Flores-Contreras Elda A, Araújo Rafael G, Rodríguez-Aguayo Arath A, Guzmán-Román Muriel, García-Venegas Jesús Carlos, Nájera-Martínez Erik Francisco, Sosa-Hernández Juan Eduardo, Iqbal Hafiz M N, Melchor-Martínez Elda M, Parra-Saldivar Roberto
Tecnologico de Monterrey, School of Engineering and Sciences, Monterrey 64849, Mexico.
Tecnologico de Monterrey, Institute of Advanced Materials for Sustainable Manufacturing, Monterrey 64849, Mexico.
Plants (Basel). 2023 Jun 25;12(13):2445. doi: 10.3390/plants12132445.
Brown macroalgae represent one of the most proliferative groups of living organisms in aquatic environments. Due to their abundance, they often cause problems in aquatic and terrestrial ecosystems, resulting in health problems in humans and the death of various aquatic species. To resolve this, the application of has been sought in different research areas, such as food, pharmaceuticals, and cosmetics, since is an easy target for study and simple to obtain. In addition, its high content of biocompounds, such as polysaccharides, phenols, and amino acids, among others, has attracted attention. One of the valuable components of brown macroalgae is their polysaccharides, which present interesting bioactivities, such as antiviral, antimicrobial, and antitumoral, among others. There is a wide variety of methods of extraction currently used to obtain these polysaccharides, such as supercritical fluid extraction (SFE), pressurized liquid extraction (PLE), subcritical water extraction (SCWE), ultrasound-assisted extraction (UAE), enzyme-assisted extraction (EAE), and microwave-assisted extraction (MAE). Therefore, this work covers the most current information on the methods of extraction, as well as the purification used to obtain a polysaccharide from that is able to be utilized as alginates, fucoidans, and laminarins. In addition, a compilation of bioactivities involving brown algae polysaccharides in in vivo and in vitro studies is also presented, along with challenges in the research and marketing of -based products that are commercially available.
褐藻是水生环境中繁殖能力最强的生物群体之一。由于其数量众多,它们常常在水生和陆地生态系统中引发问题,导致人类健康问题以及各种水生物种的死亡。为了解决这个问题,自[此处原文缺失具体物质]易于研究且易于获取以来,人们一直在不同研究领域寻求其应用,如食品、制药和化妆品等领域。此外,它含有高含量的生物化合物,如多糖、酚类和氨基酸等,这引起了人们的关注。褐藻的宝贵成分之一是其多糖,这些多糖具有有趣的生物活性,如抗病毒、抗菌和抗肿瘤等。目前有各种各样的提取方法用于获取这些多糖,如超临界流体萃取(SFE)、加压液体萃取(PLE)、亚临界水萃取(SCWE)、超声辅助萃取(UAE)、酶辅助萃取(EAE)和微波辅助萃取(MAE)。因此,这项工作涵盖了关于提取方法以及用于从[此处原文缺失具体物质]中获得能够用作藻酸盐、岩藻聚糖和海带多糖的多糖的纯化的最新信息。此外,还介绍了涉及褐藻多糖在体内和体外研究中的生物活性的汇编,以及基于[此处原文缺失具体物质]的市售产品在研究和销售方面的挑战。