 and High-Mobility Group Box 1 (HMGB1) in the context of OA.

Main Methods:

  • Chondrocytes were treated with Interleukin-1 beta (IL-1β) to induce OA-like conditions.
  • Nrf2 and HMGB1 levels were manipulated (overexpression/knockdown) to assess their effects.
  • Analysis included cell viability, apoptosis markers, inflammatory factor expression, extracellular matrix (ECM) component levels, and NF-κB pathway activation.
  • Tert-butylhydroquinone (TBHQ), an Nrf2 activator, and recombinant HMGB1 (rHMGB1) were used in vitro and in OA mouse models.

Main Results:

  • IL-1β treatment suppressed Nrf2, decreased chondrocyte viability, and promoted apoptosis and inflammation, while increasing matrix degradation markers.
  • Nrf2 overexpression counteracted IL-1β-induced detrimental effects.
  • Nrf2 suppressed HMGB1 expression by binding to its promoter.
  • HMGB1 manipulation reversed the protective effects of Nrf2/TBHQ, and rHMGB1 partially reversed TBHQ's therapeutic effect in mice.
  • OA cartilage showed decreased Nrf2 and increased HMGB1, apoptotic, and inflammatory markers.

Conclusions:

  • The Nrf2/HMGB1 axis is identified as a novel modulator of chondrocyte apoptosis, ECM degradation, inflammation, and NF-κB signaling in osteoarthritis.
  • This pathway represents a potential therapeutic target for osteoarthritis treatment.

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