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Enhancing the Extraction of Polysaccharides and Antioxidants from Macroalgae Using Sequential Hydrothermal-Assisted Extraction Followed by Ultrasound and Thermal Technologies

机译:依次采用水热辅助萃取超声和热技术从大型藻类中提取多糖和抗氧化剂

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摘要

Fucose sulphated polysaccharides (FSPs) and glucans have recently attracted the attention of the scientific community due to their wide range of biological activities. Both polysaccharides should ideally be selectively extracted using innovative technologies with high extraction efficiency. This study aims to: (1) Optimise the extraction variables used in hydrothermal-assisted extraction (HAE) to obtain high yields of FSPs, total glucans, and antioxidants from Laminaria hyperborea; (2) to apply these optimised protocols to other brown macroalgae; and (3) to explore the application of ultrasound and thermal technologies to increase the recovery of polysaccharides from the residual biomass. Box-Behnken design (three-factor, four-levels) was employed to optimise the HAE variables, and principal component analysis was used to evaluate the recovery of polysaccharides from the residual biomass. The optimal HAE conditions were 120 °C, 80.9 min, and 12.02 mL/g macroalgae from L. hyperborea. The best sequential application of ultrasound and thermal treatment achieved an additional 2971.7 ± 61.9 mg fucose/100 g dried macroalgal residue (dmr) from Ascophyllum nodosum and 908.0 ± 51.4 mg total glucans/100 g dmr from L. hyperborea macroalgal residues.
机译:岩藻糖硫酸化多糖(FSPs)和葡聚糖由于具有广泛的生物活性,最近引起了科学界的关注。理想地,应该使用创新技术以高提取效率选择性地提取两种多糖。这项研究的目的是:(1)优化用于水热辅助提取(HAE)的提取变量,以获得高产海带中FSP,总葡聚糖和抗氧化剂的高产量; (2)将这些优化方案应用于其他棕色大型藻类; (3)探索超声和热技术的应用,以提高从残余生物质中回收多糖的能力。采用Box-Behnken设计(三因子,四级)优化HAE变量,并使用主成分分析评估残留生物量中多糖的回收率。最佳的HAE条件是120°C,80.9分钟和高产乳杆菌的大型藻类12.02 mL / g。超声和热处理的最佳顺序应用是从结节藻中获得了另外的2971.7±61.9 mg岩藻糖/ 100 g干大型藻类残留物(dmr)和来自高产乳杆菌大藻类残留物的908.0±51.4 mg总葡聚糖/ 100 g dmr。

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