Department of Mechanical Engineering, Technical University of Denmark , 2800 Kongens Lyngby, Denmark.
Department of Biomedical Sciences, Faculty of Health and Societyand Biofilms-Research Center for Biointerfaces, Malmö University , 20506, Malmö, Sweden.
Langmuir. 2016 Sep 27;32(38):9687-96. doi: 10.1021/acs.langmuir.6b02057. Epub 2016 Sep 13.
The structural and mechanical properties of thin films generated from two types of mucins, namely, bovine submaxillary mucin (BSM) and porcine gastric mucin (PGM) in aqueous environment were investigated with several bulk and surface analytical techniques. Both mucins generated hydrated films on hydrophobic polydimethylsiloxane (PDMS) surfaces from spontaneous adsorption arising from their amphiphilic characteristic. However, BSM formed more elastic films than PGM at neutral pH condition. This structural difference was manifested from the initial film formation processes to the responses to shear stresses applied to the films. Acidification of environmental pH led to strengthening the elastic character of BSM films with increased adsorbed mass, whereas an opposite trend was observed for PGM films. We propose that this contrast originates from that negatively charged motifs are present for both the central and terminal regions of BSM molecule, whereas a similar magnitude of negative charges is localized at the termini of PGM molecule. Given that hydrophobic motifs acting as an anchor are also localized in the terminal region, electrostatic repulsion between anchoring units of PGM molecules on a nonpolar PDMS surface leads to weakening of the mechanical integrity of the films.
采用多种体相和表面分析技术研究了两种黏蛋白(牛颌下黏蛋白(BSM)和猪胃黏蛋白(PGM))在水相环境中生成的薄膜的结构和力学性能。由于其两亲特性,两种黏蛋白都可以在疏水性聚二甲基硅氧烷(PDMS)表面上自发吸附生成水合薄膜。然而,在中性 pH 条件下,BSM 形成的薄膜比 PGM 更具弹性。这种结构差异体现在初始成膜过程以及对施加在薄膜上的剪切力的响应中。环境 pH 值的酸化会增强 BSM 薄膜的弹性特性,同时增加吸附质量,而 PGM 薄膜则表现出相反的趋势。我们提出,这种对比源于 BSM 分子的中心和末端区域都存在带负电荷的基序,而类似大小的负电荷则定位于 PGM 分子的末端。考虑到充当锚的疏水性基序也定位于末端区域,PGM 分子在非极性 PDMS 表面上的锚固单元之间的静电排斥导致薄膜的机械完整性减弱。