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由疏水改性纤维素稳定的分散脂质液晶相

Dispersed lipid liquid crystalline phases stabilized by a hydrophobically modified cellulose.

作者信息

Almgren Mats, Borné Johanna, Feitosa Eloi, Khan Ali, Lindman Björn

机构信息

Department of Physical and Analytical Chemistry, Uppsala University, P.O. Box 579, SE-751 23 Uppsala, Sweden.

出版信息

Langmuir. 2007 Feb 27;23(5):2768-77. doi: 10.1021/la062482j.

Abstract

Aqueous dispersions of monoolein (MO) with a commercial hydrophobically modified ethyl hydroxyethyl cellulose ether (HMEHEC) have been investigated with respect to the morphologies of the liquid crystalline nanoparticles. Only very low proportions of HMEHEC are accepted in the cubic and lamellar phases of the monoolein-water system. Due to the broad variation of composition and size of the commercial polymer, no other single-phase regions were found in the quasi-ternary system. Interactions of MO with different fractions of the HMEHEC sample induced the formation of lamellar and reversed hexagonal phases, identified from SAXD, polarization microscopy, and cryogenic TEM examinations. In excess water (more than 90 wt %) coarse dispersions are formed more or less spontaneously, containing particles of cubic phase from a size visible by the naked eye to small particles observed by cryoTEM. At high polymer/MO ratios, vesicles were frequently observed, often oligo-lamellar with inter-lamellar connections. After homogenization of the coarse dispersions in a microfluidizer, the large particles disappeared, apparently replaced by smaller cubic particles, often with vesicular attachments on the surfaces, and by vesicles or vesicular particles with a disordered interior. At the largest polymer contents no proper cubic particles were found directly after homogenization but mainly single-walled defected vesicles with a peculiar edgy appearance. During storage for 2 weeks, the dispersed particles changed toward more well-shaped cubic particles, even in dispersions with the highest polymer contents. In some of the samples with low polymer/MO ratio, dispersed particles of the reversed hexagonal type were found. A few of the homogenized samples were freeze-dried and rehydrated. Particles of essentially the same types, but with a less well-developed cubic character, were found after this treatment.

摘要

已针对单油酸甘油酯(MO)与市售疏水改性乙基羟乙基纤维素醚(HMEHEC)的水分散体,研究了液晶纳米颗粒的形态。在单油酸甘油酯 - 水体系的立方相和层状相中,HMEHEC的接受比例非常低。由于市售聚合物的组成和尺寸变化很大,在准三元体系中未发现其他单相区域。MO与不同比例的HMEHEC样品之间的相互作用诱导形成了层状相和反六角相,这通过小角X射线散射(SAXD)、偏光显微镜和低温透射电子显微镜(cryoTEM)检查得以确定。在过量水(超过90 wt%)中,或多或少会自发形成粗分散体,其中包含从肉眼可见大小的立方相颗粒到低温透射电子显微镜观察到的小颗粒。在高聚合物/ MO比例下,经常观察到囊泡,通常是多层的且具有层间连接。在微流控器中将粗分散体均质化后,大颗粒消失,显然被较小的立方颗粒所取代,这些立方颗粒表面常常附有囊泡,还有内部无序的囊泡或囊泡状颗粒。在聚合物含量最高时,均质化后未直接发现合适的立方颗粒,而是主要发现具有奇特边缘外观的单壁缺陷囊泡。在储存2周期间,即使在聚合物含量最高的分散体中,分散颗粒也会向形状更规则的立方颗粒转变。在一些聚合物/ MO比例低的样品中,发现了反六角型的分散颗粒。对一些均质化样品进行冷冻干燥并重新水化。处理后发现了基本相同类型的颗粒,但立方特征发育较差。

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