OenoGrape 高级复合物的主要成分葡萄渣提取物和亚硒酸钠对目标人体细胞的生物活性:体外肠道吸收后的细胞内 ROS 清除和 Nrf2/ARE 诱导。

IF 6 2区 医学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Antioxidants Pub Date : 2024-11-14 DOI:10.3390/antiox13111392
Cécile Dufour, Camille Gironde, Mylène Rigal, Christophe Furger, Erwan Le Roux
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引用次数: 0

摘要

Oenobiol Sun Expert 是一种用于在日晒前增强皮肤健康的食品配方,它通过加入 OenoGrape Advanced Complex 进行了优化,OenoGrape Advanced Complex 包括葡萄渣提取物、增加的硒含量和 10%富含番茄红素的番茄提取物,这些成分具有很高的抗氧化潜力。为了评估这些单个成分和整体配方在细胞水平上的效果,我们采用了 AOP1 细胞抗氧化功效测定法来测量细胞内自由基清除活性,同时采用细胞抗氧化测定法(CAA 或 DCFH-DA)来评估质膜水平上的过氧化清除能力。间接抗氧化活性是通过稳定转染含有荧光素酶报告基因的细胞系进行检测的,该基因由抗氧化反应元件(ARE)控制,通过 Nrf2/Keap1-ARE 途径激活内源性抗氧化系统。我们的研究结果表明,在各种成分中,葡萄渣提取物和亚硒酸钠具有很高的抗氧化性和互补性。葡萄渣提取物在抑制自由基(AOP1 EC50 = 6.80 μg/mL)和激活 ARE 通路(ARE EC50 = 231.1 μg/mL)方面特别有效,而亚硒酸钠则通过在亚微克水平(EC50 = 0.367 μg/mL)激活 ARE 来发挥其作用。相比之下,富含番茄红素的番茄提取物对抗氧化作用的贡献并不显著。由这三种成分组成的 OenoGrape 高级复合物的抗自由基活性非常高效,与单个成分的结果一致(AOP1 EC50 = 15.78 µg/mL 和 ARE EC50 为 707.7 μg/mL)。同样,Oenobiol Sun Expert 配方仍具有清除自由基的活性(AOP1 EC50 = 36.63 µg/mL)。接着,进行了体外肠道跨上皮细胞转移实验。收集暴露于这些成分的细胞基底层,并使用相同的抗氧化细胞检测方法进行评估。在肝细胞和角质细胞上测量了直接和间接抗氧化活性,证明了葡萄渣提取物和亚硒酸钠的生物利用度和生物活性。这些发现表明,这种食品补充剂的成分有助于增强摄入后的细胞保护作用。
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Bioactivity of Grape Pomace Extract and Sodium Selenite, Key Components of the OenoGrape Advanced Complex, on Target Human Cells: Intracellular ROS Scavenging and Nrf2/ARE Induction Following In Vitro Intestinal Absorption.

Oenobiol Sun Expert, a food formulation designed to enhance skin health prior to sun exposure, has been optimized by incorporating the OenoGrape Advanced Complex, which includes grape pomace extract, increased selenium content and 10% lycopene-rich tomato extract, with these constituents exhibiting high antioxidant potential. To evaluate the effects of these individual ingredients and the overall formulation at the cellular level, the AOP1 cell antioxidant efficacy assay was employed to measure the intracellular free radical scavenging activity, while the Cell Antioxidant Assay (CAA or DCFH-DA) assay was used to assess peroxidation scavenging at the plasma membrane level. The indirect antioxidant activity was examined using stably transfected cell lines containing a luciferase reporter gene controlled by the Antioxidant Response Element (ARE), which activates the endogenous antioxidant system via the Nrf2/Keap1-ARE pathway. Our results indicate that among the individual components, grape pomace extract and sodium selenite possess high and complementary antioxidant properties. Grape pomace extract was particularly effective in inhibiting free radicals (AOP1 EC50 = 6.80 μg/mL) and activating the ARE pathway (ARE EC50 = 231.1 μg/mL), whereas sodium selenite exerted its effects through potent ARE activation at sub-microgram levels (EC50 = 0.367 μg/mL). In contrast, the lycopene-rich tomato extract did not show a notable contribution to the antioxidant effects. The antiradical activity of the OenoGrape Advanced Complex, comprising these three ingredients, was very efficient and consistent with the results obtained for the individual components (AOP1 EC50 = 15.78 µg/mL and ARE EC50 of 707.7 μg/mL). Similarly, the free radical scavenging activity still persisted in the Oenobiol Sun Expert formulation (AOP1 EC50 = 36.63 µg/mL). Next, in vitro intestinal transepithelial transfer experiments were performed. The basolateral compartments of cells exposed to the ingredients were collected and assessed using the same antioxidant cell assays. The direct and indirect antioxidant activities were measured on both hepatocytes and keratinocytes, demonstrating the bioavailability and bioactivity of grape pomace extract and sodium selenite. These finding suggest that the ingredients of this food supplement contribute to enhanced cytoprotection following ingestion.

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来源期刊
Antioxidants
Antioxidants Biochemistry, Genetics and Molecular Biology-Physiology
CiteScore
10.60
自引率
11.40%
发文量
2123
审稿时长
16.3 days
期刊介绍: Antioxidants (ISSN 2076-3921), provides an advanced forum for studies related to the science and technology of antioxidants. It publishes research papers, reviews and communications. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced. Electronic files and software regarding the full details of the calculation or experimental procedure, if unable to be published in a normal way, can be deposited as supplementary electronic material.
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