软骨发生
间充质干细胞
软骨内骨化
骨形态发生蛋白2
软骨
PLGA公司
透明软骨
脚手架
化学
骨形态发生蛋白
生物医学工程
细胞生物学
再生(生物学)
关节软骨修复
干细胞
离体
解剖
病理
骨关节炎
医学
关节软骨
体外
生物
生物化学
替代医学
基因
作者
Hee Jung Kim,Min Ah. Han,Ji Young Shin,Jeong Hwa Jeon,Seung‐Jin Lee,Mi Yun Yoon,Han‐Jun Kim,Eun‐Ji Choi,Sun Hee,Victor C. Yang,Huining He,Young-Il Yang
标识
DOI:10.1016/j.jconrel.2019.04.002
摘要
Delivery of synovium-resident mesenchymal stem cells (synMSCs) to cartilage defect site might provide a novel therapeutic modality for treatment of articular cartilage diseases. However, low isolation efficiency of synMSCs limits their therapeutic application. Niche-preserving non-enzymatic isolation of synMSCs was firstly attempted by employing micro-organ culture system based on recapitulating tissue-specific homeostasis ex vivo. The isolated synMSCs retained superior long-term growth competency, proliferation and chondrogenic potential to bone marrow-derived MSCs (BMSCs). It was noted that synMSCs demonstrated 9-fold increase in cartilaginous micro-tissue formation and 13-fold increase in sulfated proteoglycans deposition compared to BMSCs. For delivery of synMSCs, fibrous PLGA scaffolds were specifically designed for full-thickness osteochondral defects in rabbits. The scaffolds provided effective micro-environment for growth and host-integration of synMSCs. Combined delivery of synMSCs with bone morphogenetic proteins-7 (BMP-7) was designed to achieve synergistic therapeutic efficacy. BMP-7-loaded PLGA nanoparticles electrosprayed onto the scaffolds released BMP-7 over 2 weeks to conform with its aimed role in stimulating early stage endochondral ossification. Scaffold-supported combined administration of synMSCs with BMP-7 resulted in high proteoglycan and collagen type II induction and thick hyaline cartilage formation. Intra-articular co-delivery of synMSCs with BMP-7 via fibrous PLGA scaffolds may be a promising therapeutic modality for articular cartilage repair.
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