Centre for Environmental and Marine Studies, CESAM, Department of Chemistry, Santiago University Campus, University of Aveiro, 3810-193 Aveiro, Portugal.
Mass Spectrometry Centre, LAQV-REQUIMTE, Department of Chemistry, Santiago University Campus, University of Aveiro, 3810-193 Aveiro, Portugal.
Mar Drugs. 2021 Nov 30;19(12):686. doi: 10.3390/md19120686.
While complex lipids of seaweeds are known to display important phytochemical properties, their full potential is yet to be explored. This review summarizes the findings of a systematic survey of scientific publications spanning over the years 2000 to January 2021 retrieved from Web of Science (WoS) and Scopus databases to map the state of the art and identify knowledge gaps on the relationship between the complex lipids of seaweeds and their reported bioactivities. Eligible publications (270 in total) were classified in five categories according to the type of studies using seaweeds as raw biomass (category 1); studies using organic extracts (category 2); studies using organic extracts with identified complex lipids (category 3); studies of extracts enriched in isolated groups or classes of complex lipids (category 4); and studies of isolated complex lipids molecular species (category 5), organized by seaweed phyla and reported bioactivities. Studies that identified the molecular composition of these bioactive compounds in detail (29 in total) were selected and described according to their bioactivities (antitumor, anti-inflammatory, antimicrobial, and others). Overall, to date, the value for seaweeds in terms of health and wellness effects were found to be mostly based on empirical knowledge. Although lipids from seaweeds are little explored, the published work showed the potential of lipid extracts, fractions, and complex lipids from seaweeds as functional ingredients for the food and feed, cosmeceutical, and pharmaceutical industries. This knowledge will boost the use of the chemical diversity of seaweeds for innovative value-added products and new biotechnological applications.
虽然已知海藻的复杂脂质具有重要的植物化学特性,但它们的全部潜力尚未得到充分开发。本综述总结了对 2000 年至 2021 年 1 月期间从 Web of Science(WoS)和 Scopus 数据库中检索到的科学出版物进行系统调查的结果,以绘制海藻复杂脂质与其报道的生物活性之间关系的最新技术状态图并确定知识空白。合格的出版物(共 270 篇)根据使用海藻作为原始生物质的研究类型(第 1 类)、使用有机提取物的研究(第 2 类)、使用鉴定出的复杂脂质的有机提取物的研究(第 3 类)、提取物中分离的类别的研究或复杂脂质(第 4 类)和分离的复杂脂质分子种类的研究(第 5 类)进行分类,按海藻门和报告的生物活性进行组织。选择并根据其生物活性(抗肿瘤、抗炎、抗菌等)描述了总共 29 篇详细确定这些生物活性化合物分子组成的研究。总的来说,迄今为止,海藻在健康和保健方面的价值主要基于经验知识。尽管海藻脂质的研究较少,但已发表的工作表明,海藻脂质提取物、馏分和复杂脂质作为食品和饲料、化妆品和制药行业的功能性成分具有潜力。这一知识将促进海藻化学多样性的利用,为创新增值产品和新的生物技术应用提供动力。