Laboratoire de Biologie des Ligneux et des Grandes Cultures (LBLGC), UPRES EA 1207, Université d'Orléans, Chartres, France.
Conditions Extrêmes et Matériaux: Haute Température et Irradiation (CEMHTI) UPR3079, CNRS Orléans, France.
Ultrason Sonochem. 2015 Sep;26:176-185. doi: 10.1016/j.ultsonch.2015.02.008. Epub 2015 Feb 28.
Flaxseed accumulates in its seedcoat a macromolecular complex composed of lignan (secoisolariciresinol diglucoside, SDG), flavonol (herbacetin diglucoside, HDG) and hydroxycinnamic acids (p-couramic, caffeic and ferulic acid glucosides). Their antioxidant and/or cancer chemopreventive properties support their interest in human health and therefore, the demand for their extraction. In the present study, ultrasound-assisted extraction (UAE) of flaxseed phenolic compounds was investigated. Scanning Electron Microscopy imaging and histochemical analysis revealed the deep alteration of the seedcoat ultrastructure and the release of the mucilage following ultrasound treatment. Therefore, this method was found to be very efficient for the reduction of mucilage entrapment of flaxseed phenolics. The optimal conditions for UAE phenolic compounds extraction from flaxseeds were found to be: water as solvent supplemented with 0.2N of sodium hydroxide for alkaline hydrolysis of the SDG-HMG complex, an extraction time of 60 min at a temperature of 25°C and an ultrasound frequency of 30 kHz. Under these optimized and validated conditions, highest yields of SDG, HDG and hydroxycinnamic acid glucosides were detected in comparison to other published methods. Therefore, the procedure presented herein is a valuable method for efficient extraction and quantification of the main flaxseed phenolics. Moreover, this UAE is of particular interest within the context of green chemistry in terms of reducing energy consumption and valuation of flaxseed cakes as by-products resulting from the production of flax oil.
亚麻籽在其种皮中积累了一个由木质素(开环异落叶松脂素二葡萄糖苷,SDG)、类黄酮(草棉素二葡萄糖苷,HDG)和羟基肉桂酸(对香豆酸、咖啡酸和阿魏酸葡萄糖苷)组成的高分子复合物。它们的抗氧化和/或癌症化学预防特性支持了它们在人类健康中的应用,因此,对其提取的需求也在增加。在本研究中,研究了超声辅助提取(UAE)亚麻籽酚类化合物的方法。扫描电子显微镜成像和组织化学分析显示,种子种皮的超微结构发生了深刻变化,并且在超声处理后释放出了黏液。因此,这种方法被发现非常有效地减少了亚麻籽酚类化合物中黏液的捕获。从亚麻籽中提取酚类化合物的最佳 UAE 条件为:以水为溶剂,补充 0.2N 的氢氧化钠用于 SDG-HMG 复合物的碱性水解,在 25°C 的温度下提取 60 分钟,超声频率为 30 kHz。在这些优化和验证的条件下,与其他已发表的方法相比,SDG、HDG 和羟基肉桂酸葡萄糖苷的产量最高。因此,本文所提出的方法是一种从亚麻籽中提取和定量主要酚类化合物的有效方法。此外,就减少能源消耗和评估亚麻籽油生产过程中产生的亚麻籽饼等副产物而言,这种超声辅助提取在绿色化学方面具有特别的意义。