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Pulsed Laser Deposited Biocompatible Lithium-Doped Hydroxyapatite Coatings with Antimicrobial Activity

机译:具有抗菌活性的脉冲激光沉积生物相容性锂掺杂羟基磷灰石涂层

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Simple and lithium-doped biological-origin hydroxyapatite layers were synthesized by Pulsed Laser Deposition technique on medical grade Ti substrates. Cytotoxic effects of lithium addition and the biocompatibility of obtained coatings were assessed using three cell lines of human origin (new initiated dermal fibroblasts, immortalized keratinocytes HaCaT, and MG-63 osteosarcoma). Antimicrobial properties of obtained coatings were assessed on two strains (i.e., Staphylococcus aureus and Candida albicans ), belonging to species representative for the etiology of medical devices biofilm-associated infections. Our findings suggest that synthesized lithium-doped coatings exhibited low cytotoxicity on human osteosarcoma and skin cells and therefore, an excellent biocompatibility, correlated with a long-lasting anti-staphylococcal and -fungal biofilm activity. Along with low fabrication costs generated by sustainable resources, these biological-derived materials demonstrate their promising potential for future prospective solutions—viable alternatives to commercially available biomimetic HA implants—for the fabrication of a new generation of implant coatings.
机译:通过脉冲激光沉积技术在医学级Ti基片上合成了简单的锂掺杂生物来源的羟基磷灰石层。使用三种人类起源的细胞系(新启动的真皮成纤维细胞,永生化角质形成细胞HaCaT和MG-63骨肉瘤)评估了添加锂的细胞毒性作用和获得的涂层的生物相容性。评价了两种菌株(即,金黄色葡萄球菌和白色念珠菌)的获得的涂层的抗菌性能,这两种菌株属于代表与生物膜相关的医疗器械的病因的代表性物种。我们的发现表明,合成的锂掺杂涂层对人骨肉瘤和皮肤细胞显示出低细胞毒性,因此,具有优异的生物相容性,与持久的抗葡萄球菌和真菌生物膜活性相关。除了可持续资源产生的低制造成本外,这些生物来源的材料还证明了其在未来前瞻性解决方案(可商购的仿生HA植入物的可行替代品)中的潜力,用于制造新一代植入物涂层。

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