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Polyester type polyHIPE scaffolds with an interconnected porous structure for cartilage regeneration

机译:聚酯型聚合支架具有相互连接的多孔结构,用于软骨再生

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Development of artificial materials for the facilitation of cartilage regeneration remains an important challenge in orthopedic practice. Our study investigates the potential for neocartilage formation within a synthetic polyester scaffold based on the polymerization of high internal phase emulsions. The fabrication of polyHIPE polymer (PHP) was specifically tailored to produce a highly porous (85%) structure with the primary pore size in the range of 50-170?μm for cartilage tissue engineering. The resulting PHP scaffold was proven biocompatible with human articular chondrocytes and viable cells were observed within the materials as evaluated using the Live/Dead assay and histological analysis. Chondrocytes with round nuclei were organized into multicellular layers on the PHP surface and were observed to grow approximately 300?μm into the scaffold interior. The accumulation of collagen type 2 was detected using immunohistochemistry and chondrogenic specific genes were expressed with favorable collagen type 2 to 1 ratio. In addition, PHP samples are biodegradable and their baseline mechanical properties are similar to those of native cartilage, which enhance chondrocyte cell growth and proliferation.
机译:用于促进软骨再生的人造材料的开发仍然是整形外科实践中的重要挑战。我们的研究根据高内相乳液的聚合调查了合成聚酯支架内的新岩石形成的可能性。聚合物聚合物(PHP)的制备特异性定制,以产生高度多孔(85%)结构,主要孔径为50-170Ωμm的软骨组织工程。将得到的PHP支架被证明是使用人关节的软骨细胞生物相容的,并且在使用Live / Dear测定和组织学分析评估的材料中观察到活细胞。将圆核的软骨细胞组织成PHP表面上的多细胞层,观察到将大约300Ωμm生长到支架内部。使用免疫组织化学检测胶原蛋白2型的积聚,并且用良好的胶原蛋白表达有利的胶原蛋白2至1的比例。此外,PHP样品是可生物降解的,其基线机械性质与本机软骨的基础组织类似,增强软骨细胞生长和增殖。

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