Lu Jingyi, Yu Huijun, Chen Chuanzhong
Shenzhen Research Institute of Shandong University Shenzhen 518057 Guangdong P. R. China
Key Laboratory of High-Efficiency and Clean Mechanical Manufacture (Shandong University), Ministry of Education, School of Mechanical Engineering, Shandong University Ji'nan 250061 Shandong P. R. China.
RSC Adv. 2018 Jan 9;8(4):2015-2033. doi: 10.1039/c7ra11278e. eCollection 2018 Jan 5.
Bone defects are a common disease threatening the health of many people. Calcium phosphate (CaP) is an ideal bone substitutive material that is widely used for bone repair due to its excellent biological properties including osteoinductivity, osteoconductivity and biodegradability. For this reason, investigation of these properties and the effects of various influencing factors is vital for modulating calcium phosphate during the design process to maximally satisfy clinical requirements. In this study, the latest studies on the biological properties of CaP biomaterials, including hydroxyapatite (HA), tricalcium phosphate (TCP), and biphasic calcium phosphate (BCP), have been summarized. Moreover, recent advances on how these properties are altered by different factors are reviewed. Considering the limited mechanical strength of CaP materials, this study also reviews CaP composites with different materials as improvement measures. Finally, perspectives regarding future developments of CaP materials are also provided.
骨缺损是一种威胁众多人健康的常见疾病。磷酸钙(CaP)是一种理想的骨替代材料,因其具有包括骨诱导性、骨传导性和生物可降解性在内的优异生物学特性而被广泛用于骨修复。因此,在设计过程中研究这些特性以及各种影响因素的作用对于调控磷酸钙以最大程度满足临床需求至关重要。在本研究中,总结了关于CaP生物材料(包括羟基磷灰石(HA)、磷酸三钙(TCP)和双相磷酸钙(BCP))生物学特性的最新研究。此外,还综述了不同因素如何改变这些特性的最新进展。考虑到CaP材料机械强度有限,本研究还综述了以不同材料作为改进措施的CaP复合材料。最后,还提供了关于CaP材料未来发展的展望。