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Controllable Self-Assembly of Sodium Caseinate with a Zwitterionic Vitamin-Derived Bolaamphiphile

机译:酪蛋白酸钠与两性离子维生素衍生的双亲两性分子的可控自组装

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The control of self-assembly of sodium caseinate (SC) including the formation of mixed layers, microspheres, or nanoparticles is highly relevant to the microstructure of food and the design of promising drug delivery systems. In this paper, we designed a structure-switchable zwitterionic bolaamphiphile, 1,12-diaminododecanediorotate (DDO), from orotic acid, which has special binding sites and can guide the self-assembly of SC. Complexation between SC and DDO was investigated using dynamic light scattering, transmission electron microscopy, differential scanning calorimetry, and fluorescence spectra measurements. Monomeric DDO was bound to the negatively charged sites on the SC micelle and made the structure of SC more compact with decreased electrostatic repulsion between the head groups. Vesicular DDO led to rcassociation of vesicles with enlarged size via preferable hydrophobic interactions. Moreover, the aggregation between SC and DDO was found to be temperature-dependent and reversible. This research provides an effective way to control the reversible self-assembly of SC by the zwitterionic vitamin-derived bolaamphiphile.
机译:酪蛋白酸钠(SC)的自组装(包括混合层,微球或纳米颗粒的形成)的控制与食品的微结构和有希望的药物输送系统的设计高度相关。在本文中,我们从乳清酸中设计了一种结构可转换的两性离子两性两性亲双烯基1,1-二氨基十二烷二旋酸酯(DDO),它具有特殊的结合位点并可以指导SC的自组装。使用动态光散射,透射电子显微镜,差示扫描量热法和荧光光谱测量研究了SC和DDO之间的络合物。单体DDO与SC胶束上的带负电荷的位点结合,使SC的结构更紧凑,头部之间的静电排斥力降低。通过优选的疏水相互作用,囊泡DDO导致具有增大尺寸的囊泡重新结合。此外,发现SC和DDO之间的聚集是温度依赖性和可逆的。这项研究提供了一种有效的方法来控制两性离子维生素衍生的双性两亲物可逆的SC自组装。

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