Elsheikh Manal A, Gaafar Passent M E, Khattab Mohamed A, A Helwah Mohamed Kamal, Noureldin Mohamed H, Abbas Haidy
Department of Pharmaceutics, Faculty of Pharmacy, Damanhour University, Damanhour, Egypt.
Department of Pharmaceutics, Division of Pharmaceutical Sciences, College of Pharmacy, Arab Academy for Science, Technology and Maritime Transport, Alexandria, P.O. Box 1029, Egypt.
Int J Pharm X. 2023 Feb 10;5:100170. doi: 10.1016/j.ijpx.2023.100170. eCollection 2023 Dec.
Caffeine (CAF) is a challenging natural bioactive compound with proven antiaging efficacy. However, being hydrophilic hampers its permeation through the skin. Our aim is to develop a novel CAF-loaded nano-cosmeceutical tool counteracting skin photoaging via improving CAF skin permeation using a bioactive nanocarrier. Caffeinated hyalurosomes are novel biocompatible antiaging nanoplatforms designed by immobilization of phospholipid vesicles with a hyaluronan polymer. Physicochemical properties of the selected hyalurosomes formulation showed nano-sized vesicles (210.10 ± 1.87 nm), with high zeta potential (-31.30 ± 1.19 mv), and high encapsulation efficiency (84.60 ± 1.05%). In vitro release results showed outstanding sustained release profile from caffeinated hyalurosomes compared to the CAF-loaded in conventional gel over 24 h. The in-vivo study revealed a photoprotective effect of caffeinated hyalurosomes, reflected from the intact and wrinkling-free skin. Results of biochemical analyses of oxidative stress, pro-inflammatory mediators, and anti-wrinkling markers further confirmed the efficacy of the prepared hyalurosomes compared to the CAF conventional gel. Finally, histopathological examination demonstrated normal histological structures of epidermal layers with minimal inflammatory cell infiltrates in the caffeinated hyalurosomes group compared to the positive control group. Conclusively, caffeinated hyalurosomes successfully achieved enhanced CAF loading and penetration into the skin besides the hydration effect of hyaluronan. Consequently, the developed delivery system presents a promising skin protection nano-platforms via the double effects of both hyaluronan and CAF, hence it guards against skin photodamage.
咖啡因(CAF)是一种具有抗老化功效的天然生物活性化合物,但因其亲水性阻碍了它透过皮肤。我们的目标是开发一种新型载咖啡因纳米化妆品工具,通过使用生物活性纳米载体提高CAF的皮肤渗透性,以对抗皮肤光老化。含咖啡因的透明质酸脂质体是一种新型的生物相容性抗老化纳米平台,通过将磷脂囊泡与透明质酸聚合物固定化而设计。所选透明质酸脂质体制剂的物理化学性质显示为纳米级囊泡(210.10±1.87纳米),具有高zeta电位(-31.30±1.19毫伏)和高包封率(84.60±1.05%)。体外释放结果表明,与传统凝胶中负载的CAF相比,含咖啡因的透明质酸脂质体在24小时内具有出色的持续释放特性。体内研究揭示了含咖啡因的透明质酸脂质体的光保护作用,表现为皮肤完整且无皱纹。氧化应激、促炎介质和抗皱标志物的生化分析结果进一步证实了所制备的透明质酸脂质体与CAF传统凝胶相比的功效。最后,组织病理学检查表明,与阳性对照组相比,含咖啡因的透明质酸脂质体组表皮层的组织结构正常,炎症细胞浸润最少。总之,含咖啡因的透明质酸脂质体除了具有透明质酸的保湿作用外,还成功实现了CAF在皮肤中的高负载和渗透。因此,所开发的递送系统通过透明质酸和CAF的双重作用呈现出一个有前景的皮肤保护纳米平台,从而防止皮肤光损伤。