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Published on: March 18, 2022
The Nrf2/HMGB1/NF-κB axis modulates chondrocyte apoptosis and extracellular matrix degradation in osteoarthritis
Abstract:
Osteoarthritis (OA) is a degenerative or posttraumatic condition of the joints. In OA chondrocytes, Nrf2 functions as a stress response regulator with antioxidant and anti-inflammatory effects. This study aims to investigate the role of Nrf2 and its downstream pathway in the development of osteoarthritis. IL-1β treatment suppresses Nrf2, aggrecan, and COL2A1 levels and cell viability but promotes apoptosis in chondrocytes. IL-1β stimulation induces cell apoptosis, upregulates the mRNA expression of inflammatory factors, decreases aggrecan, COL2A1, and Bcl-2 levels but increases ADAMTS-5, ADAMTS-4, MMP13, cleaved caspase 3, and BAX levels, and promotes p65 phosphorylation. Nrf2 overexpression exerts opposite effects on IL-1β-treated chondrocytes, as demonstrated by the significant attenuation of IL-1β-induced changes in chondrocytes. By binding to the HMGB1 promoter region, Nrf2 suppresses HMGB1 expression. Similar to Nrf2 overexpression, HMGB1 knockdown also attenuates IL-1β-induced changes in chondrocytes. Notably, under IL-1β stimulation, the effects of Nrf2 overexpression or tert-butylhydroquinone (TBHQ, an activator of Nrf2) on apoptosis, inflammatory factor expression, ECM and apoptosis, and NF-κB pathway activity in chondrocytes are remarkably reversed by HMGB1 overexpression or recombinant HMGB1 (rHMGB1). Similarly, rHMGB1 could partially counteract the curative effect of TBHQ on OA damage in mice. In OA cartilage tissue samples, the level of Nrf2 is lower, while the levels of HMGB1, apoptotic, and inflammatory factors are increased compared to normal cartilage tissue samples. In conclusion, for the first time, the Nrf2/HMGB1 axis was found to modulate apoptosis, ECM degradation, inflammation and activation of NF-κB signaling in chondrocytes and OA mice.
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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