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Adsorption of Zein on Surfaces with Controlled Wettability and Thermal Stability of Adsorbed Zein Films

机译:玉米醇溶蛋白在可控润湿性和玉米醇溶膜热稳定性的表面上的吸附

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Adsorption characteristics of zein protein on hydrophobic and hydrophilic surfaces have been investigated to understand the orientation changes associated with the protein structure on a surface. The protein is adsorbed by a self-assembly procedure on a monolayer-modified gold surface. It is observed that zein shows higher affinity toward hydrophilic than hydrophobic surfaces on the basis of the initial adsorption rate followed by quartz crystal microbalance studies. Reflection absorption infrared (RAIR) spectroscopic studies reveal the orientation changes associated with the adsorbed zein films. Upon adsorption, the protein is found to be denatured and the transformation of alpha-helix to bet-sheet form is inferred. This transformation is pronounced when the protein is adsorbed on hydrophobic surfaces as compared to hydrophilic surfaces. Electrochemical techniques (cyclic voltammetry and impedance techniques) are very useful in assessing the permeability of zein film. It is observed that the zein moieties adsorbed on hydrophilic surfaces are highly impermeable in nature and act as a barrier for small molecules. The topographical features of the deposits before and after adsorption are analyzed by atomic force microscopy. The protein adsorbed on hydrophilic surface shows rod- and disclike features that are likely to be the base units for the growth of cylindrical structures of zein. The thermal stability of the adsorbed zein film has been followed by variable-temperature RAIR measurements.
机译:已经研究了玉米蛋白在疏水性和亲水性表面上的吸附特性,以了解与表面上的蛋白质结构相关的取向变化。蛋白质通过自组装过程吸附在单层修饰的金表面上。观察到,基于初始吸附速率,随后进行石英晶体微量天平研究,玉米醇溶蛋白对亲水性表面的亲合力高于疏水性表面。反射吸收红外(RAIR)光谱研究揭示了与吸附的玉米醇溶蛋白薄膜相关的取向变化。吸附后,发现该蛋白质被变性,并且推断出α-螺旋向投注单形式的转化。与亲水性表面相比,当蛋白质吸附在疏水性表面上时,这种转变就很明显。电化学技术(循环伏安法和阻抗技术)在评估玉米蛋白膜的渗透性方面非常有用。观察到,吸附在亲水表面上的玉米醇溶蛋白部分本质上是高度不可渗透的,并充当小分子的屏障。通过原子力显微镜分析吸附前后沉积物的形貌特征。吸附在亲水表面上的蛋白质显示出棒状和盘状特征,可能是玉米醇溶蛋白圆柱结构生长的基本单位。吸附的玉米蛋白膜的热稳定性已经通过可变温度的RAIR测量来跟踪。

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