Faculté de Pharmacie, EA6295 NMNS « NanoMédicaments et NanoSondes », Université de Tours, Tours, France.
Le STUDIUM Institute of Advanced Studies, Orléans, France.
Int J Cosmet Sci. 2022 Apr;44(2):262-270. doi: 10.1111/ics.12772. Epub 2022 Apr 17.
The cosmetic industry endeavours to strengthen the greener and safer claims of processes to respond to the high demand from customers for natural and environmentally friendly products. High-frequency ultrasonication technology (HFUT) is a physical process enabling the stabilization of emulsions without requiring additional ingredients, such as emulsifying surfactants (ES) to be introduced into the formulations. In this study, key formulation characteristics of an emulsion synthesized by HFUT and a reference emulsion (RE) were compared, as well as the permeation kinetics of caffeine, used as a model active cosmetic ingredient, from both types of emulsions.
The pH, droplet size and viscosity of emulsions prepared by the HFUT and the RE were determined and compared. The permeation of caffeine from the HFUT emulsion and the RE applied to the surface of reconstructed human epidermis (RHE) models was compared.
The ES-free formulations prepared by HFUT displayed a nearly 2-fold lower average droplet size and over 3-fold greater viscosity, compared to the RE. Despite these differences, the absence of ES in the HFUT emulsion did not significantly alter the permeation kinetics of caffeine through RHE. The caffeine steady-state flux, lag time and permeability coefficients differed by 20%-30% only.
This study demonstrates the potential of the HFUT to yield topical cosmetic products with lower requirements ingredients-wise, without losing efficacy, supporting the possible implementation of the technology in the cosmetic industry.
化妆品行业努力加强对工艺的绿色和安全要求的主张,以满足客户对天然和环保产品的高需求。高频超声技术(HFUT)是一种物理过程,能够在不引入额外成分(如乳化表面活性剂(ES))的情况下稳定乳液。在这项研究中,比较了 HFUT 合成的乳液和参考乳液(RE)的关键配方特性,以及咖啡因(用作模型活性化妆品成分)从这两种乳液的渗透动力学。
测定并比较了 HFUT 和 RE 制备的乳液的 pH 值、粒径和粘度。比较了咖啡因从 HFUT 乳液和应用于重建人体表皮(RHE)模型表面的 RE 的渗透情况。
与 RE 相比,HFUT 制备的无 ES 配方的平均粒径低近 2 倍,粘度高 3 倍以上。尽管存在这些差异,但 HFUT 乳液中没有 ES 并不会显著改变咖啡因通过 RHE 的渗透动力学。咖啡因的稳态通量、滞后时间和渗透系数仅相差 20%-30%。
这项研究表明,HFUT 有可能生产出对成分要求较低的局部化妆品产品,而不会降低功效,支持该技术在化妆品行业中的可能实施。