Maeda Natsumi, Jiao Haixin, Kłosowska-Chomiczewska Ilona Edyta, Artichowicz Wojciech, Preiss Ulrich, Szumała Patrycja, Macierzanka Adam, Jungnickel Christian
Institute of Biogeochemistry and Pollutant Dynamics, Swiss Federal Institute of Technology, ETH Zürich, Universitätstrasse 16, Zürich, 8092, Switzerland.
Biofuels Institute, School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang, 212013, P. R. China.
Small. 2025 May;21(20):e2412541. doi: 10.1002/smll.202412541. Epub 2025 Mar 27.
Nanoparticles (NPs) are increasingly explored for targeted skin penetration, particularly for pharmaceutical and cosmetic applications. However, the complex system between NP properties, skin structure, and experimental conditions poses significant challenges in predicting their penetration depth and pathways. To what depth do NPs penetrate the skin, and which pathways do they follow? These are the questions which we tried to answer in this paper. A n in-silico human skin model based on 20 years of literature on NPs skin penetration is developed. The model incorporates 19 independent parameters, including a wide range of NP properties, skin across species, and test conditions. Using random forest analysis coupled with Kennard-Stone sorting, the model achieves a high predictive accuracy of 95%. The study identifies hair follicle diameter as the most critical factor influencing NP penetration across skin layers, surpassing other skin properties, NP properties, or experimental variables. Pig and rabbit skin are the most suitable models for simulating human skin in NP penetration studies. Additionally, the in-silico model reveals that NPs in emulsions and oil-based media predominantly follow the intercellular and transappendageal route. In contrast, those embedded in aqueous media favor the intracellular route. These findings offer insights for optimizing NP-based drug delivery systems.
纳米颗粒(NPs)在靶向皮肤渗透方面的研究日益深入,特别是在制药和化妆品应用领域。然而,NP特性、皮肤结构和实验条件之间的复杂系统给预测它们的渗透深度和途径带来了重大挑战。NPs能渗透到皮肤的多深,以及它们遵循哪些途径?这些就是我们在本文中试图回答的问题。基于20年关于NPs皮肤渗透的文献,开发了一种计算机模拟人体皮肤模型。该模型纳入了19个独立参数,包括广泛的NP特性、不同物种的皮肤以及测试条件。通过结合Kennard-Stone排序的随机森林分析,该模型实现了95%的高预测准确率。该研究确定毛囊直径是影响NP跨皮肤层渗透的最关键因素,超过了其他皮肤特性、NP特性或实验变量。猪和兔皮肤是NP渗透研究中模拟人体皮肤的最合适模型。此外,计算机模拟模型显示,乳液和油基介质中的NPs主要遵循细胞间和经附属器途径。相比之下,嵌入水性介质中的NPs则倾向于细胞内途径。这些发现为优化基于NP的药物递送系统提供了见解。