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Effect of atmospheric pressure cold plasma (ACP) on activity and structure of alkaline phosphatase

机译:大气压冷血浆(ACP)对碱性磷酸酶活性和结构的影响

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Atmospheric cold plasma treatments (ACP) is a novel non-thermal processing technology with several emerging potential applications in food processing, including dairy. This study evaluates the effect of ACP on the activity and structure of alkaline phosphatase (ALP), an enzyme native to milk. ALP enzyme in solution was treated with ACP at three discreet high voltages (40, 50 and 60 kV) for durations ranging between 15 s and 5 min. Results demonstrated that the dielectric barrier discharge based plasma technology was able to inactivate the enzyme within a few seconds. Kinetic models, namely first order, Weibull and logistic models were fitted to the experimentally observed data and the model parameters were determined. The Weibull model was found to best describe the observed variance in residual activity for all the voltages applied. The dichroic spectra suggested that the enzyme was characterized by a predominance of alpha-helix structure, and the helical content showed a tendency to decrease with increase in treatment time and voltage. The maximum temperature recorded for most intense treatments was in the order of only 30 degrees C and no change in pH was noticed. (C) 2016 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:大气冷等离子体处理(ACP)是一种新颖的非热加工技术,在包括乳制品在内的食品加工中具有多种新兴的潜在应用。这项研究评估了ACP对牛奶中天然酶碱性磷酸酶(ALP)的活性和结构的影响。溶液中的ALP酶在三个不连续的高压(40、50和60 kV)下用ACP处理,持续时间为15秒至5分钟。结果表明,基于电介质阻挡放电的等离子体技术能够在几秒钟内使酶失活。动力学模型,即一阶模型,Weibull模型和logistic模型适合于实验观察到的数据,并确定了模型参数。我们发现,威布尔模型能够最好地描述所施加的所有电压下残留活性的变化。二向色光谱表明该酶的特征是主要具有α-螺旋结构,并且螺旋含量显示出随着处理时间和电压的增加而降低的趋势。对于最剧烈的处理,记录的最高温度仅为30摄氏度左右,pH值没有变化。 (C)2016化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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