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小扁豆芽中褪黑素的生物利用度及其在大鼠血浆抗氧化状态中的作用。

Bioavailability of Melatonin from Lentil Sprouts and Its Role in the Plasmatic Antioxidant Status in Rats.

作者信息

Rebollo-Hernanz Miguel, Aguilera Yolanda, Herrera Teresa, Cayuelas L Tábata, Dueñas Montserrat, Rodríguez-Rodríguez Pilar, Ramiro-Cortijo David, Arribas Silvia M, Martín-Cabrejas María A

机构信息

Department of Agricultural Chemistry and Food Science, School of Science, Universidad Autónoma de Madrid, 28049 Madrid, Spain.

Institute of Food Science Research, CIAL (UAM-CSIC), 28049 Madrid, Spain.

出版信息

Foods. 2020 Mar 12;9(3):330. doi: 10.3390/foods9030330.

Abstract

Melatonin is a multifunctional antioxidant neurohormone found in plant foods such as lentil sprouts. We aim to evaluate the effect of lentil sprout intake on the plasmatic levels of melatonin and metabolically related compounds (plasmatic serotonin and urinary 6-sulfatoxymelatonin), total phenolic compounds, and plasmatic antioxidant status, and compare it with synthetic melatonin. The germination of lentils increases the content of melatonin. However, the phenolic content diminished due to the loss of phenolic acids and flavan-3-ols. The flavonol content remained unaltered, being the main phenolic family in lentil sprouts, primarily composed of kaempferol glycosides. Sprague Dawley rats were used to investigate the pharmacokinetic profile of melatonin after oral administration of a lentil sprout extract and to evaluate plasma and urine melatonin and related biomarkers and antioxidant capacity. Melatonin showed maximum concentration (45.4 pg/mL) 90 min after lentil sprout administration. The plasmatic melatonin levels increased after lentil sprout intake (70%, < 0.05) with respect to the control, 1.2-fold more than after synthetic melatonin ingestion. These increments correlated with urinary 6-sulfatoxymelatonin content ( < 0.05), a key biomarker of plasmatic melatonin. Nonetheless, the phenolic compound content did not exhibit any significant variation. Plasmatic antioxidant status increased in the antioxidant capacity upon both lentil sprout and synthetic melatonin administration. For the first time, we investigated the bioavailability of melatonin from lentil sprouts and its role in plasmatic antioxidant status. We concluded that their intake could increase melatonin plasmatic concentration and attenuate plasmatic oxidative stress.

摘要

褪黑素是一种多功能抗氧化神经激素,存在于小扁豆芽等植物性食物中。我们旨在评估摄入小扁豆芽对褪黑素及代谢相关化合物(血浆血清素和尿6-硫酸氧褪黑素)的血浆水平、总酚类化合物以及血浆抗氧化状态的影响,并将其与合成褪黑素进行比较。小扁豆发芽会增加褪黑素的含量。然而,由于酚酸和黄烷-3-醇的损失,酚类含量有所减少。黄酮醇含量保持不变,是小扁豆芽中的主要酚类家族,主要由山奈酚糖苷组成。使用Sprague Dawley大鼠研究口服小扁豆芽提取物后褪黑素的药代动力学特征,并评估血浆和尿液中的褪黑素及相关生物标志物和抗氧化能力。给予小扁豆芽后90分钟,褪黑素显示出最大浓度(45.4 pg/mL)。与对照组相比,摄入小扁豆芽后血浆褪黑素水平升高(70%,<0.05),比摄入合成褪黑素后高出1.2倍。这些升高与尿6-硫酸氧褪黑素含量相关(<0.05),尿6-硫酸氧褪黑素是血浆褪黑素的关键生物标志物。尽管如此,酚类化合物含量没有显示出任何显著变化。给予小扁豆芽和合成褪黑素后,血浆抗氧化状态的抗氧化能力均有所增加。我们首次研究了小扁豆芽中褪黑素的生物利用度及其在血浆抗氧化状态中的作用。我们得出结论,摄入小扁豆芽可以提高血浆褪黑素浓度并减轻血浆氧化应激。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e10/7143261/3040d1d25aba/foods-09-00330-g001.jpg

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