Dorozhkin Sergey V
Kudrinskaja sq. 1-155, Moscow 123242, Russia.
J Funct Biomater. 2015 Aug 7;6(3):708-832. doi: 10.3390/jfb6030708.
The state-of-the-art on calcium orthophosphate (CaPO4)-containing biocomposites and hybrid biomaterials suitable for biomedical applications is presented. Since these types of biomaterials offer many significant and exciting possibilities for hard tissue regeneration, this subject belongs to a rapidly expanding area of biomedical research. Through the successful combinations of the desired properties of matrix materials with those of fillers (in such systems, CaPO4 might play either role), innovative bone graft biomaterials can be designed. Various types of CaPO4-based biocomposites and hybrid biomaterials those are either already in use or being investigated for biomedical applications are extensively discussed. Many different formulations in terms of the material constituents, fabrication technologies, structural and bioactive properties, as well as both in vitro and in vivo characteristics have been already proposed. Among the others, the nano-structurally controlled biocomposites, those containing nanodimensional compounds, biomimetically fabricated formulations with collagen, chitin and/or gelatin, as well as various functionally graded structures seem to be the most promising candidates for clinical applications. The specific advantages of using CaPO4-based biocomposites and hybrid biomaterials in the selected applications are highlighted. As the way from a laboratory to a hospital is a long one and the prospective biomedical candidates have to meet many different necessities, the critical issues and scientific challenges that require further research and development are also examined.
本文介绍了适用于生物医学应用的含磷酸钙(CaPO4)生物复合材料和混合生物材料的最新进展。由于这类生物材料为硬组织再生提供了许多重大且令人兴奋的可能性,该主题属于生物医学研究中一个迅速发展的领域。通过将基质材料的所需特性与填料的特性成功结合(在这类体系中,CaPO4可能扮演任一角色),可以设计出创新的骨移植生物材料。文中广泛讨论了各种已用于生物医学应用或正在研究用于生物医学应用的CaPO4基生物复合材料和混合生物材料。在材料成分、制造技术、结构和生物活性特性以及体外和体内特性方面,已经提出了许多不同的配方。其中,纳米结构可控的生物复合材料、含有纳米尺寸化合物的生物复合材料、与胶原蛋白、几丁质和/或明胶仿生制造的配方以及各种功能梯度结构似乎是临床应用中最有前景的候选材料。文中强调了在所选应用中使用CaPO4基生物复合材料和混合生物材料的具体优势。由于从实验室到医院的路很长,未来的生物医学候选材料必须满足许多不同的需求,因此还研究了需要进一步研发的关键问题和科学挑战。