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Culture-expanded mesenchymal stromal cell therapy: does it work in knee osteoarthritis? A pathway to clinical success
Griffin Copp1,2,3, Kevin P Robb1,2,3, Sowmya Viswanathan4,5,6,7
1Osteoarthritis Research Program, Division of Orthopedic Surgery, Schroeder Arthritis Institute, University Health Network, Toronto, ON, Canada.
Abstract:
Osteoarthritis (OA) is a degenerative multifactorial disease with concomitant structural, inflammatory, and metabolic changes that fluctuate in a temporal and patient-specific manner. This complexity has contributed to refractory responses to various treatments. MSCs have shown promise as multimodal therapeutics in mitigating OA symptoms and disease progression. Here, we evaluated 15 randomized controlled clinical trials (RCTs) and 11 nonrandomized RCTs using culture-expanded MSCs in the treatment of knee OA, and we found net positive effects of MSCs on mitigating pain and symptoms (improving function in 12/15 RCTs relative to baseline and in 11/15 RCTs relative to control groups at study endpoints) and on cartilage protection and/or repair (18/21 clinical studies). We examined MSC dose, tissue of origin, and autologous vs. allogeneic origins as well as patient clinical phenotype, endotype, age, sex and level of OA severity as key parameters in parsing MSC clinical effectiveness. The relatively small sample size of 610 patients limited the drawing of definitive conclusions. Nonetheless, we noted trends toward moderate to higher doses of MSCs in select OA patient clinical phenotypes mitigating pain and leading to structural improvements or cartilage preservation. Evidence from preclinical studies is supportive of MSC anti-inflammatory and immunomodulatory effects, but additional investigations on immunomodulatory, chondroprotective and other clinical mechanisms of action are needed. We hypothesize that MSC basal immunomodulatory "fitness" correlates with OA treatment efficacy, but this hypothesis needs to be validated in future studies. We conclude with a roadmap articulating the need to match an OA patient subset defined by molecular endotype and clinical phenotype with basally immunomodulatory "fit" or engineered-to-be-fit-for-OA MSCs in well-designed, data-intensive clinical trials to advance the field.
Insights
Mesenchymal stem cells (MSCs) show promise for treating osteoarthritis (OA) by reducing pain and improving function. Further research is needed to match specific patient types with optimal MSC therapies for better outcomes.
Area of Science:
- Orthopedics and Regenerative Medicine
- Biotechnology and Therapeutics
Background:
- Osteoarthritis (OA) is a complex degenerative disease with varied patient responses to treatment.
- Mesenchymal stem cells (MSCs) offer potential as a multimodal therapy for OA due to their anti-inflammatory and immunomodulatory properties.
Purpose of the Study:
- To evaluate the clinical effectiveness of culture-expanded MSCs in treating knee OA.
- To identify key parameters influencing MSC efficacy, including dose, origin, and patient characteristics.
Main Methods:
- Systematic review and analysis of 15 randomized controlled trials (RCTs) and 11 nonrandomized RCTs involving MSCs for knee OA.
- Examination of factors such as MSC dose, tissue source, patient phenotype, endotype, age, sex, and OA severity.
Main Results:
- MSCs demonstrated net positive effects in mitigating OA pain and symptoms, improving function in a majority of RCTs.
- Evidence from 18/21 studies indicated cartilage protection or repair.
- Trends suggest higher MSC doses may benefit specific OA patient phenotypes, leading to pain reduction and structural improvements.
Conclusions:
- MSC therapy shows potential for OA treatment, particularly in pain management and functional improvement.
- Further research is required to elucidate MSC mechanisms of action and optimize treatment strategies.
- A personalized approach matching OA patient endotypes/phenotypes with suitable MSCs in robust clinical trials is crucial for advancing OA treatment.
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