首页> 外文期刊>Journal of Adhesion Science and Technology: The International Journal of Theoredtical and Basic Aspects of Adhesion Science and Its Applications in All Areas of Technology >Atomic Force Microscope Pull-off Force Measurements for Insulin in Contact with Acrylonitrile-Butadiene-Styrene and Polypropylene Surfaces at Various Humidities
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Atomic Force Microscope Pull-off Force Measurements for Insulin in Contact with Acrylonitrile-Butadiene-Styrene and Polypropylene Surfaces at Various Humidities

机译:各种湿度下与丙烯腈-丁二烯-苯乙烯和聚丙烯表面接触的胰岛素的原子力显微镜拉拔力测量

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摘要

The interaction of insulin with polymeric coatings, commonly used in devices for insulin storage and administration, is affected by relative humidity (RH). Understanding the effect of RH on adhesion of insulin particles to polymeric surfaces is of particular interest for selecting coating materials and environmental conditions for packaging and storage. A custom humidity control system was constructed for use with the fluid cell cantilever holder for a Nanoscope model II atomic force microscope (AFM). This system was used for controlling the RH with a precision of ±1% over a range of ~0-100% and for making pull-off force measurements as a function of RH. Pull-off forces were measured between insulin particles attached to the end of an AFM cantilever and acrylonitrile-butadiene-styrerie and polypropylene polymers. Two critical transitions indicated by sudden increases in the pull-off force were identified at two RH values. The first transition to higher pull-off force values occurred near 15-25% RH and the second transition occurred near 60 to 65% RH. The increasing adhesion force with increasing RH is mainly attributed to surface roughness effects that facilitate the formation of water bridges between insulin particle and the polymer substrate.
机译:胰岛素与通常用于胰岛素存储和给药装置的聚合物涂层的相互作用受相对湿度(RH)的影响。了解RH对胰岛素颗粒与聚合物表面粘附的影响对于选择涂层材料和包装和储存的环境条件尤为重要。构建了定制的湿度控制系统,以与用于Nanoscope II型原子力显微镜(AFM)的流体单元悬臂支架一起使用。该系统用于在〜0-100%的范围内以±1%的精度控制RH,并用于测量相对于RH的拉力。测量附着在AFM悬臂末端的胰岛素颗粒与丙烯腈-丁二烯-苯乙烯和聚丙烯聚合物之间的拉力。在两个RH值处识别出由拉力突然增加所指示的两个关键转变。第一次向较高的拉力值转变发生在15-25%RH附近,第二次转变发生在60%至65%RH附近。随着RH的增加,粘附力的增加主要归因于表面粗糙度效应,该效应有助于在胰岛素颗粒和聚合物底物之间形成水桥。

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