Saito Akiko
a Graduate School of Engineering , Osaka Electro-communication University (OECU) , Osaka , Japan.
Biosci Biotechnol Biochem. 2017 Jun;81(6):1055-1060. doi: 10.1080/09168451.2017.1295801. Epub 2017 Mar 27.
Flavan-3-ol derivatives are common plant-derived bioactive compounds. In particular, (-)-epigallocatechin-3-O-gallate shows various moderate biological activities without severe toxicity, and its health-promoting effects have been widely studied because it is a main ingredient in green tea and is commercially available at low cost. Although various biologically active flavan-3-ol derivatives are present as minor constituents in plants as well as in green tea, their biological activities have yet to be revealed, mainly due to their relative unavailability. Here, I outline the major factors contributing to the complexity of functionality studies of flavan-3-ol derivatives, including proanthocyanidins and oligomeric flavan-3-ols. I emphasize the importance of conducting structure-activity relationship studies using synthesized flavan-3-ol derivatives that are difficult to obtain from plant extracts in pure form to overcome this challenge. Further discovery of these minor constituents showing strong biological activities is expected to produce useful information for the development of functional health foods.
黄烷-3-醇衍生物是常见的植物源生物活性化合物。特别是,(-)-表没食子儿茶素-3-O-没食子酸酯具有多种适度的生物活性且无严重毒性,其促进健康的作用已得到广泛研究,因为它是绿茶中的主要成分且可低成本商业化获取。尽管各种具有生物活性的黄烷-3-醇衍生物作为次要成分存在于植物以及绿茶中,但其生物活性尚未得到揭示,主要原因是它们相对难以获取。在此,我概述了导致黄烷-3-醇衍生物功能研究复杂性的主要因素,包括原花青素和低聚黄烷-3-醇。我强调使用从植物提取物中难以以纯形式获得的合成黄烷-3-醇衍生物进行构效关系研究以克服这一挑战的重要性。预计进一步发现这些具有强生物活性的次要成分将为功能性健康食品的开发提供有用信息。