首页> 外文期刊>International Journal of Medicinal Mushrooms >Determination of optimal extraction time and temperature by response surface methodology to obtain high-level antioxidant activity in culinary-medicinal oyster mushroom, Pleurotus ostreatus (Jacq.:Fr.) P. Kumm. (higher basidiomycetes).
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Determination of optimal extraction time and temperature by response surface methodology to obtain high-level antioxidant activity in culinary-medicinal oyster mushroom, Pleurotus ostreatus (Jacq.:Fr.) P. Kumm. (higher basidiomycetes).

机译:通过响应面法确定最佳提取时间和温度,以在烹饪药用牡蛎蘑菇平菇中获得高水平的抗氧化活性(Jacq.:Fr.)P。Kumm。 (较高的担子菌)。

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摘要

A central composite design of response surface methodology (RSM) was employed to optimize the extraction time (X1: 266.4-393.6 min) and temperature (X2: 42.9-57.1 degrees C) of Pleurotus ostreatus aqueous extract with high antioxidant activities, namely DPPH radical-scavenging activity, ABTS radical cation inhibition, and ferric re-ducing/antioxidant power, as well as total phenolic content (TPC). Results showed that the data were adequately fitted into four second-order polynomial models developed by RSM. The extraction time and temperature were found to have significant quadratic effects on antioxidant activities and TPC. The optimal extraction time and temperature were 282.3 min and 42.9 degrees C (DPPH), 393.6 min and 42.9 degrees C (ABTS), 340.4 min and 49.8 degrees C (FRAP), and 347.6 min, 49.7 degrees C (TPC), with corresponding yields of 53.32%, 73.20%, 37.14 mM Fe2+ equivalents/100 g, and 826.33 mg gallic acid equivalents/100 g, respectively. These experimental data were close to their predicted values. The establishment of such a model provides a good experimental basis for employing RSM to optimize the extraction time and temperature for high antioxidant activities from P. ostreatus.Digital Object Identifier http://dx.doi.org/10.1615/IntJMedMushr.v14.i6.70
机译:采用响应面方法(RSM)的中央复合设计来优化提取时间(X 1 :266.4-393.6分钟)和温度(X 2 :42.9-57.1) C)的平菇提取物具有很高的抗氧化活性,即DPPH清除自由基活性,ABTS自由基阳离子抑制作用,铁还原/抗氧化能力以及总酚含量(TPC)。结果表明,该数据已充分拟合到RSM开发的四个二阶多项式模型中。发现提取时间和温度对抗氧化剂活性和TPC具有明显的二次影响。最佳提取时间和温度为282.3分钟和42.9摄氏度(DPPH),393.6分钟和42.9摄氏度(ABTS),340.4分钟和49.8摄氏度(FRAP)和347.6分钟,49.7摄氏度(TPC),产量分别为53.32%,73.20%,37.14 mM Fe 2 + / 100 g和826.33 mg没食子酸/ 100 g。这些实验数据接近其预测值。该模型的建立为利用RSM优化平菇中高抗氧化活性的提取时间和温度提供了良好的实验基础。数字对象标识符http://dx.doi.org/10.1615/IntJMedMushr.v14.i6 .70

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