首页> 外文期刊>Journal of Colloid and Interface Science >MIXED MONOLAYERS OF AMPHIPHILIC CYCLODEXTRINS AND PHOSPHOLIPIDS .1. MISCIBILITY UNDER DYNAMIC CONDITIONS OF COMPRESSION
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MIXED MONOLAYERS OF AMPHIPHILIC CYCLODEXTRINS AND PHOSPHOLIPIDS .1. MISCIBILITY UNDER DYNAMIC CONDITIONS OF COMPRESSION

机译:两性环糊精和磷脂的混合单分子膜1。动态压缩条件下的混合性

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The miscibility of per-(6-amino-2,3-di-O-hexyl) beta-CD hydrochloride salt abbreviated NH3-(beta)-CD-OC6 with 1,2 dipalmitoyl, 3-sn-phosphatidyl choline (DPPC) and 1,2 dipalmitoyl, 3-sn-phosphatidic acid (DPPA) and of per-(6-dodecanoylamino-6-deoxy) beta-CD abbreviated C11CONH-beta-CD with DPPC has been assessed by surface pressure-area experiments under dynamic conditions. The determination of their mixing behavior has been approached by thermodynamic characterization derived from a comparison of the composition dependence of collapse pressure, for various contents of two components in monolayers, with that predicted from a model of ideal mixing. Component miscibility has additionally been addressed by the use of the Smaby-Brockman state equation for liquid-expanded monolayers which characterizes interaction between monolayer components using the water activity coefficient, While for both NH3-beta-CD-OC6-DPPC and NH3-beta CD-OC6-DPPA systems the average surface areas followed the additivity rule, for the latter system surface pressures at collapse significantly deviated from ideality, The occurrence of an interaction at the level of oppositely charged polar groups of NH3-beta-CDOC6 and DPPA was also demonstrated by the nonideal composition dependence of the water activity coefficient (f(1)) characterizing the interfacial water. The mixing energies and interaction parameters at collapse pressures were calculated using the Joos approach. Positive values of these factors indicated that NH3-beta-CD-OC6 and DPPA mixed films were thermodynamically less stable than the films in which ideal mixing of components occurred. The mixing of NH3-beta-CD-OC6 with DPPC appeared to be almost ideal, In the case of the C11CONH-beta-CD-DPPC system, analysis according to both the Joos and Goodrich approaches showed the occurrence of an important interaction which resulted in negative mixing energies characteristic of thermodynamically stable mixed films. (C) 1996 Academic Press, Inc. [References: 46]
机译:全(6-氨基-2,3-二-O-己基)β-CD盐酸盐的缩写为NH3-β-CD-OC6与1,2-二棕榈酰,3-sn-磷脂酰胆碱(DPPC)的混溶性在动态压力下通过表面压力区域实验评估了1,2,二棕榈酰,3-sn-磷脂酸(DPPA)和全-(6-十二烷酰氨基-6-脱氧)β-CD缩写为C11CONH-β-CD的DPPC条件。通过热力学表征来确定它们的混合行为,该热力学特征是通过比较坍塌压力对单层中两种组分的各种含量的成分依赖性以及根据理想混合模型预测的热力学特征来进行的。通过使用Smaby-Brockman状态方程求解液体膨胀的单分子层,可以进一步解决组分的混溶性,该方程使用水活度系数来表征单分子层之间的相互作用,而对于NH3-β-CD-OC6-DPPC和NH3-βCD -OC6-DPPA系统的平均表面积遵循可加性规则,对于后者,系统崩溃时的表面压力明显偏离理想状态。在NH3-β-CDOC6和DPPA的带相反电荷的极性基团水平上也发生了相互作用由表征界面水的水分活度系数(f(1))的非理想成分依赖性证明。使用Joos方法计算了塌陷压力下的混合能和相互作用参数。这些因素的正值表明,NH3-β-CD-OC6和DPPA混合膜在热力学上比其中发生了理想成分混合的膜不稳定。 NH3-β-CD-OC6与DPPC的混合似乎非常理想。在C11CONH-β-CD-DPPC系统的情况下,根据Joos和Goodrich方法进行的分析表明,发生了重要的相互作用,从而导致热力学稳定的混合膜的负混合能特性。 (C)1996 Academic Press,Inc. [参考:46]

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