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海滩藜叶提取物的抗氧化生物活性。

Antioxidant Bioactivity of Extracts from Beach Cast Leaves of (L.) Delile.

机构信息

Laboratorio di Biochimica Marina ed Ecotossicologia, Dipartimento di Scienze Della Terra e del Mare DiSTeM, Università Degli Studi di Palermo, Via G. Barlotta 4, 91100 Trapani, Italy.

LEMAR, IRD, CNRS, Ifremer, Université de Brest, F-29280 Plouzane, France.

出版信息

Mar Drugs. 2021 Sep 30;19(10):560. doi: 10.3390/md19100560.

Abstract

The marine environment is a generous source of biologically active compounds useful for human health. In 50 years, about 25,000 bioactive marine compounds have been identified, with an increase of 5% per year. Peculiar feature of algae and plants is the production of secondary metabolites, such as polyphenols, synthesized as a form of adaptation to environmental stress. is a Mediterranean endemic and dominant seagrass and represents a biologically, ecologically and geologically important marine ecosystem. Within this study, methanolic and ethanolic extracts were generated from fresh and dried   leaves, with the aim to employ and valorize the beach cast leaves. The best yield and antioxidant activity (polyphenols content equal to 19.712 ± 0.496 mg GAE/g and DPPH IC50 of 0.090 µg/µL.) were recorded in 70% ethanol extracts (Gd-E4) obtained from leaves dried for two days at 60 °C and ground four times. HPLC analyses revealed the presence of polyphenols compounds (the most abundant of which was chicoric acid) with antioxidant and beneficial properties. Bioactive properties of the Gd-E4 extracts were evaluated in vitro using fibroblast cells line (HS-68), subjected to UV induced oxidative stress. Pre-treatment of cells with Gd-E4 extracts led to significant protection against oxidative stress and mortality associated with UV exposure, thus highlighting the beneficial properties of antioxidants compounds produced by these marine plants against photo damage, free radicals and associated negative cellular effects. Beach cast leaves selection, processing and extraction procedures, and the in vitro assay results suggested the potentiality of a sustainable approach for the biotechnological exploitation of this resource and could serve a model for other marine resources.

摘要

海洋环境是生物活性化合物的丰富来源,这些化合物对人类健康有益。在 50 年内,已经鉴定出约 25000 种具有生物活性的海洋化合物,每年增长 5%。藻类和植物的一个独特特征是产生次生代谢物,如多酚,作为适应环境压力的一种形式。 是地中海特有的优势海草,是具有生物、生态和地质重要性的海洋生态系统。在本研究中,从新鲜和干燥的 叶子中生成了甲醇和乙醇提取物,目的是利用和利用海滩上的叶子。在 70%乙醇提取物(Gd-E4)中获得了最佳产量和抗氧化活性(多酚含量等于 19.712±0.496mgGAE/g,DPPH IC50 为 0.090µg/µL.),这些提取物是由在 60°C 下干燥两天并粉碎四次的叶子得到的。HPLC 分析表明存在具有抗氧化和有益特性的多酚化合物(其中最丰富的是 chicoric acid)。使用成纤维细胞系(HS-68)体外评估 Gd-E4 提取物的生物活性特性,这些细胞受到 UV 诱导的氧化应激。用 Gd-E4 提取物预处理细胞可显著防止与 UV 暴露相关的氧化应激和死亡率,从而突出了这些海洋植物产生的抗氧化化合物对光损伤、自由基和相关的负面细胞效应的有益特性。海滩上的叶子选择、加工和提取程序,以及体外试验结果表明,这种资源的生物技术利用具有可持续性的潜力,并可以为其他海洋资源提供一个模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75bc/8539254/aa32a3f0ba96/marinedrugs-19-00560-g001.jpg

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