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食用蘑菇 Neolentinus lepideus 中生物活性化合物对其抗氧化能力的贡献。

Contribution of Bioactive Compounds to the Antioxidant Capacity of the Edible Mushroom Neolentinus lepideus.

机构信息

Centro de Investigación en Alimentación y Desarrollo, A. C., Carretera Gustavo Enrique Astiazarán Rosas, No. 46, Col. La Victoria, CP. 83304, Hermosillo, Sonora, Mexico.

Instituto de Ecología, A.C. (INECOL), Carretera antigua a Coatepec, No. 351, el Haya, CP. 91073, Xalapa, Veracruz, Mexico.

出版信息

Chem Biodivers. 2021 Jul;18(7):e2100085. doi: 10.1002/cbdv.202100085. Epub 2021 Jun 14.

Abstract

Neolentinus lepideus is a fungus consumed by rural communities in Central America and Asia due to its rich flavor; however, little information on its chemical composition is available. With this in mind, the objective of this work was to determine the content of vitamin E and C, ergosterol, and phenolic compounds of this fungus, as well as its antioxidant capacity. The quantified bioactive compounds were two isoforms of vitamin E, highlighting α-tocopherol (3370.35 mg/100 g dry weight, DW) and ergosterol (11.70 mg/100 g DW). The total phenolic content was 164.80 mg gallic acid equivalents/100 g, and nine phenolic compounds were identified (protocatechuic, p-hydroxybenzoic, caffeic, vanillic, ferulic, salicylic, p-anisic, trans-cinnamic acids, and scopoletin). The highest antioxidant capacity was detected in the lipophilic extract with TEAC (27688 μmoles Trolox equivalents/100 g). These results suggest that lipophilic compounds are among the main bioactive compounds in N. lepideus, and they might exhibit the highest radical scavenging properties in non-polar extracts.

摘要

Neolentinus lepideus 是一种真菌,因其浓郁的风味而被中美洲和亚洲的农村社区食用;然而,关于其化学成分的信息却很少。有鉴于此,本工作的目的是确定这种真菌中维生素 E 和 C、麦角甾醇和酚类化合物的含量以及其抗氧化能力。定量的生物活性化合物有两种维生素 E 异构体,突出了 α-生育酚(3370.35mg/100g 干重,DW)和麦角甾醇(11.70mg/100g DW)。总酚含量为 164.80mg 没食子酸当量/100g,鉴定出了 9 种酚类化合物(原儿茶酸、对羟基苯甲酸、咖啡酸、香草酸、阿魏酸、水杨酸、对茴香酸、反式肉桂酸和东莨菪内酯)。亲脂性提取物中的 TEAC(27688μmoles Trolox 当量/100g)检测到了最高的抗氧化能力。这些结果表明,亲脂性化合物是 N. lepideus 中的主要生物活性化合物之一,它们在非极性提取物中可能表现出最高的自由基清除特性。

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