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Influence of impurities and contact scale on the lubricating properties of bovine submaxillary mucin (BSM) films on a hydrophobic surface

机译:杂质和接触垢对疏水性表面牛下颌粘蛋白(BSM)膜润滑性能的影响

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摘要

Lubricating properties of bovine submaxillary mucin (BSM) on a compliant, hydrophobic surface were studied as influenced by impurities, in particular bovine serum albumin (BSA), at macro and nanoscale contacts by means of pin-on-disk tribometry and friction force microscopy (FFM), respectively. At both contact scales, the purity of BSM and the presence of BSA were quantitatively discriminated. The presence of BSA was responsible for higher frictional forces observed from BSM samples containing relatively larger amount of BSA. But, the mechanisms contributing to higher friction forces by BSA were different at different contact scales. At the macro scale contact, higher friction forces were caused by faster and dominant adsorption of BSA into the contacting area under a continuous cycle of desorption and readsorption of the macromolecules from tribostress. Nevertheless, all BSMs lowered the interfacial friction forces due to large contact area and a large number of BSM molecules in the contact area. At the nanoscale contact, however, no significant desorption of the macromolecules is expected in tribological contacts because of too small contact area and extremely small number of BSM molecules involved in the contact area. Instead, increasingly higher friction forces with increasing amount of BSA in BSM layer are attributed to higher viscosity caused by BSA in the layer. Comparable size of AFM probes with BSM molecules allowed them to penetrate through the BSM layers and to scratch on the underlying substrates, and thus induced higher friction forces compared to the sliding contact on bare substrates.
机译:通过针盘摩擦学和摩擦力显微镜研究了在宏观和纳米级接触下,杂质(特别是牛血清白蛋白(BSA))的影响,研究了牛下颌粘蛋白(BSM)在顺应性疏水表面上的润滑性能( FFM)。在两种接触规模下,均定量区分了BSM的纯度和BSA的存在。从含有相对大量BSA的BSM样品中观察到较高的摩擦力是BSA的存在所致。但是,在不同的接触范围内,BSA产生较高摩擦力的机理不同。在大尺度接触中,由于在摩擦作用下大分子的解吸和再吸收的连续循环中,BSA更快且占优势的吸附进入接触区域,从而引起较高的摩擦力。然而,由于大的接触面积和接触面积中大量的BSM分子,所有BSM都降低了界面摩擦力。然而,在纳米级接触中,由于接触面积太小以及接触面积中涉及的BSM分子数量极少,因此在摩擦学接触中不会出现大分子的明显脱附。取而代之的是,随着BSM层中BSA含量的增加,摩擦力越来越大,这归因于该层中BSA引起的较高粘度。 AFM探针与BSM分子的尺寸可比,使它们能够穿透BSM层并在下面的基底上刮擦,因此与在裸基底上的滑动接触相比,会产生更高的摩擦力。

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