Pos-Graduate Program in Biotechnology and Biosciences, Phycology Laboratory, Department of Botany, Biological Sciences Center, Federal University of Santa Catarina, Florianopolis, Santa Catarina, Brazil.
Andalusian Institute of Blue Biotechnology and Development (IBYDA), Experimental Centre Grice Hutchinson, Malaga University, Malaga, Spain.
Mar Biotechnol (NY). 2024 Apr;26(2):324-337. doi: 10.1007/s10126-024-10299-8. Epub 2024 Mar 2.
Seaweed from the genus Ulva (Ulvales, Chlorophyta) has a worldwide distribution and represents a potential biomass source for biotechnological applications. In the present study, we investigated the ulvan polysaccharide-rich fraction (UPRF) isolated from two Ulva species (U. rigida and U. pseudorotundata), naturally occurring on the Spanish Mediterranean coast. Chemical characterization of UPRFs was performed in order to explore the polysaccharides' composition. Biological assessments of UPRFs were compared by antioxidant activity and in vitro toxicity tests in the human cell lines: HCT-116 (colon cancer), G-361 (malignant melanoma), U-937 (leukemia), and HaCaT cells (immortalized keratinocytes). Chemical analysis revealed that both UPRFs presented rhamnose as the major relative sugar constituent, followed by glucose in U. rigida and xylose in U. pseudorotundata. Both also presented glucuronic acid, galactose, ribose, and mannose as the remaining monosaccharides. Similar antioxidant activity was obtained, where we observed increased activity in response to increased polysaccharide concentrations. Both UPRFs presented moderate toxicity against HCT-116 cell lines and a selectivity index ≥ 3, suggesting a good potential for use in pharmaceutical products.
来自石莼属(石莼目,绿藻门)的海藻在世界范围内广泛分布,是生物技术应用的潜在生物量来源。本研究对两种西班牙地中海沿岸自然生长的石莼属海藻(U. rigida 和 U. pseudorotundata)中分离得到的富含岩藻聚糖硫酸酯的多糖部分(UPRF)进行了研究。为了探索多糖的组成,对 UPRF 进行了化学表征。通过抗氧化活性和体外毒性试验在人类细胞系(结肠癌细胞 HCT-116、恶性黑色素瘤 G-361、白血病 U-937 和永生化角质形成细胞 HaCaT)中对 UPRF 进行了比较。化学分析表明,两种 UPRF 均以鼠李糖作为主要相对糖成分,U. rigida 中其次是葡萄糖,U. pseudorotundata 中其次是木糖。两种 UPRF 还含有葡萄糖醛酸、半乳糖、核糖和甘露糖等其他单糖。研究发现,两种 UPRF 均具有相似的抗氧化活性,随着多糖浓度的增加,活性也随之增加。两种 UPRF 对 HCT-116 细胞系均表现出中等毒性,且选择性指数≥3,这表明它们在药物产品中有很好的应用潜力。