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对苯二甲酸酯在水性普朗尼克溶液中的增溶作用:研究胶束生长和相互作用与对苯二甲酸酯组成的关系。

Solubilization of parabens in aqueous Pluronic solutions: investigating the micellar growth and interaction as a function of paraben composition.

机构信息

Department of Chemistry, Veer Narmad South Gujarat University, Surat-395007, India.

出版信息

J Phys Chem B. 2012 Dec 27;116(51):14943-50. doi: 10.1021/jp308738s. Epub 2012 Dec 17.

Abstract

The influence of methyl paraben (MP) and butyl paraben (BP) on the aggregation characteristics of Pluronics in an aqueous medium has been investigated by DLS, SANS, viscometry, and fluorescence measurement techniques. Parabens are extensively used as preservatives in cosmetic, pharmaceutical, and food products. In this paper, we show that their influence on the restructuring and growth of Pluronics micelles vary quite significantly with their aqueous solubility and with the composition of Pluronics. In the case of P105 and P104, MP reduces the sphere-to-rod transition temperature down to room temperature, but BP with significantly less aqueous solubility than MP suppresses such micellar transition and leads to the formation of micellar clusters due to the onset of intermicellar attractive interaction. In the case of more hydrophobic Pluronic P103, on the other hand, both MP and BP are able to induce rapid room temperature sphere-to-rod micellar growth, which is not observed in the presence of water structure making salts like NaCl and Na(3)PO(4). These observations have been attributed to modulation of growth and restructuring processes of the Pluronic micelles arising due to different locations of parabens within the micellar corona as determined by their aqueous solubility and the hydrophobicity of the Pluronics.

摘要

已通过 DLS、SANS、黏度测量和荧光测量技术研究了对羟基苯甲酸甲酯(MP)和对羟基苯甲酸丁酯(BP)对 Pluronic 在水介质中聚集特性的影响。对羟基苯甲酸酯被广泛用作化妆品、制药和食品产品中的防腐剂。在本文中,我们表明它们对 Pluronic 胶束的重排和生长的影响随其水溶解度和 Pluronic 的组成而有很大差异。对于 P105 和 P104,MP 将球到棒的转变温度降低到室温,但水溶解度明显小于 MP 的 BP 抑制了这种胶束转变,并由于相间吸引力的作用导致胶束簇的形成。另一方面,对于疏水性更强的 Pluronic P103,MP 和 BP 均能够诱导室温下快速的球到棒胶束生长,而在 NaCl 和 Na(3)PO(4)等形成水结构的盐存在的情况下则不会观察到这种现象。这些观察结果归因于由于 MP 和 BP 在胶束冠层内的位置不同而导致的 Pluronic 胶束的生长和重排过程的调节,这取决于它们的水溶解度和 Pluronic 的疏水性。

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