首页> 外文会议>NSTI Nanotechnology Conference and Trade Show(NSTI Nanotech 2005) vol.1; 20050508-12; Anaheim,CA(US) >Amelogenin Nanospheres Supra-Molecular Assembly and the Preferential Orientation of Apatite Crystals
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Amelogenin Nanospheres Supra-Molecular Assembly and the Preferential Orientation of Apatite Crystals

机译:Amelogenin纳米球超分子组装和磷灰石晶体的优先取向。

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Dental enamel is a bio-ceramic formed through a cascade of intra and extra-cellular events among which protein self-assembly is a critical step. Amelogenin self-assembly into nanospheres has been proposed as a key factor in controlling the oriented and elongated growth of enamel crystals. This manuscript is a short review of our recent in vitro study on the process of amelogenin self-assembly into higher order structures. We report characterization of birefringent micro-ribbons formed by the supramolecular assembly of amelogenin nanospheres (10-25nm) through nano-chains of >100nm in length. Mineralization of the micro-ribbons resulted in the formation of remarkably ordered apatite crystals oriented with their c-axes parallel to the long ribbon axes. The strong tendency of amelogenin to form nanospheres which self-assemble into linear structures provides a new insight into the function of amelogenin as a template for the oriented growth of crystals during enamel biomineraization.
机译:牙釉质是通过一系列细胞内和细胞外事件形成的生物陶瓷,其中蛋白质的自组装是关键步骤。 Amelogenin自组装成纳米球已被提议作为控制搪瓷晶体取向和拉长生长的关键因素。该手稿是对我们最近对釉原蛋白自组装成更高阶结构的过程的体外研究的简短回顾。我们报告表征的双折射微丝带通过长度> 100nm的纳米链通过amelogenin纳米球(10-25nm)的超分子组装形成的。微带的矿化导致形成有序排列的磷灰石晶体,其c轴平行于长带轴。牙釉蛋白形成自组装成线性结构的纳米球的强烈趋势为牙釉蛋白作为牙釉质生物矿化过程中晶体定向生长的模板的功能提供了新的见识。

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