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中国精品科技期刊2020
恽含,于溪,李芳菲,等. 超声辅助低共熔溶剂提取黑玉米芯多糖及其抑制α-糖苷酶活性分析[J]. 食品工业科技,2025,46(14):1−10. doi: 10.13386/j.issn1002-0306.2024070365.
引用本文: 恽含,于溪,李芳菲,等. 超声辅助低共熔溶剂提取黑玉米芯多糖及其抑制α-糖苷酶活性分析[J]. 食品工业科技,2025,46(14):1−10. doi: 10.13386/j.issn1002-0306.2024070365.
YUN Han, YU Xi, LI Fangfei, et al. Extraction of Polysaccharides from Black Corncob Using Ultrasonic-assisted Deep Eutectic Solvent and Its Activity in Inhibiting α-Glycosidase[J]. Science and Technology of Food Industry, 2025, 46(14): 1−10. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024070365.
Citation: YUN Han, YU Xi, LI Fangfei, et al. Extraction of Polysaccharides from Black Corncob Using Ultrasonic-assisted Deep Eutectic Solvent and Its Activity in Inhibiting α-Glycosidase[J]. Science and Technology of Food Industry, 2025, 46(14): 1−10. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2024070365.

超声辅助低共熔溶剂提取黑玉米芯多糖及其抑制α-糖苷酶活性分析

Extraction of Polysaccharides from Black Corncob Using Ultrasonic-assisted Deep Eutectic Solvent and Its Activity in Inhibiting α-Glycosidase

  • 摘要: 为研究黑玉米芯多糖的提取方法,以及其对α-糖苷酶的抑制活性,本研究以黑玉米芯为原料,采用超声辅助低共熔溶剂法提取黑玉米芯多糖。以多糖得率和α-糖苷酶的抑制率为指标,筛选最佳低共熔溶剂,并对黑玉米芯多糖的总糖、还原糖、蛋白质及糖醛酸含量进行测定。分别利用离子色谱法、高效凝胶色谱法、傅里叶红外光谱法分析黑玉米芯多糖的单糖组成、分子量分布和官能团特征。通过测定黑玉米芯多糖对α-淀粉酶和α-葡萄糖苷酶的抑制率,并结合酶促反应动力学研究其抑制类型。结果表明:超声辅助尿素-氯化胆碱的组合制备的黑玉米芯多糖得率最高为5.43%±0.49%。黑玉米芯多糖的总糖含量为78.0%±2.27%,还原糖含量为17.2%±0.24%,多糖含量为60.8%±0.68%,糖醛酸含量为3.76%±0.43%,蛋白质含量为4.21%±0.18%。黑玉米芯多糖由葡萄糖、半乳糖、阿拉伯糖、木糖、岩藻糖、葡萄糖醛酸组成,呈现出典型的多糖特征吸收峰,具有吡喃环结构,存在αβ型糖苷键。重均分子量为29487 Da,数均分子量为29285 Da。酶促反应动力学研究表明,黑玉米芯多糖对α-葡萄糖苷酶以及α-淀粉酶表现出较强的抑制活性,IC50值分别为2.49 mg/mL和6.06 mg/mL。抑制类型为可逆性抑制,竞争方式为高活性竞争,Km值分别为0.44 mg/mL和1.746 mg/mL,Vmax分别为0.04和0.37。超声辅助低共熔溶剂提取法能提高黑玉米芯多糖的得率,且得到的黑玉米芯多糖对α-糖苷酶的抑制作用较强。

     

    Abstract: To investigate the extraction method of polysaccharide from black corncob and its inhibitory effect on α-glycosidase, black corncobs were used as the raw material in this study, and polysaccharide from black corncob was extracted using ultrasonic-assisted deep eutectic solvent extraction. The yield of polysaccharide and the inhibition rate of polysaccharide from black corncob α-glycosidase were used as indicators to screen for the optimal deep eutectic solvent. Additionally, the content of total sugar, reducing sugar, protein, and uronic acid in polysaccharides from black corncob were determined. The monosaccharide composition, molecular weight distribution, and functional group characteristics of polysaccharide from black corncob was systematically analyzed using Ion Chromatography, High-Performance Gel Permeation Chromatography, and Fourier Transform Infrared Spectroscopy. The inhibition rate of black corncob polysaccharide on α-amylase and α-glucosidase was determined, and the inhibition type was studied in combination with enzymatic reaction kinetics. The results showed that the highest yield of polysaccharide from black corncob prepared by ultrasonic-assisted urea and choline chloride was 5.43%±0.49%. The content of total sugar of polysaccharide from black corncob was 78.0%±2.27%, the content of reducing sugar was 17.2%±0.24%, the content of polysaccharide was 60.8%±0.68%, the content of uronic acid was 3.76%±0.43%, and the content of protein was 4.21%±0.18%. The polysaccharide from black corncob was composed of glucose, galactose, arabinose, xylose, fucose and glucuronic acid. It possesses typical absorption peaks of polysaccharide, a pyran ring structure and α and β glucoside bonds. The weight-average molecular weight was 29487 Da and the number-average molecular weight was 29285 Da. The results of enzymatic reaction kinetics showed that polysaccharide from black corncob showed strong inhibitory activity against α-glucosidase and α-amylase, with IC50 values of 2.49 mg/mL and 6.06 mg/mL, respectively. The inhibition type was reversible inhibition, and the competition mode was high-activity competition. The Km values were 0.44 mg/mL and 1.746 mg/mL, respectively, and the Vmax values were 0.04 and 0.37, respectively. The yield of polysaccharide from black corncob could be significantly improved by ultrasonic-assisted deep eutectic solvent extraction, and the prepared polysaccharide exhibits a strong inhibitory effect on α-glycosidase.

     

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