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首页> 外文期刊>ACS Sustainable Chemistry & Engineering >Comprehensive Evaluation of Deep Eutectic Solvents in Extraction of Bioactive Natural Products
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Comprehensive Evaluation of Deep Eutectic Solvents in Extraction of Bioactive Natural Products

机译:深层共晶溶剂在生物活性天然产物提取中的综合评价

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摘要

Deep eutectic solvents (DESs) are emerging as green and sustainable solvents for efficient extraction of bioactive compounds or drugs. This work aimed to comprehensively evaluate the potential and effectiveness of DESs for extraction of different types of natural compounds from biomass. Five Chinese herbal medicines including Berberidis Radix, Epimedii Folium, Notoginseng Radix et Rhizoma, Rhei Rhizoma et Radix, and Salviae Miltiorrhizae Radix et Rhizoma were selected to assess the efficiency of DESs on extraction of alkaloids, flavonoids, saponins, anthraquinones, and phenolic acids, respectively. Totally 43 types of choline chloride-, betaine-, and L-proline-based DESs with different polarity, viscosity, composition, and solubilization abilities were tailored to test their extraction efficiency, and the operation conditions were statistically optimized using response surface methodology to produce the most efficient process. In this work, DES solvents were first introduced to extract alkaloids and anthraquinones. The results indicated that most prepared DESs proved to be efficient solvents for extraction of alkaloids, but lower extractability for anthraquinones. The extraction capacity of DES may be correlated with their physical-chemical properties, including H-bonding interactions, polarity, viscosity, and pH. This study demonstrated that DESs were suitable green extraction solvents for selectively and efficiently extracting bioactive compounds from biomaterials.
机译:深度共晶溶剂(DES)新兴为绿色和可持续的溶剂,可有效提取生物活性化合物或药物。这项工作旨在全面评估DESs从生物质中提取不同类型天然化合物的潜力和有效性。选择了5种中草药,包括小Ber,淫羊Fo,三七,大黄,丹参和丹参,以评估DES提取生物碱,类黄酮,皂角苷,蒽醌和酚酸的效率。分别。定制了总共43种基于氯化胆碱,甜菜碱和L-脯氨酸的DES,它们具有不同的极性,粘度,组成和增溶能力,以测试其提取效率,并使用响应面方法对操作条件进行了统计优化,以生产最有效的过程。在这项工作中,首先引入DES溶剂以提取生物碱和蒽醌。结果表明,大多数制备的DES被证明是提取生物碱的有效溶剂,但是对蒽醌的提取能力较低。 DES的萃取能力可能与其物理化学特性(包括氢键相互作用,极性,粘度和pH)相关。这项研究表明,DES是适合从绿色材料中选择性和有效地提取生物活性化合物的绿色提取溶剂。

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