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首页> 外文期刊>Journal of biomedical materials research, Part A >A novel porous bioceramics scaffold by accumulating hydroxyapatite spherules for large bone tissue engineering in vivo. I. Preparation and characterization of scaffold
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A novel porous bioceramics scaffold by accumulating hydroxyapatite spherules for large bone tissue engineering in vivo. I. Preparation and characterization of scaffold

机译:一种新型的多孔生物陶瓷支架,通过在体内堆积羟基磷灰石小球用于大型骨组织工程。一,支架的制备与表征

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摘要

A novel scaffold with large dimension of 3-4 cm in length and 1-1.5 cm in diameter was designed and fabricated for engineering large bone tissue in vivo. The scaffold was constructed by filling hydroxyapatite (HA) spherules into a porous HA tube. The HA spherules were prepared by chitin sol emulsification in oil and gelation in situ, and their sizes can be controlled by parameters such as stirring rate and oil temperature. Accumulation of the HA spherules formed the interconnected pores in the scaffold, and the porosity and microstructure of the scaffold can be controlled by varying the size and miroporous structure of the HA spherules. Porous HA tube coated with a thin layer of poly(L-lactic acid) (PLA) held the HA spherules together and provided the initial strength of scaffolds. HA spherules can be easily compounded with biological substance, such as comminuted bone granules, before being filled into the HA tubes. A pilot study is underway to use the hybrid scaffolds at different sites such as muscle, peritoneum, and bone side.
机译:设计并制造了一种新型的脚手架,其长度为3-4厘米,直径为1-1.5厘米,可以在体内工程化大型骨组织。通过将羟基磷灰石(HA)小球填充到多孔HA管中来构造支架。通过在油中几丁质溶胶乳化并原位凝胶化制备HA小球,其大小可通过搅拌速率和油温等参数进行控制。 HA小球的积累形成了支架中的互连孔,并且可以通过改变HA小球的尺寸和微结构来控制支架的孔隙率和微结构。涂有聚L-乳酸(PLA)薄层的多孔HA管将HA小球固定在一起,并提供了支架的初始强度。在将HA小球填充到HA管中之前,可以轻松地将其与生物物质(例如粉碎的骨颗粒)混合。目前正在进行一项初步研究,以在不同部位(例如肌肉,腹膜和骨骼侧)使用混合支架。

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