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脂质/聚电解质修饰乳胶的胶体稳定性

Colloid stability of lipid/polyelectrolyte decorated latex.

作者信息

Correia Felipe M, Petri Denise F S, Carmona-Ribeiro Ana M

机构信息

Instituto de Química, Universidade de São Paulo, P.O. Box 26077, São Paulo, SP, 05513-970 Brazil.

出版信息

Langmuir. 2004 Oct 26;20(22):9535-40. doi: 10.1021/la048938j.

Abstract

The colloid stability of supramolecular assemblies composed of the synthetic cationic lipid dioctadecyldimethylammonium bromide (DODAB) on carboxymethyl cellulose (CMC) supported on polystyrene amidine (PSA) microspheres was evaluated via turbidimetry kinetics, dynamic light scattering for particle sizing, zeta-potential analysis, and determination of DODAB adsorption on CMC-covered particles. At 0.1 g L(-1) CMC and 2 x 10(11) PSA particles/mL, CMC did not induce significant particle flocculation, and a vast majority of CMC-covered single particles were present in the dispersion so that this was the condition chosen for determining DODAB concentration (C) effects on particle size and zeta potentials. At 0.35 mM DODAB, charge neutralization, maximal size, and visible precipitation indicated extensive flocculation and minimal colloid stability for the DODAB/CMC/PSA assembly. At 0.1 g L(-1) CMC, isotherms of high affinity for DODAB adsorption on CMC-covered particles presented a plateau at a limiting adsorption of 700 x 10(17) DODAB molecules adsorbed per square meter PSA which was well above bilayer deposition on a smooth particle surface. The polyelectrolyte layer on hydrophobic particles was swelled and fluffy (ca. 11-nm hydrodynamic thickness), and maximal adsorption of DODAB lipid onto this layer produced a compressed composite cationic film with 20 mV of zeta potential and about 10-nm mean thickness. The assembly of cationic lipid/CMC layer/polymeric particle was stable only well above charge neutralization of the polyelectrolyte by the cationic lipid, at relatively large lipid concentrations (at and above 1 mM DODAB) with charge neutralization leading to extensive particle aggregation.

摘要

通过比浊动力学、动态光散射粒度分析、zeta电位分析以及测定DODAB在CMC包覆颗粒上的吸附情况,评估了由合成阳离子脂质二辛基二甲基溴化铵(DODAB)与负载于聚苯乙烯脒(PSA)微球上的羧甲基纤维素(CMC)组成的超分子聚集体的胶体稳定性。在0.1 g L⁻¹ CMC和2×10¹¹ PSA颗粒/mL的条件下,CMC未引起显著的颗粒絮凝,分散体系中存在大量CMC包覆的单个颗粒,因此选择此条件来确定DODAB浓度(C)对颗粒大小和zeta电位的影响。在0.35 mM DODAB时,电荷中和、最大尺寸以及可见沉淀表明DODAB/CMC/PSA聚集体发生了广泛絮凝且胶体稳定性最低。在0.1 g L⁻¹ CMC条件下,DODAB在CMC包覆颗粒上的吸附等温线呈现出高亲和力,在每平方米PSA上吸附700×10¹⁷个DODAB分子的极限吸附量处出现平台,这远高于在光滑颗粒表面的双层沉积量。疏水颗粒上的聚电解质层膨胀且蓬松(流体动力学厚度约为11 nm),DODAB脂质在该层上的最大吸附产生了具有20 mV zeta电位和约10 nm平均厚度的压缩复合阳离子膜。阳离子脂质/CMC层/聚合物颗粒的聚集体仅在阳离子脂质使聚电解质电荷中和程度远高于此的情况下才稳定,即在相对较高的脂质浓度(1 mM DODAB及以上)时,电荷中和会导致大量颗粒聚集。

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