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首页> 外文期刊>Journal of Colloid and Interface Science >Biocompatible lecithin-based microemulsions with rhamnolipid and sophorolipid biosurfactants: Formulation and potential applications
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Biocompatible lecithin-based microemulsions with rhamnolipid and sophorolipid biosurfactants: Formulation and potential applications

机译:具有鼠李糖脂和槐糖脂生物表面活性剂的生物相容性基于卵磷脂的微乳剂:配方和潜在应用

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摘要

The objectives of this research are first to evaluate the hydrophilicity/hydrophobicity of sophorolipid biosurfactants relative to conventional synthetic surfactants and then to formulate and evaluate microemulsions of lecithin/rhamnolipid/sophorolipid biosurfactants with a range of oils (varying EACN values and oil types). We found that sophorolipid biosurfactants are more hydrophobic than sodium bis(2-ethyl) dihexyl sulfosuccinate (SBDHS), which is more hydrophobic than sodium dihexyl sulfosuccinate (SDHS) and rhamnolipid biosurfactant. Sophorolipid thus played an important role as the hydrophobic component in lecithin/rhamnolipid/sophorolipid biosurfactant formulation. This biosurfactant formulation was able to produce Winsor Type I, III and II microemulsions and the corresponding ultralow IFT for limonene, decane, isopropyl myristate and hexadecane. The phase behavior of this formulation with isopropyl myristate did not change significantly with changing temperature (10, 25, 40 °C) and electrolyte concentration (0.9% and 4.0%. w/v), making it desirable for cosmetic and drug delivery applications. The hexadecane detergency performance of our biocompatible formulation was higher than that of a commercial liquid detergent at the same surfactant active concentrations. This paper thus shows the ability and robustness of mixed biosurfactant systems in formulating microemulsions for a range of oils and their potential applications.
机译:这项研究的目的是首先评估槐糖脂类生物表面活性剂相对于常规合成表面活性剂的亲水性/疏水性,然后配制和评估卵磷脂/鼠李糖脂/槐糖脂类生物表面活性剂与多种油(不同的EACN值和油类型)的微乳液。我们发现槐糖脂生物表面活性剂比双(2-乙基)二己基磺基琥珀酸钠(SBDHS)疏水,后者比二己基磺基琥珀酸钠(SDHS)和鼠李糖脂生物表面活性剂更疏水。因此,槐糖脂在卵磷脂/鼠李糖脂/槐糖脂生物表面活性剂配方中作为疏水成分起着重要作用。该生物表面活性剂配方能够生产Winsor I,III和II型微乳剂,以及相应的柠檬烯,癸烷,肉豆蔻酸异丙酯和十六烷的超低IFT。该配方与肉豆蔻酸异丙酯的相行为不会随温度(10、25、40°C)和电解质浓度(0.9%和4.0%w / v)的变化而显着变化,因此非常适合化妆品和药物输送应用。在相同的表面活性剂活性浓度下,我们的生物相容制剂的十六烷洗涤性能高于商业液体洗涤剂。因此,本文显示了混合生物表面活性剂体系在配制一系列油中的微乳液时的能力和耐用性及其潜在应用。

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