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响应面法(RSM)稳定精油:纳米乳液的配方设计、理化特性、微生物学和感官评估。

Essential Oil Stabilisation by Response Surface Methodology (RSM): Nanoemulsion Formulation, Physicochemical, Microbiological, and Sensory Investigations.

机构信息

Laboratory of Aromatic and Medicinal Plants, Biotechnology Center of Borj-Cédria BP 901, Hammam-Lif 2050, Tunisia.

INRAE, Institut Agro, STLO, F-35042 Rennes, France.

出版信息

Molecules. 2022 Oct 28;27(21):7330. doi: 10.3390/molecules27217330.

Abstract

This manuscript aimed to optimise the encapsulation of essential oil into nanoemulsion. Response Surface Methodology results were best fitted into polynomial models with regression coefficient values of more than 0.95. The optimal nanoemulsion showed nanometer-sized droplets (380 nm), a polydispersity index less than 0.5, and a suitable Zeta potential (-10.3 mV). Stability results showed that nanoemulsions stored at 4 °C were stable with the lowest , PolyDispersity Index (PDI), and pH (day 11). Significant ameliorations in the capacity to neutralise DPPH radical after the encapsulation of the antimicrobial efficacy of thyme essential oil were recorded. growth inhibition generated by nanoencapsulated thyme essential oil was 17 times higher than by bulk essential oil. The sensory analysis highlighted that the encapsulation of thyme essential oil improved enriched milk's sensory appreciation. Indeed, 20% of the total population attributed a score of 4 and 5 on the scale used for milk enriched with nanoemulsion. In comparison, only 11% attributed the same score to milk enriched with bulk essential oil. The novel nanometric delivery system presents significant interest for agroalimentary industries.

摘要

本手稿旨在优化将精油包封入微乳液中。响应面法结果最佳拟合为回归系数值大于 0.95 的多项式模型。最佳纳米乳液显示纳米级液滴(380nm)、小于 0.5 的多分散指数和合适的 Zeta 电位(-10.3mV)。稳定性结果表明,在 4°C 下储存的纳米乳液具有最低的 、多分散指数(PDI)和 pH 值(第 11 天)。在包封百里香精油的抗菌功效后,其清除 DPPH 自由基的能力显著提高。纳米封装百里香精油产生的 生长抑制作用比基础精油高 17 倍。感官分析突出表明,百里香精油的包封改善了富含牛奶的感官欣赏。事实上,总人口的 20%在用于富含纳米乳液的牛奶的评分尺度上给出了 4 和 5 的评分。相比之下,只有 11%的人对富含基础精油的牛奶给予相同的评分。新型纳米给药系统对农业食品工业具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/02dd/9655826/bfb6ec6ecdc7/molecules-27-07330-g001.jpg

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