Center for Stem Cell and Tissue Engineering, School of Medicine, Zhejiang University, Hangzhou, China.
Stem Cells Dev. 2013 Jul 15;22(14):2071-82. doi: 10.1089/scd.2012.0563. Epub 2013 Apr 1.
Meniscus injury is frequently encountered in clinical practice. Current surgical therapy involving partial or complete meniscectomy relieves pain in the short-term but often leads to osteoarthritis (OA) in the long-term. Here, this study aimed to identify and characterize a novel population of meniscus-derived stem cells (MeSCs) and develop a new strategy of articular cartilage protection by intra-articular injection of these cells. The "stemness" and immune properties of MeSCs were investigated in vitro, while the efficacy of intra-articular injection of MeSCs for meniscus regeneration and OA prevention were investigated in vivo at 4, 8, and 12 weeks postsurgery. MeSCs displayed typical stem cell characteristics such as low immunogenicity and even possessed immunosuppressive function. In a rabbit meniscus injury model, transplantation of allogenous MeSCs did not elicit immunological rejection, but promoted neo-tissue formation with better-defined shape and more matured extracellular matrix. In a rabbit experimental OA model, transplantation of MeSCs further protected joint surface cartilage and maintained joint space at 12 weeks postsurgery, whereas extensive joint surface irregularities and joint space stenosis were observed in the control group. This study thus evoked a new strategy for articular cartilage protection and meniscus regeneration by intra-articular injection of MeSCs for patients undergoing meniscectomy.
半月板损伤在临床上较为常见。目前的手术治疗包括半月板部分或全部切除术,在短期内可缓解疼痛,但长期往往会导致骨关节炎(OA)。在此,本研究旨在鉴定和表征一种新型的半月板衍生干细胞(MeSCs),并通过关节内注射这些细胞来开发一种新的关节软骨保护策略。体外研究了 MeSCs 的“干性”和免疫特性,体内研究了关节内注射 MeSCs 促进半月板再生和预防 OA 的疗效,分别在术后 4、8 和 12 周进行。MeSCs 表现出典型的干细胞特征,如低免疫原性,甚至具有免疫抑制功能。在兔半月板损伤模型中,同种异体 MeSCs 的移植不会引起免疫排斥反应,而是促进了具有更清晰形态和更成熟细胞外基质的新组织形成。在兔实验性 OA 模型中,MeSCs 的移植进一步保护了关节表面软骨,并在术后 12 周保持了关节间隙,而对照组则观察到广泛的关节表面不规则和关节间隙狭窄。因此,本研究通过关节内注射 MeSCs 为接受半月板切除术的患者提供了一种新的关节软骨保护和半月板再生策略。