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水性纳米香水的制备与表征

Preparation and Characterization of Water-Based Nano-Perfumes.

作者信息

Miastkowska Małgorzata, Lasoń Elwira, Sikora Elżbieta, Wolińska-Kennard Katarzyna

机构信息

Institute of Organic Chemistry and Technology, Cracow University of Technology, Warszawska 24, 31-155 Krakow, Poland.

Finea Sp. Z o.o., Sternicza 129/55, 01-350 Warsaw, Poland.

出版信息

Nanomaterials (Basel). 2018 Nov 27;8(12):981. doi: 10.3390/nano8120981.

Abstract

The application of nanoemulsions as a novel delivery system for lipophilic materials, such as essential oils, flavors, and fragrances is one of the growing technologies used in cosmetic, pharmaceutical, and food industries. Their characteristic properties, like small droplet size with high interfacial area, transparent or semi-transparent appearance, low viscosity, and high kinetic stability, make them a perfect vehicle for fragrances, in the perfume industry. They could be a great alternative to water-based perfumes, without alcohol, and solve problems related to the oxidation and low bioavailability of fragrances with other non-alcoholic vehicles of perfumes like pomades or gels. The aim of our study was to develop stable Oil-in-Water (O/W) nanoemulsions that are compatible with selected fragrance compositions, without ethanol, polyols, and ionic surfactants, and to study their physicochemical, microbiological, and dermatological properties. The nano-perfume systems were obtained with a low-energy (Phase Inversion Composition; PIC) and with a high-energy (ultrasound, US) method, taking into account the possibility of moving from the laboratory scale to an industrial scale. The optimized nano-perfume formulations, prepared with different methods, yielded the same physicochemical properties (stability, medium droplet size of the inner phase, polydispersity, viscosity, surface tension, pH, density). Stable systems were obtained with a fragrance composition concentration within 6⁻15% range. These formulations had a low viscosity and a pH suitable for the skin. Moreover, the obtained results confirmed the protective role of nanoemulsions. The peroxide number measurement (POV) showed that the tested fragrance compositions had a high chemical stability. The results of the microbiological tests confirmed that the obtained products were free of microbiological contamination and were appropriately preserved. The dermatological test results confirmed the safety of the developed preparations.

摘要

纳米乳液作为一种用于亲脂性物质(如香精油、香料和香精)的新型递送系统,在化妆品、制药和食品工业中是一种不断发展的技术。它们的特性,如小液滴尺寸、高界面面积、透明或半透明外观、低粘度和高动力学稳定性,使其成为香水行业中香精的理想载体。它们可以成为无酒精水性香水的绝佳替代品,并解决与香精氧化以及与其他非酒精性香水载体(如润发脂或凝胶)相关的低生物利用度问题。我们研究的目的是开发与选定的香精组合物兼容、不含乙醇、多元醇和离子表面活性剂的稳定水包油(O/W)纳米乳液,并研究其物理化学、微生物学和皮肤病学性质。考虑到从实验室规模扩大到工业规模的可能性,采用低能(相转变组成;PIC)和高能(超声,US)方法获得了纳米香水系统。用不同方法制备的优化纳米香水配方具有相同的物理化学性质(稳定性、内相的中等液滴尺寸、多分散性、粘度、表面张力、pH值、密度)。当香精组合物浓度在6⁻15%范围内时可获得稳定的体系。这些配方具有低粘度和适合皮肤的pH值。此外,所得结果证实了纳米乳液的保护作用。过氧化物值测量(POV)表明,测试的香精组合物具有高化学稳定性。微生物测试结果证实,所得产品无微生物污染且保存得当。皮肤病学测试结果证实了所开发制剂的安全性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04f4/6315845/5507b971a40e/nanomaterials-08-00981-g001.jpg

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