Hayakawa Satoshi, Li Yaqi, Tsuru Kanji, Osaka Akiyoshi, Fujii Eiji, Kawabata Koji
Okayama University, Japan.
Acta Biomater. 2009 Jul;5(6):2152-60. doi: 10.1016/j.actbio.2009.02.018. Epub 2009 Feb 20.
Fabrication of nano- or micro-structured scaffolds to mimic structural and three-dimensional details of natural bone or teeth has been the subject of much interest, and this study proposes a new strategy for self-assembling one-dimensional hydroxyapatite (HAp) nanorods into organized superstructures. A nanometer-scale rod array of HAp having preferred orientation to the c-axis was successfully prepared simply by soaking calcium-containing silicate glass substrates in Na(2)HPO(4) aqueous solution at 80 degrees C for various periods. Those HAp rods grew perpendicularly to the glass surface, and the crystallites covered the glass surface uniformly, resulting in a "dental enamel-like" rod array structure consisting of "pine-leaf-like" structure units.
制备纳米或微结构支架以模拟天然骨骼或牙齿的结构和三维细节一直是备受关注的课题,并且本研究提出了一种将一维羟基磷灰石(HAp)纳米棒自组装成有序超结构的新策略。通过将含钙硅酸盐玻璃基板在80℃的Na₂HPO₄水溶液中浸泡不同时间,成功地制备了一种具有择优取向于c轴的HAp纳米尺度棒阵列。那些HAp棒垂直于玻璃表面生长,并且微晶均匀地覆盖玻璃表面,从而形成了由“松叶状”结构单元组成的“牙釉质样”棒阵列结构。