Tang Guoke, Liu Zhiqin, Liu Yi, Yu Jiangming, Wang Xing, Tan Zhihong, Ye Xiaojian
Department of Orthopedic Surgery, Tongren Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
Department of Spine Surgery, The Affiliated Zhuzhou Hospital of Xiangya School of Medical CSU, Hunan, China.
Front Cell Dev Biol. 2021 May 7;9:665813. doi: 10.3389/fcell.2021.665813. eCollection 2021.
The goal of a biomaterial is to support the bone tissue regeneration process at the defect site and eventually degrade and get replaced with the newly generated bone tissue. Biomaterials that enhance bone regeneration have a wealth of potential clinical applications from the treatment of non-union fractures to spinal fusion. The use of bone regenerative biomaterials from bioceramics and polymeric components to support bone cell and tissue growth is a longstanding area of interest. Recently, various forms of bone repair materials such as hydrogel, nanofiber scaffolds, and 3D printing composite scaffolds are emerging. Current challenges include the engineering of biomaterials that can match both the mechanical and biological context of bone tissue matrix and support the vascularization of large tissue constructs. Biomaterials with new levels of biofunctionality that attempt to recreate nanoscale topographical, biofactor, and gene delivery cues from the extracellular environment are emerging as interesting candidate bone regenerative biomaterials. This review has been sculptured around a case-by-case basis of current research that is being undertaken in the field of bone regeneration engineering. We will highlight the current progress in the development of physicochemical properties and applications of bone defect repair materials and their perspectives in bone regeneration.
生物材料的目标是在缺损部位支持骨组织再生过程,并最终降解,被新生成的骨组织所替代。增强骨再生的生物材料具有丰富的潜在临床应用,从治疗骨不连骨折到脊柱融合。使用来自生物陶瓷和聚合物成分的骨再生生物材料来支持骨细胞和组织生长是一个长期受关注的领域。最近,各种形式的骨修复材料如hydrogel、纳米纤维支架和3D打印复合支架正在兴起。当前的挑战包括设计出能够匹配骨组织基质的力学和生物学环境并支持大型组织构建体血管化的生物材料。具有新水平生物功能的生物材料试图从细胞外环境中重现纳米级地形、生物因子和基因传递线索,正成为有趣的候选骨再生生物材料。本综述围绕骨再生工程领域当前正在进行的逐个案例研究展开。我们将重点介绍骨缺损修复材料物理化学性质和应用开发的当前进展及其在骨再生中的前景。