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Acetic-Acid Plasma-Polymerization on Polymeric Substrates for Biomedical Application

机译:生物医学应用在聚合物基质上的乙酸等离子体聚合

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摘要

Cold plasma is an emerging technology offering many potential applications for regenerative medicine or tissue engineering. This study focused on the characterization of the carboxylic acid functional groups deposited on polymeric substrates using a plasma polymerization process with an acetic acid precursor. The acetic acid precursor contains oxygen and hydrocarbon that, when introduced to a plasma state, forms the polylactide-like film on the substrates. In this study, polymeric substrates were modified by depositing acetic acid plasma film on the surface to improve hydrophilic quality and biocompatibility. The experimental results that of electron spectroscopy for chemical analysis (ESCA) to show for acetic acid film, three peaks corresponding to the C–C group (285.0 eV), C–O group (286.6 eV), and C=O group (288.7 eV) were observed. The resulting of those indicated that appropriate acetic acid plasma treatment could increase the polar components on the surface of substrates to improve the hydrophilicity. In addition, in vitro cell culture studies showed that the embryonic stem (ES) cell adhesion on the acetic acid plasma-treated polymeric substrates is better than the untreated. Such acetic acid film performance makes it become a promising candidate as the surface coating layer on polymeric substrates for biomedical application.
机译:冷等离子体是一种新兴技术,可为再生医学或组织工程提供许多潜在应用。这项研究的重点是使用等离子体聚合工艺和乙酸前体对沉积在聚合物基材上的羧酸官能团进行表征。乙酸前体含有氧和烃,当引入等离子体状态时,氧和烃在基底上形成聚乳酸样膜。在这项研究中,通过在表面沉积乙酸等离子膜来修饰聚合物基材,以提高亲水性和生物相容性。实验结果表明,用于电子化学分析的电子光谱(ESCA)显示出乙酸膜,三个峰分别对应于C–C组(285.0 eV),C–O组(286.6 eV)和C = O组(288.7) eV)。那些的结果表明适当的乙酸等离子体处理可以增加基材表面上的极性组分以改善亲水性。此外,体外细胞培养研究表明,胚胎干(ES)细胞在乙酸等离子体处理的聚合物基质上的粘附力比未处理的更好。这种醋酸膜性能使其成为有前途的候选物,作为生物医学应用的聚合物基材上的表面涂层。

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