Division of Craniofacial Function Engineering, Tohoku University Graduate School of Dentistry, 4-1, Seiryo-machi, Aoba-ku, Sendai 980-8575, Japan.
Acta Biomater. 2010 Sep;6(9):3379-87. doi: 10.1016/j.actbio.2010.04.002. Epub 2010 Apr 4.
Octacalcium phosphate (OCP), which is structurally similar to hydroxyapatite (HA), is a possible precursor of bone apatite crystals. Although disagreement remains as to whether OCP comprises the initial mineral crystals in the early stage of bone mineralization, the results of recent biomaterial studies using synthetic OCP indicate the potential role of OCP as a bone substitute material, owing to its highly osteoconductive and biodegradable characteristics. OCP tends to convert to HA not only in an in vitro environment, but also as an implant in bone defects. Several lines of evidence from both in vivo and in vitro studies suggest that the conversion process could be involved in the stimulatory capacity of OCP for osteoblastic differentiation and osteoclast formation. However, the osteoconductivity of OCP cannot always be secured if an OCP with distinct crystal characteristics is used, because the stoichiometry and microstructure of OCP crystals greatly affect bone-regenerative properties. Osteoconductivity and stimulatory capabilities may be caused by the chemical characteristics of OCP, which allows the release or exchange of calcium and phosphate ions with the surrounding of this salt, and its tendency to grow towards specific crystal faces, which could be a variable of the synthesis condition. This paper reviews the effect of calcium phosphates on osteoblastic activity and bone regeneration, with a special emphasis on OCP, since OCP seems to be performing better than other calcium phosphates in vivo.
八钙磷灰石(OCP)在结构上与羟磷灰石(HA)相似,是骨磷灰石晶体的可能前体。尽管关于 OCP 是否构成骨矿化早期初始矿物晶体仍存在分歧,但最近使用合成 OCP 的生物材料研究结果表明,OCP 具有作为骨替代材料的潜力,因为其具有高度的骨诱导性和可生物降解性。OCP 不仅在体外环境中,而且在骨缺损的植入物中,都倾向于转化为 HA。来自体内和体外研究的几条证据表明,转化过程可能参与了 OCP 对成骨细胞分化和破骨细胞形成的刺激能力。然而,如果使用具有独特晶体特征的 OCP,则不能始终确保 OCP 的骨诱导性,因为 OCP 晶体的化学计量和微观结构极大地影响了骨再生特性。OCP 的骨诱导性和刺激能力可能是由其化学特性引起的,这允许与周围环境释放或交换钙和磷酸盐离子,并且其倾向于朝着特定的晶体面生长,这可能是合成条件的一个变量。本文综述了钙磷灰石对成骨细胞活性和骨再生的影响,特别强调了 OCP,因为 OCP 在体内似乎比其他钙磷灰石表现更好。