Department of Applied Chemistry, Meiji University School of Science and Technology.
Biol Pharm Bull. 2013;36(11):1654-61. doi: 10.1248/bpb.b13-00439.
Hydroxyapatite [Ca10(PO4)6(OH)2; HAp] is the mineral component of vertebrate hard tissues and an important raw material for biomaterials. The HAp crystal belongs to a hexagonal system and has two types of crystal plane with different atomic arrangements: positively charged calcium ions are mainly present in the a(b)-planes, while negatively charged phosphate ions and hydroxyl groups are mainly present in the c-planes. In vertebrate long bone surfaces, HAp crystals have a c-axis orientation, which leads to the development of the a(b)-plane; while in tooth enamel surfaces, they have an a(b)-axis orientation, which leads to the development of the c-plane. However, it is not clear why the orientations of long bone and tooth enamel are in different crystal planes. In order to clarify this question, we have synthesized single-crystal apatite particles with preferred orientation to the a- and c-axes as models for bone and teeth enamel. This review first describes the syntheses process of single-crystal apatite particles with preferred orientation to a(b)- and c-axes and then discusses specific protein adsorption to the crystal surface of the resulting plate- and fiber-shaped apatite particles with different surface charges. In addition, porous apatite-fiber scaffolds (AFSs) fabricated using the fiber-shaped apatite particles and their application to tissue engineering of bone are described on the basis of the three-dimensional cell culture of mesenchymal stem cells derived from rat bone marrow using the AFS settled into a radial-flow bioreactor.
羟基磷灰石[Ca10(PO4)6(OH)2; HAp]是脊椎动物硬组织的矿物成分,也是生物材料的重要原料。HAp 晶体属于六方晶系,具有两种不同原子排列的晶面类型:带正电荷的钙离子主要存在于 a(b)-平面,而带负电荷的磷酸根离子和羟基主要存在于 c-平面。在脊椎动物长骨表面,HAp 晶体具有 c 轴取向,导致 a(b)-平面的发展;而在牙釉质表面,它们具有 a(b)-轴取向,导致 c-平面的发展。然而,目前尚不清楚为什么长骨和牙釉质的取向位于不同的晶面。为了阐明这个问题,我们合成了具有 a-和 c-轴择优取向的单晶磷灰石颗粒作为骨和牙釉质的模型。本综述首先描述了具有 a(b)-和 c-轴择优取向的单晶磷灰石颗粒的合成过程,然后讨论了特定蛋白质在不同表面电荷的板状和纤维状磷灰石颗粒晶体表面的吸附。此外,还基于使用纤维状磷灰石颗粒在径向流生物反应器中沉降的 AFS 对大鼠骨髓间充质干细胞的三维培养,描述了多孔磷灰石纤维支架(AFS)的制备及其在骨组织工程中的应用。