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具有结合机械性能和生物学性能的砖石结构微观结构的仿生生物材料。

Bioinspired Biomaterials with a Brick-and-Mortar Microstructure Combining Mechanical and Biological Performance.

作者信息

Li Tian, Ma Bing, Xue Jianmin, Zhai Dong, Zhao Pengyu, Chang Jiang, Wu Chengtie

机构信息

State Key Laboratory of High Performance Ceramics and Superfine Microstructure, Shanghai Institute of Ceramics Chinese Academy of Sciences, No.1295 Dingxi Road, Shanghai, 200050, P. R. China.

Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, No,19(A) Yuquan Road, Beijing, 100049, P. R. China.

出版信息

Adv Healthc Mater. 2020 Feb;9(4):e1901211. doi: 10.1002/adhm.201901211. Epub 2020 Jan 15.

DOI:10.1002/adhm.201901211
PMID:31944597
Abstract

The fabrication of bone regeneration biomaterials, which simultaneously possess superior mechanical performances and excellent bioactivity, remains challenging because these properties are usually mutually exclusive. Herein, inspired by the brick-and-mortar architecture of nacre, lamellar silicate-based bioceramic composites are successfully prepared by constructing orderly layered bioceramics infiltrated with a biomedical resin interlayer via the bidirectional freezing technique. The lamellar composites possess high strength and proper Young's moduli, which match with human cortical bone. Furthermore, the lamellar composites can release bioactive ions with a controlled profile, which significantly enhance the cell proliferation of both rabbit bone mesenchymal stem cells and periodontal ligament cells in vitro. Moreover, with the degradation of silicate bioceramics in vivo, newly formed bone tissue can grow into the materials to present the bioceramic/new bone/resin sandwich-like lamellar microstructure. The silicate-based bioceramic composites with brick-and-mortar architecture represent an excellent biomaterial in combination of superior mechanical performances matching that of human cortical bone, and excellent bioactivity for potential load-bearing bone regeneration.

摘要

同时具备卓越机械性能和出色生物活性的骨再生生物材料的制备仍然具有挑战性,因为这些特性通常相互排斥。在此,受珍珠母的砖-泥结构启发,通过双向冷冻技术构建有序层状生物陶瓷,并使其渗透生物医学树脂中间层,成功制备了层状硅酸盐基生物陶瓷复合材料。层状复合材料具有高强度和合适的杨氏模量,与人类皮质骨相匹配。此外,层状复合材料能够以可控的方式释放生物活性离子,这显著增强了兔骨髓间充质干细胞和牙周膜细胞在体外的增殖。而且,随着体内硅酸盐生物陶瓷的降解,新形成的骨组织能够长入材料中,呈现出生物陶瓷/新骨/树脂三明治样的层状微观结构。具有砖-泥结构的硅酸盐基生物陶瓷复合材料是一种优异的生物材料,它兼具与人类皮质骨相匹配的卓越机械性能以及对潜在承重骨再生的出色生物活性。

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