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In vitro cartilage tissue engineering using cancellous bone matrix gelatin as a biodegradable scaffold

机译:使用松质骨基质明胶作为可生物降解支架的体外软骨组织工程

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In this study, we constructed tissue-engineered cartilage using allogeneic cancellous bone matrix gelatin (BMG) as a scaffold. Allogeneic BMG was prepared by sequential defatting, demineralization and denaturation. Isolated rabbit chondrocytes were seeded onto allogeneic cancellous BMG, and cell-BMG constructs were harvested after 1, 3 and 6 weeks for evaluation by hematoxylin and eosin staining for overall morphology, toluidine blue for extracellular matrix (ECM) proteoglycans, immunohistochemical staining for collagen type II and a transmission electron microscope for examining cellular microstructure on BMG. The prepared BMG was highly porous with mechanical strength adjustable by duration of demineralization and was easily trimmed for tissue repair. Cancellous BMG showed favorable porosity for cell habitation and metabolism material exchange with larger pore sizes (100-500 mu m) than in cortical BMG (5-15 mu m), allowing cell penetration. Cancellous BMG also showed good biocompatibility, which supported chondrocyte proliferation and sustained their differentiated phenotype in culture for up to 6 weeks. Rich and evenly distributed cartilage ECM proteoglycans and collagen type II were observed around chondrocytes on the surface and inside the pores throughout the cancellous BMG. Considering the large supply of banked bone allografts and relatively convenient preparation, our study suggests that allogeneic cancellous BMG is a promising scaffold for cartilage tissue engineering.
机译:在这项研究中,我们使用同种异体松质骨基质明胶(BMG)作为支架构建了组织工程软骨。通过顺序脱脂,脱矿质和变性制备同种异体BMG。将分离的兔软骨细胞接种到同种异体松质BMG上,在1、3和6周后收集细胞BMG构建体,以通过苏木精和曙红染色进行总体形态评估,对甲苯胺蓝表示细胞外基质(ECM)蛋白聚糖,对胶原类型进行免疫组织化学染色II和用于检查BMG上的细胞微观结构的透射电子显微镜。所制备的BMG具有高孔隙度,其机械强度可通过脱矿质的持续时间进行调节,并且易于修整以进行组织修复。松质BMG具有比多孔BMG(5-15μm)大的孔径(100-500μm),有利于细胞的居住和代谢物质交换,从而使细胞渗透。松质BMG还显示出良好的生物相容性,可支持软骨细胞增殖并在培养物中维持其分化表型长达6周。在整个松质BMG的表面和孔内的软骨细胞周围观察到丰富而均匀分布的软骨ECM蛋白多糖和II型胶原。考虑到同种异体骨库的大量供应和相对方便的制备,我们的研究表明,同种异体松质BMG是一种有前途的软骨组织工程支架。

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