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膨化处理对大麦芽酚酰胺在 Caco-2 肠细胞培养中吸收和抗氧化作用的影响。

Enhanced Lignanamide Absorption and Antioxidative Effect of Extruded Hempseed ( L.) Hull in Caco-2 Intestinal Cell Culture.

机构信息

School of Agriculture and Food, The University of Melbourne, Parkville, Vic 3010, Australia.

CSIRO Agriculture & Food, Werribee, Vic 3030, Australia.

出版信息

J Agric Food Chem. 2021 Sep 29;69(38):11259-11271. doi: 10.1021/acs.jafc.1c04500. Epub 2021 Sep 14.

Abstract

Despite the latest pursuit to discover novel phenolic compounds in hempseed and its biological properties, it remains a mystery whether they can be absorbed in the human body. Extrusion treatment and extraction of the free phenolic fraction significantly ( < 0.05) improved human Caco-2 intestinal cell absorption for hempseed hull lignanamides including cannabisin B ( value of 1.35 × 10 ± 1.0 × 10) as compared to the bound fraction of raw hull ( value of 2.82 × 10 ± 5.2 × 10). Co-supplementation of the flavonoid naringenin (20 μM) further improved these absorption rates. Higher cellular antioxidant activity was observed in the free extraction fractions. Treatment with the free phenolic fraction of extruded hempseed hull (100 mg/mL) alleviated -butyl hydroperoxide's (25 μM) negative effects on cell viability, intracellular malondialdehyde levels, apoptosis induction, glutathione S-transferase, and glutathione levels. RNA-sequencing with the limma method unveiled a total of 2795 differentially expressed genes in 21 day-old Caco-2 intestinal cells, suggesting the changes in cell metabolism after exposure to extruded hempseed hull extract. This study could promote the utilization of extrusion technology to improve the absorption and antioxidant capacities of bioactive phenolics in plant food processing byproducts.

摘要

尽管最近一直在研究大麻籽油中的新型酚类化合物及其生物特性,但它们是否能被人体吸收仍然是一个谜。与生大麻籽壳的结合酚类( value of 2.82 × 10 ± 5.2 × 10)相比,挤压处理和游离酚类部分的提取显著( < 0.05)提高了大麻籽壳木质素酰胺类化合物包括大麻素 B( value of 1.35 × 10 ± 1.0 × 10)在人 Caco-2 肠细胞中的吸收。与生大麻籽壳相比,游离酚类提取物对大麻籽壳的游离部分( value of 2.82 × 10 ± 5.2 × 10)的吸收有显著提高( value of 1.35 × 10 ± 1.0 × 10)。类黄酮柚皮素(20 μM)的共同补充进一步提高了这些吸收速率。游离提取部分的细胞抗氧化活性更高。用挤压大麻籽壳的游离酚类提取物(100 mg/mL)处理可以减轻 -丁基过氧化物(25 μM)对细胞活力、细胞内丙二醛水平、细胞凋亡诱导、谷胱甘肽 S-转移酶和谷胱甘肽水平的负面影响。用 limma 方法对 21 天大的 Caco-2 肠细胞进行 RNA 测序,共发现 2795 个差异表达基因,表明暴露于挤压大麻籽壳提取物后细胞代谢的变化。本研究可以促进挤压技术的利用,以提高植物食品加工副产物中生物活性酚类物质的吸收和抗氧化能力。

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