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使用尺寸分布泰勒分散分析评估抗氧化剂与表面活性剂的相互作用:测量抗氧化剂分配和天然态胶束的尺寸

Evaluation of antioxidant-surfactant interactions using size distribution Taylor dispersion analysis: measuring antioxidant partitioning and size of native-state micelles.

作者信息

Durand Erwann, Troncho Théo, Villeneuve Pierre

机构信息

CIRAD, UMR QualiSud, F-34398, Montpellier, France.

QUALISUD, Univ Montpellier, Avignon Université, CIRAD, Institut Agro, IRD, Université de La Réunion, Montpellier, France.

出版信息

Curr Res Food Sci. 2025 Jul 11;11:101142. doi: 10.1016/j.crfs.2025.101142. eCollection 2025.

Abstract

In food emulsions, excess surfactants often lead to the formation of micelles, which play a critical role in modulating the localization and efficacy of antioxidants. The interactions between antioxidants and micelles can either enhance or impair antioxidant function. Despite this importance, methodologies to study these interactions in native-state micelles remain limited. In this study, we employed Size Distribution - Taylor Dispersion Analysis (SD-TDA), a fast and absolute technique for measuring diffusion coefficients and thus hydrodynamic radii, to investigate antioxidant-surfactant interactions in sodium dodecyl sulfate (SDS) micelles, both below and above its critical micelle concentration. Studied antioxidants include α-tocopherol, curcumin, gallic acid, propyl gallate, and octyl gallate. The results revealed distinct behaviors: while gallic acid remained in the aqueous phase regardless of SDS presence, octyl gallate appeared to co-micellize with SDS. Curcumin was fully incorporated into SDS micelles, with micelle size increasing from 4.68 ± 1.52 nm to 6.92 ± 0.79 nm at the maximum loading capacity of 3.57 ± 0.05 mM curcumin with 20 mM SDS. α-Tocopherol also localized within SDS micelles; however, above 2.5 mM, three distinct populations were identified using SD-TDA-free tocopherol in water, tocopherol in small micelles, and swollen SDS micelles. Unlike Dynamic Light Scattering, SD-TDA successfully resolved these populations and provided quantitative insights into their size and α-tocopherol partitioning. These findings highlight the potential of SD-TDA as a powerful tool for studying antioxidant partitioning and micellar interactions, opening the way for more in-depth investigations into the role of micelles in antioxidant efficiency in emulsified systems.

摘要

在食品乳液中,过量的表面活性剂常常导致胶束的形成,而胶束在调节抗氧化剂的定位和功效方面起着关键作用。抗氧化剂与胶束之间的相互作用既可以增强也可以损害抗氧化功能。尽管这一点很重要,但研究天然状态胶束中这些相互作用的方法仍然有限。在本研究中,我们采用尺寸分布 - 泰勒分散分析(SD - TDA),一种用于测量扩散系数从而测定流体动力学半径的快速且绝对的技术,来研究十二烷基硫酸钠(SDS)胶束在其临界胶束浓度上下时抗氧化剂与表面活性剂之间的相互作用。所研究的抗氧化剂包括α - 生育酚、姜黄素、没食子酸、没食子酸丙酯和没食子酸辛酯。结果揭示了不同的行为:无论是否存在SDS,没食子酸都保留在水相中,而没食子酸辛酯似乎与SDS共胶束化。姜黄素完全融入SDS胶束中,在20 mM SDS存在下,当姜黄素的最大负载量为3.57±0.05 mM时,胶束尺寸从4.68±1.52 nm增加到6.92±0.79 nm。α - 生育酚也定位于SDS胶束内;然而,在2.5 mM以上,使用SD - TDA可识别出三个不同的群体——水中的游离生育酚、小胶束中的生育酚以及膨胀的SDS胶束。与动态光散射不同,SD - TDA成功解析了这些群体,并提供了关于它们的大小和α - 生育酚分配的定量见解。这些发现突出了SD - TDA作为研究抗氧化剂分配和胶束相互作用的有力工具的潜力,为更深入研究胶束在乳化体系中抗氧化效率的作用开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3f6c/12281138/8a271350bb19/ga1.jpg

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