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Use of synovium-derived stromal cells and chitosan/collagen type I scaffolds for cartilage tissue engineering

机译:滑膜来源的基质细胞和壳聚糖/胶原I型支架在软骨组织工程中的应用

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摘要

The objective was to investigate synovium-derived stromal cells (SDSCs) coupled with chitosan/collagen type I (CS/COL-I) scaffolds for cartilage engineering. CS/COL-I scaffolds were fabricated through freeze-drying and cross-linked by 1-ethyl-3-(3-dimethylaminopropyl)carbodiimide. SDSCs were isolated from synovium and cultured onto CS/COL-I scaffolds, constructs of which were incubated in serum-free chondrogenic medium with sequential application of TGF-β1 and bFGF for up to 21 days and then implanted into nude mice. The physical characteristics of the scaffolds were examined. The quality of the in vitro constructs was assessed in terms of DNA content by PicoGreen assay and cartilaginous matrix by histological examination. The implants of the constructs were evaluated by histological and immunohistochemical examinations and reverse transcription PCR. Results indicated that the CS/COL-I scaffold showed porous structures, and the DNA content of SDSCs in CS/COL-I scaffolds increased at 1 week culture time. Both of the constructs in vitro and the implants were examined with positive stained GAGs histologically and the implants with positive collagen type II immunohistochemically. RT-PCR of the implants indicated that aggrecan and collagen type II expressed. It suggested that SDSCs coupled with CS/COL-I scaffolds treated sequentially with TGF-β1 and bFGF in vitro were highly competent for engineered cartilage formation in vitro and in vivo.
机译:目的是研究滑膜来源的基质细胞(SDSC)结合壳聚糖/ I型胶原(CS / COL-1)支架用于软骨工程。 CS / COL-1支架是通过冷冻干燥制成的,并通过1-乙基-3-(3-二甲基氨基丙基)碳二亚胺进行交联。从滑膜分离SDSC并培养到CS / COL-1支架上,将其构建体在无血清软骨形成培养基中温育,连续施用TGF-β1和bFGF达21天,然后植入裸鼠。检查了支架的物理特性。体外构建物的质量通过PicoGreen分析以DNA含量评估,通过组织学检查以软骨基质评估。通过组织学和免疫组织化学检查以及逆转录PCR评估构建体的植入物。结果表明,CS / COL-1支架显示多孔结构,并且在培养1周时CS / COL-1支架中SDSC的DNA含量增加。组织学和植入物的组织学检查均用阳性染色的GAGs进行,免疫组织化学用II型阳性胶原蛋白检查植入物。植入物的RT-PCR表明聚集蛋白聚糖和II型胶原表达。这提示,SDSCs与经TGF-β1和bFGF体外顺序处理的CS / COL-1支架相结合,在体外和体内均具有高水平的工程软骨形成能力。

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