Antunes Filipe E, Brito Rodrigo O, Marques Eduardo F, Lindman Björn, Miguel Maria
Chemistry Department, University of Coimbra, 3004-535 Coimbra, Portugal.
J Phys Chem B. 2007 Jan 11;111(1):116-23. doi: 10.1021/jp063994+.
Vesicles composed of an anionic and a cationic surfactant, with a net negative charge, associate strongly with a hydrophobically modified polycation (LM200) and with an unmodified polycation with higher charge density (JR400), forming viscoelastic gel-like structures. Calorimetric results show that in these gels, LM200 induces a rise of the chain melting temperature (Tm) of the vesicles, whereas JR400 has the opposite effect. For both polymer-vesicle systems, the shear viscosity exhibits an inflection point at Tm, and for the LM200 system the measured relaxation times are significantly higher below Tm. The neat vesicles and the polycation-bound vesicles have a polygonal-like faceted shape when the surfactant chains in the bilayer are crystallized, as probed by cryo-transmission electron microscopy. Above Tm, the neat and the LM200-bound vesicles regain a spheroidal shape, whereas those in the JR400 system remain with a deformed faceted shape even above Tm. These shape changes are interpreted in terms of different mechanisms for the polymer-vesicle interaction, which seem to be highly dependent on polymer architecture, namely charge density and hydrophobic modification. A crystallization-segregation mechanism is proposed for the LM200-vesicle system, while, for the JR400-vesicle one, charge polarization-lateral segregation effects induced by the polycation in the catanionic bilayer are envisaged.
由阴离子和阳离子表面活性剂组成且带净负电荷的囊泡,与疏水改性聚阳离子(LM200)以及电荷密度更高的未改性聚阳离子(JR400)强烈缔合,形成粘弹性凝胶状结构。量热结果表明,在这些凝胶中,LM200会使囊泡的链熔化温度(Tm)升高,而JR400则有相反的效果。对于这两种聚合物 - 囊泡体系,剪切粘度在Tm处呈现拐点,并且对于LM200体系,在低于Tm时测得的弛豫时间显著更高。当双层中的表面活性剂链结晶时,通过冷冻透射电子显微镜检测发现,纯囊泡和与聚阳离子结合的囊泡具有多边形刻面形状。在高于Tm时,纯囊泡和与LM200结合的囊泡恢复为球形,而在JR400体系中的囊泡即使在高于Tm时仍保持变形的刻面形状。这些形状变化是根据聚合物 - 囊泡相互作用的不同机制来解释的,这似乎高度依赖于聚合物结构,即电荷密度和疏水改性。针对LM200 - 囊泡体系提出了一种结晶 - 分离机制,而对于JR400 - 囊泡体系,则设想了由聚阳离子在阴阳离子双层中诱导的电荷极化 - 横向分离效应。