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Updated: Aug 31, 2025

Mechanical Stimulation of Chondrocyte-agarose Hydrogels
Published on: October 27, 2012
Drugging the circadian clock feedback cycle to ameliorate cartilage degeneration
Ting He1,2, Siyi Pang1,2, Huanbo Wang2
1Xi'an Key Laboratory of Stem Cell and Regenerative Medicine, Institute of Medical Research, Northwestern Polytechnical University, Xi'an, China.
Abstract:
Dampened peripheral clocks have been linked to osteoarthritis (OA), yet it is unclear whether drugging the clock can ameliorate OA. Given that RORs and REV-ERBs mediate respectively, positive and negative transcriptional feedback of the master clock gene BMAL1, we investigate whether RORs agonist Nobiletin (NOB) and SR1078, and REV-ERBs antagonist SR8278 can enhance BMAL1 expression and attenuate cartilage degeneration. NOB and SR8278 promoted BMAL1 expression and elicited mitigating effects against IL-1β-induced degeneration of cartilage explants, as evidenced by increased cellular density and collagen synthesis along with alleviated catabolism and collagen denaturation. Despite promoted BMAL1 expression, SR1078 concomitantly suppressed chondrocyte anabolism and catabolism. Consistent with these findings, NOB and SR8278 treatment, but not SR1078, effectively attenuated structural destruction of articular cartilage in surgery-induced OA mouse models. Notably, the beneficial effects of NOB and SR8278 were evidently observed in IL-1β-induced degeneration of human cartilage explants and immortalized human chondrocytes. Moreover, BMAL1 knockdown assays indicated that NOB and SR8278 enhanced clock function and concordantly rendered protection against altered anabolism and catabolism in a BMAL1-dependent regime. Collectively, our study suggests that targeting RORs and REV-ERBs to promote the dampened peripheral clocks could be a route taken to apply chronotherapy within the context of OA.
Insights
Targeting RORs and REV-ERBs to boost peripheral clocks may treat osteoarthritis (OA). Nobiletin (NOB) and SR8278 enhanced BMAL1 expression, protecting cartilage in OA models.
Area of Science:
- Chronobiology
- Orthopedics
- Molecular Biology
Background:
- Dampened peripheral circadian clocks are associated with osteoarthritis (OA).
- The master clock gene BMAL1 is regulated by RORs (activators) and REV-ERBs (repressors).
- Investigating clock modulation for OA treatment is crucial.
Purpose of the Study:
- To investigate if RORs agonist Nobiletin (NOB) and SR1078, and REV-ERBs antagonist SR8278 can enhance BMAL1 expression.
- To determine if these compounds can attenuate cartilage degeneration in OA.
Main Methods:
- Treatment of IL-1β-induced cartilage explants and human chondrocytes with NOB, SR1078, and SR8278.
- Assessment of BMAL1 expression, cellular density, collagen synthesis, catabolism, and denaturation.
- Evaluation of articular cartilage structural integrity in surgery-induced OA mouse models.
- BMAL1 knockdown assays to confirm mechanism of action.
Main Results:
- NOB and SR8278 promoted BMAL1 expression and protected cartilage from IL-1β-induced degeneration.
- SR1078 showed mixed effects, suppressing both chondrocyte anabolism and catabolism.
- NOB and SR8278 attenuated cartilage destruction in OA mouse models and human explants.
- The protective effects were BMAL1-dependent.
Conclusions:
- Targeting RORs and REV-ERBs to enhance peripheral clock function offers a potential chronotherapy for OA.
- NOB and SR8278 demonstrate therapeutic potential by promoting BMAL1 expression and protecting cartilage.
- Further research into clock modulation for OA treatment is warranted.
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