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首页> 外文期刊>Biomaterials >Cartilage repair in transplanted scaffold-free chondrocyte sheets using a minipig model
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Cartilage repair in transplanted scaffold-free chondrocyte sheets using a minipig model

机译:使用minipig模型修复移植的无支架软骨细胞片中的软骨

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Lacking a blood supply and having a low cellular density, articular cartilage has a minimal ability for self-repair. Therefore, wide-ranging cartilage damage rarely resolves spontaneously. Cartilage damage is typically treated by chondrocyte transplantation, mosaicplasty or microfracture. Recent advances in tissue engineering have prompted research on techniques to repair articular cartilage damage using a variety of transplanted cells. We studied the repair and regeneration of cartilage damage using layered chondrocyte sheets prepared on a temperature-responsive culture dish. We previously reported achieving robust tissue repair when covering only the surface layer with layered chondrocyte sheets when researching partial-thickness defects in the articular cartilage of domestic rabbits. The present study was an experiment on the repair and regeneration of articular cartilage in a minipig model of full-thickness defects. Good safranin-O staining and integration with surrounding tissues was achieved in animals transplanted with layered chondrocyte sheets. However, tissue having poor safranin-O staining-not noted in the domestic rabbit experiments-was identified in some of the animals, and the subchondral bone was poorly repaired in these. Thus, although layered chondrocyte sheets facilitate articular cartilage repair, further investigations into appropriate animal models and culture and transplant conditions are required.
机译:缺乏血液供应且细胞密度低,关节软骨具有最小的自我修复能力。因此,广泛的软骨损伤很少自发解决。通常通过软骨细胞移植,镶嵌成形术或微骨折来治疗软骨损伤。组织工程学的最新进展促使人们对使用多种移植细胞修复关节软骨损伤的技术进行了研究。我们使用在温度响应型培养皿上制备的分层软骨细胞片研究了软骨损伤的修复和再生。我们以前曾报道过,当研究家兔关节软骨的部分厚度缺损时,仅用层状软骨细胞片覆盖表面层即可实现强大的组织修复。本研究是在全厚度缺损的小型猪模型中修复和再生软骨的实验。在移植有分层软骨细胞片的动物中,获得了良好的番红O染色和与周围组织的整合。但是,在某些动物中发现了藏红素-O染色差的组织(在家兔实验中未发现),并且在这些动物的软骨下骨修复不良。因此,尽管分层的软骨细胞片促进了关节软骨的修复,但仍需要对适当的动物模型以及培养和移植条件进行进一步的研究。

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