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Preparation of in situ hardening composite microcarriers: Calcium phosphate cement combined with alginate for bone regeneration

机译:原位硬化复合微载体的制备:磷酸钙水泥与藻酸盐结合用于骨再生

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摘要

Novel microcarriers consisting of calcium phosphate cement and alginate were prepared for use as three-dimensional scaffolds for the culture and expansion of cells that are effective for bone tissue engineering. The calcium phosphate cement-alginate composite microcarriers were produced by an emulsification of the composite aqueous solutions mixed at varying ratios (calcium phosphate cement powder/alginate solution = 0.8-1.2) in an oil bath and the subsequent in situ hardening of the compositions during spherodization. Moreover, a porous structure could be easily created in the solid microcarriers by soaking the produced microcarriers in water and a subsequent freeze-drying process. Bone mineral-like apatite nanocrystallites were shown to rapidly develop on the calcium phosphate cement-alginate microcarriers under moist conditions due to the conversion of the α-tricalcium phosphate phase in the calcium phosphate cement into a carbonate-hydroxyapatite. Osteoblastic cells cultured on the microspherical scaffolds were proven to be viable, with an active proliferative potential during 14 days of culture, and their osteogenic differentiation was confirmed by the determination of alkaline phosphatase activity. The in situ hardening calcium phosphate cement-alginate microcarriers developed herein may be used as potential three-dimensional scaffolds for cell delivery and tissue engineering of bone.
机译:制备了由磷酸钙水泥和藻酸盐组成的新型微载体,用作三维支架,用于培养和扩增对骨组织工程有效的细胞。磷酸钙水泥-海藻酸盐复合微载体是通过在油浴中乳化以不同比例混合的复合水溶液(磷酸钙水泥粉末/藻酸盐溶液= 0.8-1.2)并随后在球化过程中对组合物进行原位硬化而生产的。此外,通过将产生的微载体浸入水中并随后进行冷冻干燥过程,可以容易地在固体微载体中产生多孔结构。由于在磷酸钙水泥中的α-磷酸三钙相转化成碳酸盐-羟基磷灰石,在潮湿条件下,骨矿物状磷灰石纳米微晶在磷酸钙水泥-海藻酸盐微载体上迅速生长。经证实,在微球支架上培养的成骨细胞是可行的,在培养的14天中具有活跃的增殖潜力,并且通过测定碱性磷酸酶的活性可以证实它们的成骨分化。本文开发的原位硬化磷酸钙水泥-藻酸盐微载体可用作骨的细胞递送和组织工程的潜在三维支架。

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