Authors
Marcella de A Ferreira, Paz Duran, Raquel Tonello, Veronica Emad Farag, Mae Stabile D'Ambra, Evan Yuhan Chen, Sher B Poudel, Kam W Leong, Dane D Jensen
Published in
Nanomaterials (Basel, Switzerland). Volume 16. Issue 17. Sep 01, 2026. Epub Sep 01, 2026.
Abstract
Osteoarthritis (OA) is the most prevalent chronic joint disease characterized by the progressive degeneration of articular cartilage leading to debilitating locomotor restrictions and persistent pain. The pathogenesis of OA is driven by a complex cycle of inflammatory mediators, where G protein-coupled receptor protease-activated receptor 2 (PAR2) has emerged as a key driver of both tissue degradation and joint inflammation. PAR2 is expressed on various joint tissues, and on the terminals of nociceptive sensory neurons, providing a direct link to structural joint inflammation and chronic nociception. However, the therapeutic potential of PAR2 antagonists is hampered by the rapid clearance of drugs from the synovial space. Here, we investigate the therapeutic potential of nanoparticle-mediated drug delivery to achieve sustained PAR2 inhibition in OA. OA was induced in C57BL/6 mice via intra-articular injection of sodium iodoacetate, followed by treatment with the PAR2 antagonist, AZ3451, encapsulated within PAMAM-Chol nanoparticles (PAMAM-Chol-AZ3451). Our results demonstrate that the PAMAM-Chol-AZ3451 nanoparticles blocked cytokine release from synoviocytes and provided a significantly more sustained and effective antinociceptive effect compared to the free AZ3451, with confirmed nanoparticle uptake by neurons and synoviocytes. Furthermore, cell-specific genetic deletion confirmed that PAR2 expressed on Nav1.8 nociceptors is a critical contributor to OA-induced nociception and locomotor deficits. These findings establish that PAR2 signaling in neurons is critical for OA nociception and that nanoparticle delivery of PAR2 antagonists (PAMAM-Chol-AZ3451) represents an effective strategy for sustained inhibition of PAR2 activity, offering a novel approach for managing chronic OA pain.
PMID:
42726576
Bibliographic data and abstract were imported from PubMed on 12 Sep 2026.
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