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首页> 外文期刊>Revista Brasileira de Farmacognosia >Isoflavone-aglycone fraction from Glycine max : a promising raw material for isoflavone-based pharmaceutical or nutraceutical products
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Isoflavone-aglycone fraction from Glycine max : a promising raw material for isoflavone-based pharmaceutical or nutraceutical products

机译:来自Glycine max的异黄酮-糖苷配比馏分:基于异黄酮的药物或保健食品的有前途的原料

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The present work was designed to obtain a fraction containing high concentration of isoflavone-aglycones from Glycine max (L.) Merr., Fabaceae, named isoflavone enriched-fraction, from a dry extract containing isoflavones-glycosides. A simple and low cost method was proposed: extraction of isoflavone glycosides from the G. max dry extract with a proper solvent, hydrolysis of the glycosides, recovery of the aglycones, and purification of the fraction containing high isoflavone-aglycones concentration. All the extraction and purification parameters were optimized based on the isoflavones yields, which were analyzed by liquid chromatography and expressed as total isoflavone aglycones. The optimization of the process conditions was accomplished using the classical one-variable-at-a-time method. The identity and purity of the isoflavones contained in this enriched fraction were determined by LC/UV/ESI/MS analysis, Fourier transformed-infrared spectroscopy, and 1 H and 13 C nuclear magnetic resonance spectroscopy. The physicochemical properties of the isoflavone enriched-fraction were evaluated by scanning electron microscopy, X-ray diffraction and differential scanning calorimetry. The moisture content, particle size, equilibrium solubility and thermal and photostability were also determined. The high isoflavone-aglycone content (daidzein, 489.35 mg/g; glycitein, 251.02 mg/g and genistein, 158.96 mg/g) as well as the high purity obtained (90% of total isoflavones) make this fraction a promising novel raw material for the production of isoflavone-aglycones based pharmaceuticals or functional foods.
机译:本工作被设计为从含有异黄酮-糖苷的干燥提取物中从豆科的大豆科的大豆科获得高浓度的异黄酮-糖苷配基的级分,称为异黄酮富集级分。提出了一种简单且低成本的方法:用适当的溶剂从大麦提取物中提取异黄酮糖苷,水解糖苷,回收糖苷配基,并纯化含有高浓度异黄酮-糖苷配基的馏分。所有提取和纯化参数均基于异黄酮的收率进行了优化,并通过液相色谱进行了分析,并表示为总异黄酮苷元。工艺条件的优化是使用经典的一次可变方法完成的。通过LC / UV / ESI / MS分析,傅立叶变换红外光谱以及1 H和13 C核磁共振光谱确定该富集级分中所含异黄酮的身份和纯度。通过扫描电子显微镜,X射线衍射和差示扫描量热法评估异黄酮富集级分的理化性质。还测定了水分含量,粒度,平衡溶解度以及热稳定性和光稳定性。异黄酮-苷元含量高(黄豆苷元489.35 mg / g;糖精蛋白251.52 mg / g和染料木黄酮158.96 mg / g)以及获得的高纯度(占异黄酮总量的90%)使该级分成为有希望的新型原料用于生产基于异黄酮-苷元的药物或功能性食品。

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