用于提取生物活性物质的天然深共晶溶剂(NADES):生物精炼应用中的新机遇

Paula Jauregi, Leire Esnal-Yeregi, J. Labidi
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引用次数: 0

摘要

天然深共晶溶剂(NADES)可避免使用易燃有机溶剂以及极端温度和 pH 值条件,是提取生物活性物质的环保型替代品。NADES 依靠氢键供体(HBD)和氢键受体(HBA)之间的分子间相互作用形成共晶混合物,其熔点明显低于其单独成分。这些基质受含水量、温度和组分比例等因素的影响。NADES 的高粘度会影响萃取效率,这可以通过加水或在更高温度下工作来缓解。不过,过度加水稀释可能会破坏 NADES 的超分子结构,从而降低萃取效率。NADES 的一个显著特点是可针对特定用途进行微调。调整极性、pH 值和粘度等理化性质可提高目标分子的溶解度以及 NADES 与目标分子之间的相互作用,从而优化萃取效率。与有机溶剂不同,NADES 可部分破坏植物和微藻细胞壁,从而提高渗透性和萃取效率。此外,NADES 还能对生物活性物质产生稳定作用,提高其生物活性和生物利用率。这些特性,加上低毒性和高生物降解性对环境的影响,使 NADES 对生物精炼应用具有吸引力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Natural deep eutectic solvents (NADES) for the extraction of bioactives: emerging opportunities in biorefinery applications
Natural deep eutectic solvents (NADES) have emerged as an eco-friendly alternative for extracting bioactives, avoiding the use of flammable organic solvents and extreme temperatures and pH conditions. NADES rely on intermolecular interactions between hydrogen bonding donors (HBD) and hydrogen bonding acceptors (HBA) to form eutectic mixtures with significantly lower melting points than their individual components. These matrices are influenced by factors like water content, temperature, and component ratios. NADES high viscosity can hinder extractive efficiency, which can be mitigated by adding water or working at higher temperatures. However, excessive dilution with water may disrupt the supramolecular structure of NADES, reducing extraction efficiency. A notable feature of NADES is their fine-tunability for specific purposes. Adjusting physicochemical properties such as polarity, pH, and viscosity optimizes extraction efficiency by promoting the solubility of target molecules and interactions between the NADES and target molecules. NADES, unlike organic solvents, can partially disrupt plant and microalgae cell walls, enhancing permeability and extraction efficiency. Moreover, NADES can have a stabilising effect on bioactives and can enhance their biological activity and bioavailability. These attributes, coupled with their low environmental impact in terms of low toxicity and high biodegradability, make NADES attractive for biorefinery applications.
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