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首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >The study on the degradation and mineralization mechanism of ion-doped calcium polyphosphate in vitro.
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The study on the degradation and mineralization mechanism of ion-doped calcium polyphosphate in vitro.

机译:体外离子掺杂钙多磷酸钙的降解和矿化机理研究。

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摘要

Doping with different trace elements can significantly change the original degradability, mineralization, and biological properties of bone repair material. According to the fundamental research on prepared calcium polyphosphate (CPP) as a bone repair material by our group, this article began further exploration on the effect of doping different trace elements (K, Na, Mg, Zn, Sr) into CPP on its degradability and mineralization soaking in simulated body fluids. The results indicated that doped elements significantly changed the lattice parameters and cell volume of crystal, resulted in different types of crystal defect and surface charge distribution, and consequently changed the original degradability and mineralization of CPP. The conclusion is that doped ions with relatively smaller ionic radius and equivalent positive charge compared with Ca(2+) can greatly promote the degradability and mineralization of CPP, whereas doped ions with equivalent ionic radius and diverse positive charges compared with Ca(2+) provide less contribution on promoting the degradability and mineralization or even counteract.
机译:用不同的微量元素掺杂可以显着改变骨修复材料的原始可降解性,矿化和生物学性质。根据我们组的骨磷酸钙(CPP)作为骨修复材料的基本研究,本文开始进一步探索将不同的微量元素(K,Na,Mg,Zn,Sr)掺入CPP的降解性和矿化在模拟体液中浸泡。结果表明,掺杂元素显着改变了晶格参数和晶体的细胞体积,导致不同类型的晶体缺陷和表面电荷分布,因此改变了CPP的原始降解性和矿化。结论是与Ca(2+)相比,具有相对较小的离子半径和等同的阳性电荷的掺杂离子可以大大促进CPP的可降解性和矿化,而与Ca(2+相比,具有等效离子半径和多样的正电荷的掺杂离子为促进降解性和矿化或甚至抵消提供较少的贡献。

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