Islam Md Towhidul, Felfel Reda M, Abou Neel Ensanya A, Grant David M, Ahmed Ifty, Hossain Kazi M Zakir
Advanced Materials Research Group, Faculty of Engineering, University of Nottingham, Nottingham, UK.
Physics Department, Faculty of Science, Mansoura University, Mansoura, Egypt.
J Tissue Eng. 2017 Jul 21;8:2041731417719170. doi: 10.1177/2041731417719170. eCollection 2017 Jan-Dec.
An overview of the formation of calcium phosphate under in vitro environment on the surface of a range of bioactive materials (e.g. from silicate, borate, and phosphate glasses, glass-ceramics, bioceramics to metals) based on recent literature is presented in this review. The mechanism of bone-like calcium phosphate (i.e. hydroxyapatite) formation and the test protocols that are either already in use or currently being investigated for the evaluation of the bioactivity of biomaterials are discussed. This review also highlights the effect of chemical composition and surface charge of materials, types of medium (e.g. simulated body fluid, phosphate-buffered saline and cell culture medium) and test parameters on their bioactivity performance. Finally, a brief summary of the biomedical applications of these newly formed calcium phosphate (either in the form of amorphous or apatite) is presented.
基于近期文献,本综述介绍了在体外环境下一系列生物活性材料(如硅酸盐、硼酸盐和磷酸盐玻璃、微晶玻璃、生物陶瓷到金属)表面磷酸钙的形成概况。讨论了类骨磷酸钙(即羟基磷灰石)的形成机制以及已在使用或目前正在研究的用于评估生物材料生物活性的测试方案。本综述还强调了材料的化学成分和表面电荷、介质类型(如模拟体液、磷酸盐缓冲盐水和细胞培养基)以及测试参数对其生物活性性能的影响。最后,简要总结了这些新形成的磷酸钙(无定形或磷灰石形式)的生物医学应用。