深共晶溶剂的酸度/碱度对脱脂米糠提取物中酚类物质和生物大分子萃取曲线的影响

Piraporn Sombutsuwan, Erwann Durand, K. Aryusuk
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引用次数: 0

摘要

本研究探讨了深共晶溶剂(DES)的酸度/碱度对脱脂米糠(DFRB)中酚类物质和其他生物大分子(植酸、还原糖和蛋白质)萃取曲线的影响。使用不同的氢键受体(氯化胆碱(ChCl)和碳酸钾(K2CO3))和氢键供体(乳酸、尿素和甘油)制备了不同 pH 值的 DES。结果显示,酸性 DES(氯化胆碱-乳酸;pH 0.42)对总酚酸(4.33 毫克/克)、植酸(50.30 毫克/克)和还原糖(57.05 毫克/克)的提取效率较高,而蛋白质含量(5.96 毫克/克)最低。碱性 DES(K2CO3-甘油;pH 11.21)的总酚酸(5.49 毫克/克)和蛋白质含量(12.81 毫克/克)最高,植酸(1.04 毫克/克)和还原糖(2.28 毫克/克)含量较低。弱酸性 DES(氯化氢-甘油;pH 值 4.72)主要表现为总酚(3.46 毫克/克),蛋白质(6.22 毫克/克)、还原糖(1.68 毫克/克)和植酸(0.20 毫克/克)含量较低。弱碱性 DES(氯化脲;pH 值 8.41)导致总酚(2.81 毫克/克)、蛋白质(7.45 毫克/克)、植酸(0.10 毫克/克)和还原糖(7.36 毫克/克)的提取率较低。该研究还探讨了酚类物质在各种 DES 之间的分布,其中碱性 DES(K2CO3-甘油)含有最高浓度的游离酚。值得注意的是,基于氯化 ChCl 的 DES 主要含有可溶性酯化结合酚和可溶性糖基化结合酚。此外,还观察到抗氧化活性与酚含量之间存在明显的相关性。总之,本研究揭示了 DES 的酸度和碱度对萃取 DFRB 中的酚类和其他增值生物大分子有显著影响。这些发现凸显了通过 pH 值变化操纵 DES 特性的潜力,使其成为从 DFRB 等农副产品中提取和分离有价值化合物的多功能溶剂,并为各行业的可持续利用和增值提供了机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of acidity/alkalinity of deep eutectic solvents on the extraction profiles of phenolics and biomolecules in defatted rice bran extract
This study investigated the influence of deep eutectic solvent (DES) acidity/alkalinity on the extraction profiles of phenolics and other biomolecules (phytic acid, reducing sugar, and protein) in defatted rice bran (DFRB). The DES with varying pH levels were prepared using different hydrogen bond acceptors (choline chloride (ChCl) and potassium carbonate (K2CO3)) and hydrogen bond donors (lactic acid, urea, and glycerol). The results reveal that the acidic DES (ChCl-lactic acid; pH 0.42) demonstrated superior extraction efficiency for total phenolic acids (4.33 mg/g), phytic acid (50.30 mg/g), and reducing sugar (57.05 mg/g) while having the lowest protein content (5.96 mg/g). The alkaline DES (K2CO3-glycerol; pH 11.21) showed the highest levels of total phenolic acid (5.49 mg/g) and protein content (12.81 mg/g), with lower quantities of phytic acid (1.04 mg/g) and reducing sugar (2.28 mg/g). The weakly acidic DES (ChCl-glycerol; pH 4.72) exhibited predominantly total phenolics (3.46 mg/g) with lower content of protein (6.22 mg/g), reducing sugar (1.68 mg/g) and phytic acid (0.20 mg/g). The weakly alkaline DES (ChCl-urea; pH 8.41) resulted in lower extraction yields for total phenolics (2.81 mg/g), protein (7.45 mg/g), phytic acid (0.10 mg/g), and reducing sugar (7.36 mg/g). The study also explored the distribution of phenolics among various DESs, with the alkaline DES (K2CO3-glycerol) containing the highest concentration of free phenolics. Notably, ChCl-based DESs predominantly contained soluble esterified bound phenolics and soluble glycosylated bound phenolics. Furthermore, a significant correlation between antioxidant activities and phenolic contents was observed. In conclusion, this study has revealed that the acidity and alkalinity of a DES significantly impact the extraction of phenolics and other value-added biomolecules in DFRB. These findings highlight the potential for manipulating the properties of DESs through pH variation, making them versatile solvents for extracting and isolating valuable compounds from agricultural by-products like DFRB and offering opportunities for sustainable utilization and value addition in various industries.
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