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Spontaneous Formation of Vesicles and Dispersed Cubic and Hexagonal Particles in Amino Acid-Based Catanionic Surfactant Systems

机译:基于氨基酸的阴阳离子表面活性剂体系中囊泡和分散的立方和六角粒子的自发形成

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摘要

Mixed catanionic surfactant systems based on amino acids were investigated with respect to the formation of liquid crystal dispersions and the stability of the dispersions. The surfactants used were arginine-N-lauroyl amide dihydrochloride (ALA) and Nα-lauroyl-arginine-methyl ester hydrochloride (LAM), which are arginine-based cationic surfactants; sodium hydrogenated tallow glutamate (HS), a glutamic-based anionic surfactant; and the anionic surfactants sodium octyl sulfate (SOS) and sodium cetyl sulfate (SCS). It is demonstrated that in certain ranges of composition there is a spontaneous formation of vesicular, cubic, and hexagonal structures. The solutions were characterized with respect to internal structure and size by cryogenic transmission electron microscopy (cryo-TEM), dynamic light scattering (DLS), and turbidity measurements. Vesicles formed spontaneously and were found for all systems studied; their size distribution is presented for the systems ALA/SCS/W and ALA/SOS/W; they are all markedly polydisperse. The aging process for the system ALA/SOS/W was monitored both by turbidity and by cryo-TEM imaging; the size distribution profile for the system becomes narrower and the number average radius decreases with time. The presence of dispersed particles with internal cubic structure (cubosomes) and internal hexagonal structure (hexosomes) was documented for the systems containing ALA and HS. The particles formed spontaneously and remained stably dispersed in solution; no stabilizer was required. (Cubosome and hexosome are USPTO registered trademarks of Camurus AB, Sweden.) The spontaneous formation of particles and their stability, together with favorable biological responses, suggests a number of applications.
机译:关于液晶分散体的形成和分散体的稳定性,研究了基于氨基酸的混合阳离子表面活性剂体系。所使用的表面活性剂为精氨酸-阳离子表面活性剂精氨酸-N-月桂酰酰胺二盐酸盐(ALA)和Nα-月桂酰-精氨酸甲酯盐酸盐(LAM)。氢化牛脂谷氨酸钠(HS),一种基于谷氨酸的阴离子表面活性剂;阴离子表面活性剂辛基硫酸钠(SOS)和十六烷基硫酸钠(SCS)。已经证明,在某些组成范围内,会自发形成水泡,立方和六边形结构。通过低温透射电子显微镜(cryo-TEM),动态光散射(DLS)和浊度测量对溶液的内部结构和尺寸进行表征。囊泡是自发形成的,并且在所有研究的系统中均被发现。列出了系统ALA / SCS / W和ALA / SOS / W的大小分布;它们均具有明显的多分散性。系统ALA / SOS / W的老化过程通过浊度和冷冻TEM成像进行监控。系统的尺寸分布轮廓变窄,并且数均半径随时间减小。对于包含ALA和HS的系统,已记录到存在具有内部立方结构(立方体)和内部六边形结构(六倍体)的分散颗粒。粒子自发形成并保持稳定地分散在溶液中。不需要稳定剂。 (立方体和六方体是美国Camerus AB在瑞典的USPTO注册商标。)粒子的自发形成及其稳定性以及良好的生物学响应表明了许多应用。

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