Li Jiao Jiao, Ebied Mohamed, Xu Jen, Zreiqat Hala
Biomaterials and Tissue Engineering Research Unit, School of Aerospace, Mechanical and Mechatronic Engineering, University of Sydney, Sydney, NSW, 2006, Australia.
Raymond Purves Bone and Joint Research Laboratories, Kolling Institute, Northern Sydney Local Health District, Sydney Medical School Northern, University of Sydney, St Leonards, NSW, 2065, Australia.
Adv Healthc Mater. 2018 Mar;7(6):e1701061. doi: 10.1002/adhm.201701061. Epub 2017 Dec 27.
The successful regeneration of bone tissue to replace areas of bone loss in large defects or at load-bearing sites remains a significant clinical challenge. Over the past few decades, major progress is achieved in the field of bone tissue engineering to provide alternative therapies, particularly through approaches that are at the interface of biology and engineering. To satisfy the diverse regenerative requirements of bone tissue, the field moves toward highly integrated approaches incorporating the knowledge and techniques from multiple disciplines, and typically involves the use of biomaterials as an essential element for supporting or inducing bone regeneration. This review summarizes the types of approaches currently used in bone tissue engineering, beginning with those primarily based on biology or engineering, and moving into integrated approaches in the areas of biomaterial developments, biomimetic design, and scalable methods for treating large or load-bearing bone defects, while highlighting potential areas for collaboration and providing an outlook on future developments.
成功实现骨组织再生以替代大的骨缺损区域或承重部位的骨丢失,仍然是一项重大的临床挑战。在过去几十年中,骨组织工程领域取得了重大进展,以提供替代疗法,特别是通过生物学与工程学交叉的方法。为了满足骨组织多样化的再生需求,该领域正朝着高度整合的方法发展,这些方法融合了多学科的知识和技术,并且通常涉及使用生物材料作为支持或诱导骨再生的关键要素。本综述总结了目前骨组织工程中使用的方法类型,从主要基于生物学或工程学的方法开始,进而介绍生物材料开发、仿生设计以及治疗大的或承重骨缺损的可扩展方法等领域的整合方法,同时突出潜在的合作领域并展望未来发展。