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通过等离子体表面改性增强细胞对硅橡胶植入材料的黏附。

Enhanced cell adhesion to silicone implant material through plasma surface modification.

机构信息

Department of Plastic Surgery, BG Trauma Center Bergmannsheil, University Hospital, Bochum, Germany.

出版信息

J Mater Sci Mater Med. 2009 Dec;20(12):2541-8. doi: 10.1007/s10856-009-3826-x.

Abstract

Silicone implant material is widely used in the field of plastic surgery. Despite its benefits the lack of biocompatibility this material still represents a major problem. Due to the surface characteristics of silicone, protein adsorption and cell adhesion on this polymeric material is rather low. The aim of this study was to create a stable collagen I surface coating on silicone implants via glow-discharge plasma treatment in order to enhance cell affinity and biocompatibility of the material. Non-plasma treated, collagen coated and conventional silicone samples (non-plasma treated, non-coated) served as controls. After plasma treatment the change of surface free energy was evaluated by drop-shape analysis. The quality of the collagen coating was analysed by electron microscopy and Time-Of-Flight Secondary Ion Mass Spectrometry. For biocompatibility tests mouse fibroblasts 3T3 were cultivated on the different silicone surfaces and stained with calcein-AM and propidium iodine to evaluate cell viability and adherence. Analysis of the different surfaces revealed a significant increase in surface free energy after plasma pre-treatment. As a consequence, collagen coating could only be achieved on the plasma activated silicone samples. The in vitro tests showed that the collagen coating led to a significant increase in cell adhesion and cell viability.

摘要

硅树脂植入物材料在整形外科学领域得到广泛应用。尽管它具有优势,但是缺乏生物相容性仍是一个主要问题。由于硅树脂的表面特性,这种聚合材料上的蛋白质吸附和细胞黏附能力较低。本研究旨在通过辉光放电等离子体处理在硅树脂植入物上创建稳定的 I 型胶原表面涂层,以提高材料的细胞亲和力和生物相容性。非等离子体处理、胶原涂层和常规硅树脂样本(非等离子体处理、未涂层)作为对照。等离子体处理后,通过液滴形状分析评估表面自由能的变化。通过电子显微镜和飞行时间二次离子质谱法分析胶原涂层的质量。为了进行生物相容性测试,将小鼠成纤维细胞 3T3 培养在不同的硅树脂表面上,并使用钙黄绿素-AM 和碘化丙啶进行染色,以评估细胞活力和黏附性。对不同表面的分析表明,等离子体预处理后表面自由能显著增加。因此,只有在等离子体激活的硅树脂样本上才能实现胶原涂层。体外试验表明,胶原涂层显著增加了细胞黏附性和细胞活力。

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