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Plasma-Assisted Deposition of Magnesium-Containing Coatings on Porous Scaffolds for Bone Tissue Engineering

机译:含镁涂层对骨组织工程的多孔支架上的含镁涂层的辅助沉积

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Magnesium plays a pivotal role in the formation, growth, and repair of bone tissue; therefore, magnesium-based materials can be considered promising candidates for bone tissue engineering. This study aims to functionalize the surfaces of three-dimensional (3D) porous poly-ε caprolactone (PCL) scaffolds with magnesium-containing coatings using cold plasma-assisted deposition processes. For this purpose, the radiofrequency (RF) sputtering of a magnesium oxide target was carried out in a low-pressure plasma reactor using argon, water vapor, hydrogen, or mixtures of argon with one of the latter two options as the feed. Plasma processes produced significant differences in the chemical composition and wettability of the treated PCL samples, which are tightly related to the gas feed composition, as shown by X-ray photoelectron spectroscopy (XPS) and water contact angle (WCA) analyses. Cytocompatibility assays performed with Saos-2 osteoblast cells showed that deposited magnesium-containing thin films favor cell proliferation and adhesion on 3D scaffold surfaces, as well as cell colonization inside them. These films appear to be very promising for bone tissue regeneration.
机译:镁在骨组织的形成,生长和修复中起着枢轴作用;因此,基于镁的材料可以被认为是骨组织工程的有希望的候选者。该研究旨在使用冷等离子体辅助沉积方法用含镁涂层用含镁涂层的三维(3D)多孔多ε己内酯(PCL)支架的表面官能化。为此目的,氧化镁靶的射频(RF)溅射在低压血浆反应器中使用氩气,水蒸气,氢气或氩气混合物与后两种选项之一作为进料。等离子体工艺在处理的PCL样品的化学成分和润湿性中产生了显着差异,其与气体进料组合物紧密相关,如X射线光电子能谱(XPS)和水接触角(WCA)分析所示。用SAOS-2成骨细胞进行的细胞组分测定结果表明,沉积的含镁薄膜有利于3D支架表面上的细胞增殖和粘附,以及它们内部的细胞定植。这些薄膜对于骨组织再生似乎非常有前途。

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