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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Production of free and glycosylated isoflavones in in vitro soybean (Glycine max L.) hypocotyl cell suspensions and comparison with industrial seed extracts
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Production of free and glycosylated isoflavones in in vitro soybean (Glycine max L.) hypocotyl cell suspensions and comparison with industrial seed extracts

机译:体外大豆下胚轴细胞悬液中游离和糖基化异黄酮的产生及其与工业种子提取物的比较

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摘要

Glycine max is one of the major sources of phytochemicals, in particular of isoflavones, a class of phytoestrogens with ascertained beneficial effects on human health. In the present study, in vitro callus production from soybean hypocotyl seedling explants and cell suspensions were optimized. Time-courses having 20, 40 and 60 g/L of initial cell inoculum were performed to determine the concentration most suitable for isoflavone production. The amount of total polyphenols and total flavonoids as well as the antioxidant capacity of both cell and culture media fractions were measured by means of spectrophotometric methods. The levels of aglycone and glycosylated isoflavones (didzein, genistein, glycitein, didzin, genistin, glycitin), as well as of ferulic acid, vanillic acid and vanillin, were determined by HPLC-DAD. On average, 93.5 % of the total (cells plus media) isoflavones in soybean cell suspensions were detected as aglycones. Concentrated cell cultures as well as industrial soybean seed extracts were enzymatically hydrolyzed to release the aglycones and their metabolic profiles were analysed by HPLC-DAD. In contrast to cell suspensions, in undigested seed extract the aglycon form represented only 16.8 % of the total isoflavones amount. After enzymatic treatment, the antioxidant capacity increased by 30 and 33 %, respectively, in concentrated cell and seed extracts, demonstrating the presence of a larger amount of bioactive metabolites after digestion. At the present extraction conditions, soybean concentrated cell suspensions yielded 5.8-fold more total isoflavones (mostly in the free form) than seed extracts, leading to hypothesise their possible use as ingredients for cosmetic and nutraceutical applications.
机译:大豆最大是植物化学物质的主要来源之一,尤其是异黄酮,这是一类对人体健康具有确定有益作用的植物雌激素。在本研究中,优化了大豆下胚轴幼苗外植体和细胞悬浮液的体外愈伤组织生产。进行具有20、40和60 g / L初始细胞接种物的时间过程,以确定最适合于异黄酮生产的浓度。通过分光光度法测量总多酚和总黄酮的量以及细胞和培养基级分的抗氧化能力。 HPLC-DAD测定了糖苷配基和糖基化异黄酮(地西丁,金雀异黄素,glycitein,didzin,genistin,glycitin)以及阿魏酸,香草酸和香草醛的水平。平均而言,大豆细胞悬液中的总异黄酮(细胞加培养基)中的93.5%被检测为糖苷配基。将浓缩的细胞培养物以及工业大豆种子提取物进行酶水解以释放糖苷配基,并通过HPLC-DAD分析其代谢谱。与细胞悬浮液相反,在未消化的种子提取物中,糖苷配基形式仅占异黄酮总量的16.8%。酶处理后,浓缩的细胞和种子提取物中的抗氧化能力分别提高了30%和33%,表明消化后存在大量生物活性代谢物。在目前的提取条件下,大豆浓缩细胞悬液产生的总异黄酮(大部分为游离形式)比种子提取物多5.8倍,从而推测它们可能用作化妆品和营养保健品的成分。

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