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首页> 外文期刊>CERAMICS INTERNATIONAL >A facile vacuum assisted synthesis of nanoparticle impregnated hydroxyapatite composites having excellent antimicrobial properties and biocompatibility
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A facile vacuum assisted synthesis of nanoparticle impregnated hydroxyapatite composites having excellent antimicrobial properties and biocompatibility

机译:纳米颗粒浸渍羟基磷灰石复合材料的容易真空辅助合成具有优异的抗微生物性能和生物相容性

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摘要

Porous nanocrystalline hydroxyapatite (HAp) pellet have been synthesized by co-precipitation method using cysteine as a chelating agent. The copper, gold, silver nanoparticles (NPs) were actively impregnated into the HAp pellets by absorption during vacuum filtration. NPs were characterized by UV-Visible spectroscopy and TEM. Impregnated pellets were characterized using X-ray diffraction (XRD) and Field emission scanning electron microscopy (FESEM) that confirmed the presence of nanocrystalline hydroxyapatite phase having interconnected granular porosity loaded with NPs both in the bulk and on the surface. All the NP loaded HAp showed strong antimicrobial activity against E. coli and S. aureus. Mechanism behind antimicrobial activity was found to be predominantly membrane damage and ROS (reactive oxygen species) mediated cell death generated from NPs. The release profile of NP loaded HAp pellets showed an initial rapid release within 6 h followed by a gradual release over a period of 24 h. Swelling index and release data indicated a sustained release of NPs from the pellets. Comparative cytotoxicity studies on human lung fibroblast (WI-38) showed gold (Au) nanoparticle impregnated HAp to be highly biocompatible compared to silver (Ag) and copper (Cu). The research findings clearly show that these NP loaded HAp holds great potential as a multifunctional therapeutic system for biomedical applications.
机译:通过使用半胱氨酸作为螯合剂的共沉淀法合成多孔纳米晶羟基磷灰石(HAP)颗粒。在真空过滤期间,通过吸收将铜,金银纳米颗粒(NPS)主动浸渍到HAP颗粒中。 NPS的特征在于UV可见光谱和TEM。使用X射线衍射(XRD)和场发射扫描电子显微镜(FeSEM)表征浸渍的粒料,该显微镜(FeSEM)确认存在纳米晶羟基磷灰石相的存在,所述纳米晶磷酸盐相具有互连的粒状孔隙率,所述粒状孔隙率在体积和表面上均有NPS。所有NP加载的Hap都显示出对大肠杆菌和金黄色葡萄球菌的强烈抗菌活性。发现抗菌活性背后的机制主要是膜损伤和ROS(反应性氧物种)介导的NPS产生的细胞死亡。 NP加载的HAP颗粒的释放曲线显示在6小时内初始快速释放,然后在24小时内逐渐释放。膨胀指数和释放数据表明来自颗粒的持续释放NPS。对人肺成纤维细胞(WI-38)的比较细胞毒性研究显示,与银(Ag)和铜(Cu)相比,金(Au)纳米颗粒浸渍的Hap高度生物相容性。研究结果清楚地表明,这些NP加载的HAP作为生物医学应用的多功能治疗系统具有很大的潜力。

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