Interfacial properties of protein particles at fluid/fluid interfaces and relationship with the stability of foams and emulsions

A. Fameau, E. Guzmán, H. Ritacco, A. Saint‐Jalmes
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Abstract

It is now well-known that the assembly of particles at fluid/fluid interfaces, and the resulting dynamical properties of such particle-laden interfaces can provide high stabilization of dispersed systems such as emulsions and foams. Here, we focus on the emerging case of “protein particles,” a novel family of bio particles. We provide an updated perspective about their definition, production, bulk and interface properties, highlighting the most recent results of the obtained bioparticle-laden interfaces, and how such protein particles can stabilize liquid dispersions. The ability of protein particles for undergoing a fast adsorption to fluid/fluid interfaces and for forming viscoelastic layers play a key role on the prevention of drainage, coalescence, or coarsening/ripening, which results in the formation of very stable particle-stabilized foams and emulsions. Therefore, protein particles are an excellent bio-based alternative to synthetic surfactants and other conventional stabilizers for ensuring the stabilization of a broad range of dispersed systems, opening new avenues for the design of new products with interest for cosmetic, food and biomedical industries.
蛋白质颗粒在流体/流体界面上的界面特性及其与泡沫和乳液稳定性的关系
众所周知,颗粒在流体/流体界面上的聚集,以及由此产生的颗粒负载界面的动力学特性,可以为分散型体系(如乳液和泡沫)提供高稳定性。在这里,我们关注的是新出现的“蛋白质颗粒”,一种新的生物颗粒家族。我们提供了关于它们的定义、生产、体积和界面特性的最新观点,重点介绍了获得的生物颗粒负载界面的最新结果,以及这些蛋白质颗粒如何稳定液体分散体。蛋白质颗粒对流体/流体界面的快速吸附和形成粘弹性层的能力在防止排水、聚结或粗化/成熟方面发挥了关键作用,从而形成非常稳定的颗粒稳定泡沫和乳液。因此,蛋白质颗粒是合成表面活性剂和其他传统稳定剂的优秀生物基替代品,可确保广泛分散系统的稳定性,为化妆品,食品和生物医学行业的新产品设计开辟了新的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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