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酶对变性蛋白质土壤影响的密度泛函方法。

Probability Density Functional Method of Enzyme Effect on Denatured Protein Soil.

机构信息

Global Development Center, Research & Development Headquarters, Lion Corporation.

Graduate School of Environment and Information Sciences, Yokohama National University.

出版信息

J Oleo Sci. 2024;73(5):675-681. doi: 10.5650/jos.ess23262.

Abstract

Protein soils must be removed for both appearance and hygienic reasons. They are denatured by heat treatment or bleaching and cleaned using enzymes. Among the various types of protein soils, blood soils are the most noticeable and known to be denatured by heat and bleaching by oxidation. We verified herein that the detergency of heat and oxidatively denatured hemoglobin is greatly improved by the enzyme immersing treatment in the detergency with SDS and can be analyzed using the probability density functional method. The probability density functional method evaluates the cleaning power by assuming that the adhesion and cleaning force of soils are not uniquely determined, but instead have a distribution in intensity, with a usefulness that had recently been demonstrated. This analytical method showed that the cleaning power of the enzyme immersing treatment improved when the soil adhesive force was decreased due to denatured protein degradation, even though the cleaning power of the SDS remained unchanged, and the values were consistent with those in the cleaning test. In conclusion, the probability density functional method can be used to analyze enzymatic degradation of denatured protein soils and the resulting changes in their detergency.

摘要

出于美观和卫生原因,必须去除蛋白质污垢。它们可以通过热处理或漂白变性,并使用酶进行清洁。在各种类型的蛋白质污垢中,血污是最明显的,已知会因热和氧化漂白而变性。我们在此证明,用 SDS 进行去污时,通过酶浸渍处理可大大提高热和氧化变性血红蛋白的去污能力,并可使用概率密度泛函法进行分析。概率密度泛函法通过假设污垢的附着力和清洁力不是唯一确定的,而是具有强度分布来评估清洁能力,这种方法最近已经得到证明。该分析方法表明,即使 SDS 的清洁能力保持不变,由于变性蛋白质降解导致污垢附着力降低,酶浸渍处理的清洁能力也会提高,并且这些值与清洁测试中的值一致。总之,概率密度泛函法可用于分析变性蛋白质污垢的酶降解及其去污能力的变化。

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