Moura Sérgio P, Carmona-Ribeiro Ana M
Departamento de Bioquímica, Instituto de Química, Universidade de São Paulo, P.O. Box 26077, 05513-970 São Paulo, SP, Brazil.
Langmuir. 2005 Oct 25;21(22):10160-4. doi: 10.1021/la0504614.
The effect of ionic strength and pH on phosphatidylcholine (PC) adsorption from vesicles on silica nanoparticles was investigated over a range of NaCl concentrations (0.1-150 mM) at pH 6.3 and 7.4 from determination of adsorption isotherms, colloid stability, particle sizing, and zeta-potentials. At and above 10 mM ionic strength, pH 6.3, high-affinity adsorption isotherms with limiting adsorption indicative of one-bilayer deposition on each silica particle were obtained. At 10 mM ionic strength, adsorption isotherms indicated lower affinity between PC and silica at pH 7.4 than at pH 6.3, suggesting a role of hydrogen bonding between silanol on silica and phosphate on PC in promoting bilayer deposition at low pH. Under conditions where high affinity and bilayer deposition were achieved, silica sedimentation documented from photographs was absent, suggesting particle stabilization induced by bilayer coverage. However, at physiological (150 mM NaCl) or close to physiological ionic strength (140 mM NaCl), the large colloid stability similarly achieved at pH 6.3 or 7.4 suggested the major role of van der Waals attraction between the PC bilayer vesicle and silica particle in determining bilayer deposition. The effect of increasing ionic strength was increasing van der Waals attraction, which caused PC vesicle disruption with bilayer deposition and bilayer-induced silica stabilization.
通过测定吸附等温线、胶体稳定性、粒径和zeta电位,研究了离子强度和pH值对pH 6.3和7.4条件下不同NaCl浓度(0.1 - 150 mM)范围内磷脂酰胆碱(PC)从囊泡吸附到二氧化硅纳米颗粒上的影响。在离子强度为10 mM及以上、pH 6.3时,获得了具有极限吸附的高亲和力吸附等温线,表明每个二氧化硅颗粒上有单层沉积。在离子强度为10 mM时,吸附等温线表明在pH 7.4时PC与二氧化硅之间的亲和力低于pH 6.3时,这表明在低pH下,二氧化硅上的硅醇与PC上的磷酸盐之间的氢键在促进双层沉积中发挥了作用。在实现高亲和力和双层沉积的条件下,从照片记录的二氧化硅沉降不存在,这表明双层覆盖诱导了颗粒稳定。然而,在生理条件(150 mM NaCl)或接近生理离子强度(140 mM NaCl)下,在pH 6.3或7.4时同样实现的大胶体稳定性表明,PC双层囊泡与二氧化硅颗粒之间的范德华吸引力在决定双层沉积中起主要作用。离子强度增加的影响是增加了范德华吸引力,这导致PC囊泡破裂并伴有双层沉积和双层诱导的二氧化硅稳定。