Wang Zhuxian, Liu Jun, Chen QiuYu, Wu Yufan, Li Yamei, Ou Mingjie, Tang Shuwei, Deng Ziqing, Liu Li, Jiang Cuiping, Zhu Hongxia, Liu Qiang, Yang Bin
Dermatology Hospital, Southern Medical University, Guangzhou, 510091, China.
School of Traditional Chinese Medicine, Southern Medical University, Guangzhou, 510515, China.
Adv Sci (Weinh). 2025 Feb;12(8):e2412581. doi: 10.1002/advs.202412581. Epub 2025 Jan 9.
Sigal peptides have garnered remarkable efficacy in rejuvenating photoaged skin and delaying senescence. Nevertheless, their low solubility and poor permeability bring about a formidable challenge in their transdermal delivery. To address this challenge, bioactive ionic liquids (ILs) synthesized from natural glycyrrhizic acid (GA) and oxymatrine (OMT) with eminent biocompatibility is first prepared. The components ratios and inherent forming mechanisms of GA-OMT (GAO) are optimized by molecular dynamics simulations and density functional theory calculations. Remarkably, GAO can significantly improve the sparingly soluble properties of palmitoyl pentapeptide-4 (PAL-4), a model peptide drug. Subsequently, GAO self-assembled micelles loading PAL-4 (GAO/PAL-4-SM) are fabricated without additional auxiliary materials. The permeation and subcutaneous retention of PAL-4 are significantly promoted with 10wt.% GAO-SM. Moreover, GAO ILs facilitated PAL-4 permeation by enhancing its miscibility and interaction with stratum corneum (SC), offering a pulling effect and micellar structures for PAL-4, as elucidated by computational simulations. In cellular and animal photoaging experiments, GAO/PAL-4-SM possessed remarkable capabilities in boosting collagen and hyaluronic acid regeneration, mitigating inflammation and apoptosis, accelerating macrophage M2 polarization, thereby lessening skin wrinkles and leveraging elasticity. Collectively, the research innovatively designed an ILs self-assembled nano-micellar transdermal delivery system to enhance the permeability and anti-photoaging effect of signal peptides.
西加尔肽在改善光老化皮肤和延缓衰老方面已取得显著成效。然而,它们的低溶解度和较差的渗透性给其经皮给药带来了巨大挑战。为应对这一挑战,首先制备了由具有卓越生物相容性的天然甘草酸(GA)和氧化苦参碱(OMT)合成的生物活性离子液体(ILs)。通过分子动力学模拟和密度泛函理论计算优化了GA - OMT(GAO)的组成比例和内在形成机制。值得注意的是,GAO能显著改善模型肽药物棕榈酰五肽 - 4(PAL - 4)的微溶性。随后,在不添加额外辅助材料的情况下制备了负载PAL - 4的GAO自组装胶束(GAO/PAL - 4 - SM)。10wt.%的GAO - SM能显著促进PAL - 4的渗透和皮下滞留。此外,计算模拟表明,GAO离子液体通过增强其与角质层(SC)的混溶性和相互作用促进PAL - 4渗透,为PAL - 4提供牵引作用和胶束结构。在细胞和动物光老化实验中,GAO/PAL - 4 - SM在促进胶原蛋白和透明质酸再生、减轻炎症和细胞凋亡、加速巨噬细胞M2极化方面具有显著能力,从而减少皮肤皱纹并增强弹性。总的来说,该研究创新性地设计了一种离子液体自组装纳米胶束经皮给药系统,以提高信号肽的渗透性和抗光老化效果。