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首页> 外文期刊>Molecular Nutrition and Food Research >Structural changes and allergenic properties of beta-lactoglobulin upon exposure to high-intensity ultrasound.
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Structural changes and allergenic properties of beta-lactoglobulin upon exposure to high-intensity ultrasound.

机译:暴露于高强度超声后β-乳球蛋白的结构变化和变应原性质。

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Scope. The aim of this work was to investigate the effects of high-intensity ultrasound (sonication), on the structure and allergenicity of the major cow's milk allergen, beta-lactoglobulin (BLG). Methods and results. Structural changes upon sonication of BLG were monitored by circular dichroism spectroscopy, tryptophan emission fluorescence, hydrophobic dye and retinol binding, as well as digestibility and phenol-oxidase cross-linking capacity. Allergenicity was monitored in individual patients' sera, basophil activation test, and skin prick testing in 41 cow's milk allergy patients. Uncontrolled local temperature changes induced modifications in BLG secondary structure accompanied by formation of dimers, trimers, and oligomers of BLG that were more digestible by pepsin and had reduced retinol binding. Controlled temperature conditions induced changes in secondary structure of BLG without causing formation of oligomers, or changing protein's capacity to bind retinol. Both sonicated forms of BLG had more exposed hydrophobic surfaces than native BLG and underwent facilitated cross-linking reaction with phenol-oxidase. Sonication had a minor effect on IgE-binding properties of BLG. Conclusion. Sonication-induced structural changes in major whey allergen were not clinically significant in cow's milk allergy patients. Ultrasound can be a safe procedure for dairy processing as it maintains the nutritional value and does not increase allergenic potential of BLG.
机译:范围。这项工作的目的是研究高强度超声(超声)对主要牛奶过敏原β-乳球蛋白(BLG)的结构和致敏性的影响。方法和结果。通过圆二色光谱,色氨酸发射荧光,疏水性染料和视黄醇结合以及消化率和酚氧化酶交联能力监测BLG超声处理后的结构变化。在41名母乳过敏患者中,通过对每个患者的血清,嗜碱性粒细胞活化试验和皮肤点刺试验进行了过敏原监测。不受控制的局部温度变化引起BLG二级结构的修饰,并伴随着BLG的二聚体,三聚体和寡聚体的形成,而后者更容易被胃蛋白酶消化,视黄醇的结合减少。受控的温度条件可诱导BLG二级结构发生变化,而不会引起寡聚物的形成,也不会改变蛋白质与视黄醇的结合能力。两种超声形式的BLG均比天然BLG具有更多的暴露疏水表面,并且易于与酚氧化酶进行交联反应。超声处理对BLG的IgE结合特性影响较小。结论。在母乳过敏患者中,超声处理引起的主要乳清过敏原的结构变化在临床上并不重要。超声波可以保持乳制品的营养价值,并且不会增加BLG的潜在致敏性,因此是奶制品加工的安全程序。

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