首页> 美国卫生研究院文献>Journal of the Royal Society Interface >Characterization of the phosphatic mineral of the barnacle Ibla cumingi at atomic level by solid-state nuclear magnetic resonance: comparison with other phosphatic biominerals
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Characterization of the phosphatic mineral of the barnacle Ibla cumingi at atomic level by solid-state nuclear magnetic resonance: comparison with other phosphatic biominerals

机译:固态核磁共振表征藤壶Ibla cumingi磷矿物质的原子水平:与其他磷矿物质的比较

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摘要

Ibliform barnacles are among the few invertebrate animals harnessing calcium phosphate to construct hard tissue. The 31P solid-state NMR (SSNMR) signal from the shell plates of Ibla cumingi (Iblidae) is broader than that of bone, and shifted by ca 1 ppm to low frequency. 1H–31P heteronuclear correlation (HETCOR) experiments show a continuum of different phosphorus/phosphate atomic environments, close to hydrogen populations with resonance frequencies between ca 10 and 20 ppm. Associated 1H and 31P chemical shifts argue the coexistence of weakly (high 31P frequency, low 1H frequency) to more strongly (lower 31P frequency, higher 1H frequency) hydrogen-bonded hydrogen phosphate-like molecular/ionic species. There is no resolved signal from discrete OH ions. 13C SSNMR shows chitin, protein and other organic biomolecules but, unlike bone, there are no significant atomic scale organic matrix–mineral contacts. The poorly ordered hydrogen phosphate-like iblid mineral is strikingly different, structurally and compositionally, from both vertebrate bone mineral and the more crystalline fluoroapatite of the linguliform brachiopods. It probably represents a previously poorly characterized calcium phosphate biomineral, the evolution of which may have reflected either the chemical conditions of ancestral seas or the mechanical advantages of phosphatic biomineralization over a calcium carbonate equivalent.
机译:梭形藤壶是少数利用磷酸钙构建硬组织的无脊椎动物。来自cumingi(Iblidae)壳板的 31 固态NMR(SSNMR)信号比骨头宽,并向低频移动约1 ppm。 1 H– 31 P异核相关性(HETCOR)实验显示出不同磷/磷酸盐原子环境的连续体,接近氢原子团,共振频率在10至20 ppm之间。关联的 1 H和 31 P化学位移表明弱(共高 31 P频率,低 1 H氢键键合的磷酸氢根样分子/离子种类(频率 31 P频率较低, 1 H频率较高)。没有来自离散OH -离子的分辨信号。 13 C SSNMR显示出几丁质,蛋白质和其他有机生物分子,但与骨骼不同,它没有显着的原子级有机基质-矿物质接触。排序不佳的磷酸氢盐类iblid矿物在结构和组成上与脊椎动物的骨骼矿物和舌状腕足类的较结晶的氟磷灰石显着不同。它可能代表了以前表征不佳的磷酸钙生物矿物质,其演化可能反映了祖海的化学条件或磷酸盐生物矿化相对于碳酸钙等效物的机械优势。

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