首页> 美国卫生研究院文献>Foods >The Differences in the Flavan-3-ol and Procyanidin Contents of the Japanese ‘Fuji’ and ‘Orin’ Apples Using a Rapid Quantitative High-Performance Liquid Chromatography Method: Estimation of the Japanese Intake of Flavan-3-ols and Procyanidins from Apple as Case Study
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The Differences in the Flavan-3-ol and Procyanidin Contents of the Japanese ‘Fuji’ and ‘Orin’ Apples Using a Rapid Quantitative High-Performance Liquid Chromatography Method: Estimation of the Japanese Intake of Flavan-3-ols and Procyanidins from Apple as Case Study

机译:使用快速定量高效液相色谱法的黄烷-3-醇和日本富士和奥林和奥林苹果的差异:估算日本香料-3-OLS和苹果原霉素案例分析

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摘要

Previously, we reported that apple polyphenols and their major active compounds, the flavan-3-ols and the procyanidins, can result in various health benefits in animals and humans, according to clinical studies. Here, we developed a rapid method for quantifying flavan-3-ols and procyanidins using high-performance liquid chromatography with fluorescence detection, where we investigated the amounts of flavan-3-ols and procyanidins in the Japanese major apple production centre, the Aomori Prefecture, from 2016 to 2018. The non-bagged ‘Fuji (n = 609)’, the bagged ‘Fuji (n = 1101)’, and the ‘Orin (n = 504)’ apples were evaluated in terms of their differences in flavan-3-ols and procyanidins based on apple variety and the controlled atmosphere storage. The bagging treatments of the ‘Fuji’ apples resulted in significantly higher concentrations of procyanidins, while changes in flavan-3-ols concentrations were not clearly observed by treatment. In addition, ‘Orin’ had a significantly higher concentration of procyanidins than that of ‘Fuji’. In contrast, the controlled atmosphere storage hardly caused any changes in the flavan-3-ol and procyanidin contents. Hence, we present the concentrations of flavan-3-ols and procyanidins in major Japanese apples using the rapid high-performance liquid chromatography method with fluorescence detection.
机译:此前,我们报道了苹果多酚及其主要的活性化合物,Flavan-3-Ols和Procyanidins,可根据临床研究导致动物和人类的各种健康益处。在这里,我们开发了一种使用荧光检测的高性能液相色谱法定量黄山-3-OLS和原霉素的快速方法,其中我们研究了青森县日本主要苹果生产中心的黄山-3-OLS和原硝酸胍的量从2016到2018年。根据他们在Flavan的差异方面评估了非袋装的'富士(n = 609)',袋子的'富士(n = 1101)'和'orin(n = 504)'苹果-3-OLS和Procyanidins基于苹果品种和受控气氛储存。 “富士”苹果的装袋治疗导致了浓度明显较高的原硝酸胍,而通过治疗不清楚地清楚地观察到氟烷-3-OLS浓度的变化。此外,“orin”具有比“Fuji”的浓度明显更高的胰岛浓度。相比之下,受控气氛贮藏几乎没有导致Flavan-3-Ol和原霉素含量的任何变化。因此,我们使用荧光检测的快速高效液相色谱法在主要日本苹果中呈现香兰-3-Ols和原霉素的浓度。

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