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The Use of Nanotechnology in Cosmetic Formulations: The Influence of Vehicle in the Vitamin A Skin Penetration

机译:纳米技术在化妆品配方中的使用:载体对维生素A皮肤渗透的影响

摘要

Despite the efficacy of topical retinoic acid, skin reactions have limited its acceptance by patients. Other retinoids, like Retinyl Palmitate (RP), are considerably less irritating, but they are also less effective. In order to enhance the performance of retinoids, in this work RP has been added to cosmetic formulations such as nanoemulsions, which can provide better penetration of this active substance. Because the vehicle can directly influence the skin penetration and the effectiveness of RP, two skin care products containing 5000 UI RP have been developed and investigated, namely a nanoemulsifying system and a classic gel cream. In vitro penetration tests were conducted by using Franz diffusion cells and placing porcine ear skin and iso-propanol in the receptor compartment. The RP concentration in the skin layers was analyzed by high performance liquid chromatography, and a Zeta-Sizer system was employed for measurement of the the particle size distribution. The penetration tests revealed a large difference between the vehicles in terms of the RP concentrations in each skin layer. The classic gel cream furnished better RP penetration in both the stratum corneum and the epidermis without stratum corneum + dermis, as compared to the self-nanoemulsifying system. The two vehicles displayed the same particle size (between 100 and 200 nm). Better understanding of RP skin delivery using different vehicles has been acquired, and the importance of evaluating the efficacy of nanocosmetics. Results from the present study should also contribute to the assessment of commercial self-nanoemulsifying systems with potential application in the facile production of nanoemulsions.
机译:尽管局部视黄酸有效,但是皮肤反应限制了其被患者接受。其他类维生素A,如棕榈酸视黄酯(RP),刺激性较小,但效果较差。为了增强类维生素A的性能,在这项工作中,RP已被添加到化妆品配方中,例如纳米乳剂,可以使该活性物质更好地渗透。由于该载体可以直接影响皮肤渗透和RP的有效性,因此开发并研究了两种包含5000 UI RP的护肤产品,即纳米乳化系统和经典的凝胶霜。通过使用Franz扩散池并将猪的耳朵皮肤和异丙醇放入受体隔室进行体外渗透测试。用高效液相色谱法分析皮肤层中的RP浓度,并使用Zeta-Sizer系统测量粒度分布。渗透测试表明,各皮肤层之间的RP浓度之间存在很大差异。与自纳米乳化系统相比,经典的凝胶霜可在角质层和表皮中提供更好的RP渗透,而无角质层+真皮。两种车辆显示出相同的粒径(介于100和200 nm之间)。已经获得了对使用不同媒介物进行RP皮肤递送的更好理解,并且评估了纳米化妆品功效的重要性。本研究的结果也应有助于潜在的纳米乳剂生产中商业应用的商业自纳米乳化系统的评估。

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