首页> 外文期刊>Food Science and Technology International >Ultrasonic-assisted enzymatic extraction of phenolics from broccoli (Brassica oleracea L. var. italica) inflorescences and evaluation of antioxidant activity invitro
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Ultrasonic-assisted enzymatic extraction of phenolics from broccoli (Brassica oleracea L. var. italica) inflorescences and evaluation of antioxidant activity invitro

机译:超声波辅助从花椰菜(Brassica oleracea L. var。italica)花序中酚类的酶法提取和体外抗氧化活性的评估

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摘要

An efficient ultrasonic-assisted enzymatic extraction technique was applied to extracting phenolics from broccoli inflorescences without organic solvents. The synergistic model of enzymolysis and ultrasonication simultaneously was selected, and the enzyme combination was optimized by orthogonal test: cellulase 7.5mg/g FW (fresh weight), pectinase 10mg/g FW, and papain 1.0mg/g FW. The operating parameters in ultrasonic-assisted enzymatic extraction were optimized with response surface methodology using Box-Behnken design. The optimal extraction conditions were as follows: ultrasonic power, 440W; liquid to material ratio, 7.0:1mL/g; pH value of 6.0 at 54.5? for 10min. Under these conditions, the extraction yield of phenolics achieved 1.816 +/- 0.0187mg gallic acid equivalents/gram FW. The free radical scavenging activity of ultrasonic-assisted enzymatic extraction extracts was determined by 1,1-diphenyl-2-picrylhydrazyl center dot assay with EC50 values of 0.25, and total antioxidant activity was determined by ferric reducing antioxidant power assay with ferric reducing antioxidant power value of 0.998mmol FeSO4/g compared with the referential ascorbic acid of 1.184mmol FeSO4/g.
机译:一种有效的超声辅助酶法提取技术用于从西兰花花序中提取无酚的酚类化合物。同时选择了酶解和超声协同作用的协同模型,并通过正交试验优化了酶的组合:纤维素酶7.5mg / g FW(鲜重),果胶酶10mg / g FW和木瓜蛋白酶1.0mg / g FW。使用Box-Behnken设计,通过响应面法优化了超声辅助酶提取中的操作参数。最佳提取条件如下:超声功率440W;液料比7.0:1mL / g; pH值为54.5时为6.0? 10分钟。在这些条件下,酚类的提取率达到了1.816 +/- 0.0187mg没食子酸当量/克FW。超声辅助酶提取液的自由基清除活性通过1,1-二苯基-2-吡啶并肼基中心点测定法测定,EC50值为0.25,总抗氧化活性通过三氧化二铁抗氧化能力测定和三氧化二铁抗氧化能力测定相对于抗坏血酸1.184mmol FeSO4 / g,其值为0.998mmol FeSO4 / g。

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