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首页> 外文期刊>Food Chemistry >Study Of The Dpph~·-scavenging Activity: Development Of A Free Software For The Correct Interpretation Of Data
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Study Of The Dpph~·-scavenging Activity: Development Of A Free Software For The Correct Interpretation Of Data

机译:Dpph〜-清除活动的研究:开发用于正确解释数据的免费软件

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摘要

Antioxidants are important because they prevent lipid oxidation in food, and decrease the adverse effects of reactive species on normal physiological functions in humans. A wide variety of in vitro chemical models have been developed to assess the ability to prevent oxidative damages; amongst the chemical tests that measure radical scavenging capacity, the DPPH~· assay is one of the most widely employed method. EC_(50) (concentration required to obtain a 50% antioxidant capacity) is typically employed to express the antioxidant activity and to compare the antioxidant capacity of various samples; however its measurement requires some care, because of the non-linear relation between antioxidant concentration and anti-radical activity. In this work a statistical software was developed in order to apply different linearising transformations in the study of DPPH~·-scavenging properties of antioxidants. The software was also implemented to perform the determination of outliers, the calculation of the EC_(50) values and the comparison of the curves, and of their corresponding straight lines, obtained from the regression analysis of the data. First, the analysis of the DPPH~·-scavenging activity was performed on standard molecules and then applied to different food extracts. The regression models employed in this work (probit, logit and angular regressions) appeared to be equivalent and to fit well the antiradical activity curves obtained for both standard molecules and food extracts; probit regression was finally chosen to discuss the results and to introduce a new parameter characterising these curves.
机译:抗氧化剂很重要,因为它们可以防止食物中的脂质氧化,并减少反应性物种对人类正常生理功能的不利影响。已经开发了各种各样的体外化学模型来评估防止氧化损伤的能力。在测量自由基清除能力的化学测试中,DPPH〜·分析是应用最广泛的方法之一。通常使用EC_(50)(获得50%抗氧化能力所需的浓度)来表达抗氧化活性并比较各种样品的抗氧化能力;但是,由于抗氧化剂浓度和抗自由基活性之间存在非线性关系,因此需要对其进行测量。在这项工作中,为了在抗氧化剂的DPPH〜-清除性能的研究中应用不同的线性化转换,开发了统计软件。该软件还用于执行离群值的确定,EC_(50)值的计算以及曲线的比较以及从数据的回归分析中获得的相应直线。首先,对标准分子进行DPPH〜-清除活性的分析,然后将其应用于不同的食品提取物中。这项工作中使用的回归模型(概率,对数和角度回归)似乎是等效的,并且很好地拟合了标准分子和食品提取物获得的抗自由基活性曲线。最后选择了概率回归来讨论结果并引入表征这些曲线的新参数。

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