A novel aqueous dispersion of particles with bicontinuous cubic phases in their interior (cubosomes) was prepared. A nonionic triblock copolymer, Pluronic F127, was used as an emulsifier of a liquid crystal phase of hydrated monoolein (MO). Dynamic light scattering showed that particles with an average diameter of 160−270 nm were formed by high-pressure emulsification. Particle size decreased as the weight ratio of F127 to MO increased up to 10%, whereas it was constant at higher than 10%. Small-angle X-ray scattering experiments confirmed the presence of two kinds of cubic structures (C D and C P ). At 3% F127, the diffraction pattern corresponding to the C D was dominant and the diffraction of the C P was minimally detected, suggesting that the polymer preferably emerges to the surface of the particles and the interior has a C D structure consisting mostly of hydrated MO. The proportion of the C P increased with F127 content, which suggests that preferentially concentrated F127 at the surface participates in the formation of the C P phase. 13 C NMR experiments with a paramagnetic shift reagent showed that the signal of the carbonyl carbon of oleic-1- 13 C acid mixed in the particles readily shifted to a lower magnetic field by addition of europium ion (Eu 3+ ), indicating high accessibility of the ion into the water channel inside the particles.
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Nakano et al. (2001) studied this question.
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