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Recovery of Polyphenols from Brewer’s Spent Grains

机译:从布鲁尔的废谷物中回收多酚

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摘要

The recovery of antioxidant polyphenols from light, dark and mix brewer’s spent grain (BSG) using conventional maceration, microwave and ultrasound assisted extraction was investigated. Total polyphenols were measured in the crude (60% acetone), liquor extracts (saponified with 0.75% NaOH) and in their acidified ethyl acetate (EtOAc) partitioned fractions both by spectrophotometry involving Folin–Ciocalteu reagent and liquid-chromatography-tandem mass spectrometry (LC-MS/MS) methods. Irrespective of the extraction methods used, saponification of BSG yielded higher polyphenols than in the crude extracts. The EtOAc fractionations yielded the highest total phenolic content (TPC) ranging from 3.01 ± 0.19 to 4.71 ± 0.28 mg gallic acid equivalent per g of BSG dry weight. The corresponding total polyphenols quantified by LC-MS/MS ranged from 549.9 ± 41.5 to 2741.1 ± 5.2 µg/g of BSG dry weight. Microwave and ultrasound with the parameters and equipment used did not improve the total polyphenol yield when compared to the conventional maceration method. Furthermore, the spectrophotometric quantification of the liquors overestimated the TPC, while the LC-MS/MS quantification gave a closer representation of the total polyphenols in all the extracts. The total polyphenols were in the following order in the EtOAc fractions: BSG light > BSG Mix > BSG dark, and thus suggested BSG light as a sustainable, low cost source of natural antioxidants that may be tapped for applications in food and phytopharmaceutical industries.
机译:研究了使用常规浸渍,微波和超声辅助萃取从浅色,深色和混合啤酒的啤酒糟(BSG)中回收抗氧化剂多酚的方法。通过分光光度法(包括Folin–Ciocalteu试剂和液相色谱-串联质谱法)对粗品(60%丙酮),液体提取物(用0.75%NaOH皂化)及其酸化的乙酸乙酯(EtOAc)分离馏分中的总多酚进行测量( LC-MS / MS)方法。不管使用哪种提取方法,BSG的皂化作用都比粗提取物中的多酚含量更高。 EtOAc分馏产生的最高总酚含量(TPC)为每克BSG干重3.01±0.19至4.71±0.28 mg没食子酸当量。通过LC-MS / MS定量得到的相应多酚总量为BSG干重的549.9±41.5至2741.1±5.2 µg / g。与常规浸渍法相比,具有所用参数和设备的微波和超声波无法提高总多酚产率。此外,分液的分光光度定量法高估了TPC,而LC-MS / MS定量法则更准确地表示了所有提取物中的总多酚。总的多酚在EtOAc馏分中的排列顺序如下:BSG浅色> BSG混合物> BSG深色,因此建议将BSG浅色作为一种可持续的低成本天然抗氧化剂来源,可用于食品和植物制药行业。

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