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一种负载透明质酸-明胶水凝胶的双相磷酸钙颗粒混合复合系统用于骨再生。

A hybrid composite system of biphasic calcium phosphate granules loaded with hyaluronic acid-gelatin hydrogel for bone regeneration.

作者信息

Faruq Omar, Kim Boram, Padalhin Andrew R, Lee Gun Hee, Lee Byong-Taek

机构信息

1 Department of Regenerative Medicine, College of Medicine, Soonchunhyang University, Chungnam, Cheonan City, Republic of Korea.

2 Institute of Tissue Regeneration, College of Medicine, Soonchunhyang University, Chungnam, Cheonan City, Republic of Korea.

出版信息

J Biomater Appl. 2017 Oct;32(4):433-445. doi: 10.1177/0885328217730680. Epub 2017 Sep 24.

Abstract

An ideal bone substitute should be made of biocompatible materials that mimic the structure, characteristics, and functions of natural bone. Many researchers have worked on the fabrication of different bone scaffold systems including ceramic-polymer hybrid system. In the present study, we incorporated hyaluronic acid-gelatin hydrogel to micro-channeled biphasic calcium phosphate granules as a carrier to improve cell attachment and proliferation through highly interconnected porous structure. This hybrid system is composed of ceramic biphasic calcium phosphate granules measuring 1 mm in diameter with seven holes and hyaluronic acid-gelatin hydrogel. This combination of biphasic calcium phosphate and hyaluronic acid-gelatin retained suitable characteristics for bone regeneration. The resulting scaffold had a porosity of 56% with a suitable pore sizes. The mechanical strength of biphasic calcium phosphate granule increased after loading hyaluronic acid-gelatin from 4.26 ± 0.43 to 6.57 ± 0.25 MPa, which is highly recommended for cancellous bone substitution. Swelling and degradation rates decreased in the hybrid scaffold compared to hydrogel due to the presence of granules in hybrid scaffold. In vitro cytocompatibility studies were observed by preosteoblasts (MC3T3-E1) cell line and the result revealed that biphasic calcium phosphate/hyaluronic acid-gelatin significantly increased cell growth and proliferation compared to biphasic calcium phosphate granules. Analysis of micro-computed tomography data and stained tissue sections from the implanted samples showed that the hybrid scaffold had good osseointegration and better bone formation in the scaffold one and two months postimplantation. Histological section confirmed the formation of dense collagenous tissue and new bone in biphasic calcium phosphate/hyaluronic acid-gelatin scaffolds at two months. Our study demonstrated that such hybrid biphasic calcium phosphate/hyaluronic acid-gelatin scaffold is a promising system for bone regeneration.

摘要

理想的骨替代物应由生物相容性材料制成,这些材料应模仿天然骨的结构、特性和功能。许多研究人员致力于不同骨支架系统的制造,包括陶瓷-聚合物混合系统。在本研究中,我们将透明质酸-明胶水凝胶与微通道双相磷酸钙颗粒结合作为载体,通过高度相互连接的多孔结构来改善细胞附着和增殖。这种混合系统由直径为1毫米、有七个孔的陶瓷双相磷酸钙颗粒和透明质酸-明胶水凝胶组成。双相磷酸钙与透明质酸-明胶的这种组合保留了适合骨再生的特性。所得支架的孔隙率为56%,孔径合适。负载透明质酸-明胶后,双相磷酸钙颗粒的机械强度从4.26±0.43兆帕增加到6.57±0.25兆帕,这对于松质骨替代是非常推荐的。由于混合支架中存在颗粒,与水凝胶相比,混合支架的肿胀和降解速率降低。通过前成骨细胞(MC3T3-E1)细胞系进行体外细胞相容性研究,结果表明,与双相磷酸钙颗粒相比,双相磷酸钙/透明质酸-明胶显著提高了细胞生长和增殖。对植入样品的微计算机断层扫描数据和染色组织切片的分析表明,混合支架在植入后1个月和2个月具有良好的骨整合和更好的支架内骨形成。组织学切片证实,在两个月时,双相磷酸钙/透明质酸-明胶支架中形成了致密的胶原组织和新骨。我们的研究表明,这种双相磷酸钙/透明质酸-明胶混合支架是一种有前途的骨再生系统。

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