Adarshan Sivakumar, Sree Vairavel Sivaranjani Sivani, Muthuramalingam Pandiyan, Nambiar Krishnanjana S, Sevanan Murugan, Satish Lakkakula, Venkidasamy Baskar, Jeelani Peerzada Gh, Shin Hyunsuk
Department of Biotechnology, Alagappa University, Karaikudi 630003, Tamil Nadu, India.
Department of Biotechnology, Karunya Institute of Technology and Sciences, Coimbatore 641114, Tamil Nadu, India.
Plants (Basel). 2023 Dec 31;13(1):113. doi: 10.3390/plants13010113.
Driven by a surge in global interest in natural products, macroalgae or seaweed, has emerged as a prime source for nutraceuticals and pharmaceutical applications. Characterized by remarkable genetic diversity and a crucial role in marine ecosystems, these organisms offer not only substantial nutritional value in proteins, fibers, vitamins, and minerals, but also a diverse array of bioactive molecules with promising pharmaceutical properties. Furthermore, macroalgae produce approximately 80% of the oxygen in the atmosphere, highlighting their ecological significance. The unique combination of nutritional and bioactive attributes positions macroalgae as an ideal resource for food and medicine in various regions worldwide. This comprehensive review consolidates the latest advancements in the field, elucidating the potential applications of macroalgae in developing nutraceuticals and therapeutics. The review emphasizes the pivotal role of omics approaches in deepening our understanding of macroalgae's physiological and molecular characteristics. By highlighting the importance of omics, this review also advocates for continued exploration and utilization of these extraordinary marine organisms in diverse domains, including drug discovery, functional foods, and other industrial applications. The multifaceted potential of macroalgae warrants further research and development to unlock their full benefits and contribute to advancing global health and sustainable industries.
在全球对天然产物兴趣激增的推动下,大型海藻或海藻已成为营养保健品和制药应用的主要来源。这些生物具有显著的遗传多样性,在海洋生态系统中发挥着关键作用,不仅在蛋白质、纤维、维生素和矿物质方面具有很高的营养价值,还拥有一系列具有潜在药用特性的生物活性分子。此外,大型海藻产生了大气中约80%的氧气,凸显了它们的生态意义。营养和生物活性属性的独特结合使大型海藻成为全球各地区食品和医药的理想资源。这篇综述整合了该领域的最新进展,阐明了大型海藻在开发营养保健品和治疗药物方面的潜在应用。该综述强调了组学方法在深化我们对大型海藻生理和分子特征理解方面的关键作用。通过强调组学的重要性,本综述还倡导在包括药物发现、功能食品和其他工业应用等不同领域继续探索和利用这些非凡的海洋生物。大型海藻的多方面潜力值得进一步研究和开发,以充分发挥其益处,并为促进全球健康和可持续产业做出贡献。