bioRxiv · 10.64898/2026.09.18.752585
Articular calcified cartilage microarchitecture has a predictive role in abnormal osteochondral strain distributions in murine age-related osteoarthritis
Abstract
Even though osteoarthritis is considered a disease of the whole joint, integrated analysis of articular calcified cartilage (ACC) behaviour with adjacent tissues remains a persistent limitation. Herein, we performed synchrotron X-ray computed tomography in intact loaded joints and coupled anatomical analysis with digital volume correlation to examine whether microarchitectural ACC features serve as predictive mechano-biomarkers of osteoarthritis. We reveal that male osteoarthritis-prone STR/Ort mice have thicker yet more porous ACC that contains larger but less spherical chondrocyte lacunae than their healthy parental-control CBA mice. This was linked to asymmetrical distribution of tensile and compressive strains generated under physiological loads in the ACC and underlying subchondral bone in tibial epiphyses of STR/Ort mice. Together these data suggest that murine ACC microarchitecture has a mechano-predictive role in age-related osteoarthritis.
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Evans, L. A., Sharma, A., Chen, J., Bourne, L. E., Parmenter, A. L., Brunet, J., Madi, K., Marussi, S., Lee, P. D., Pitsillides, A. A., Staines, K. A.. 2026-09-24. Articular calcified cartilage microarchitecture has a predictive role in abnormal osteochondral strain distributions in murine age-related osteoarthritis. https://doi.org/10.64898/2026.09.18.752585
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