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Atomistic modeling of apatite-collagen composites from molecular dynamics simulations extended to hyperspace

机译:从分子动力学模拟扩展到超空间的磷灰石-胶原复合材料的原子建模

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摘要

The preparation of atomistic models of apatite-collagen composite mimicking enamel at length scales in the range of 1–10 nanometers is outlined. This bio-composite is characterized by a peculiar interplay of the collagen triplehelix and the apatite crystal structure. Structural coherence is however only obtained after drastic rearrangements, namely the depletion of protein-protein hydrogen bonds and the incorporation of calcium triangles which are stabilized by salt-bridges with the collagen molecule. Starting from an isolated collagen triple helix and a single-crystalline apatite structure, a composite model is obtained by gradually merging the two components via an additional (hyperspace) coordinate. This approach allows smooth structural relaxation of both components whilst avoiding singularities in potential energy due to atomic overlap.
机译:概述了仿生搪瓷的磷灰石-胶原复合材料原子模型的制备,其长度范围为1-10纳米。该生物复合物的特征在于胶原三螺旋和磷灰石晶体结构的特殊相互作用。然而,只有在剧烈的重排之后,即蛋白质-蛋白质氢键的耗尽和钙三角的掺入才获得结构上的一致性,所述钙三角通过与胶原蛋白分子的盐桥而稳定。从孤立的胶原蛋白三螺旋和单晶磷灰石结构开始,通过附加的(超空间)坐标逐渐合并两个组件,即可获得复合模型。这种方法可以使两个组件的结构松弛,同时避免由于原子重叠而引起的势能奇异。

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