Brondeel Carlien, Pauwelyn Glenn, de Bakker Evelien, Saunders Jimmy, Samoy Yves, Spaas Jan H
Department of Medical Imaging and Orthopedics of Domestic Animals, Faculty of Veterinary Medicine, Ghent University, Merelbeke, Belgium.
Global Stem Cell Technology NV, Part of Boehringer-Ingelheim, Evergem, Belgium.
Front Vet Sci. 2021 May 19;8:668881. doi: 10.3389/fvets.2021.668881. eCollection 2021.
Osteoarthritis (OA) is currently an incurable and progressive condition in dogs causing chronic joint pain and possibly increasing disability. Due to the poor healing capacity of cartilage lesions that occur with OA, development of effective therapeutics is difficult. For this reason, current OA therapy is mostly limited to the management of pain and inflammation, but not directed ad disease modification. In the search for a safe and effective OA treatment, mesenchymal stem cells (MSCs) have been of great interest since these cells might be able to restore cartilage defects. The designs of OA studies on MSC usage, however, are not always consistent and complete, which limits a clear evaluation of MSC efficacy. The general study results show a tendency to improve lameness, joint pain and range of motion in dogs suffering from naturally-occurring OA. Assessment of the cartilage surface demonstrated the ability of MSCs to promote cartilage-like tissue formation in artificially created cartilage defects. Immunomodulatory capacities of MSCs also seem to play an important role in reducing pain and inflammation in dogs. It should be mentioned, however, that in the current studies in literature there are specific design limitations and further research is warranted to confirm these findings.
骨关节炎(OA)目前在犬类中是一种无法治愈且会逐渐发展的病症,会导致慢性关节疼痛,并可能增加致残率。由于OA所伴发的软骨损伤愈合能力较差,因此难以开发出有效的治疗方法。出于这个原因,目前的OA治疗大多仅限于疼痛和炎症的管理,而非针对疾病的改善。在寻找安全有效的OA治疗方法的过程中,间充质干细胞(MSCs)一直备受关注,因为这些细胞或许能够修复软骨缺损。然而,关于使用MSCs治疗OA的研究设计并不总是一致和完整的,这限制了对MSCs疗效的清晰评估。总体研究结果表明,患有自然发生的OA的犬类的跛行、关节疼痛和活动范围有改善的趋势。对软骨表面的评估表明,MSCs能够在人工制造的软骨缺损中促进软骨样组织的形成。MSCs的免疫调节能力似乎在减轻犬类的疼痛和炎症方面也起着重要作用。然而,应该提到的是,在目前文献中的研究存在特定的设计局限性,需要进一步研究来证实这些发现。