State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, PR China.
State Key Laboratory of Fine Chemicals, School of Chemical Engineering, Dalian University of Technology, Dalian, 116024, PR China.
Colloids Surf B Biointerfaces. 2016 Oct 1;146:523-31. doi: 10.1016/j.colsurfb.2016.06.054. Epub 2016 Jun 28.
Reversible transition from micelles to vesicles by regulating pH were realized by gemini amino-acid surfactants N,N'-dialkyl-N,N'-diacetate ethylenediamine. Measurement results of ζ-potential at different pH and DLS at varying solvents revealed that the protonation between H(+) and double NCH2COO(-) groups (generating NH(+)CH2COO(-)), expressed as pKa1 and pKa2, is the key driving force to control the aggregation behaviors of gemini surfactant molecule. Effect of pH on the bilayer structure was studied in detail by using steady-state fluorescence spectroscopy of hydrophobic pyrene and Coumarin 153 (C153) respectively and fluorescence resonance energy transfer (FRET) from C153 to Rhodamine 6G (R6G). Various pH-regulated and pH-reversible self-assemblies were obtained in one surfactant system. Vitamin D3 was encapsulated in vesicle bilayers to form nano-VD3-capsules as VD3 supplement agent for health care products. By using the electrostatic attraction between Ca(2+) and double -COO(-) groups, nano-VD3-capsules with Ca(2+) coated outermost layers were prepared as a formulation for VD3 and calcium co-supplement agent. DLS and TEM were performed to check stability and morphology of the nano-capsules. It is concluded that the pH-regulated gemini amino-acid surfactants can be used to construct colloidal systems for delivering hydrophobic drugs or nutritions without lipids at human physiological pH level.
通过调节 pH 值,双子氨基酸表面活性剂 N,N'-二烷基-N,N'-二乙酸基乙二胺可以实现从胶束到囊泡的可逆转变。不同 pH 值下的 ζ 电位测量结果和不同溶剂下的 DLS 结果表明,质子化作用 between H(+) 和双 NCH2COO(-)基团(生成 NH(+)CH2COO(-)),用 pKa1 和 pKa2 表示,是控制双子表面活性剂分子聚集行为的关键驱动力。通过使用疏水性芘和香豆素 153(C153)的稳态荧光光谱以及 C153 到 Rhodamine 6G(R6G)的荧光共振能量转移(FRET),详细研究了 pH 对双层结构的影响。在一个表面活性剂体系中获得了各种 pH 调节和 pH 可逆的自组装体。将维生素 D3 包封在囊泡双层中,形成纳米 VD3-囊泡作为维生素 D3 保健品的补充剂。通过利用 Ca(2+) 和双 -COO(-)基团之间的静电吸引力,制备了具有最外层 Ca(2+)涂层的纳米 VD3-囊泡作为维生素 D3 和钙的联合补充剂。通过 DLS 和 TEM 检查纳米胶囊的稳定性和形态。研究结论表明,pH 调节的双子氨基酸表面活性剂可用于构建胶体体系,在人体生理 pH 值水平下输送疏水性药物或营养物质,而无需使用脂质。