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Influencing the adhesion properties and wettability of mucin protein films by variation of the environmental pH

机译:通过改变环境pH值来影响粘蛋白膜的粘附性能和润湿性

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摘要

Mucins, the main component of the mucus secretions of goblet and epithelial cells, are known for exhibiting a different behaviour in accordance with their surrounding environment (i.e. among others the environmental pH), which induces a drastic change in their measured mechanical properties. In this work, we have first employed Atomic Force Microscopy (AFM) in Force Spectroscopy mode to evaluate the adhesion of porcine mucin films at the nanoscale, and the changes caused in this particular factor by a pH variation between 7.0 and 4.0, both quite common values in biological conditions. Measurements also involved additional varying factors such as the indenting tip chemistry (hydrophobic vs hydrophilic), its residence time on the measured film (0, 1 and/or 2 seconds), and increasing pulling rates (ranging from 0.1 up to 10 µm/s). A second approach regarded the macroscale behaviour of the films, due to their potential applicability in the development of a new set of stimuli-responsive biomaterials. This was possible by means of complementary Wilhelmy plate method (to test the wetting properties) and cell proliferation studies on films previously exposed to the corresponding pH solution. According to our results, treatment with lowest pH (4.0) provides porcine mucin with a more hydrophilic character, showing a much stronger adhesion for analogous chemistries, as well as enhanced capability for cell attachment and proliferation, which opens new pathways for their future use and consideration as scaffold-forming material.
机译:已知粘蛋白是杯状和上皮细胞的粘液分泌的主要成分,其根据周围环境(即环境pH)表现出不同的行为,这引起了所测量的机械性能的急剧变化。在这项工作中,我们首先在力谱模式下采用了原子力显微镜(AFM)来评估猪粘蛋白膜在纳米尺度上的粘附性,以及由7.0至4.0之间的pH值变化引起的该特定因子的变化,这两者都是很常见的生物条件中的值。测量还涉及其他可变因素,例如压头化学性质(疏水性与亲水性),其在被测薄膜上的停留时间(0、1和/或2µs),以及提速(从0.1到10µm / s不等) )。第二种方法是考虑薄膜的宏观行为,这是由于它们在开发一套新的刺激响应性生物材料中具有潜在的适用性。这可以通过互补的Wilhelmy平板法(测试润湿特性)和对先前暴露于相应pH溶液的薄膜进行细胞增殖研究来实现。根据我们的结果,以最低pH(4.0)进行处理可使猪粘蛋白具有更强的亲水特性,对类似化学物质显示出更强的粘附力,并增强了细胞黏附和增殖能力,为它们的未来使用和开发开辟了新途径。被认为是形成支架的材料。

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