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Gold cleaning methods for preparation of cell culture surfaces for self-assembled monolayers of zwitterionic oligopeptides

机译:用于制备用于自组装寡肽的自组装单层细胞培养表面的金色清洁方法

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摘要

Self-assembled monolayers (SAMs) have been used to elucidate interactions between cells and material surface chemistry. Gold surfaces modified with oligopeptide SAMs exhibit several unique characteristics, such as cell-repulsive surfaces, micropatterns of cell adhesion and non-adhesion regions for control over cell microenvironments, and dynamic release of cells upon external stimuli under culture conditions. However, basic procedures for the preparation of oligopeptide SAMs, including appropriate cleaning methods of the gold surface before modification, have not been fully established. Because gold surfaces are readily contaminated with organic compounds in the air, cleaning methods may be critical for SAM formation. In this study, we examined the effects of four gold cleaning methods: dilute aqua regia, an ozone water, atmospheric plasma, and UV irradiation. Among the methods, UV irradiation most significantly improved the formation of oligopeptide SAMs in terms of repulsion of cells on the surfaces. We fabricated an apparatus with a UV light source, a rotation table, and HEPA filter, to treat a number of gold substrates simultaneously. Furthermore, UV-cleaned gold substrates were capable of detaching cell sheets without serious cell injury. This may potentially provide a stable and robust approach to oligopeptide SAM-based experiments for biomedical studies. (C) 2017, The Society for Biotechnology, Japan. All rights reserved.
机译:已使用自组装的单层(SAMS)来阐明细胞和材料表面化学之间的相互作用。用寡肽SAM改性的金表面表现出几种独特的特性,例如细胞排斥表面,细胞粘附的微图示和用于控制细胞微环境的非粘附区域,以及在培养条件下对外部刺激的细胞的动态释放。然而,制备寡肽SAM的基本程序,包括修饰前的金表面的适当清洁方法,尚未完全建立。因为在空气中易于用有机化合物易污染金表面,所以清洁方法对于SAM形成至关重要。在这项研究中,我们检查了四种金色清洁方法的影响:稀释Aqua regia,臭氧水,大气等离子体和紫外线辐照。在该方法中,在表面排斥细胞的排斥方面,UV辐射最显着改善了寡肽SAM的形成。我们用UV光源,旋转台和HEPA过滤器制造了一种装置,同时处理多个金基板。此外,紫外线清洁的金基材能够在没有严重细胞损伤的情况下脱离细胞片。这可能潜在地提供稳定且稳健的方法来脱肽基于基于寡肽的生物医学研究的实验。 (c)2017年,日本生物技术协会。版权所有。

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