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中国精品科技期刊2020

超声辅助双水相萃取老山芹黄酮和多糖及其微乳的制备与体外降血糖、降血脂活性分析

Ultrasound-assisted Aqueous Two-Phase Extraction of Flavonoids and Polysaccharides from Heracleum moellendorffii: Preparation of Microemulsion and Evaluation of Its in Vitro Hypoglycemic and Hypolipidemic Activities

  • 摘要: 老山芹富含黄酮和多糖等生物活性成分,但其高效提取与利用面临挑战。本研究旨在开发一种高效的超声辅助双水相萃取技术,用于从老山芹中同步提取黄酮和多糖,并将其构建成水包油型微乳以提升老山芹体外降血糖与降血脂活性,为老山芹高值化利用提供新方案。首先采用浊点法绘制聚乙二醇-硫酸铵双水相体系的相图,以确定适宜的双相区域。通过单因素实验和Plackett-Burman试验筛选提取关键影响因素,进一步采用Box-Behnken响应面优化提取工艺。结果表明,最佳提取条件为液料比34.5:1 mL/g,超声时间41 min,提取温度51 ℃。在此条件下,黄酮和多糖的提取得率分别为0.54%和10.03%。提取物经纯化后制得老山芹黄酮-多糖水包油型微乳,该微乳呈淡黄色澄清透明状态,平均粒径为140.80 nm,Zeta电位为−19.36 mV,黄酮的包封率分别为85.31%。体外活性结果表明老山芹黄酮-多糖微乳对甘氨胆酸钠和牛磺胆酸钠的结合率分别为59.92%和56.91%,对胰脂肪酶的抑制率为78.89%,显示出了良好的降血脂潜力。此外,该微乳对α-葡萄糖苷酶和α-淀粉酶活性具有良好的抑制能力,IC50值分别为13.61 mg/mL和12.69 mg/mL。本研究为老山芹活性成分的高效利用及其功能性食品开发提供了理论依据和技术支持。

     

    Abstract: Heracleum moellendorffii contains abundant bioactive components such as flavonoids and polysaccharides. However, their efficient extraction and utilization face challenges. This study aimed to develop an efficient ultrasound-assisted aqueous two-phase extraction technique for the simultaneous extraction of flavonoids and polysaccharides from Heracleum moellendorffii. The extracted flavonoids and polysaccharides were formulated into an oil-in-water microemulsion to enhance the in vitro hypoglycemic and hypolipidemic activities of Heracleum moellendorffii, thereby providing a novel approach for the high-value utilization of Heracleum moellendorffii. First, the phase diagram of the polyethylene glycol-ammonium sulfate aqueous two-phase system was plotted using the cloud point method to identify the suitable biphasic region. Key factors influencing extraction efficiency were screened through single-factor experiments and Plackett-Burman tests, and then the extraction process was further optimized using Box-Behnken response surface methodology. The optimal conditions as follows: Liquid-to-material ratio of 34.5:1 mL/g, ultrasonic time of 41 min, and extraction temperature of 51 ℃. Under these conditions, the extraction yields of flavonoids and polysaccharides were 0.54% and 10.03%, respectively. The extracts were purified and used to prepare the Heracleum moellendorffii flavonoid-polysaccharide oil-in-water microemulsion. The resulting microemulsion appeared as a pale yellow, clear, and transparent liquid with an average particle size of 140.80 nm, a Zeta potential of −19.36 mV, and a flavonoid encapsulation efficiency of 85.31%. In vitro activity results indicated that the Heracleum moellendorffii flavonoid-polysaccharide microemulsion showed sodium glycocholate and sodium taurocholate binding rates of 59.92% and 56.91%, respectively, along with a pancreatic lipase inhibition rate of 78.89%, demonstrating promising potential for lipid-lowering effects. Furthermore, this microemulsion exhibited good inhibitory activity against α-glucosidase and α-amylase, with IC50 values of 13.61 mg/mL and 12.69 mg/mL, respectively. This study provides a theoretical foundation and technical support for the efficient utilization of active components from Heracleum moellendorffii and the development of functional foods.

     

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