IBBP, Westfälische Wilhelms-Universität Münster , Schlossgarten 3, 48149 - Münster, Germany.
J Phys Chem B. 2014 Aug 14;118(32):9782-91. doi: 10.1021/jp5037553. Epub 2014 Aug 4.
The immobilization of the hydrophilic low molecular-weight cationic molecules rhodamine 6G, methylene blue, and citidine in nanoparticles composed of two opposite charged polyelectrolytes, poly(sodium 4-styrenesulfonate) and chitosan, is studied, and the results correlated with their physicochemical properties. Nanoparticles containing both polyelectrolytes have been synthesized showing hydrodynamic diameters of around 200 nm and tunable zeta potential. It was found that the strength of binding of the cationic molecules to the polyanion bearing charged aromatic groups poly(sodium 4-styrenesulfonate) by means of short-range aromatic-aromatic interactions increases with their hydrophobicity and polarizability, as seen by (1)H NMR and UV-vis spectroscopies, and diafiltration. Consequently, association efficiencies of 45, 21, and 12% have been found for the three molecules, respectively, revealing the different ability of the molecules to be immobilized in the nanoparticles. These results provide a proof of concept on a new strategy of immobilization of hydrophilic low molecular-weight molecules based on aromatic-aromatic interactions between polyelectrolytes and their aromatic counterions.
将亲水性低分子量阳离子分子罗丹明 6G、亚甲蓝和胞嘧啶固定在由两种带相反电荷的聚电解质组成的纳米粒子中,研究了聚(4-苯乙烯磺酸钠)和壳聚糖的物理化学性质。已经合成了含有两种聚电解质的纳米粒子,其水动力直径约为 200nm,且可调节的 ζ 电位。通过(1)H NMR 和 UV-vis 光谱以及渗滤实验发现,阳离子分子与带电荷的芳香族基团聚(4-苯乙烯磺酸钠)之间通过短程芳香族-芳香族相互作用结合的强度随其疏水性和极化率的增加而增加。因此,三种分子的缔合效率分别为 45%、21%和 12%,这表明分子在纳米粒子中被固定的能力不同。这些结果为基于聚电解质与其芳香族抗衡离子之间的芳香族-芳香族相互作用来固定亲水性低分子量分子的新策略提供了概念证明。