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阳离子葡聚糖形成的纳米聚合物-表面活性剂复合物的沉积:通往可持续配方的途径。

Deposition of Nanometric Polymer-Surfactant Complexes Formed by Cationic Dextran: A Path to Sustainable Formulations.

作者信息

Faizi Hammad A, Miller Daniel S, Leal Lyndsay, Gu Junsi, Pacholski Michaeleen L, Partain Iii Emmett M, Nimako-Boateng Caroline, McMillan Janet R, Qian Chang, Wang Zuochen, Chen Qian

机构信息

Dow Home & Personal Care, The Dow Chemical Company, 2200 W. Salzburg Road, Midland, Michigan 48611, United States.

Core Research & Development, The Dow Chemical Company, 400 Arcola Road, Collegeville, Pennsylvania 19426, United States.

出版信息

Langmuir. 2024 Nov 19;40(46):24360-24372. doi: 10.1021/acs.langmuir.4c02860. Epub 2024 Nov 5.

Abstract

The home and personal care industry is evolving toward more sustainable and environmentally friendly ingredients. Rinse-off personal care products rely on formation of polymer-surfactant complexes to drive deposition of benefit agents (e.g., conditioning oils, fragrances, etc.) onto the skin or hair. The most used natural polymers for this purpose are cationic guar (catGuar) and cationic hydroxyethyl cellulose (catHEC), and the complexation of these polymers with surfactants has been rigorously characterized. Various gaps still exist with these polymers, specifically low biodegradation and undesirable aquatic toxicity profiles. Modified dextran offers an exciting solution as a biodegradable polysaccharide with a high natural origin content. This paper aims to compare the morphology of polymer-surfactant complexes formed between a cationic dextran (catDex) polymer with mixtures of sodium lauryl ether sulfate (SLES) and cocamidopropyl betaine (CapB) to the morphologies of complexes formed between catGuar or catHEC and the same surfactants. Solutions were designed to mimic industrially relevant shampoos. Through a suite of complementary techniques, unique nanometric sized complexes were observed to form between catDex-SLES/CapB compared to the widely reported micrometer-sized coacervates (liquid-liquid phase separation) or precipitates (liquid-solid) formed in catHEC or catGuar-SLES systems. Using a quartz crystal microbalance with dissipation, the adsorption behavior of the catDex-SLES/CapB is characterized on a silica-coated sensor. The results show deposition throughout the dilution regime for catDex-SLES/CapB where the highest deposition is recorded with the undiluted rinsing formulation. This contrasts with catHEC-SLES/CapB and catGuar-SLES/CapB where the highest deposition is recorded in phase-separated regimes. This result was extended to performance testing on hair, confirming that the unique complexes formed by catDex can drive remarkably high levels of silicone deposition from rinse-off personal care products. This innovative approach of utilizing catDex-SLES/CapB complexes could enable design of more sustainable formulations that rely on polycation-surfactant nanocarriers.

摘要

家庭和个人护理行业正在朝着更具可持续性和环境友好型的成分发展。冲洗型个人护理产品依靠聚合物 - 表面活性剂复合物的形成来促使有益成分(如调理油、香料等)沉积在皮肤或头发上。为此最常用的天然聚合物是阳离子瓜尔胶(catGuar)和阳离子羟乙基纤维素(catHEC),并且这些聚合物与表面活性剂的络合作用已得到严格表征。这些聚合物仍存在各种不足,特别是生物降解性低以及具有不良的水生毒性特征。改性葡聚糖作为一种具有高天然来源含量的可生物降解多糖,提供了一个令人兴奋的解决方案。本文旨在比较阳离子葡聚糖(catDex)聚合物与月桂醇聚醚硫酸酯钠(SLES)和椰油酰胺丙基甜菜碱(CapB)混合物形成的聚合物 - 表面活性剂复合物的形态,与catGuar或catHEC和相同表面活性剂形成的复合物的形态。设计的溶液旨在模拟工业相关的洗发水。通过一系列互补技术,观察到与catHEC或catGuar - SLES系统中广泛报道的微米级凝聚层(液 - 液相分离)或沉淀物(液 - 固)相比,catDex - SLES/CapB之间形成了独特的纳米级复合物。使用带有耗散功能的石英晶体微天平,在二氧化硅涂层传感器上表征了catDex - SLES/CapB的吸附行为。结果表明,catDex - SLES/CapB在整个稀释范围内都有沉积,其中未稀释的冲洗配方记录到最高沉积量。这与catHEC - SLES/CapB和catGuar - SLES/CapB形成对比,它们在相分离状态下记录到最高沉积量。这一结果扩展到了头发性能测试,证实了catDex形成的独特复合物能够促使冲洗型个人护理产品中显著高水平的硅氧烷沉积。这种利用catDex - SLES/CapB复合物的创新方法能够实现依赖聚阳离子 - 表面活性剂纳米载体的更可持续配方的设计。

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