Department of Marine Bio-Food Sciences, Chonnam National University, Yeosu, Republic of Korea.
Honam National Institute of Biological Resources, 99, Gohadoan-gil, Mokpo-si, Jeollanam-do, Korea.
Crit Rev Biotechnol. 2022 Feb;42(1):23-45. doi: 10.1080/07388551.2021.1922351. Epub 2021 May 20.
Algae are the oldest representatives of the plant world with reserves exceeding hundreds of millions of tons in the world's oceans. Currently, a growing interest is placed toward the use of algae as feedstocks for obtaining numerous natural products. Algae are a rich source of polyphenols that possess intriguing structural diversity. Among the algal polyphenols, phlorotannins, which are unique to brown seaweeds, and have immense value as potent modulators of biochemical processes linked to chronic diseases. In algae, flavonoids remain under-explored compared to other categories of polyphenols. Both phlorotannins and flavonoids are inclusive of compounds indicating a wide structural diversity. The present paper reviews the literature on the ecological significance, biosynthesis, structural diversity, and bioactivity of seaweed phlorotannins and flavonoids. The potential implementation of these chemical entities in functional foods, cosmeceuticals, medicaments, and as templates in drug design are described in detail, and perspectives are provided to tackle what are perceived to be the most momentous challenges related to the utilization of phlorotannins and flavonoids. Moving beyond: industrial biotechnology applications, metabolic engineering, total synthesis, biomimetic synthesis, and chemical derivatization of phlorotannins and flavonoids could broaden the research perspectives contributing to the health and economic up-gradation.
藻类是植物界最古老的代表,其在全球海洋中的储量超过数亿吨。目前,人们对藻类作为获取众多天然产物的原料的兴趣日益浓厚。藻类是多酚的丰富来源,具有引人入胜的结构多样性。在藻类多酚中,只有褐藻才有的岩藻多酚,作为与慢性疾病相关的生化过程的有效调节剂,具有巨大的价值。与其他类别的多酚相比,藻类中的类黄酮的研究仍不够充分。岩藻多酚和类黄酮都包含表明广泛结构多样性的化合物。本文综述了海藻岩藻多酚和类黄酮的生态意义、生物合成、结构多样性和生物活性的文献。详细描述了这些化学物质在功能性食品、化妆品、药物中的潜在应用,以及作为药物设计模板的潜力,并提供了应对利用岩藻多酚和类黄酮所面临的最重要挑战的观点。展望未来:岩藻多酚和类黄酮的工业生物技术应用、代谢工程、全合成、仿生合成和化学衍生化可能会拓宽研究视角,为健康和经济升级做出贡献。