Surgical Department, Kimitsu Chuo Hospital, Kisarazu-shi, Chiba, Japan.
Graduate School of Environment and Information Sciences, Yokohama National University, Yokohama, Kanagawa, Japan.
PLoS One. 2020 Aug 7;15(8):e0237255. doi: 10.1371/journal.pone.0237255. eCollection 2020.
In this study, washing tests were performed using samples prepared by contaminating fabrics with hemoglobin, and a kinetic analysis was conducted based the probability density functional method, which expresses the cleaning power using two parameters σrl (related to the cleaning mechanism) and μrl (related to the level of cleaning power). This method allows for the processing of uncertainties specific to protein washing under the assumption that the soil adhesion and detergency are in accordance with a normal distribution. A certain amount of hemoglobin solution was soaked in a cloth, dried, and steam-treated, and then used as a sample for a cleaning test. Two parameters σrl and μrl were calculated based on the detergency (%) after 5 min, 10 min, 15 min, and 20 min of washing with respect to different pH and temperature levels, and different sodium dodecyl sulfate (SDS) concentration and temperature levels. Based on the results, the value of σrl indicated that the hemoglobin was removed by the dissolving action. In addition, μrl increased in accordance with an increase in the pH, SDS concentration, and temperature. With respect to μrl, the relationship of ΔX + ΔY = Δ(X+Y) was observed in several cases, where ΔX represents the effect of the pH or SDS concentration, ΔY is the temperature effect, and Δ(X+Y) is the combined effect. Therefore, there may be an additive relationship between the pH and temperature effects, and the SDS concentration and temperature effects.
在本研究中,通过将血红蛋白污染在织物上来制备样品,并采用概率密度函数方法进行动力学分析,从而对清洗效果进行分析。该方法使用两个参数 σrl(与清洗机制有关)和 μrl(与清洗效果有关)来表达清洗效果。这种方法可以处理与蛋白质清洗相关的不确定性,前提是土壤附着力和去污力符合正态分布。将一定量的血红蛋白溶液浸泡在布中,干燥并进行蒸汽处理,然后将其用作清洗测试的样品。根据不同 pH 值和温度水平以及不同的十二烷基硫酸钠(SDS)浓度和温度水平下清洗 5 分钟、10 分钟、15 分钟和 20 分钟后的去污率(%),计算出参数 σrl 和 μrl。基于结果,参数 σrl 值表明血红蛋白是通过溶解作用去除的。此外,μrl 值随着 pH 值、SDS 浓度和温度的升高而增加。对于 μrl,在几种情况下观察到 ΔX + ΔY = Δ(X+Y) 的关系,其中 ΔX 表示 pH 值或 SDS 浓度的影响,ΔY 是温度的影响,Δ(X+Y) 是两者的综合影响。因此,pH 值和温度效应以及 SDS 浓度和温度效应之间可能存在相加关系。