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通过包封于非离子表面活性剂泡囊中来保存白藜芦醇的抗氧化能力。

Preservation of the Antioxidant Capacity of Resveratrol via Encapsulation in Niosomes.

作者信息

Machado Noelia D, Gutiérrez Gemma, Matos María, Fernández Mariana A

机构信息

Facultad de Ciencias Químicas, Departamento de Química Orgánica, Universidad Nacional de Córdoba, Ciudad Universitaria, Córdoba X5000HUA, Argentina.

Instituto de Investigaciones en Físico-Química de Córdoba, INFIQC-CONICET, Córdoba X5000HUA, Argentina.

出版信息

Foods. 2021 Apr 30;10(5):988. doi: 10.3390/foods10050988.

Abstract

Resveratrol (RSV) is a natural polyphenol which produces several benefits to human health, being the isomer the most bioactive. However, its systemic absorption is limited due to its low water solubility, that reduces the oral bioavailability, and its chemical instability (owing to the - RSV isomer conversion upon light irradiation). Thus, encapsulation of this bioactive compound is required to protect it from destructive environmental conditions. Here, -RSV was encapsulated in food grade nanovesicles formed by Tween 80 and Span 80, with or without the addition of dodecanol (Dod) as membrane stabilizer. The size and shape of niosomes were evaluated by microscopy (TEM) and light scattering. RSV was successfully encapsulated in the vesicular systems (49-57%). The effect of Dod in the membrane bilayer was evaluated on the RSV in vitro release experiments under simulated gastrointestinal conditions. The total antioxidant capacity of the encapsulated polyphenol was measured using radicals' assays (DPPH and ABTS). The niosomes were able to maintain almost the total antioxidant capacity of encapsulated RSV, also preserved the ~85% of -RSV, thus offering considerable protection against high energy irradiation. These results make these systems suitable for different applications, particularly for photosensitive compounds.

摘要

白藜芦醇(RSV)是一种天然多酚,对人体健康有多种益处,其反式异构体生物活性最强。然而,由于其水溶性低,会降低口服生物利用度,且具有化学不稳定性(由于光照下反式-RSV异构体的转化),其全身吸收受到限制。因此,需要对这种生物活性化合物进行包封,以保护其免受破坏性环境条件的影响。在此,反式-RSV被包封在由吐温80和司盘80形成的食品级纳米囊泡中,添加或不添加十二烷醇(Dod)作为膜稳定剂。通过显微镜(透射电子显微镜)和光散射评估了脂质体的大小和形状。RSV成功包封在囊泡系统中(49%-57%)。在模拟胃肠道条件下的体外释放实验中,评估了Dod对膜双层中RSV的影响。使用自由基测定法(DPPH和ABTS)测量了包封多酚的总抗氧化能力。脂质体能够保持包封RSV几乎全部的抗氧化能力,还保留了约85%的反式-RSV,从而对高能辐射提供了相当大的保护。这些结果使这些系统适用于不同的应用,特别是对于光敏化合物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3caa/8147147/bbf456c0327c/foods-10-00988-g001.jpg

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