首页> 外文期刊>Macromolecular Research >Nitrogen Grafting onto Polycarprolactone by a Simple Surface Modification with Atmospheric Pressure Glow Discharge (Ar-APGD) and Promoted Neonatal Human Fibroblast Growth
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Nitrogen Grafting onto Polycarprolactone by a Simple Surface Modification with Atmospheric Pressure Glow Discharge (Ar-APGD) and Promoted Neonatal Human Fibroblast Growth

机译:通过大气压辉光放电(At-PGD)的简单表面修饰并促进新生儿人类成纤维细胞生长,将氮嫁接到聚己内酯上

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摘要

Plasma surface modifications of polymer scaffolds using biomolecules such as oxygen, nitrogen, and other active grafting molecules have been studied to enhance biological responses such as cell attachment, spreading, and proliferation. According to the reports, nitrogen grafting requires corrosive or mixture gas environment, or post treatment. This study aimed to evaluate a simple atmospheric pressure plasma surface modification in order to graft nitrogen derivatives and to promote biological responses. In this study, a polycarprolactone (PCL) film was modified within 10 min by argon atmospheric pressure discharge (Ar-APGD). Excited argon atoms, nitrogen atoms, oxygen atoms, and hydroxyl functional groups were observed from the optical emission spectra of the discharge. Decreased carbonyl functional groups and ether functional groups were observed; notably, immobilized nitrogen was observed on the PCL surface after the Ar-APGD treatment. Promoted neonatal Human Dermal Fibroblast (nHDF) growth patterns were observed on the Ar-APGD-treated surface.
机译:已经研究了使用生物分子(例如氧气,氮气和其他活性接枝分子)对聚合物支架进行等离子体表面修饰,以增强生物反应,例如细胞附着,扩散和增殖。据报道,氮的接枝需要在腐蚀性或混合气体的环境下进行或进行后处理。这项研究旨在评估一个简单的大气压等离子体表面改性,以接枝氮衍生物并促进生物学反应。在这项研究中,通过氩气大气压放电(Ar-APGD)在10分钟内对聚己内酯(PCL)膜进行了改性。从放电的发射光谱观察到激发的氩原子,氮原子,氧原子和羟基官能团。观察到羰基官能团和醚官能团减少;值得注意的是,在进行Ar-APGD处理后,在PCL表面观察到了固氮。在Ar-APGD处理的表面观察到促进的新生儿人真皮成纤维细胞(nHDF)的生长模式。

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