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Partitioning of octyl glucoside between octyl glucoside/phosphatidylcholine mixed aggregates and aqueous media as studied by isothermal titration calorimetry.

机译:通过等温滴定量热法研究了辛基葡萄糖苷在辛基葡萄糖苷/磷脂酰胆碱混合聚集体和水性介质之间的分配。

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摘要

Stepwise dilution of lipid-surfactant mixed micelles first results in extraction of surfactant from the mixed micelles into the aqueous medium. Subsequently mixed micelles transform into vesicles, within a range of compositions that corresponds to equilibrium coexistence between these two types of aggregates. Further dilution results in extraction of surfactant from the resultant mixed vesicles. In the present study, we have investigated the heat evolution of these processes, as they occur in mixed systems composed of egg phosphatidylcholine (PC) and the nonionic surfactant octylglucoside (OG). A combined use of isothermal titration calorimetry (ITC) and photon correlation spectroscopy (PCS), capable of monitoring phase transformations, revealed that 1) The sum of all of the studied processes (i.e., extraction of OG from mixed micelles and vesicles and the phase transformation) is isocaloric at approximately 40 degrees C throughout the whole dilution. At lower temperatures, all of the dilution steps are exothermic, whereas at higher temperatures all of them are endothermic. 2) At all temperatures, the absolute value of the heat associated with each dilution step within the range of coexistence of micelles and vesicles is almost constant and larger than in either the micellar or the vesicular range. We give an interpretation of these calorimetric data in terms of the relationship between the composition of the mixed aggregates Re and the aqueous concentration of surfactant monomers Dw. Assuming that the main contribution to the heat evolution is due to extraction of surfactant from mixed aggregates to the aqueous solution, we deduce the relationship Dw(Re) characterizing the system over the whole range of compositions. We find that, in accord with thermodynamic expectations, Dw is almost constant throughout the range of coexistence of mixed micelles and vesicles.
机译:逐步稀释脂质表面活性剂混合胶束首先导致将表面活性剂从混合胶束中提取到水性介质中。随后,在与这两种类型的聚集体之间的平衡共存相对应的组成范围内,混合的胶束转化为囊泡。进一步稀释导致从所得混合囊泡中提取表面活性剂。在本研究中,我们研究了这些过程的热演化,因为它们发生在由卵磷脂酰胆碱(PC)和非离子表面活性剂辛基葡萄糖苷(OG)组成的混合系统中。能够监测相变的等温滴定热量法(ITC)和光子相关光谱法(PCS)的组合使用显示:1)所有研究过程的总和(即,从混合的胶束和囊泡中提取OG以及相在整个稀释过程中,约40摄氏度时等温。在较低温度下,所有稀释步骤都是放热的,而在较高温度下,所有稀释步骤都是吸热的。 2)在所有温度下,与胶束和囊泡共存范围内的每个稀释步骤相关的热量的绝对值几乎是恒定的,并且大于在胶束或囊泡范围内。我们根据混合聚集体Re的组成与表面活性剂单体Dw的水浓度之间的关系来解释这些量热数据。假设对热量产生的主要贡献是由于从混合骨料中提取表面活性剂到水溶液中,我们推导了在整个组合物范围内表征系统特征的关系Dw(Re)。我们发现,根据热力学预期,在混合的胶束和囊泡共存的整个范围内,Dw几乎恒定。

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