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Hybrid nanocomposite coatings from Metal (Mg alloy)-Drug deposited onto medical implants by Laser Adaptive Ablation Deposition technique

机译:通过激光自适应烧蚀沉积技术将金属(镁合金)-药物混合纳米复合涂层沉积到医疗植入物上

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摘要

Drug-eluting medical implants are active implants whose function is to create healing effects. The current requirements for active medical coatings for Drug-eluting medical implants are to be biocompatible, biodegradable, polymer free, mechanically stable and enable a controlled release of one or more drugs and defined degradation. This brings hybrid nanocomposite coatings into focus especially in the field of cardiovascular implants. We studied the properties of Metal (Mg alloy)-Paclitaxel coatings obtained by novel Laser Adaptive Ablation Deposition Technique (LAAD) onto cardiovascular stents from 316 LVM stainless steel material. The morphology and topology of coatings were studied by Bright field / Fluorescence optical microscope and Scanning Electron Microscope (SEM). Comparative measurements were made of the morphology and topology of hybrid, polymer free nanocomposite coatings deposited by LAAD and polymer-drug coatings deposited by classical spray technique. The coatings obtained by LAAD are homogeneous without damages and cracks. Metal nanoparticles with sizes from 40 nm to 230 nm were obtained in drug matrixes. Energy Dispersive X-ray Spectroscopy (EDX) was used for identification of metal nanoparticles presence in hybrid nanocomposites coatings. The new technology opens up possibilities to obtain new hybrid nanocomposite coatings with applications in medicine, pharmacy and biochemistry.
机译:药物洗脱医疗植入物是活性植入物,其功能是产生愈合效果。用于药物洗脱医学植入物的活性医学涂层的当前要求是生物相容的,可生物降解的,无聚合物的,机械稳定的,并能够控制地释放一种或多种药物并确定降解。这使杂化纳米复合材料涂料成为焦点,尤其是在心血管植入物领域。我们研究了通过新型激光自适应烧蚀沉积技术(LAAD)在316 LVM不锈钢材料制成的心血管支架上获得的金属(镁合金)-紫杉醇涂层的性能。利用明场/荧光光学显微镜和扫描电子显微镜(SEM)研究了涂层的形貌和形貌。对由LAAD沉积的杂化,无聚合物的纳米复合涂料和通过传统喷涂技术沉积的聚合物-药物涂料的形态和拓扑进行了比较测量。 LAAD获得的涂层是均匀的,没有损坏和裂纹。在药物基质中获得了尺寸为40 nm至230 nm的金属纳米颗粒。能量色散X射线光谱法(EDX)用于鉴定杂化纳米复合材料涂层中金属纳米粒子的存在。新技术为获得在医学,药学和生物化学领域中应用的新型混合纳米复合材料涂料提供了可能性。

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