Institute of Food, Nutrition and Health, ETH Zürich, Zürich 8092, Switzerland.
Laboratory for Soft Materials and Interfaces, Department of Materials, ETH Zürich, Zürich 8093, Switzerland.
Colloids Surf B Biointerfaces. 2022 Sep;217:112595. doi: 10.1016/j.colsurfb.2022.112595. Epub 2022 May 27.
Understanding globular protein adsorption to fluid interfaces, their interfacial assembly, and structural reorganization is not only important in the food industry, but also in medicine and biology. However, due to their intrinsic structural complexity, a unifying description of these phenomena remains elusive. Herein, we propose N-isopropylacrylamide microgels as a promising model system to isolate different aspects of adsorption, dilatational rheology, and interfacial structure at fluid interfaces with a wide range of interfacial tensions, and compare the results with the ones of globular proteins. In particular, the steady-state spontaneously-adsorbed interfacial pressure of microgels correlates closely to that of globular proteins, following the same power-law behavior as a function of the initial surface tension. However, the dilatational rheology of spontaneously-adsorbed microgel layers is dominated by the presence of a loosely packed polymer corona spread at the interface, and it thus exhibits a similar mechanical response as flexible, unstructured proteins, which are significantly weaker than globular ones. Finally, structurally, microgels reveal a similar spreading and flattening upon adsorption as globular proteins do. In conclusion, microgels offer interesting opportunities to act as powerful model systems to unravel the complex behavior of proteins at fluid interfaces.
理解球形蛋白质在流体界面上的吸附、界面组装和结构重组不仅在食品工业中很重要,在医学和生物学中也同样重要。然而,由于其内在的结构复杂性,对这些现象进行统一描述仍然难以实现。在此,我们提出 N-异丙基丙烯酰胺微凝胶作为一个很有前途的模型体系,可以在广泛的界面张力范围内,分离吸附、膨胀流变和界面结构的不同方面,并将结果与球形蛋白质进行比较。特别是,微凝胶的稳态自发吸附界面压力与球形蛋白质密切相关,随初始表面张力的函数呈相同的幂律行为。然而,自发吸附的微凝胶层的膨胀流变主要由界面上展开的疏松聚合物冠层的存在所控制,因此表现出与柔性、无结构蛋白质相似的机械响应,其强度明显低于球形蛋白质。最后,在结构上,微凝胶在吸附时表现出与球形蛋白质相似的展开和平整化。总之,微凝胶为研究蛋白质在流体界面上的复杂行为提供了有趣的机会,可以作为有力的模型体系。