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Evaluation of Cell Behaviour on Atmospheric Plasma Deposited Siloxane and Fluorosiloxane Coatings

机译:大气等离子体沉积的硅氧烷和氟硅氧烷涂层的电池性能评估

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摘要

For developing functional biomaterials, an understanding of the biological response at material surfaces is of key importance. In particular, surface chemistry, roughness and cell type influence this response. Many previous reports in the literature have involved the study of single cell types and their adhesion to surfaces with a limited range of water contact angles. The objective of this study was to investigate the adhesion of five cell lines on surfaces with contact angles in the range of 20° to 115°. This range of water contact angles was obtained using siloxane and fluorosiloxane coatings deposited using atmospheric plasma deposition. These nm thick coatings were deposited by nebulizing liquid precursors consisting of poly(dimethylsiloxane) (PDMS) and a mixture of perfluorodecyl acrylate/tetraethylorthosilicate (PPFDA/TEOS) into the atmospheric plasmas. Cell adhesion studies were carried out with the following cell types: Osteoblast, Human Embryonic Kidney (HEK), Chinese hamster ovary (CHO), Hepatocytes (HepZ) and THP1 leukemic cells. The study demonstrated that cell adhesion was significantly influenced by the type of cell line, water contact angle and coating chemistry. For example, the sensitivity of cell fines to changes in contact angle was found to decrease in the following order: Osteoblasts > Hepatocytes > CHO. The HEK and THP-1 inflammatory cells in contrast were not found to be sensitive to changes in water contact angle.
机译:对于开发功能性生物材料,了解材料表面的生物反应至关重要。特别地,表面化学性质,粗糙度和泡孔类型影响该响应。文献中许多先前的报道涉及单细胞类型及其在有限的水接触角范围内对表面的粘附性的研究。这项研究的目的是研究五种细胞系在接触角在20°至115°范围内的表面上的粘附力。该水接触角范围是使用通过大气等离子体沉积法沉积的硅氧烷和氟硅氧烷涂料获得的。通过将由聚二甲基硅氧烷(PDMS)和丙烯酸全氟癸酯/原硅酸四乙酯的混合物(PPFDA / TEOS)组成的液体前体雾化到大气等离子体中,可以沉积这些纳米厚的涂层。对以下细胞类型进行了细胞粘附研究:成骨细胞,人胚肾(HEK),中国仓鼠卵巢(CHO),肝细胞(HepZ)和THP1白血病细胞。研究表明,细胞粘附类型受细胞系类型,水接触角和涂层化学性质的显着影响。例如,发现细胞细粉对接触角变化的敏感性按以下顺序降低:成骨细胞>肝细胞> CHO。相反,未发现HEK和THP-1炎性细胞对水接触角的变化敏感。

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