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首页> 外文期刊>Current Journal of Applied Science and Technology >Microstructure and in vitro Bioactivity of MetalSubstituted Hydroxyapatite
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Microstructure and in vitro Bioactivity of MetalSubstituted Hydroxyapatite

机译:金属取代羟基磷灰石的微观结构和体外生物活性

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摘要

Pure Hydroxyapatite (HAp) nanoparticles doped with Mn~(2+) and Fe~(3+) ions were synthesized using wet chemical method (WCM). Samples were characterized by different spectroscopic techniques such as XRD, FTIR, and ESR. The measurements revealed that a typical HAp powder pattern was obtained.? Comparing with pure stoichiometric HAp, both Mn~(+2) substituted HAp (Mn-HAp) and Fe~(+3) substituted HAp (Fe-HAp) did not demonstrate significant structure deviation. Since ion exchange mechanism was applied for the preparation process, the morphology and particle size were not significantly affected. The FTIR absorption spectra of the doped samples are presented as absorption bands characterizing Mn~(+2), and Fe~(+3) which occupy different crystalline sites. The obtained data agrees well with that obtained from XRD. The crystal field parameters and degree of crystallinity for sites of these ions in the HAp matrix can be estimated. The addition of iron and manganese ions into hydroxyapatite results in improvement of the biological performance of the implant. Iron and manganese substituted hydroxyapatite has shown superior biological performance compared to its stoichiometric counterparts in vitro. The addition of such ions also enhances the magnetic properties of hydroxyapatite for the use in hyperthermia medical applications.
机译:采用湿化学法(WCM)合成了掺有Mn〜(2+)和Fe〜(3+)离子的纯羟基磷灰石(HAp)纳米粒子。通过不同的光谱技术(例如XRD,FTIR和ESR)对样品进行表征。测量表明获得了典型的HAp粉末图案。与纯化学计量的HAp相比,Mn〜(+2)取代的HAp(Mn-HAp)和Fe〜(+3)取代的HAp(Fe-HAp)均未显示明显的结构偏差。由于在制备过程中采用了离子交换机理,因此形态和粒径没有受到明显影响。掺杂样品的FTIR吸收光谱表示为吸收带,这些吸收带表征了Mn〜(+2)和Fe〜(+3),它们占据了不同的晶体位点。获得的数据与从XRD获得的数据非常吻合。可以估计HAp矩阵中这些离子的位点的晶体场参数和结晶度。在羟基磷灰石中添加铁和锰离子可改善植入物的生物学性能。铁和锰取代的羟基磷灰石与其体外化学计量的替代物相比显示出优异的生物学性能。此类离子的添加​​还增强了在高温医疗应用中使用的羟基磷灰石的磁性。

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