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比较 DPPC 和 DPPC 囊泡稳定的 n-十四烷/电解质乳液在电解质溶液中的性质。

Comparison of n-tetradecane/electrolyte emulsions properties stabilized by DPPC and DPPC vesicles in the electrolyte solution.

机构信息

Department of Interfacial Phenomena, Faculty of Chemistry, Maria Curie-Skłodowska University, 20031 Lublin, Poland.

出版信息

Colloids Surf B Biointerfaces. 2011 Mar;83(1):108-15. doi: 10.1016/j.colsurfb.2010.11.015. Epub 2010 Nov 17.

Abstract

The properties of n-tetradecane/electrolyte emulsions with DPPC or DPPC vesicles in the electrolyte solution were investigated. The DPPC molecules form different aggregates, which possess different surface affinity, size and structure, and therefore we assumed some differences in the adsorption at the oil droplet/water interface. The n-tetradecane emulsions in 1:1, 1:2 and 1:3 electrolytes were prepared by mechanical stirring in the presence of DPPC at natural pH. Electrokinetic properties of the systems were investigated taking into account the effective diameter and multimodal size distribution of the droplets as well as the zeta potentials using the dynamic light scattering technique. The zeta potential of the droplets was negative in all systems with NaCl. In the emulsions with CaCl(2) at a higher concentration of electrolyte and emulsions with LaCl(3) with all investigated concentrations, positive values were observed. Similar measurements were performed for DPPC vesicles in the electrolyte solution. The pH and ionic strength changes induce those in the electrical charge of DPPC layer or vesicle surface. This is due to the fact that the DPPC molecule contains -PO(-) and -N(CH(3))(3) groups, which are in equilibrium with H(+) and OH(-), as well as other ions present in the solution, i.e. Na(+), Ca(2+), La(3+) or Cl(-). In the n-tetradecane/electrolyte emulsion stabilized by DPPC or DPPC vesicles the zeta potential may be also related to acid-base interactions. The effect of the ions from the solution on the DPPC layer adsorbed on n-tetradecane droplets or DPPC vesicles is discussed.

摘要

研究了 DPPC 或 DPPC 囊泡在电解质溶液中的 n-十四烷/电解质乳状液的性质。DPPC 分子形成不同的聚集体,具有不同的表面亲和力、大小和结构,因此我们假设在油滴/水界面的吸附上存在一些差异。在自然 pH 值下,通过机械搅拌制备了 1:1、1:2 和 1:3 电解质的 n-十四烷乳状液,其中存在 DPPC。考虑到液滴的有效直径和多模态尺寸分布以及使用动态光散射技术测量的 ζ 电位,研究了系统的电动特性。在所有含 NaCl 的系统中,液滴的 ζ 电位均为负。在含有较高电解质浓度的 CaCl2 乳状液和含有所有研究浓度的 LaCl3 的乳状液中,观察到正 ζ 电位。在电解质溶液中也对 DPPC 囊泡进行了类似的测量。pH 值和离子强度的变化会引起 DPPC 层或囊泡表面的电荷变化。这是因为 DPPC 分子含有-PO(-)和-N(CH(3))(3)基团,这些基团与 H(+)和 OH(-)以及溶液中存在的其他离子(即 Na(+)、Ca(2+)、La(3+)或 Cl(-))处于平衡状态。在 DPPC 或 DPPC 囊泡稳定的 n-十四烷/电解质乳状液中,ζ 电位也可能与酸碱相互作用有关。讨论了溶液中离子对吸附在 n-十四烷液滴或 DPPC 囊泡上的 DPPC 层的影响。

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