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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Interfacial Properties of Mixed beta-Lactoglobulin-SDS Layers at the Water/Air and Water/ Oil Interface
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Interfacial Properties of Mixed beta-Lactoglobulin-SDS Layers at the Water/Air and Water/ Oil Interface

机译:β-乳球蛋白-SDS混合层在水/空气和水/油界面的界面性质

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The adsorption behavior of the beta-lactoglobuline has been studied in the presence of the anionic surfactant sodium dodecylsulfate(SDS)and compared for two different interfaces,water/air and water/hexane.The fitting of experimental data(adsorption isotherms)by a mixed adsorption model and the determination of structural parameters such as the molecular area occupied by the protein-surfactant complex and the surfactant molecules at the interface allowed to have a better understanding of the composition and as a consequence the behavior of the mixed interfacial layer.The parameters obtained for the mixtures are similar to those obtained separately for the single components,but the comparison of the both interfaces has shown significant differences.Much higher concentration of complex is found at the water/hexane interface,which is the result of a better affinity of the protein for this interface.A higher penetration of the protein into the oil phase and the presence of interactions between protein-surfactant complexes and free surfactant molecules stabilize the interface preventing its replacement by the SDS molecules.Rheological experiments show a decrease of the visco-elastic modulus at both interfaces with increasing SDS concentration.But at the water/oil interface,contrary to the water/air interface at which the replacement of the protein has been clearly observed,this decrease is attributed to changes of complex properties.At high SDS concentrations,an increase of the hydrophilic character due to hydrophobic interactions with the surfactant molecules leads to an increase in the mobility of the complex,which favors its desorption upon increased competition by the surfactant.
机译:在阴离子表面活性剂十二烷基硫酸钠(SDS)存在下研究了β-乳球蛋白的吸附行为,并比较了水/空气和水/己烷这两种不同的界面。混合实验数据(吸附等温线)的拟合吸附模型和确定结构参数(例如蛋白质-表面活性剂复合物占据的分子面积和界面上的表面活性剂分子)可以更好地了解其组成,从而更好地了解混合界面层的行为。混合物获得的结果与单组分获得的结果相似,但两种界面的比较显示出显着差异。在水/己烷界面处发现了更高浓度的络合物,这是由于更好的亲和力所致。蛋白质在该界面中的渗透率更高。蛋白质表面活性剂复合物和游离的表面活性剂分子稳定了界面,防止被SDS分子取代。流变实验表明,随着SDS浓度的增加,两个界面的粘弹性模量均降低。在水/空气界面处已清楚地观察到蛋白质的置换,这种下降归因于复杂特性的变化。在高SDS浓度下,由于与表面活性剂分子发生疏水性相互作用而使亲水性增加,导致络合物的流动性,有利于表面活性剂竞争加剧时的解吸。

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