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Relating material surface heterogeneity to protein adsorption: the effect of annealing of micro-contact-printed OTS patterns

机译:材料表面异质性与蛋白质吸附的关系:微接触印刷OTS图案退火的影响

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摘要

We have investigated the influence of micrometer- and sub-micrometer-scale surface heterogeneities in patterned octadecyltrichlorosilane (OTS) films on human serum albumin (HSA) adsorption and its spatial distribution. 5-μm-wide OTS patterns were created on glass substrates by micro-contact printing and in some instances subsequent annealing was used to alter OTS molecule distribution within the patterns. Scanning force microscopy (SFM), advancing water contact angles and water vapor condensation figures were used to characterize the OTS films and to assess the nature of the heterogeneities within the various surface areas. High-resolution fluorescence microscopy was used to record images of fluorescently labeled albumin on OTS patterned films and fluorescence intensity was quantified and converted into the adsorbed amount. Adsorbed albumin was also characterized through SFM measurements. Combined SFM topography and lateral force microscopy (LFM) imaging revealed that micro-contact printing of OTS onto glass both replicated the stamp pattern and created small islands within the non-stamped regions between the patterns. The OTS coverage within stamped regions was not fully continuous but improved with subsequent annealing. Annealing also resulted in OTS island growth within the non-stamped regions and decreased average wettability on both the stamped and non-stamped areas. The extent of albumin adsorption was not proportional to OTS coverage, but correlated with the sub-μm distribution of OTS chains. We inferred that the surface distribution of ligands such as OTS on a sub-μm length scale determines the nature of albumin adsorption and its kinetics.
机译:我们研究了图案化的十八烷基三氯硅烷(OTS)膜中微米级和亚微米级表面异质性对人血清白蛋白(HSA)吸附及其空间分布的影响。通过微接触印刷在玻璃基板上创建了5μm宽的OTS图案,在某些情况下,随后的退火用于改变图案中OTS分子的分布。扫描力显微镜(SFM),超前的水接触角和水蒸气冷凝图被用来表征OTS膜并评估各种表面积内异质性的性质。使用高分辨率荧光显微镜将荧光标记的白蛋白记录在OTS图案化膜上,并量化荧光强度并将其转换为吸附量。还通过SFM测量来表征吸附的白蛋白。结合SFM形貌和横向力显微镜(LFM)成像显示,OTS在玻璃上的微接触印刷既可以复制印章图案,又可以在图案之间的非印章区域内创建小岛。 OTS覆盖区域内的OTS并非完全连续,但随后的退火处理提高了覆盖率。退火还导致OTS岛在非压印区域内增长,并且在压印和非压印区域均降低了平均润湿性。白蛋白的吸附程度与OTS覆盖率不成比例,但与OTS链的亚微米分布有关。我们推断,配体(如OTS)在亚微米长度范围内的表面分布决定了白蛋白吸附的性质及其动力学。

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