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Nanostructure, osteopontin, and mechanical properties of calcitic avian eggshell

机译:钙质禽蛋壳的纳米结构,骨桥蛋白和力学性能

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Avian (and formerly dinosaur) eggshells form a hard, protective biomineralized chamber for embryonic growth—an evolutionary strategy that has existed for hundreds of millions of years. We show in the calcitic chicken eggshell how the mineral and organic phases organize hierarchically across different length scales and how variation in nanostructure across the shell thickness modifies its hardness, elastic modulus, and dissolution properties. We also show that the nanostructure changes during egg incubation, weakening the shell for chick hatching. Nanostructure and increased hardness were reproduced in synthetic calcite crystals grown in the presence of the prominent eggshell protein osteopontin. These results demonstrate the contribution of nanostructure to avian eggshell formation, mechanical properties, and dissolution.
机译:禽(和以前的恐龙)蛋壳形成了坚硬的,保护性的生物矿化室,用于胚胎生长-这种进化策略已经存在了数亿年。我们在钙质鸡蛋壳中显示出矿物质和有机物相如何在不同的长度尺度上分层组织,以及整个壳厚度的纳米结构变化如何改变其硬度,弹性模量和溶解特性。我们还表明,在卵孵化过程中纳米结构发生了变化,从而削弱了雏鸡孵化的外壳。在突出的蛋壳蛋白骨桥蛋白存在下生长的合成方解石晶体中再现了纳米结构和增加的硬度。这些结果证明了纳米结构对禽蛋壳形成,机械性能和溶解的贡献。

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