Sundberg Mark, Månsson Alf, Tågerud Sven
School of Pure and Applied Natural Sciences, University of Kalmar, SE-391 82 Kalmar, Sweden.
J Colloid Interface Sci. 2007 Sep 15;313(2):454-60. doi: 10.1016/j.jcis.2007.04.067. Epub 2007 May 3.
Contact angle measurements are of great importance in surface characterization but the practical use has often been limited to macroscopic dimensions (millimeters). Therefore, we have developed a confocal microscopy method that allows non-destructive measurements of both low (<30 degrees ) and high (30 degrees -90 degrees ) contact angles. Low contact angles were measured by reconstructing the drop profile from the interference patterns in droplets condensed from atmospheric humidity. At higher contact angles water droplets with a small amount of fluorescein were sprayed onto the surfaces and 3D-image stacks were recorded and used to extract the contact angle. Suitable drop sizes were between a few up to about 50 mum radius, using a 40x magnification objective. Using drops >10 micrometers radius for microcontact angle measurements a good correlation was obtained between measured micro- and macrocontact angles. After microcontact angle measurements the surfaces were rinsed and heavy meromyosin motor fragments were adsorbed to the surface. Importantly, the sensitive actin propelling function of these motor proteins was not affected by the previous contact angle measurements using fluorescent droplets. This suggests that the methodology should be suitable for non-destructive characterization of different parts of micropatterned surfaces being developed for biological assays.
接触角测量在表面表征中非常重要,但实际应用往往局限于宏观尺寸(毫米级)。因此,我们开发了一种共聚焦显微镜方法,可对低接触角(<30度)和高接触角(30度 - 90度)进行无损测量。低接触角通过从大气湿度凝结的液滴中的干涉图案重建液滴轮廓来测量。在较高接触角下,将含有少量荧光素的水滴喷到表面上,记录三维图像堆栈并用于提取接触角。使用40倍放大物镜时,合适的液滴尺寸半径在几微米到约50微米之间。对于微接触角测量,使用半径大于10微米的液滴时,测得的微接触角和宏观接触角之间具有良好的相关性。在微接触角测量后,冲洗表面并将重酶解肌球蛋白运动片段吸附到表面上。重要的是,这些运动蛋白的敏感肌动蛋白推进功能不受先前使用荧光液滴进行的接触角测量的影响。这表明该方法应适用于为生物测定开发的微图案表面不同部分的无损表征。