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CeO2 Containing Thin Films as Bioactive Coatings for Orthopaedic Implants

机译:CEO2含有薄膜作为整形外科植入物的生物活性涂层

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摘要

Due to the fact of their ability to bond with human’s hard tissue, bioglasses have gained interest in the biomedical field with certain purposes regarding their usage in the replacement, healing or repair of bones. In the form of thin films, they trigger an increase in biocompatibility for the inert supports after implantation, based on surface engineering to ensure osteoinduction. For that, this research is focused on obtaining coatings based on cerium-enriched bioglass to generate bioactive and potential additional antimicrobial and antioxidant properties. The addressed oxide system was a novel and complex one, 46.10 SiO2–2.60 P2O5–16.90 CaO–10.00 MgO–19.40 Na2O–5.00 CeO2 (mol%), while two different synthesis methods, laser ablation and spin coating, were tackled comparatively. In the case of the first technique, substrate temperature was selected as variable parameter (room temperature or 300 °C). After conducting a complex characterization, films’ deposition was validated, their bioactive behaviour was proven by the formation of calcium phosphate after immersion in simulated body fluid for four weeks, while the impact exerted on the tested human fibroblast BJ cells (ATCC, CRL-2522) confirmed the applicative potential.
机译:由于它们能够与人类的硬组织粘合,生物制品对生物医学领域的兴趣,某些目的是他们在骨骼的替代,愈合或修复中的用途。在薄膜的形式中,基于表面工程,它们触发植入后惰性支撑件的生物相容性的增加,以确保骨蚀刻。为此,该研究专注于基于富含铈的生物制剂获得涂层以产生生物活性和潜在的额外抗氧化和抗氧化性能。寻址的氧化物系统是一种新颖的和复合物,46.10 siO 2-2.60 P2O5-16.90 CAO-10.00 MgO-19.40 Na 2 O-5.00 CeO 2(Mol%),而两种不同的合成方法,激光烧蚀和旋涂,相对较差。在第一技术的情况下,选择衬底温度作为可变参数(室温或300℃)。进行复杂表征后,验证薄膜的沉积,通过在浸入模拟体液中形成磷酸钙4周后,磷酸钙被证明的生物活性行为,而在测试的人成纤维细胞BJ细胞上施加的影响(ATCC,CRL-2522 )确认了适用潜力。

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