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Structural characterization of boron-containing glassy and semi-crystalline Biosilicate (R) by multinuclear NMR

机译:多核NMR的含硼玻璃和半结晶生物硅酸盐(R)的结构表征

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摘要

In vitro, in vivo, and clinical studies - including histopathological, cytotoxicity, and genotoxicity analyses over the past 25 years have proven the tremendous potential of Biosilicate (R) in appliance as osteoinductive powders, scaffolds and even monolithic pieces. Within continuing efforts to improve the properties of this bioactive material, in this article we explore the structural consequences of incorporating boron in small amounts and its effects on selected properties, as it is known to influence vital processes such as embryogenesis, bone growth, and psychomotor skills, among others. Solid state B-11 MAS NMR studies indicate that in the glassy precursor boron is likely present in the form of three-coordinate pyroborate units, with only minor fractions of four-coordinate species present. In contrast, P-31 MAS-NMR spectra reveal that phosphorus is almost exclusively present in the form of orthophosphate. The demand of the anionic borate network former for cationic charge compensation leads to an increase in average connectivity of the silicate network, as evident from Si-29 MAS NMR. P-31/B-11 dipolar recoupling experiments indicate negligible amounts of borate-phosphate linkages in these glasses, presumably because of the low concentrations of each element. Crystallization of the glassy Biosilicate (R) precursor produces crystalline NaCaPO4 and Na2CaSi2O6 as well as a residual amorphous material for which the fraction of four-coordinate boron is significantly increased and no B-O-P linkages can be detected. Surprisingly, we find that in this particular glass boron reduces the glass stability against crystallization and has only a weak influence upon the TRIS-buffer solution dissolution kinetics.
机译:在体外,体内和临床研究 - 包括过去25年的组织病理学,细胞毒性和遗传毒性分析,证明了在用作骨诱导粉末,支架甚至单片片中的生物硅酸盐(R)的巨大潜力。在继续努力改善这种生物活性材料的性质之外,在本文中,我们探讨了将硼掺入少量的结构后果及其对所选性质的影响,因为它已知影响胚胎发生,骨生长和精神运动等重要过程技能等。固态B-11MAS NMR研究表明,在玻璃状前体硼中可能以三坐标吡虫硼酸盐单元的形式存在,仅存在少量的四坐标物种。相反,p-31 mas-nmr光谱揭示了磷几乎完全以正磷酸盐的形式存在。对于阳离子电荷补偿的阴离子硼酸盐网络以前的需求导致硅酸盐网络的平均连接性增加,从Si-29 Mas NMR中显而易见。 P-31 / B-11偶极循环循环实验表明这些玻璃中的硼酸盐键合可忽略量的硼酸盐键,可能是因为每个元素的低浓度。玻璃生物硅酸盐(R)前体的结晶产生结晶NaCaPO4和Na 2 Casi2O6以及残留的无定形材料,其中四坐标硼的分数显着增加,并且可以检测到没有B-O-P键。令人惊讶的是,在这种特定的玻璃硼中发现,在结晶的玻璃稳定性降低玻璃稳定性,并且对Tris-Buffer溶液溶解动力学的影响弱。

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