Department of Applied Chemistry, Faculty of Chemistry, Adam Mickiewicz University, Poznań, Uniwersytetu Poznańskiego 8, 61-614 Poznan, Poland.
Dottore Polska Sp. z o.o., Margonińska 22, 60-425 Poznan, Poland.
Int J Mol Sci. 2024 Sep 19;25(18):10078. doi: 10.3390/ijms251810078.
Solid lipid nanoparticles (SLNs) incorporated with retinol and oligopeptide can have a full spectrum of effects on the skin as a compatible combination of ingredients with broad anti-aging properties. The research's main objective was to ensure the stability of lipid nanocarriers containing retinol and peptide due to the planned use of this dispersion as a cosmetic raw material. To confirm the effectiveness of method optimization (high shear homogenization, HSH) and proper selection of substrates, SLN dispersions were obtained in three combinations: 1-non-incorporated SLNs; 2-SLNs containing only retinol; 3-SLNs containing retinol and pentapeptide-18; these were then stored at different temperatures (4, 25, 45 °C) for 4 weeks. The desired values of the physicochemical parameters of the optimized dispersion of lipid nanoparticles incorporated with retinol and oligopeptide over the required storage period were confirmed: mean particle size (Z-Ave) = 134.7 ± 0.3 nm; polydispersity index (PDI) = 0.269 ± 0.017 [-]; zeta potential (ZP) = 42.7 ± 1.2 mV (after 4 weeks at 25 °C). The results confirmed the proper selection of the SLN production method and the effectiveness of the optimization performed. The possibility of using the obtained raw material as an ingredient in cosmetic products with anti-aging properties was indicated.
固体脂质纳米粒 (SLN) 与视黄醇和寡肽结合,可以作为具有广泛抗衰老特性的成分的兼容组合,对皮肤产生全面的效果。本研究的主要目的是确保含有视黄醇和肽的脂质纳米载体的稳定性,因为计划将这种分散体用作化妆品原料。为了确认方法优化(高剪切匀化,HSH)和适当选择基质的有效性,获得了三种组合的 SLN 分散体:1-未掺入 SLN;2-仅含有视黄醇的 SLN;3-含有视黄醇和五肽-18 的 SLN;然后将它们在不同温度(4、25、45°C)下储存 4 周。确认了在所需储存期内掺入视黄醇和寡肽的优化脂质纳米粒子分散体的所需物理化学参数的理想值:平均粒径(Z-Ave)= 134.7±0.3nm;多分散指数(PDI)= 0.269±0.017[-];Zeta 电位(ZP)= 42.7±1.2mV(在 25°C 下储存 4 周后)。结果证实了适当选择 SLN 生产方法和执行优化的有效性。表明可以将获得的原料用作具有抗衰老特性的化妆品产品的成分。