首页> 外文期刊>International Journal of Nanomedicine >Zirconium, calcium, and strontium contents in magnesium based biodegradable alloys modulate the efficiency of implant-induced osseointegration
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Zirconium, calcium, and strontium contents in magnesium based biodegradable alloys modulate the efficiency of implant-induced osseointegration

机译:镁基可生物降解合金中的锆,钙和锶含量可调节植入物诱导的骨整合的效率

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Abstract: Development of new biodegradable implants and devices is necessary to meet the increasing needs of regenerative orthopedic procedures. An important consideration while formulating new implant materials is that they should physicochemically and biologically mimic bone-like properties. In earlier studies, we have developed and characterized magnesium based biodegradable alloys, in particular magnesium-zirconium (Mg-Zr) alloys. Here we have reported the biological properties of four Mg-Zr alloys containing different quantities of strontium or calcium. The alloys were implanted in small cavities made in femur bones of New Zealand White rabbits, and the quantitative and qualitative assessments of newly induced bone tissue were carried out. A total of 30 experimental animals, three for each implant type, were studied, and bone induction was assessed by histological, immunohistochemical and radiological methods; cavities in the femurs with no implants and observed for the same period of time were kept as controls. Our results showed that Mg-Zr alloys containing appropriate quantities of strontium were more efficient in inducing good quality mineralized bone than other alloys. Our results have been discussed in the context of physicochemical and biological properties of the alloys, and they could be very useful in determining the nature of future generations of biodegradable orthopedic implants.
机译:摘要:为满足再生骨科手术程序不断增长的需求,必须开发新的可生物降解的植入物和装置。在配制新的植入物材料时,一个重要的考虑因素是它们应在物理化学和生物学上模仿类骨质。在较早的研究中,我们已经开发并表征了镁基可生物降解的合金,尤其是镁-锆(Mg-Zr)合金。在这里,我们报告了四种含有不同数量的锶或钙的Mg-Zr合金的生物学特性。将该合金植入新西兰白兔股骨的小孔中,并对新诱导的骨组织进行了定量和定性评估。共研究了30只实验动物,每种植入物类型三只,并通过组织学,免疫组织化学和放射学方法评估了骨诱导。没有植入并且在相同时间段内观察到的股骨中的空洞被保持为对照。我们的结果表明,与其他合金相比,含有适量锶的Mg-Zr合金在诱导优质矿化骨方面更有效。我们的结果已在合金的物理化学和生物学特性的背景下进行了讨论,它们对于确定下一代可生物降解骨科植入物的性质可能非常有用。

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