Filote Cătălina, Lanez Elhafnaoui, Popa Valentin I, Lanez Touhami, Volf Irina
Department of Environmental Engineering and Management, Faculty of Chemical Engineering and Environmental Protection, "Gheorghe Asachi" Technical University of Iasi, 73 Prof. D. Mangeron Bldv., 700050 Iasi, Romania.
VTRS Laboratory, Faculty of Sciences, University of El Oued, B.P. 789, El Oued 39000, Algeria.
Polymers (Basel). 2022 Sep 30;14(19):4106. doi: 10.3390/polym14194106.
Marine macroalgae biomass is a valuable renewable resource that can be used for the development of bioeconomy through the valorisation of valuable compounds. The aim of the current study is separate macroalgal polysaccharides with bioactive properties from brown macroalgae based on a designed biocascading biorefinery approach. Thus, we applied an integrated processing method for the separation of fucoidan and alginate, in addition to characterization through IR spectroscopy and H NMR. The bioactivity potential (antioxidant activity using superoxide anion and DPPH radical scavenging analysis) of the two polysaccharides was evaluated, together with DNA binding studies performed though voltametric techniques and electronic spectroscopy titration. In terms of results, functional groups S=O (1226 cm), N=S=O (1136 cm) and C-O-SO (1024 cm), which are characteristic of fucoidan, were identified in the first polysaccharidic extract, whereas guluronic units (G) (1017 cm) and mannuronic units (M) (872 and 812 cm) confirmed the separation of alginate. The DNA binding studies of the isolated polysaccharides revealed an electrostatic and an intercalation interaction of DNA with fucoidan and alginate, respectively. Both antioxidant activity assays revealed improved antioxidant activity for both fucoidan and alginate compared to the standard α-tocopherol.
海洋大型藻类生物质是一种宝贵的可再生资源,可通过对有价值化合物的增值利用,用于生物经济的发展。本研究的目的是基于一种设计的生物级联生物精炼方法,从褐藻中分离具有生物活性的大型藻类多糖。因此,除了通过红外光谱和核磁共振氢谱进行表征外,我们还应用了一种综合加工方法来分离岩藻多糖和藻酸盐。评估了这两种多糖的生物活性潜力(使用超氧阴离子和DPPH自由基清除分析的抗氧化活性),以及通过伏安技术和电子光谱滴定进行的DNA结合研究。在结果方面,在第一种多糖提取物中鉴定出了岩藻多糖特有的官能团S=O(1226 cm)、N=S=O(1136 cm)和C-O-SO(1024 cm),而古洛糖醛酸单元(G)(1017 cm)和甘露糖醛酸单元(M)(872和812 cm)证实了藻酸盐的分离。对分离出的多糖进行的DNA结合研究表明,DNA与岩藻多糖和藻酸盐分别存在静电相互作用和嵌入相互作用。两种抗氧化活性测定均显示,与标准α-生育酚相比,岩藻多糖和藻酸盐的抗氧化活性均有所提高。