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Optimization of silver-containing bioglass nanoparticles envisaging biomedical applications

机译:含银生物制剂纳米颗粒的优化设想生物医学应用

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Bioglass nanoparticles (BGs) are of outmost importance in the biomedical field, because their unique characteristics, namely osteoconductivity and osteoinductivity, and also in certain conditions, angiogenic and bactericidal properties. In this work, novel bioglass nanoparticles containing silver (AgBGs) were synthesized by a sol-gel method, adopting different thermal treatments to obtain new nanoparticles with bioactive and anti-bacterial features. This is the first systematic study of the effect of the thermal treatment on the properties of AgBGs. The effect of the studied thermal treatments on the properties of synthesized nanoparticles was analyzed by several characterization techniques: FT-IR, XRD, S-TEM, SEM-EDS and Zeta potential. FT-IR allowed the identification of the characteristic peaks of the nanoparticles and XRD revealed the presence of the characteristic peaks of an apatite-like phase. By S-TEM analysis it was found that the produced nanoparticles are dense and have a diameter 200 nm. The SEM micrographs showed their surface morphology and Zeta potential measurements were performed to study their suspension stability. Additionally, in vitro bioactivity tests confirmed their bioactive potential and the microbiological tests evidenced their bactericidal effect. These promising AgBGs could be incorporated either in 2D or 3D structures for several biomedical applications, namely in the orthopedic and dental fields.
机译:生物糖钾纳米颗粒(BGS)在生物医学领域是最重要的,因为它们具有独特的特性,即骨导电性和骨诱导性,以及在某些条件下,血管生成和杀菌性质。在这项工作中,通过溶胶 - 凝胶法合成含有银(AGBGs)的新型生物胶纳米颗粒,采用不同的热处理,得到具有生物活性和抗细菌特征的新纳米粒子。这是对热处理对AgBGs性质的影响的第一系统研究。通过几种表征技术分析了研究热处理对合成纳米颗粒性能的影响:FT-IR,XRD,S-TEM,SEM ED和Zeta电位。 FT-IR允许鉴定纳米颗粒的特征峰,XRD显示出磷灰石状相的特征峰的存在。通过S-TEM分析,发现产生的纳米颗粒是致密的并且具有直径且直径& 200纳米。 SEM显微照片显示它们的表面形态,并进行Zeta电位测量以研究它们的悬浮稳定性。另外,体外生物活性试验证实了它们的生物活性潜力,微生物测试证明了它们的杀菌效果。这些承诺的AGBG可以在2D或3D结构中纳入若干生物医学应用,即在骨科和牙科领域。

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