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Effect of pretreatment by supercritical fluids on antioxidant activity of protein hydrolyzate from quinoa (

机译:超临界流体对藜氨基菌蛋白水解产物抗氧化活性进行预处理的影响(

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摘要

The effect of two pretreatments on the antioxidant activity was evaluated in quinoa protein hydrolysate, using supercritical CO2 extraction and ethanol as cosolvent, this type of pretreatment was compared to a conventional petroleum ether extraction method without recovery of bioactive compounds. The extractions were carried out at a temperature of 55°C and a pressure of 23 MPa using ethanol (7–8 g quinoa/100 ml); the CO2 mass flow was 35 g/min, the extraction time was 240 min and the particle size was 500 µm, enzyme COROLASE® 7089 was applied for enzymatic hydrolysis, finally ABTS test assessed antioxidant activity. A significant effect was found on the degree of hydrolysis (23.93%) and antioxidant activity (1,181.64 μmol TE/g protein) compared to a conventional method (24.33%) and (1,448.84 μmol TE/g protein). In conclusion, our results suggest that the use of supercritical CO2 and the addition of ethanol as cosolvent are the interesting green technology, to recovery oil and separate phenolic compounds prior to enzymatic hydrolysis to avoid interference with biological activities from quinoa protein hydrolysates, and shows highest antioxidant activity to be incorporate in food products.
机译:在奎奴亚藜蛋白水解产物中评价了两种预处理对抗氧化活性的影响,使用超临界CO 2萃取和乙醇作为富含溶剂,将这种类型的预处理与常规的石油醚提取方法进行比较,而不会回收生物活性化合物。使用乙醇(7-8g Quinoa / 100ml),在55℃的温度和23MPa的压力下进行萃取物; CO 2质量流量为35克/分钟,提取时间为240分钟,粒度为500μm,酶Corolase®7089施用酶水解,最后ABTS试验评估抗氧化活性。与常规方法(24.33%)和(1,448.84μmolTE/ G蛋白)相比,在水解程度(23.93%)和抗氧化活性(1,181.64μmol)(1,181.64μm)和(1,448.84μmolte / g蛋白)相比,发现了显着效果。总之,我们的研究结果表明,使用超临界CO2和加入乙醇作为共溶剂是有趣的绿色技术,在酶水解之前,以避免干扰来自奎奴亚藜蛋白质水解产物的生物活性,并显示出最高的酚类化合物,并显示出最高的抗氧化活性掺入食品中。

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