Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.
Department of Structural Biology, Weizmann Institute of Science, Rehovot, Israel.
Acta Biomater. 2014 Sep;10(9):3815-26. doi: 10.1016/j.actbio.2014.05.024. Epub 2014 Jun 7.
Bone is a complex hierarchically structured family of materials that includes a network of cells and their interconnected cell processes. New insights into the 3-D structure of various bone materials (mainly rat and human lamellar bone and minipig fibrolamellar bone) were obtained using a focused ion beam electron microscope and the serial surface view method. These studies revealed the presence of two different materials, the major material being the well-known ordered arrays of mineralized collagen fibrils and associated macromolecules, and the minor component being a relatively disordered material composed of individual collagen fibrils with no preferred orientation, with crystals inside and possibly between fibrils, and extensive ground mass. Significantly, the canaliculi and their cell processes are confined within the disordered material. Here we present a new hierarchical scheme for several bone tissue types that incorporates these two materials. The new scheme updates the hierarchical scheme presented by Weiner and Wagner (1998). We discuss the structures at different hierarchical levels with the aim of obtaining further insights into structure-function-related questions, as well as defining some remaining unanswered questions.
骨骼是一种复杂的、具有层次结构的材料家族,其中包括细胞网络及其相互连接的细胞过程。通过使用聚焦离子束电子显微镜和连续表面观察方法,我们对各种骨骼材料(主要是大鼠和人板层骨和小型猪纤维板层骨)的 3D 结构有了新的认识。这些研究揭示了两种不同的材料的存在,主要材料是众所周知的矿化胶原纤维和相关大分子的有序排列,次要成分是由单个胶原纤维组成的相对无序材料,没有优先取向,内部和可能在纤维之间有晶体,以及广泛的基质。重要的是,管腔及其细胞过程被限制在无序材料内。在这里,我们提出了一个新的分层方案,其中包含了这两种材料,适用于几种骨骼组织类型。新方案更新了 Weiner 和 Wagner(1998)提出的分层方案。我们讨论了不同层次结构的结构,目的是进一步深入了解与结构-功能相关的问题,并确定一些仍未解答的问题。