Materials Science and Engineering Program, Department of Mechanical and Aerospace Engineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, CA 92093-0411, USA.
Calcif Tissue Int. 2011 May;88(5):351-61. doi: 10.1007/s00223-011-9462-8. Epub 2011 Jan 28.
Bone is a hierarchically structured composite consisting of a protein phase (type I collagen) and a mineral phase (carbonated apatite). The objective of this study was to investigate the hierarchical structure of mineral in mature bone. A method to completely deproteinize bone without altering the original structure is developed, and the completion is confirmed by protein analysis techniques. Stereoscopy and field emission electron microscopy are used to examine the structural features from submillimeter- to micrometer- to nanometer-length scales of bovine femur cancellous bone. Stereoscopic images of fully deproteinized and demineralized bovine femur cancellous bone samples show that fine trabecular architecture is unaltered and the microstructural features are preserved, indicating the structural integrity of mineral and protein constituents. SEM revealed that bone minerals are fused together and form a sheet-like structure in a coherent manner with collagen fibrils. Well-organized pore systems are observed at varying hierarchical levels. Mineral sheets are peeled off and folded after compressive deformation, implying strong connection between individual crystallites. Results were compared with commercially available heat-deproteinized bone (Bio-Oss(®)), and evidence showed consistency in bone mineral structure. A two-phase interpenetrating composite model of mature bone is proposed and discussed.
骨是一种具有层次结构的复合材料,由蛋白质相(I 型胶原)和矿物质相(碳酸磷灰石)组成。本研究旨在研究成熟骨中矿物质的层次结构。开发了一种完全去除蛋白质而不改变原始结构的方法,并通过蛋白质分析技术确认了其完成情况。体视学和场发射电子显微镜用于检查从亚毫米到微米到纳米长度尺度的牛股骨松质骨的结构特征。完全脱蛋白和脱矿牛股骨松质骨样品的体视学图像表明,精细的小梁结构没有改变,微观结构特征得以保留,表明矿物质和蛋白质成分的结构完整性。SEM 显示骨矿物质融合在一起,以连贯的方式与胶原纤维形成片状结构。在不同的层次水平上观察到组织良好的孔系统。在压缩变形后,矿物质薄片被剥落和折叠,表明单个晶粒之间有很强的连接。结果与市售的热去蛋白骨(Bio-Oss®)进行了比较,证据表明骨矿物质结构一致。提出并讨论了成熟骨的两相互穿复合材料模型。