School of Agriculture and Food, Faculty of Veterinary and Agricultural Sciences, The University of Melbourne, Parkville, VIC, 3010, Australia.
Environ Sci Pollut Res Int. 2022 Nov;29(54):81112-81129. doi: 10.1007/s11356-022-23337-6. Epub 2022 Oct 6.
For thousands of years, plant has been widely applied in the medical area and is an important part of human diet. A high content of nutrients could be found in all kinds of plants, and the most outstanding group of nutrients that attracts scientists' attention is the high level of phenolic compounds. Due to the relationship between high phenolic compound content and high antioxidant capacity, plant extracts are expected to become a potential treatment for oxidation stress diseases including diabetes and cancer. However, according to the instability of phenolic compounds to light and oxygen, there are certain difficulties in the extraction of such compounds. But after many years of development, the extraction technology of phenolic compounds has been quite stable, and the only problem is how to obtain high-quality extracts with high efficiency. To further enhance the value of plant extracts, concentration and separation methods are often applied, and when detailed analysis is required, characterization methods including HPLC and LC/GC-MS will be applied to evaluate the number and type of phenolic compounds. A series of antioxidant assays are widely performed in numerous studies to test the antioxidant capacity of the plant extracts, which is also an important basis for evaluating value of extracts. This paper intends to provide a view of a variety of methods used in plants' phenolic compound extraction, separation, and characterization. Furthermore, this review presents the advantages and disadvantages of techniques involved in phenolic compound research and provides selected representative bibliographic examples.
几千年来,植物在医学领域得到了广泛应用,是人类饮食的重要组成部分。各种植物都含有丰富的营养成分,而最引人注目的营养成分是高含量的酚类化合物。由于高酚类化合物含量与高抗氧化能力之间的关系,植物提取物有望成为治疗糖尿病和癌症等氧化应激疾病的潜在方法。然而,由于酚类化合物对光和氧的不稳定性,此类化合物的提取存在一定的困难。但经过多年的发展,酚类化合物的提取技术已经相当稳定,唯一的问题是如何高效地获得高质量的提取物。为了进一步提高植物提取物的价值,通常会应用浓缩和分离方法,当需要详细分析时,还会应用 HPLC 和 LC/GC-MS 等特征化方法来评估酚类化合物的数量和类型。在众多研究中,广泛进行了一系列抗氧化测定来测试植物提取物的抗氧化能力,这也是评估提取物价值的重要依据。本文旨在提供对植物中酚类化合物提取、分离和特征化的各种方法的综述。此外,本文还介绍了酚类化合物研究中涉及的技术的优缺点,并提供了一些有代表性的文献实例。