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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Effects of electric charges on serum protein aggregation induced by a low temperature atmospheric pressure plasma
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Effects of electric charges on serum protein aggregation induced by a low temperature atmospheric pressure plasma

机译:电荷对低温大气压等离子体诱导血清蛋白质聚集的影响

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To understand the aggregation mechanism of serum protein dispersed in the solution of distilled water induced by a low temperature atmospheric pressure plasma, we compared the relationship between the amount of aggregation and experimental condition dependencies such as gas species, gas flow rate, and the distance between the plasma device and the solution. In this experiment, pure argon, helium, and/or a mixture of helium and argon gases were used. From statistical analyses of various experimental conditions, it was found that a monotonic supply of total absolute charge in one period was important for protein aggregation. When the coefficient of variation (standard deviations/averaged total absolute charges during one period) is small, the amount of protein aggregation becomes larger. Excess or scarcity of averaged total absolute charges does not appear to relate to protein aggregation phenomena; however, the coefficient of variation strongly relates to the mechanism of protein aggregation. Therefore, a possible serum protein aggregation process by low-temperature plasma treatment was proposed in which the serum protein, which had negative charges in the solution, was locally aggregated through the trigger of charge neutralization induced by a stable charge supply, and/or positively charged aggregated protein on the solution surface attracted serum protein in the solution to the surface.
机译:为了了解低温常压等离子体诱导的血清蛋白在蒸馏水溶液中的聚集机制,我们比较了聚集量与实验条件依赖性之间的关系,如气体种类、气体流速以及等离子体装置与溶液之间的距离。在这个实验中,使用了纯氩、氦和/或氦和氩气的混合物。通过对各种实验条件的统计分析,发现在一个周期内总绝对电荷的单调供给对蛋白质聚集非常重要。当变异系数(一个周期内的标准偏差/平均总绝对电荷)较小时,蛋白质聚集量变大。平均总绝对电荷的过量或不足似乎与蛋白质聚集现象无关;然而,变异系数与蛋白质聚集机制密切相关。因此,提出了一种可能的低温等离子体处理血清蛋白聚集过程,其中溶液中带负电荷的血清蛋白通过稳定电荷供应诱导的电荷中和触发局部聚集,和/或溶液表面上带正电荷的聚集蛋白质将溶液中的血清蛋白质吸引到表面。

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