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中国精品科技期刊2020
黄磊磊,刘佳怡,王天怡,等. 纤维素酶辅助超声提取丁香叶黄酮工艺优化及抗氧化性分析[J]. 新宝登录入口(中国)有限公司,2024,45(4):161−170. doi: 10.13386/j.issn1002-0306.2023040124.
引用本文: 黄磊磊,刘佳怡,王天怡,等. 纤维素酶辅助超声提取丁香叶黄酮工艺优化及抗氧化性分析[J]. 新宝登录入口(中国)有限公司,2024,45(4):161−170. doi: 10.13386/j.issn1002-0306.2023040124.
HUANG Leilei, LIU Jiayi, WANG Tianyi, et al. Optimization of Cellulase-Assisted Ultrasound Extraction and Antioxidant Analysis of Flavonoids from Syringa oblata Leaves[J]. Science and Technology of Food Industry, 2024, 45(4): 161−170. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023040124.
Citation: HUANG Leilei, LIU Jiayi, WANG Tianyi, et al. Optimization of Cellulase-Assisted Ultrasound Extraction and Antioxidant Analysis of Flavonoids from Syringa oblata Leaves[J]. Science and Technology of Food Industry, 2024, 45(4): 161−170. (in Chinese with English abstract). doi: 10.13386/j.issn1002-0306.2023040124.

纤维素酶辅助超声提取丁香叶黄酮工艺优化及抗氧化性分析

Optimization of Cellulase-Assisted Ultrasound Extraction and Antioxidant Analysis of Flavonoids from Syringa oblata Leaves

  • 摘要: 为研究丁香叶中总黄酮的高效提取方法,本文首次采用纤维素酶辅助超声法对4种丁香叶中的总黄酮进行提取。以总黄酮提取得率为指标,单因素实验分析纤维素酶用量、pH、超声时间、超声功率、液料比、温度、乙醇体积分数对小叶丁香叶总黄酮提取得率的影响,应用响应面法优化,得到最优提取工艺,并通过体外抗氧化检测丁香叶总黄酮对DPPH自由基和OH自由基的清除能力。结果表明,最优提取工艺为加酶量2%,pH5.5,超声时间40 min,超声功率400 W,乙醇体积分数63%,温度56 ℃,液料比30:1(mL/g),在该条件下,小叶丁香叶总黄酮提取得率为32.21±0.16 mg/g,与回归模型的预测值32.57 mg/g接近。抗氧化活性结果表明,4种丁香叶总黄酮对DPPH自由基的清除能力为小叶丁香>暴马丁香>白丁香>紫丁香;对OH自由基的清除能力为小叶丁香>暴马丁香>紫丁香>白丁香。纤维素酶辅助超声法能高效提取丁香叶中的总黄酮,且丁香叶总黄酮具有较好的抗氧化性,具有一定的开发潜力。

     

    Abstract: To investigate the efficient method of total flavonoids from Syringa oblata leaves, this paper firstly used cellulase-assisted ultrasound method to extract flavonoids from four Syringa oblata leaves. The effects of cellulase dosage, pH, ultrasound time, ultrasound power, liquid-material ratio, temperature and ethanol volume fraction on the extraction rate of total flavonoids from Syringa pubescens Turcz. leaves were analyzed by single-factor experiments, and the best extraction process was obtained by applying response surface methodology optimization. The scavenging ability of Syringa oblata leaves flavonoids on DPPH and OH radicals was also examined in vitro as an antioxidant. The results showed that, the optimum extraction process was enzyme addition 2%, pH5.5, sonication time 40 min, sonication power 400 W, ethanol volume fraction 63%, temperature 56 ℃, liquid to material ratio 30:1 (mL/g), and under these conditions, the Syringa oblata flavonoids content was 32.21±0.16 mg/g, which was in proximity to the predicted value of 32.57 mg/g from the regression model. The results of antioxidant activity showed that the scavenging ability of the four Syringa oblata leaf flavonoids on DPPH was Syringa pubescens Turcz.>Syringa reticulata var. mamds huricq.>Syringa oblata var. affinis lingdelsh.>Syringa oblata Linal. The scavenging ability on OH was Syringa pubescens Turcz.>Syringa reticulata var. mamds huricq.> Syringa oblata Linal.>Syringa oblata var. affinis lingdelsh. The cellulase-assisted ultrasonication method can efficiently extract flavonoids from Syringa oblata leaves, and the flavonoids of Syringa oblata leaves have good antioxidant properties and have certain potential for development.

     

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