Lagneau Nathan, Tournier Pierre, Nativel Fabien, Maugars Yves, Guicheux Jérôme, Le Visage Catherine, Delplace Vianney
Nantes Université, Oniris, CHU Nantes, INSERM, Regenerative Medicine and Skeleton, RMeS, UMR 1229, F-44000, France.
Nantes Université, Oniris, CHU Nantes, INSERM, Regenerative Medicine and Skeleton, RMeS, UMR 1229, F-44000, France; Nantes Université, UFR Sciences Biologiques et Pharmaceutiques, Nantes, F-44035, France.
Biomaterials. 2023 May;296:122091. doi: 10.1016/j.biomaterials.2023.122091. Epub 2023 Mar 13.
Osteoarthritis (OA) is the most common debilitating joint disease, yet there is no curative treatment for OA to date. Delivering mesenchymal stromal cells (MSCs) as therapeutic cells to mitigate the inflammatory symptoms associated with OA is attracting increasing attention. In principle, MSCs could respond to the pro-inflammatory microenvironment of an OA joint by the secretion of anti-inflammatory, anti-apoptotic, immunomodulatory and pro-regenerative factors, therefore limiting pain, as well as the disease development. However, the microenvironment of MSCs is known to greatly affect their survival and bioactivity, and using tailored biomaterial scaffolds could be key to the success of intra-articular MSC-based therapies. The aim of this review is to identify and discuss essential characteristics of biomaterial scaffolds to best promote MSC secretory functions in the context of OA. First, a brief introduction to the OA physiopathology is provided, followed by an overview of the MSC secretory functions, as well as the current limitations of MSC-based therapy. Then, we review the current knowledge on the effects of cell-material interactions on MSC secretion. These considerations allow us to define rational guidelines for next-generation biomaterial design to improve the MSC-based therapy of OA.
骨关节炎(OA)是最常见的导致关节功能衰退的疾病,但迄今为止尚无治愈OA的疗法。将间充质基质细胞(MSCs)作为治疗性细胞输送到体内以减轻与OA相关的炎症症状正受到越来越多的关注。原则上,MSCs可通过分泌抗炎、抗凋亡、免疫调节和促再生因子来应对OA关节的促炎微环境,从而减轻疼痛并抑制疾病发展。然而,已知MSCs的微环境会极大地影响其存活和生物活性,使用定制的生物材料支架可能是基于关节内MSCs治疗成功的关键。本综述的目的是识别和讨论生物材料支架的基本特征,以便在OA背景下最佳地促进MSCs的分泌功能。首先,简要介绍OA的病理生理学,接着概述MSCs的分泌功能以及基于MSCs治疗的当前局限性。然后,我们回顾了关于细胞-材料相互作用对MSCs分泌影响的现有知识。这些考量使我们能够为下一代生物材料设计制定合理的指导方针,以改善基于MSCs的OA治疗。