Biological Oceanography Division, CSIR-National Institute of Oceanography, Dona Paula, Goa, 403004, India.
School of Earth, Ocean and Atmospheric Sciences, Goa University, Taleigao Plateau, Goa, 403206, India.
Mar Biotechnol (NY). 2021 Apr;23(2):159-176. doi: 10.1007/s10126-021-10027-6. Epub 2021 Mar 24.
Global requirement for algal foods is increasing, as they are progressively consumed for its nutrition and health. Macroalgae is a proven source of metabolites, proteins, pigments, bioactive compounds, and algal polysaccharides. The unique polysaccharides such as agar, carrageenan, porphyran, alginate, fucoidan, laminarin, and ulvan are known for its wide range of bioactivities and extensively used for applications from tissue engineering to drug delivery. However, there are few limitations due to its high molecular size, low compatibility, and hydrocolloid nature. Hence, the enzymatically produced algal oligosaccharides have drawn tremendous attention due to its green synthesis, solubility, and lower molecular size. They are reported to have bioactivities including antioxidant, antiglycemic, immunostimulatory, anti-inflammatory, and prebiotic activities, which can be used in the healthcare and nutraceutical industry for the manufacture of functional foods and dietary supplements. However, identification of potential microorganisms, producing polysaccharide hydrolyzing enzymes, remains a major bottle neck for efficient utilization of bioactive algal oligosaccharides. This review summarizes the recent developments in the identification and characterization of microbial enzymes for the production of bioactive algal oligosaccharides. This can improve our understanding of bioactive algal oligosaccharides and pave way for efficient utilization of macroalgae to prevent various chronic diseases.
全球对藻类食品的需求不断增加,因为藻类食品具有营养和健康益处。大型藻类是代谢物、蛋白质、色素、生物活性化合物和藻类多糖的已知来源。独特的多糖,如琼脂、卡拉胶、褐藻糖胶、藻酸盐、岩藻聚糖、昆布多糖和岩藻聚糖,因其广泛的生物活性而被广泛应用,从组织工程到药物输送等领域都有应用。然而,由于其分子量较大、相容性低和水凝胶性质,存在一些局限性。因此,酶法生产的藻类低聚糖由于其绿色合成、溶解性和较小的分子量而引起了极大的关注。据报道,它们具有抗氧化、降血糖、免疫刺激、抗炎和益生元活性,可用于医疗保健和营养保健品行业,制造功能性食品和膳食补充剂。然而,鉴定能够产生多糖水解酶的潜在微生物仍然是有效利用生物活性藻类低聚糖的主要瓶颈。本文综述了近年来用于生产生物活性藻类低聚糖的微生物酶的鉴定和特性研究进展。这可以提高我们对生物活性藻类低聚糖的理解,并为有效利用大型藻类预防各种慢性疾病铺平道路。