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天然产物的亚临界水萃取。

Subcritical Water Extraction of Natural Products.

机构信息

School of Pharmaceutical Sciences, Qilu University of Technology (Former Shandong Academy of Sciences), Jinan 250353, China.

Shandong Analysis and Test Centre, Qilu University of Technology (Former Shandong Academy of Sciences), Jinan 250353, China.

出版信息

Molecules. 2021 Jun 30;26(13):4004. doi: 10.3390/molecules26134004.

Abstract

Subcritical water refers to high-temperature and high-pressure water. A unique and useful characteristic of subcritical water is that its polarity can be dramatically decreased with increasing temperature. Therefore, subcritical water can behave similar to methanol or ethanol. This makes subcritical water a green extraction fluid used for a variety of organic species. This review focuses on the subcritical water extraction (SBWE) of natural products. The extracted materials include medicinal and seasoning herbs, vegetables, fruits, food by-products, algae, shrubs, tea leaves, grains, and seeds. A wide range of natural products such as alkaloids, carbohydrates, essential oil, flavonoids, glycosides, lignans, organic acids, polyphenolics, quinones, steroids, and terpenes have been extracted using subcritical water. Various SBWE systems and their advantages and drawbacks have also been discussed in this review. In addition, we have reviewed co-solvents including ethanol, methanol, salts, and ionic liquids used to assist SBWE. Other extraction techniques such as microwave and sonication combined with SBWE are also covered in this review. It is very clear that temperature has the most significant effect on SBWE efficiency, and thus, it can be optimized. The optimal temperature ranges from 130 to 240 °C for extracting the natural products mentioned above. This review can help readers learn more about the SBWE technology, especially for readers with an interest in the field of green extraction of natural products. The major advantage of SBWE of natural products is that water is nontoxic, and therefore, it is more suitable for the extraction of herbs, vegetables, and fruits. Another advantage is that no liquid waste disposal is required after SBWE. Compared with organic solvents, subcritical water not only has advantages in ecology, economy, and safety, but also its density, ion product, and dielectric constant can be adjusted by temperature. These tunable properties allow subcritical water to carry out class selective extractions such as extracting polar compounds at lower temperatures and less polar ingredients at higher temperatures. SBWE can mimic the traditional herbal decoction for preparing herbal medication and with higher extraction efficiency. Since SBWE employs high-temperature and high-pressure, great caution is needed for safe operation. Another challenge for application of SBWE is potential organic degradation under high temperature conditions. We highly recommend conducting analyte stability checks when carrying out SBWE. For analytes with poor SBWE efficiency, a small number of organic modifiers such as ethanol, surfactants, or ionic liquids may be added.

摘要

亚临界水是指高温高压水。亚临界水的一个独特且有用的特性是,随着温度的升高,其极性可以显著降低。因此,亚临界水可以表现得类似于甲醇或乙醇。这使得亚临界水成为一种用于各种有机物质的绿色提取液。本综述重点介绍了天然产物的亚临界水提取(SBWE)。提取的材料包括药用和调味草药、蔬菜、水果、食品副产品、藻类、灌木、茶叶、谷物和种子。生物碱、碳水化合物、精油、类黄酮、糖苷、木脂素、有机酸、多酚、醌类、类固醇和萜类等多种天然产物已通过亚临界水提取。本综述还讨论了各种 SBWE 系统及其优缺点。此外,我们还综述了乙醇、甲醇、盐和离子液体等共溶剂在辅助 SBWE 中的应用。本文还涵盖了微波和超声与 SBWE 相结合的其他提取技术。很明显,温度对 SBWE 效率的影响最大,因此可以对其进行优化。对于上述天然产物的提取,最佳温度范围为 130 至 240°C。本综述可以帮助读者更多地了解 SBWE 技术,特别是对天然产物绿色提取领域感兴趣的读者。SBWE 提取天然产物的主要优点是水无毒,因此更适合草药、蔬菜和水果的提取。另一个优点是 SBWE 后无需处理液体废物。与有机溶剂相比,亚临界水不仅在生态、经济和安全方面具有优势,而且其密度、离子积和介电常数可以通过温度进行调节。这些可调特性允许亚临界水进行类选择性提取,例如在较低温度下提取极性化合物,在较高温度下提取较少极性的成分。SBWE 可以模拟传统的草药煎药方法来制备草药药物,并且具有更高的提取效率。由于 SBWE 需要在高温高压下进行,因此需要非常小心地进行安全操作。SBWE 的另一个应用挑战是高温条件下潜在的有机降解。我们强烈建议在进行 SBWE 时进行分析物稳定性检查。对于 SBWE 效率较差的分析物,可以添加少量有机改性剂,如乙醇、表面活性剂或离子液体。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/671c/8271798/0211c7c4bd7e/molecules-26-04004-g001.jpg

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