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基于响应面法的湿态红球藻多糖提取工艺优化

Extraction Optimization of Polysaccharides from Wet Red Microalga Using Response Surface Methodology.

作者信息

Chen Yi, Li Qianmei, Xu Bingqi, Xiang Wenzhou, Li Aifen, Li Tao

机构信息

CAS Key Laboratory of Tropical Marine Bio-Resources and Ecology, Guangdong Key Laboratory of Marine Materia Medica, South China Sea Institute of Oceanology, Chinese Academy of Sciences, Guangzhou 510301, China.

Institute of Hydrobiology, Jinan University, Guangzhou 510632, China.

出版信息

Mar Drugs. 2024 Nov 4;22(11):498. doi: 10.3390/md22110498.

Abstract

is a unicellular marine microalga that is rich in polysaccharides and has excellent biological activities. Optimizing the extraction of polysaccharides can significantly improve the value of biomass. In the present study, response surface methodology was employed to optimize the extraction conditions of polysaccharides, including extraction time, extraction temperature, and biomass-to-water ratio. Furthermore, microwave-assisted extraction was used to improve the yield of polysaccharides further. The results showed that increasing the extraction temperature and extraction time could enhance the yield of polysaccharides. The multiple regression analysis of RSM indicated that the model could be employed to optimize the extraction of polysaccharides. The optimal extraction time, extraction temperature, and biomass-to-water ratio were 45 min, 87 °C, and 1:63 g mL, respectively. Under these optimal conditions, the maximum yield of polysaccharides was 23.66% DW, which well matched the predicted yield. The results indicated that the extraction temperature was the most significant condition affecting the yield of polysaccharides. The microwave-assisted extraction could further improve the yield of polysaccharides to 25.48% DW. In conclusion, hot water with microwave-assisted extraction was effective for polysaccharide extraction in .

摘要

是一种富含多糖且具有优异生物活性的单细胞海洋微藻。优化多糖的提取可以显著提高生物质的价值。在本研究中,采用响应面法优化多糖的提取条件,包括提取时间、提取温度和生物质与水的比例。此外,使用微波辅助提取进一步提高多糖的产量。结果表明,提高提取温度和提取时间可以提高多糖的产量。响应面法的多元回归分析表明,该模型可用于优化多糖的提取。最佳提取时间、提取温度和生物质与水的比例分别为45分钟、87℃和1:63 g/mL。在这些最佳条件下,多糖的最大产量为23.66%干重,与预测产量非常匹配。结果表明,提取温度是影响多糖产量的最显著条件。微波辅助提取可将多糖产量进一步提高至25.48%干重。总之,热水结合微波辅助提取对[具体生物名称]中的多糖提取是有效的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bee8/11595995/d643abb7176f/marinedrugs-22-00498-g001.jpg

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