Optimization of Ultrasound‐Assisted Deep Eutectic Solvent Extraction and Bioactivities of Polysaccharide from Porphyra haitanensis

Wendie Hu, Bing Liu, Yao Wen
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Abstract

In this paper, ultrasound‐assisted method and deep eutectic solvent (DES) are used to extract polysaccharides from Porphyra haitanensis. The single‐factor experiment is carried out first, and then the response surface experiment is designed to obtain the optimal process conditions. The optimal extraction conditions are the molar ratio of choline chloride to oxalate of 1:1, the water content of DES of 60%, the solid–liquid ratio of 1:60 g mL−1, the time of 120 min, the power of 200 W, and the temperature of 80 °C, with the extraction yield of 4.42%. And the yield of P. haitanensis polysaccharides (PHPs) is 3.14% and 3.31% by water immersion and ultrasonic water extraction, respectively, indicating that the DES extraction method is superior to these two methods, and the optimization effect is good. The extracted polysaccharides are tested for biological activity after separation and purification on DEAE and Sephadex G‐75 columns. The results of α‐glucosidase inhibitory activity and α‐amylase inhibitory activity show that PHPs have certain antioxidant activity. 1,1‐Diphenyl‐3‐nitrophenylhydrazine (DPPH) and 2,2‐diazo‐di‐3‐ethylbenzothiazolin‐6‐sulfonic acid (ABTS) free radical scavenging assays show that PHPs have certain antiglycemic activity.
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优化超声波辅助深共晶溶剂萃取和海藻多糖的生物活性
本文采用超声波辅助法和深共晶溶剂(DES)提取海藻多糖。首先进行了单因素实验,然后设计了响应面实验,以获得最佳工艺条件。最佳提取条件为氯化胆碱与草酸盐的摩尔比为 1:1,DES 含水量为 60%,固液比为 1:60 g mL-1,时间为 120 min,功率为 200 W,温度为 80 ℃,提取率为 4.42%。而水浸泡法和超声波水提取法的海金沙多糖(PHPs)得率分别为3.14%和3.31%,表明DES提取法优于这两种方法,且优化效果好。提取的多糖经 DEAE 和 Sephadex G-75 色谱柱分离纯化后,进行生物活性测试。α-葡萄糖苷酶抑制活性和α-淀粉酶抑制活性结果表明 PHPs 具有一定的抗氧化活性。1,1-二苯基-3-硝基苯肼(DPPH)和 2,2-二氮-二-3-乙基苯并噻唑啉-6-磺酸(ABTS)自由基清除试验表明 PHPs 具有一定的降血糖活性。
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阿拉丁
上海源叶
d-galactose
¥18.00~¥40189.00
阿拉丁
p-nitrophenyl-α-d-glucopyranoside (PNPG)
¥29.00~¥14741.00
上海源叶
d-glucuronic acid
¥30.00~¥11082.00
上海源叶
alpha-glucosidase
¥348.00~¥10600.00
上海源叶
上海源叶
2,2-diazo-di-3-ethylbenzothiazolin-6-sulfonic acid (ABTS)
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