材料科学
生物相容性
生物医学工程
自愈水凝胶
脚手架
陶瓷
组织工程
骨组织
3D打印
生物活性玻璃
骨癌
复合数
纳米技术
复合材料
癌症
医学
冶金
高分子化学
内科学
作者
Gareth Turnbull,Jon Clarke,F. Picard,Philip Riches,Luanluan Jia,Fengxuan Han,Bin Li,Wenmiao Shu
标识
DOI:10.1016/j.bioactmat.2017.10.001
摘要
Bone is the second most commonly transplanted tissue worldwide, with over four million operations using bone grafts or bone substitute materials annually to treat bone defects. However, significant limitations affect current treatment options and clinical demand for bone grafts continues to rise due to conditions such as trauma, cancer, infection and arthritis. Developing bioactive three-dimensional (3D) scaffolds to support bone regeneration has therefore become a key area of focus within bone tissue engineering (BTE). A variety of materials and manufacturing methods including 3D printing have been used to create novel alternatives to traditional bone grafts. However, individual groups of materials including polymers, ceramics and hydrogels have been unable to fully replicate the properties of bone when used alone. Favourable material properties can be combined and bioactivity improved when groups of materials are used together in composite 3D scaffolds. This review will therefore consider the ideal properties of bioactive composite 3D scaffolds and examine recent use of polymers, hydrogels, metals, ceramics and bio-glasses in BTE. Scaffold fabrication methodology, mechanical performance, biocompatibility, bioactivity, and potential clinical translations will be discussed.
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