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首页> 外文期刊>Acta biomaterialia >Investigation of alendronate-doped apatitic cements as a potential technology for the prevention of osteoporotic hip fractures: critical influence of the drug introduction mode on the in vitro cement properties.
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Investigation of alendronate-doped apatitic cements as a potential technology for the prevention of osteoporotic hip fractures: critical influence of the drug introduction mode on the in vitro cement properties.

机译:阿仑膦酸盐掺杂的胶凝水泥作为一种预防骨质疏松性髋部骨折的潜在技术的研究:药物引入方式对体外水泥性能的关键影响。

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摘要

Combination of a bisphosphonate (BP) anti-osteoporotic drug, alendronate, with an apatitic calcium phosphate cement does not significantly affect the main properties of the biomaterial, in terms of injectability and setting time, provided that the BP is introduced chemisorbed onto calcium-deficient apatite, one of the components of the cement. In contrast to other modes of introducing the BP into the cement formulation, this mode allows to minimize alendronate release in the cement paste, thus limiting the setting retardant effect of the BP. An original approach based on high frequency impedance measurements is found to be a convenient method for in situ monitoring of the cement setting reaction. The release profile of the drug from a cement block under continuous flow conditions can be well described using a coupled chemistry/transport model, under simulated in vivo conditions. The results show that the released alendronate concentration is expected to be much lower than the cytotoxic concentration.
机译:双膦酸盐(BP)抗骨质疏松药物阿仑膦酸盐与无脂肪的磷酸钙水泥的组合在注射性和凝结时间方面不会显着影响生物材料的主要特性,但前提是将BP以化学方式引入到缺钙的情况下引入磷灰石,水泥的成分之一。与将BP引入水泥配方的其他方式相反,该方式可以使水泥浆中的阿仑膦酸盐释放降至最低,从而限制了BP的凝固阻滞作用。发现一种基于高频阻抗测量的原始方法是一种方便的现场监测水泥固化反应的方法。在模拟的体内条件下,可以使用化学/运输耦合模型很好地描述药物在连续流动条件下从水泥块的释放曲线。结果表明,预计释放的阿仑膦酸盐浓度将远低于细胞毒性浓度。

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