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Amelogenin Affects Brushite Crystal Morphology and Promotes Its Phase Transformation to Monetite

机译:Amelogenin影响透钙铁矿晶体形态并促进其相转变为莫纳石

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摘要

Amelogenin protein is involved in organized apatite crystallization during enamel formation. Brushite (CaHPO4·2H2O), one of the precursors of hydroxyapatite mineralization in vitro, has been used for fabrication of biomaterials for hard tissue repair. In order to explore its potential application in biomimetic material synthesis, we studied the influence of the enamel protein amelogenin on brushite morphology and phase transformation to monetite. Our results show that amelogenin can adsorb onto the surface of brushite, leading to the formation of layered morphology on the (010) face. Amelogenin promoted the phase transformation of brushite into monetite (CaHPO4) in the dry state, presumably by interacting with crystalline water layers in brushite unit cells. Changes to the crystal morphology mediated by amelogenin continued even after the phase transformation from brushite to monetite, leading to the formation of organized platelets with an interlocked structure. This effect of amelogenin on brushite morphology and the phase transformation to monetite could provide a new approach to developing biomimetic materials.
机译:釉质形成过程中,melogenin蛋白与有组织的磷灰石结晶有关。透钙磷石(CaHPO4·2H2O)是羟基磷灰石体外矿化的前体之一,已被用于制造用于硬组织修复的生物材料。为了探究其在仿生材料合成中的潜在应用,我们研究了釉质蛋白釉原蛋白对透钙磷石形态和相转变为褐铁矿的影响。我们的结果表明,牙釉蛋白可以吸附到透钙磷石的表面上,从而导致在(010)面上形成分层的形态。 Amelogenin可能通过与透钙铁石晶胞中的结晶水层相互作用,促进了干燥状态下透钙铁矿向莫纳石(CaHPO4)的相变。甚至在从透钙磷石到芒硝的相变后,牙釉蛋白介导的晶体形态变化仍在继续,导致形成有互锁结构的有组织的血小板。牙釉蛋白对透钙磷石形态和相转变为褐铁矿的这种作用可提供一种开发仿生材料的新方法。

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