Sakulwech Sakhiran, Lourith Nattaya, Ruktanonchai Uracha, Kanlayavattanakul Mayuree
School of Cosmetic Science, Mae Fah Luang University, Chiang Rai 57100, Thailand.
Phytocosmetics and Cosmeceuticals Research Group, Mae Fah Luang University, Chiang Rai 57100, Thailand.
Asian J Pharm Sci. 2018 Sep;13(5):498-504. doi: 10.1016/j.ajps.2018.05.006. Epub 2018 Jun 15.
Hyaluronic acid (HA, 20-50 kDa) is a hydrophilic macromolecule with anti-wrinkle effects and moisturizing properties. However, its high molecular weight prevents it from penetrating into the deeper layers of the skin and, thus, limits its benefits to topical effects. Thus, the objective of this study is to prepare nanoparticles of quaternized cyclodextrin-grafted chitosan (QCD-g-CS) associated with HA in different molar ratios of QCD-g-CS and HA. The conjugation of the carboxylic moieties of HA and the amides of QCD-g-CS was confirmed by Fourier-transform infrared spectroscopy. Thus, the system was optimized to create nanoparticles with a small size (235.63 ± 21.89 nm), narrow polydispersity index (0.13 ± 0.02), and zeta potential of 16.07 ± 0.65 mV. The association efficiency and loading efficiency were determined by ultra-performance liquid chromatography as 86.77 ± 0.69% and 10.85 ± 0.09%, respectively. The spherical morphology of the obtained nanoparticles was confirmed by transmission electron microscopy. Moreover, the - hydrating ability was significantly higher ( < 0.001) than that of bulk HA (3.29 ± 0.41 and 1.71 ± 0.05 g water/g sample, respectively). The safety of these nanoparticles at concentrations in the range of 0.01-0.10 mg/ml was confirmed via tests on human skin fibroblasts. Together, these results demonstrate that the developed nanoparticles are promising for future applications in cosmetics.
透明质酸(HA,20 - 50 kDa)是一种具有抗皱作用和保湿特性的亲水性大分子。然而,其高分子量使其难以渗透到皮肤深层,因此限制了其仅具有局部作用的益处。因此,本研究的目的是制备与HA以不同摩尔比结合的季铵化环糊精接枝壳聚糖(QCD - g - CS)纳米颗粒。通过傅里叶变换红外光谱证实了HA的羧基与QCD - g - CS的酰胺基之间的共轭。因此,该体系经过优化,以制备尺寸小(235.63±21.89 nm)、多分散指数窄(0.13±0.02)且zeta电位为16.07±0.65 mV的纳米颗粒。通过超高效液相色谱法测定结合效率和负载效率分别为86.77±0.69%和10.85±0.09%。通过透射电子显微镜证实了所得纳米颗粒的球形形态。此外,其保湿能力显著更高(<0.001),高于块状HA(分别为3.29±0.41和1.71±0.05 g水/g样品)。通过对人皮肤成纤维细胞的测试证实了这些纳米颗粒在0.01 - 0.10 mg/ml浓度范围内的安全性。总之,这些结果表明所开发的纳米颗粒在未来化妆品应用中具有前景。