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揭开层层谜团:探究聚电解质层层组装对水包油纳米乳液表面结构和稳定性的影响。

Peeling back the layers: Investigating the effects of polyelectrolyte layering on surface structure and stability of oil-in-water nanoemulsions.

机构信息

Department of Chemistry and Biochemistry, University of Oregon, Eugene, OR 97403, United States.

出版信息

J Colloid Interface Sci. 2021 Oct;599:706-716. doi: 10.1016/j.jcis.2021.04.115. Epub 2021 Apr 24.

Abstract

HYPOTHESIS

Layer-by-layer deposition of polyelectrolytes is a useful technique for modifying surface functionalities. For drug delivery systems, alternating layers of biopolymers coat nanoemulsions, which house and protect the cargo until the time and destination of delivery. Here, we investigate molecular factors contributing to the stability and interfacial properties of nanoemulsions prepared by a co-adsorption of polymers poly(styrene sulfonate) and polyethylenimine (PEI), and surfactant dodecyltrimethylammonium bromide. We hypothesize the interplay between electrosteric and hydrophobic effects upon multi-polymer co-adsorption contributes to both macroscopic and molecular-level interfacial properties of nanoemulsions.

EXPERIMENTS

To probe interfacial layering properties, we use vibrational sum frequency scattering spectroscopy with ζ-potential measurements to determine the adsorptive behavior and molecular conformational arrangement of the polymer layers. Complementing these interfacial studies are dynamic light scattering experiments measuring the nanoemulsion size distribution and polydispersity index over a 30-day period.

FINDINGS

Our light scattering, ζ-potential, and spectroscopic results of the nanoemulsion surface show that the duration of droplet stability and the degree of molecular orientation of adsorbed polymers can be tuned by surfactant concentration, PEI concentration, and pH. These results illustrate how molecular surface properties of multi-polymer coated nanoemulsions contribute to synergistic effects and droplet stability, enabling advancements in applications surrounding biopharmaceuticals, cosmetics, and food sciences.

摘要

假设

层层沉积聚电解质是一种有用的技术,可用于修饰表面功能。对于药物输送系统,生物聚合物的交替层涂覆纳米乳液,纳米乳液容纳和保护货物,直到输送的时间和目的地。在这里,我们研究了导致通过聚合物聚(苯乙烯磺酸盐)和聚乙烯亚胺(PEI)和表面活性剂十二烷基三甲基溴化铵的共吸附制备的纳米乳液稳定和界面性能的分子因素。我们假设多聚合物共吸附时的电动和疏水性相互作用对纳米乳液的宏观和分子水平的界面性质都有贡献。

实验

为了探测界面层性质,我们使用振动和频率散射光谱与 ζ-电位测量来确定聚合物层的吸附行为和分子构象排列。这些界面研究的补充是动态光散射实验,该实验在 30 天内测量纳米乳液的粒径分布和多分散指数。

结果

我们的纳米乳液表面的光散射、ζ-电位和光谱结果表明,通过表面活性剂浓度、PEI 浓度和 pH 值可以调整液滴稳定性的持续时间和吸附聚合物的分子取向程度。这些结果说明了多聚合物涂覆的纳米乳液的分子表面性质如何有助于协同效应和液滴稳定性,从而推动生物制药、化妆品和食品科学领域的应用进展。

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