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一种新型基于氰基噻吩的酚类化合物在水包油型乳液中的合成、体外抗氧化性能及分布

Synthesis, In Vitro Antioxidant Properties and Distribution of a New Cyanothiophene-Based Phenolic Compound in Olive Oil-In-Water Emulsions.

作者信息

Losada-Barreiro Sonia, Sova Matej, Mravljak Janez, Saso Luciano, Bravo-Díaz Carlos

机构信息

Physical Chemistry Department, Chemistry Faculty, University of Vigo, E-36310 Vigo, Spain.

REQUIMTE-LAQV, Chemistry and Biochemistry Department, Science Faculty, University of Porto, PT-4169-007 Porto, Portugal.

出版信息

Antioxidants (Basel). 2020 Jul 16;9(7):623. doi: 10.3390/antiox9070623.

Abstract

We synthesized and determined the antioxidant activity and distribution of a new cyanothiophene-based compound, -(3-cyano-4,5,6,7-tetrahydrobenzo[]thiophen-2-yl)-3,5-dihydroxybenzamide (SIM-53B), in intact stripped olive oil-in-water emulsion. The in vitro antioxidant properties of SIM-53B were evaluated and compared to those for Trolox and resveratrol. Addition of an emulsifier (Tween 20) creates a narrow region, the aqueous-oil interface, and the distribution of SIM-53B can be described by two partition constants: (between aqueous/interfacial regions) and (between oil/interfacial regions). The effects of emulsifier concentration expressed in terms of the volume fraction, Φ, and O/W ratio were also evaluated on its distribution. SIM-53B is predominantly distributed (>90%) in the interfacial region of 1:9 (O/W) olive oil-in-water emulsions at the lowest emulsifier volume fraction (Φ = 0.005) and only a small fraction is located in the aqueous (<5%) and the oil (<5%) regions. Besides, the concentration of SIM-53B in the interfacial region of the emulsions is ~170-190-fold higher than the stoichiometric concentration, emphasizing the compartmentalization effects. Results suggest that the emulsifier volume fraction is a key parameter that may modulate significantly its concentration in the interface. Our study suggests that cyanothiophene-based compounds may be interesting additives for potential lipid protection in biomembranes or other lipid-based systems.

摘要

我们合成并测定了一种新型基于氰基噻吩的化合物——-(3-氰基-4,5,6,7-四氢苯并[]噻吩-2-基)-3,5-二羟基苯甲酰胺(SIM-53B)在完整的脱除橄榄油水包油乳液中的抗氧化活性及分布情况。评估了SIM-53B的体外抗氧化性能,并与Trolox和白藜芦醇的抗氧化性能进行了比较。添加乳化剂(吐温20)会形成一个狭窄区域,即水油界面,SIM-53B的分布可用两个分配常数来描述:(在水相/界面区域之间)和(在油相/界面区域之间)。还评估了以体积分数Φ表示的乳化剂浓度和油水比(O/W)对其分布的影响。在最低乳化剂体积分数(Φ = 0.005)下,SIM-53B主要分布(>90%)在1:9(O/W)橄榄油水包油乳液的界面区域,只有一小部分位于水相(<5%)和油相(<5%)区域。此外,乳液界面区域中SIM-53B的浓度比化学计量浓度高约170-190倍,突出了分区效应。结果表明,乳化剂体积分数是一个可能显著调节其在界面中浓度的关键参数。我们的研究表明,基于氰基噻吩的化合物可能是用于生物膜或其他基于脂质的系统中潜在脂质保护的有趣添加剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ae4/7402159/3fe05e562104/antioxidants-09-00623-sch001.jpg

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