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等离子体聚合烯丙胺纳米薄膜的老化及其细胞粘附能力的维持。

Aging of plasma-polymerized allylamine nanofilms and the maintenance of their cell adhesion capacity.

作者信息

Finke Birgit, Rebl Henrike, Hempel Frank, Schäfer Jan, Liefeith Klaus, Weltmann Klaus-Dieter, Nebe J Barbara

机构信息

Leibniz-Institute for Plasma Science and Technology (INP) , Felix-Hausdorff-Straße 2, D-17489 Greifswald, Germany.

出版信息

Langmuir. 2014 Nov 25;30(46):13914-24. doi: 10.1021/la5019778. Epub 2014 Nov 13.

DOI:10.1021/la5019778
PMID:25356776
Abstract

The long-term stability and γ-sterilisability of bioactive layers is the precondition for the application of implants. Thus, aging processes of a microwave deposited, plasma polymerized allylamine nanofilm (PPAAm) with positively charged amino groups were evaluated concerning physicochemical characteristics and cell adhesion capacity over the course of one year. XPS, FT-IR, surface free energy, and water contact angle measurements elucidated not only the oxidation of the PPAAm film due to atmospheric oxygen reacting with surface free radicals but also the influence of atmospheric moisture during sample storage in ambient air. Surprisingly, within 7 days 70% of the primary amino groups are lost and mostly converted into amides. A positive zeta-potential was verified for half a year and longer. Increasing polar surface groups and a water contact angle shift from 60° to 40° are further indications of altered surface properties. Nevertheless, MG-63 human osteoblastic cells adhered and spread out considerably on aged and additionally γ-sterilized PPAAm layers deposited on polished titanium alloys (Ti-6Al-4V_P). These cell-relevant characteristics were highly significant over the whole period of one year and may not be related to the existence of primary amino groups. Rather, the oxidation products, the chemical amide group, that is, seem to support the attachment of osteoblasts at all times up to one year.

摘要

生物活性层的长期稳定性和γ射线可灭菌性是植入物应用的前提条件。因此,对具有带正电荷氨基的微波沉积等离子体聚合烯丙胺纳米膜(PPAAm)的老化过程进行了为期一年的物理化学特性和细胞粘附能力评估。X射线光电子能谱(XPS)、傅里叶变换红外光谱(FT-IR)、表面自由能和水接触角测量不仅阐明了由于大气氧与表面自由基反应导致的PPAAm膜氧化,还揭示了样品在环境空气中储存期间大气湿度的影响。令人惊讶的是,在7天内,70%的伯氨基消失,大部分转化为酰胺。半年及更长时间内验证了正的zeta电位。极性表面基团的增加以及水接触角从60°变为40°进一步表明表面性质发生了变化。然而,MG-63人成骨细胞在沉积在抛光钛合金(Ti-6Al-4V_P)上的老化且经过额外γ射线灭菌的PPAAm层上大量粘附并铺展。这些与细胞相关的特性在一整年的时间里都非常显著,并且可能与伯氨基的存在无关。相反,氧化产物,即化学酰胺基团,似乎在长达一年的时间里始终支持成骨细胞的附着。

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