Laboratory of Microbial Ecology and Technology (LabMET), Ghent University, Coupure Links 653, B-9000 Gent, Belgium(4); BIOMED, University of Hasselt, Agoralaan Building C, B-3590 Diepenbeek, Belgium.
Laboratory of Microbial Ecology and Technology (LabMET), Ghent University, Coupure Links 653, B-9000 Gent, Belgium(4).
N Biotechnol. 2015 Jan 25;32(1):40-6. doi: 10.1016/j.nbt.2014.09.001. Epub 2014 Sep 16.
There is a growing demand for fragranced products, but due to the poor aqueous solubility and instability of fragrance molecules, their use is limited. Nowadays, fragrance encapsulation in biocompatible nanocontainer material is emerging as a novel strategy to overcome the evaporation of volatile molecules and to prolong the sensory characteristics of fragrance molecules and the longevity of perfumes. The objective of this study was to develop an innovative sustained release system of perfume, by entrapping fragrance molecules in a polymeric nanocarrier; the impact of this strategy on the human axillary microbiome was further assessed. Stabilised poly-l-lactic acid nanocapsules (PLA-NCs) with a diameter of approximately 115 nm were prepared through nanoprecipitation. Size and morphology of the capsules were evaluated using Transmission Electron Microscopy (TEM) and Dynamic Light Scattering (DLS). Two model hydrophobic compounds, chlorobenzene and fluorescein, representing two different types of functionalised molecules, were encapsulated in PLA-NCs with an efficiency rate of 50%. Different release behaviours were seen, dependent on hydrophobicity. For hydrophobic compounds, a steady release was observed over 48hours. The polymeric nanocarriers did not impact the human axillary microbiome. Because of the slow and sustained release of fragrances, encapsulation of molecules in biocompatible NCs can represent a revolutionary contribution to the future of toiletries, body deodorant products, and in washing and cleaning sectors.
人们对带香味产品的需求日益增长,但由于香味分子的水溶性差和不稳定性,其应用受到限制。如今,将香味分子封装在生物相容性的纳米容器材料中,作为一种克服挥发性分子蒸发的新策略,正逐渐兴起,可延长香味分子的感官特性和香水的持久度。本研究旨在开发一种创新的香水缓释系统,通过将香味分子包封在聚合物纳米载体中;进一步评估了这种策略对人体腋下微生物组的影响。通过纳米沉淀法制备了直径约为 115nm 的稳定聚-l-乳酸纳米胶囊(PLA-NCs)。使用透射电子显微镜(TEM)和动态光散射(DLS)评估了胶囊的大小和形态。两种模型疏水性化合物,氯苯和荧光素,代表两种不同类型的功能化分子,被封装在 PLA-NCs 中,封装效率为 50%。由于疏水性的不同,观察到不同的释放行为。对于疏水性化合物,在 48 小时内观察到稳定释放。聚合物纳米载体不会影响人体腋下微生物组。由于香味的缓慢和持续释放,将分子包封在生物相容性 NCs 中可能是对未来香妆、体香剂产品以及洗涤和清洁领域的革命性贡献。