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Multi-Level Evaluation of UV Action upon Vitamin D Enhanced, Silver Doped Hydroxyapatite Thin Films Deposited on Titanium Substrate

机译:维生素D增强型紫外线动作的多级评估,钛基材沉积银掺杂掺杂羟基磷灰石薄膜

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Hydroxyapatite Ca10(PO4)6(OH)2 (HAp) is an important bioactive material for bone tissue reconstruction, due to its highly thermodynamic stability at a physiological pH without bio-resorption. In the present study, the Ag:HAp and the corresponding Ag:HAp D3 thin films (~200 nm) coating were obtained by vacuum deposition method on Ti substrate. The obtained samples were exposed to different UV irradiation times, in order to investigate the UV light action upon thin films, before considering this method for the thin film’s decontamination. The effects of UV irradiation upon Ag:Hap D3 are presented for the first time in the literature, marking a turning point for understanding the effect of UV light on composite biomaterial thin films. The UV irradiation induced an increase in the initial stages of surface roughness of Ag:HAp thin film, correlated with the modifications of XPS and FTIR signals. The characteristics of thin films measured by AFM (RMS) analysis corroborated with XPS and FTIR investigation highlighted a process of recovery of the thin film’s properties (e.g., RMS), suggesting a possible adaptation to UV irradiation. This process has been a stage to a more complicated UVA rapid degradation process. The antifungal assays demonstrated that all the investigated samples exhibited antifungal properties. Moreover, the cytotoxicity assays revealed that the HeLa cells morphology did not show any alterations after 24 h of incubation with the Ag:HAp and Ag:HAp D3 thin films.
机译:羟基磷灰石CA10(PO4)6(OH)2(HAP)是骨组织重建的重要生物活性材料,由于其在没有生物吸收的生理pH下的高度热力学稳定性。在本研究中,AG:Hap和相应的AG:通过在Ti衬底上真空沉积方法获得Hap D3薄膜(〜200nm)涂层。将所得样品暴露于不同的UV照射时间,以便在考虑该方法对于薄膜的去污之前研究薄膜上的UV光照作用。 UV照射对AG的影响:HAP D3在文献中首次呈现,标记转折点,以了解UV光对复合生物材料薄膜的影响。 UV辐射诱导AG的表面粗糙度的初始阶段的增加:HAP薄膜,与XPS和FTIR信号的修改相关。通过AFM(RMS)分析测量的薄膜的特性通过XPS和FTIR调查突出了薄膜特性的回收过程(例如,RMS),表明对紫外线照射的可能性。该过程一直是一个更复杂的UVA快速降级过程的阶段。抗真菌测定表明所有研究的样品表现出抗真菌性质。此外,细胞毒性测定揭示了Hela细胞形态学在与AG孵育24小时后没有显示出任何改变:Hap和Ag:Hap D3薄膜。

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