Liu Yanchun, Shu Xiao Zheng, Prestwich Glenn D
Center for Therapeutic Biomaterials and Department of Medicinal Chemistry, University of Utah, Salt Lake City, Utah 84108, USA.
Tissue Eng. 2006 Dec;12(12):3405-16. doi: 10.1089/ten.2006.12.3405.
A co-cross-linked synthetic extracellular matrix (sECM) composed of chemically modified hyaluronic acid and gelatin was used as a cell delivery vehicle for osteochondral defect repair in a rabbit model. A full-thickness defect was created in the patellar groove of the femoral articular cartilage in each of 2 rabbit joints, and 4 experimental groups were assigned (12 rabbits/group): untreated control, autologous mesenchymal stem cells (MSCs) only, sECM only, and MSCs + sECM. The sECM hydrogels were allowed to cross-link in the defect in situ. Rabbits were sacrificed at 4, 8, and 12 weeks post-surgery, and cartilage repair was evaluated and scored. In the controls, defects were filled with fibrous tissue. In the MSC-only group, hyaline-like cartilage filled the peripheral area of the defect, but the center was filled with fibrous tissue. In the sECM-only group, hyaline cartilage with zonal architecture filled the defect at 12 weeks, but an interface between repaired and adjacent host cartilage was evident. In the MSCs + sECM group, defects were completely filled with elastic, firm, translucent cartilage at 12 weeks and showed superior integration of the repair tissue with the normal cartilage. The sECM delivers and retains MSCs, and the injectable cell-seeded sECM could be delivered arthroscopically in the clinic.
一种由化学修饰的透明质酸和明胶组成的共交联合成细胞外基质(sECM)被用作兔模型中骨软骨缺损修复的细胞递送载体。在2只兔的每个关节的股骨关节软骨髌沟处制造全层缺损,并分为4个实验组(每组12只兔):未处理的对照组、仅自体间充质干细胞(MSCs)、仅sECM以及MSCs + sECM。使sECM水凝胶在缺损处原位交联。在术后4周、8周和12周处死兔子,并对软骨修复进行评估和评分。在对照组中,缺损处充满纤维组织。在仅MSCs组中,透明样软骨填充缺损的周边区域,但中心充满纤维组织。在仅sECM组中,具有分层结构的透明软骨在12周时填充缺损,但修复的软骨与相邻宿主软骨之间的界面明显。在MSCs + sECM组中,缺损在12周时完全被弹性、坚实、半透明的软骨填充,并且修复组织与正常软骨的整合性更佳。sECM能够递送并保留MSCs,并且可注射的接种细胞的sECM在临床上可通过关节镜进行递送。