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2O 5-SiO 2-Li 2O-Fe 2O 3 bioactive glasses: The effect of Li 2O-Fe 2O 3 content on the structure and in-vitro bioactivity]]>

机译:<![cdata [cao-p的合成和表征:inf place =“post”> 2 o 5 -sio < CE:INF PLACE =“POST”> 2 -I 2 O-FE 2 < / CE:INF> O 3 生物活性眼镜:LI 2 O-FE 2 O 3 含量在结构和体外生物活动上的内容]]>

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CaO-P2O5-SiO2-Li2O-Fe2O3magnetic bioactive glasses were prepared through an optimized sol-gel method. This study was emphasized on the effects of magnetic content addition on the bioactive glass properties. As the need arises, we study synthesized magnetic bioactive glass physical, rheological, and biocompatible properties. The morphology and composition of these glasses were characterized using X-ray diffraction (XRD), scanning electron microscopy (SEM), and transmission electron microscopy (TEM). The particle size was also determined using a laser particle size analyzer (LPSA). The thermal measurements were put through using Differential thermal analysis (DTA). In order to evaluate the in-vitro bioactivity of synthesized glasses, the ability for apatite formation on their surface upon their immersion in simulated body fluid (SBF) was checked using SEM, EDX and pH measurements. Moreover, the Ca, Si, Li and Fe ions in SBF were monitored using inductively coupled plasma-atomic emission spectrometry (ICP-AES). The results showed that the addition of Li and Fe in the glass composition affect the formation of apatite layer onto the glass surfaces. Morphologies of the apatite layers were also different in which the bioactivity was declining with increasing Fe concentration, but the increase of Li concentration led to an increase in bioactivity, yet all of the synthesized glasses are still highly bioactive. Finally, the research proved that the synthesized magnetic bioactive glasses are nontoxic and biocompatible and they can be used as thermoseeds for cancer hyperthermia studies.
机译:通过优化的溶胶方法制备CaO-P2O5-SiO2-Li2O-Fe2O3磁性生物活性玻璃。强调该研究对磁性含量添加对生物活性玻璃性能的影响。随着需要的,我们研究合成的磁性生物活性玻璃物理,流变学和生物相容性。使用X射线衍射(XRD),扫描电子显微镜(SEM)和透射电子显微镜(TEM)来表征这些玻璃的形态和组成。还使用激光粒度分析仪(LPSA)测定粒径。使用差分热分析(DTA)通过热测量。为了评估合成玻璃的体外生物活性,使用SEM,EDX和pH测量检查它们在模拟体液(SBF)中浸没在其表面上的磷灰石形成的能力。此外,使用电感耦合的等离子体原子发射光谱法(ICP-AES)监测SBF中的Ca,Si,Li和Fe离子。结果表明,玻璃组合物中的Li和Fe的加入影响磷灰石层的形成在玻璃表面上。磷灰石层的形态也不同,其中生物活性随着Fe浓度的增加而下降,但锂浓度的增加导致生物活性的增加,但所有合成的眼镜仍然高度生物活性。最后,该研究证明,合成的磁性生物活性玻璃是无毒的和生物相容性,它们可用作癌症热疗研究的热寄生剂。

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