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Reversible hydrophobic microdomains in amphipathic polymers: Studies of stimuli-responsive organization and sequestration of a model foulant.

机译:两亲性聚合物中可逆的疏水性微区:刺激响应组织和模型污垢隔离的研究。

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The objective of this research was to study the stimuli-responsive domain formation of water-soluble polymers and to evaluate the ability of the domains to capture a model hydrophobic foulant. The associative nature of a group of polymers, proteins and polymerizable surfactants was investigated and the stimuli-responsive sequestration of the polymers and surfactants with para-cresol was then studied.; The synthetic polymers included a poly(ethylene oxide)-poly(propylene oxide) triblock polymer, PluronicTM F-127 and a n-octyl hydrophobically modified copolymer of maleic anhydride-alt-ethyl vinyl ether. Light scattering studies with each of the polymers revealed stimuli-responsive domain formation. The F-127 copolymers possess a unimer-to-multimer transition with an increase in temperature from 5°C to 25°C. The copolymers showed a transition from an intermolecular aggregate at pH 4.0 to an extended chain polyelectrolyte at pH 8.0. Studies of the uptake of para-cresol demonstrated that the domains formed by each of the polymers are capable of sequestration of large amounts of cresol. The transition to the unimer with temperature or pH change results in a significant reduction in cresol binding.; Each of the three proteins, beta-lactoglobulin, bovine serum albumin (BSA) and beta-casein, undergo stimuli-dependent aggregation processes. Investigations of each with light scattering and fluorescence revealed differences in aggregation number and fluorescence binding with a change in pH or ionic strength of the solution.; Sequestration of cresol by each of the proteins is consistent with the observed function of the protein in naturally occurring systems. beta-Lactoglobulin has a single hydrophobic binding site and sequesters only a few molecules of cresol with extremely high affinity. BSA in the non-aggregated form binds approximately ten molecules of cresol. In the aggregated state, BSA forms an intermolecular microdomain capable of sequestering a large amount of cresol. beta-Casein sequesters cresol in a pH-dependent manner. Above pH 6.0, no binding is observed. Reduction in pH leads to separation into a dispersed phase which associates with relatively large amounts of cresol.; A group of twin tail polymerizable surfactants was synthesized to study the influence of domain organization and size on sequestration. The monomers associate above a critical concentration to form domains similar to vesicles of naturally occurring lipids. The monomer aggregates have hydrodynamic diameters greater than 125 nm. The monomer domains are nonpolar and much like small molecule surfactant assemblies. The C12 monomer exhibits lamellar liquid crystalline phase behavior and the organized monomer aggregates in dilute solution are composed of multilamellar structures. The C12 monomer aggregates sequester large amounts of cresol in domains that are similar to small molecule micelles. (Abstract shortened by UMI.)
机译:这项研究的目的是研究水溶性聚合物的刺激响应域的形成,并评估域捕获模型疏水性污垢的能力。研究了一组聚合物,蛋白质和可聚合表面活性剂的缔合性质,然后研究了对甲酚对聚合物和表面活性剂的刺激响应螯合。合成聚合物包括聚环氧乙烷-聚环氧丙烷三嵌段聚合物,PluronicTM F-127和马来酸酐-alt-乙基乙烯基醚的正辛基疏水改性共聚物。用每种聚合物进行的光散射研究揭示了刺激响应域的形成。 F-127共聚物具有从5°C到25°C的温度升高的单体到多聚体转变。共聚物显示出从pH 4.0的分子间聚集体过渡到pH 8.0的延伸链聚电解质。对对甲酚吸收的研究表明,每种聚合物形成的结构域都能够隔离大量的甲酚。随着温度或pH值的变化向单体的转变导致甲酚结合的显着降低。 β-乳球蛋白,牛血清白蛋白(BSA)和β-酪蛋白这三种蛋白质均经历刺激依赖性的聚集过程。对每种光散射和荧光的研究表明,随着溶液pH或离子强度的变化,聚集数和荧光结合力也有所不同。每种蛋白质对甲酚的螯合与在天然存在的系统中观察到的蛋白质功能一致。 β-乳球蛋白具有单个疏水结合位点,并且仅以极高的亲和力隔离了几分子甲酚。非聚集形式的BSA可结合大约十个甲酚分子。在聚集状态下,BSA形成了一个分子间微区,能够隔离大量的甲酚。 β-酪蛋白以pH依赖的方式隔离甲酚。在pH 6.0以上,未观察到结合。 pH降低导致分离成分散相,该分散相与相对大量的甲酚相关。合成了一组双尾可聚合表面活性剂,以研究域组织和尺寸对螯合的影响。单体在高于临界浓度时缔合以形成类似于天然脂质的囊泡的结构域。单体聚集体的流体力学直径大于125nm。单体结构域是非极性的,非常类似于小分子表面活性剂组装体。 C12单体表现出层状液晶相行为,稀溶液中的有序单体聚集体由多层结构组成。 C12单体聚集在与小分子胶束相似的区域中的大量甲酚。 (摘要由UMI缩短。)

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