Of mice and men: converging on a common molecular understanding of osteoarthritis
1Centre for Osteoarthritis Pathogenesis, Versus Arthritis, Kennedy Institute of Rheumatology, University of Oxford, Oxford, UK.
Abstract:
Despite an increasing burden of osteoarthritis in developed societies, target discovery has been slow and there are currently no approved disease-modifying osteoarthritis drugs. This lack of progress is due in part to a series of misconceptions over the years: that osteoarthritis is an inevitable consequence of ageing, that damaged articular cartilage cannot heal itself, and that osteoarthritis is driven by synovial inflammation similar to that seen in rheumatoid arthritis. Molecular interrogation of disease through ex-vivo tissue analysis, in-vitro studies, and preclinical models have radically reshaped the knowledge landscape. Inflammation in osteoarthritis appears to be distinct from that seen in rheumatoid arthritis. Recent randomised controlled trials, using treatments repurposed from rheumatoid arthritis, have largely been unsuccessful. Genome-wide studies point to defects in repair pathways, which accords well with recent promise using growth factor therapies or Wnt pathway antagonism. Nerve growth factor has emerged as a robust target in osteoarthritis pain in phase 2-3 trials. These studies, both positive and negative, align well with those in preclinical surgical models of osteoarthritis, indicating that pathogenic mechanisms identified in mice can lead researchers to valid human targets. Several novel candidate pathways are emerging from preclinical studies that offer hope of future translational impact. Enhancing trust between industry, basic, and clinical scientists will optimise our collective chance of success.
Insights
Osteoarthritis (OA) research is advancing beyond old myths. New studies reveal distinct inflammation in OA and highlight repair pathway defects, offering hope for effective disease-modifying drugs and pain treatments.
Area of Science:
- Biomedical science
- Orthopedics
- Molecular biology
Background:
- Osteoarthritis (OA) poses a growing health burden with limited disease-modifying treatments.
- Past misconceptions about OA (inevitable aging, non-healing cartilage, rheumatoid arthritis-like inflammation) hindered progress.
- Current treatments primarily manage symptoms, not disease modification.
Purpose of the Study:
- To re-evaluate the understanding of osteoarthritis pathogenesis.
- To identify novel therapeutic targets for osteoarthritis.
- To bridge the gap between preclinical findings and clinical translation.
Main Methods:
- Molecular interrogation of osteoarthritis using ex-vivo tissue analysis, in-vitro studies, and preclinical models.
- Analysis of genome-wide studies to identify genetic underpinnings of OA.
- Review of recent randomized controlled trials and preclinical surgical models.
Main Results:
- Osteoarthritis inflammation is distinct from rheumatoid arthritis, explaining failed repurposed treatments.
- Genome-wide studies suggest defects in cartilage repair pathways are key.
- Nerve growth factor shows promise as an osteoarthritis pain target in clinical trials.
Conclusions:
- Preclinical models accurately reflect human osteoarthritis pathology, validating target discovery.
- Emerging pathways from preclinical research offer potential for future OA therapies.
- Improved collaboration between industry and academic researchers is crucial for successful translation.
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