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Effect of water-soluble polymers on the state of aggregation, vesicle size, and phase transformations in mixtures of phosphatidylcholine and sodium cholate.

机译:水溶性聚合物对磷脂酰胆碱和胆酸钠混合物中聚集状态,囊泡大小和相变的影响。

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摘要

The state of aggregation and the steady-state size of mixed aggregates made of phospholipids and surfactants are both determined by the surfactant/lipid ratio in the mixed aggregates (Re). Water-soluble polymers, such as dextrans and polyethylene glycols (PEGs) of different molecular weights, induce reversible aggregation of phospholipid vesicles, mostly due to dehydration of the vesicle surface and depletion forces, and only at much higher concentrations, PEGs (but not dextran) also induce irreversible size growth of the vesicles. Here we show that the water-soluble polymers dextrans and PEGs do not affect the vesicle-micelle phase boundaries in mixtures of phosphatidylcholine and the anionic surfactant sodium cholate. By contrast, these polymers affect markedly the steady-state size of cholate-containing vesicles. As compared with pure phosphatidylcholine vesicles, the cholate-containing vesicles have a lower tendency to undergo polymer-induced aggregation, probably due to the electrostatic repulsion between the negatively charged vesicles, but a higher tendency to undergo irreversible size growth at relatively low polymer concentrations. Such irreversible size growth was observed not only for PEG but also for dextran, which in the absence of cholate is incapable of inducing vesicle size growth. These findings are consistent with the prevailing concept that the polymer-induced size growth is due to the effect of large structural fluctuations in the bilayers of deformed aggregated vesicles, the surface of which is dehydrated by the polymer. The presence of cholate in the bilayers at sufficiently high concentrations induces such fluctuations, yielding irreversible size growth within the clusters of dehydrated vesicles formed upon mixing with polymers.
机译:由磷脂和表面活性剂制成的混合聚集体的聚集状态和稳态尺寸均由混合聚集体中的表面活性剂/脂质比率(Re)确定。水溶性聚合物,例如不同分子量的右旋糖酐和聚乙二醇(PEG),可诱导磷脂囊泡的可逆聚集,这主要是由于囊泡表面的脱水和消耗力所致,并且仅在浓度高得多的情况下,PEGs(但不包括右旋糖酐) )还引起囊泡不可逆的大小增长。在这里我们表明,水溶性聚合物右旋糖酐和聚乙二醇不影响磷脂酰胆碱和阴离子表面活性剂胆酸钠的混合物中的囊泡-胶束相边界。相反,这些聚合物显着影响含胆酸盐的囊泡的稳态尺寸。与纯磷脂酰胆碱囊泡相比,含胆酸盐的囊泡具有较低的受聚合物诱导的聚集的趋势,这可能是由于带负电荷的囊泡之间的静电排斥,而在相对较低的聚合物浓度下具有不可逆的尺寸增长的趋势则较高。不仅对于PEG而且对于右旋糖酐都观察到这种不可逆的大小增长,在没有胆酸盐的情况下,右旋糖酐不能诱导囊泡大小增长。这些发现与流行的概念一致,即聚合物引起的尺寸增长是由于变形的聚集囊泡的双层中较大的结构波动的影响,聚集的囊泡的表面被聚合物脱水。双层中胆酸盐的浓度足够高时,会引起这种波动,从而在与聚合物混合后形成的脱水囊泡簇中产生不可逆的尺寸增长。

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  • 作者

    Meyuhas, D; Lichtenberg, D;

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  • 年度 1996
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  • 原文格式 PDF
  • 正文语种 en
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