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生理硅掺入骨矿物质需要将正硅酸代谢为二氧化硅。

Physiological silicon incorporation into bone mineral requires orthosilicic acid metabolism to SiO.

机构信息

School of Food Science and Nutrition, University of Leeds, Woodhouse Lane, Leeds LS2 9JT, UK.

Biomineral Research Group, Department of Veterinary Medicine, University of Cambridge, Madingley Road, Cambridge CB3 0ES, UK.

出版信息

J R Soc Interface. 2020 Jun;17(167):20200145. doi: 10.1098/rsif.2020.0145. Epub 2020 Jun 3.

Abstract

Under physiological conditions, the predominant form of bioavailable silicon (Si) is orthosilicic acid (OSA). In this study, given Si's recognized positive effect on bone growth and integrity, we examined the chemical form and position of this natural Si source in the inorganic bone mineral hydroxyapatite (HA). X-ray diffraction (XRD) of rat tibia bone mineral showed that the mineral phase was similar to that of phase-pure HA. However, theoretical XRD patterns revealed that at the levels found in bone, the 'Si effect' would be virtually undetectable. Thus we used first principles density functional theory calculations to explore the energetic and geometric consequences of substituting OSA into a large HA model. Formation energy analysis revealed that OSA is not favourable as a neutral interstitial substitution but can be incorporated as a silicate ion substituting for a phosphate ion, suggesting that incorporation will only occur under specific conditions at the bone-remodelling interface and that dietary forms of Si will be metabolized to simpler chemical forms, specifically [Formula: see text]. Furthermore, we show that this substitution, at the low silicate concentrations found in the biological environment, is likely to be a driver of calcium phosphate crystallization from an amorphous to a fully mineralized state.

摘要

在生理条件下,生物可利用硅(Si)的主要形式是正硅酸(OSA)。在这项研究中,鉴于 Si 对骨骼生长和完整性的公认积极影响,我们研究了这种天然 Si 来源在无机骨矿物质羟磷灰石(HA)中的化学形式和位置。大鼠胫骨骨矿物质的 X 射线衍射(XRD)表明,矿物质相类似于纯相 HA。然而,理论 XRD 图谱表明,在骨骼中发现的水平下,“Si 效应”几乎无法检测到。因此,我们使用第一性原理密度泛函理论计算来探索 OSA 取代大 HA 模型的能量和几何后果。形成能分析表明,OSA 作为中性间隙取代物是不利的,但可以作为硅酸盐离子取代磷酸离子掺入,这表明只有在骨骼重塑界面的特定条件下才会发生掺入,并且饮食形式的 Si 将被代谢为更简单的化学形式,特别是 [Formula: see text]。此外,我们表明,在生物环境中发现的低硅酸盐浓度下,这种取代很可能是从无定形状态向完全矿化状态促进磷酸钙结晶的驱动力。

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