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Updated: Nov 26, 2025

Real-time Visualization and Analysis of Chondrocyte Injury Due to Mechanical Loading in Fully Intact Murine Cartilage Explants
Published on: January 7, 2019
An Insight into the Role of Apoptosis and Autophagy in Nitric Oxide-Induced Articular Chondrocyte Cell Death
Ekkapol Akaraphutiporn1, Takafumi Sunaga1, Eugene C Bwalya2
1Laboratory of Veterinary Surgery, Department of Veterinary Clinical Sciences, Graduate School of Veterinary Medicine, Hokkaido University, Sapporo, Hokkaido, Japan.
Objective:
To investigate the role and characterize the molecular mechanisms regulating apoptosis and autophagy in nitric oxide (NO)-induced chondrocyte cell death.
Design:
Cell apoptosis and autophagy were evaluated in chondrocytes treated with sodium nitroprusside (SNP) combined with the presence or absence of interleukin-1 beta (IL-1β) and nutrient-deprived conditions. The concentration of nitrite was determined by Griess reaction. Activation of apoptosis and autophagy were determined by immunocytochemistry, Western blot, and quantitative real-time polymerase chain reaction (qPCR) analysis. Flow cytometry and MTT assay were used to assess cell viability.
Results:
Cotreatment of chondrocytes with SNP and IL-1β under nutrient-deprived condition potentially enhanced the effect of NO-induced cell death. Immunocytochemistry, Western blot, and qPCR analysis indicated that treatment of chondrocytes with SNP significantly reduced autophagic activity, autophagic flux, and multiple autophagy-related (Atg) genes expression. These findings were associated with an increase in ERK, Akt, and mTOR phosphorylation, whereas autophagy induction through mTOR/p70S6K inhibition by rapamycin significantly suppressed NO-induced cell apoptosis. Furthermore, the cleavage of poly(ADP-ribose) polymerase (PARP) and caspase-3 activation in response to apoptosis was weakly detected. These results corresponded with a significant increase in apoptosis-inducing factor (AIF) expression, suggesting the involvement of the caspase-independent pathway.
Conclusions:
These results demonstrate that in chondrocyte cultures with cells induced into an osteoarthritis state, NO inhibits autophagy and induces chondrocyte apoptosis mainly, but not completely through the caspase-independent pathway. Our data suggest that autophagy is a protective mechanism in the pathogenesis of osteoarthritis and could be proposed as a therapeutic target for degenerative joint diseases.
Insights
Nitric oxide (NO) inhibits autophagy and promotes chondrocyte apoptosis, primarily via a caspase-independent pathway in osteoarthritis models. Autophagy acts protectively, suggesting it as a therapeutic target for joint diseases.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Nitric oxide (NO) plays a complex role in cellular processes, including cell death.
- Chondrocyte apoptosis and autophagy are critical in osteoarthritis (OA) pathogenesis.
- Understanding NO's impact on these pathways is crucial for developing OA therapies.
Purpose of the Study:
- To investigate the role of nitric oxide (NO) in chondrocyte cell death.
- To characterize the molecular mechanisms of NO-induced apoptosis and autophagy.
- To explore the potential of autophagy as a therapeutic target in osteoarthritis.
Main Methods:
- Chondrocytes were treated with sodium nitroprusside (SNP) under various conditions.
- Apoptosis and autophagy were assessed using immunocytochemistry, Western blot, and qPCR.
- Cell viability was measured by flow cytometry and MTT assay.
Main Results:
- NO significantly reduced autophagic activity and expression of autophagy-related genes.
- Increased phosphorylation of ERK, Akt, and mTOR was observed.
- NO-induced apoptosis involved the caspase-independent pathway, evidenced by increased apoptosis-inducing factor (AIF) expression.
Conclusions:
- NO inhibits autophagy and induces chondrocyte apoptosis in an osteoarthritis model, primarily through a caspase-independent pathway.
- Autophagy appears to be a protective mechanism in osteoarthritis.
- Targeting autophagy may offer a therapeutic strategy for degenerative joint diseases.
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