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Mechanical testing of antimicrobial biocomposite coating on metallic medical implants as drug delivery system

机译:金属药物植入物上作为药物递送系统的抗菌生物复合涂层的机械测试

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Post-operative infection often occurs following orthopedic and dental implant placement requiring systemically administered antibiotics. However, this does not provide long-term protection. Over the last few decades, alternative methods involving slow drug delivery systems based on biodegradable poly-lactic acid and antibiotic loaded hydroxyapatite microspheres were developed to prevent post-operative infection. In this study, thermally anodised and untreated Ti6Al4V discs were coated with Poly-Lactic Acid (PLA) containing Gentamicin (Gm) antibiotic-loaded coralline Hydroxyapatite (HAp) are investigated. Following chemical characterization, mechanical properties of the coated samples were measured using nanoindentation and scratch tests to determine the elastic modulus, hardness and bonding adhesion between film and substrate. It was found that PLA biocomposite multilayered films were around 400 nm thick and the influence and effect of the substrate were clearly observed during the nanoindentation studies with heavier loads. Scratch tests of PLA coated samples conducted at similar to 160 nm depth showed the minimal difference in the measured friction between Gm and non Gm containing films. It is also observed that the hardness values of PLA film coated anodised samples ranged from 0.45 to 1.9 GPa (dependent on the applied loads) against untreated coated samples which ranged from 0.28 to 0.8 GPa.
机译:术后感染通常发生在需要全身施用抗生素的整形外科和牙科植入物植入之后。但是,这不能提供长期保护。在过去的几十年中,为防止术后感染,人们开发了替代方法,包括基于可生物降解的聚乳酸和载有抗生素的羟基磷灰石微球的慢速药物输送系统。在这项研究中,对经过热阳极氧化处理和未经处理的Ti6Al4V圆盘进行了涂有聚乳酸(PLA)的涂膜,其中含有庆大霉素(Gm)的载有抗生素的珊瑚羟基磷灰石(HAp)。在化学表征之后,使用纳米压痕和划痕测试来测量涂覆样品的机械性能,以确定膜与基材之间的弹性模量,硬度和粘结力。发现PLA生物复合多层膜的厚度约为400nm,并且在纳米压痕研究中以较重的负荷清楚地观察到基材的影响和效果。在类似于160 nm深度进行的PLA涂层样品的划痕测试表明,在Gm和不含Gm的薄膜之间测得的摩擦之间的最小差异。还可以观察到,相对于未经处理的涂层样本,PLA薄膜涂覆的阳极氧化样品的硬度值范围为0.45至1.9 GPa(取决于所施加的载荷),范围为0.28至0.8 GPa。

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