Moura Sérgio P, Carmona-Ribeiro Ana M
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, PO Box 26077, 05513-970, São Paulo, SP, Brazil.
J Colloid Interface Sci. 2007 Sep 15;313(2):519-26. doi: 10.1016/j.jcis.2007.04.061. Epub 2007 May 3.
The interaction between composite dipalmitoylphosphatidylcholine (DPPC)/dioctadecyldimethylammonium bromide (DODAB) bilayer vesicles in the gel state and silica is investigated over the 0-20% DODAB range from determination of adsorption curves, silica sedimentation, particle sizing and zeta-potentials. At 1 mg/mL silica, 0% DODAB, pH 6.3, over the 0-150 mM NaCl range of ionic strengths, high affinity adsorption curves were barely affected by ionic strength and all of them exhibited limiting adsorption values above the level expected for single bilayer deposition. At 1 mg/mL silica, 2% DODAB, pH 6.3 and 1 mM NaCl, high affinity adsorption curves fortuitously presented limiting adsorption indicative of one bilayer deposition on each silica particle. At %DODAB<2% or %DODAB>2%, limiting adsorption was above and below the level expected for bilayer deposition, respectively. Increasing %DODAB in the vesicle composition negatively modulated the limiting adsorption on silica despite the increasing surface charge on vesicles and electrostatic attraction between vesicles and particles. The results point out the difficulty of closed vesicle disruption (required for bilayer deposition from vesicles) when the bilayer is tightly packed in the rigid gel state and might be of interest for analytical applications of immobilized vesicles on silica.
通过测定吸附曲线、二氧化硅沉降、颗粒尺寸和zeta电位,研究了凝胶态复合二棕榈酰磷脂酰胆碱(DPPC)/二辛基二甲基溴化铵(DODAB)双层囊泡与二氧化硅在0 - 20%DODAB范围内的相互作用。在1mg/mL二氧化硅、0%DODAB、pH 6.3条件下,在0 - 150mM NaCl离子强度范围内,高亲和力吸附曲线几乎不受离子强度影响,且所有曲线的极限吸附值均高于单层双层沉积预期水平。在1mg/mL二氧化硅、2%DODAB、pH 6.3和1mM NaCl条件下,高亲和力吸附曲线偶然呈现出表明每个二氧化硅颗粒上有一层双层沉积的极限吸附。当%DODAB<2%或%DODAB>2%时,极限吸附分别高于和低于双层沉积预期水平。尽管囊泡表面电荷增加且囊泡与颗粒之间存在静电吸引,但增加囊泡组成中的%DODAB会对二氧化硅上的极限吸附产生负向调节作用。结果指出,当双层紧密堆积在刚性凝胶态时,封闭囊泡破裂(从囊泡进行双层沉积所需)存在困难,这可能对二氧化硅上固定化囊泡的分析应用具有重要意义。