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Strongly bound citrate stabilizes the apatite nanocrystals in bone

机译:牢固结合的柠檬酸盐可稳定骨骼中的磷灰石纳米晶体

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Nanocrystals of apatitic calcium phosphate impart the organic-inorganic nanocomposite in bone with favorable mechanical properties. So far, the factors preventing crystal growth beyond the favorable thickness of ca. 3 nm have not been identified. Here we show that the apatite surfaces are studded with strongly bound citrate molecules, whose signals have been identified unambiguously by multinuclear magnetic resonance (NMR) analysis. NMR reveals that bound citrate accounts for 5.5 wt% of the organic matter in bone and covers apatite at a density of about 1 molecule per (2 nm)~2, with its three carboxylate groups at distances of 0.3 to 0.45 nm from the apatite surface. Bound citrate is highly conserved, being found in fish, avian, and mammalian bone, which indicates its critical role in interfering with crystal thickening and stabilizing the apatite nanocrystals in bone.
机译:磷灰石磷酸钙的纳米晶体赋予骨骼中的有机无机纳米复合材料良好的机械性能。到目前为止,阻止晶体生长的因素超出了约ca的有利厚度。尚未确定3 nm。在这里,我们显示磷灰石表面散布着牢固结合的柠檬酸盐分子,其信号已通过多核磁共振(NMR)分析得到明确识别。 NMR显示,结合的柠檬酸盐占骨骼中有机物的5.5 wt%,并且以约每1(2 nm)〜2分子的密度覆盖磷灰石,其三个羧酸盐基团距磷灰石表面的距离为0.3至0.45 nm 。绑定的柠檬酸盐是高度保守的,存在于鱼,禽和哺乳动物的骨骼中,这表明其在干扰晶体增厚和稳定骨骼中磷灰石纳米晶体方面起着至关重要的作用。

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