Longobardi Giuseppe, Parisi Cristina, Sodano Federica, Catanzano Ovidio, Porzio Anna Di, Randazzo Antonio, Sortino Salvatore, Quaglia Fabiana
Department of Pharmacy, University of Napoli Federico II, Via Domenico Montesano 49, Napoli, I-80131, Italy.
PhotoChemLab, Department of Drug and Health Sciences, University of Catania, Viale Andrea Doria 6, Catania, I-95125, Italy.
Adv Healthc Mater. 2025 Jun;14(15):e2500589. doi: 10.1002/adhm.202500589. Epub 2025 Apr 18.
Hyaluronic acid (HA), renowned for its hydrating properties, penetrates deeper into the skin at a very low molecular weight, promoting cellular repair and reducing inflammation. Nitric oxide (NO), a gaseous mediator with a very relevant role in many physiological and pathophysiological processes, is expected to complement the functions of HA in the skin through its vasodilatory, anti-inflammatory, and regenerative properties. Herein, a novel class of HA derivatives functionalized with NO photodonors (NOPD) for light-activated therapeutic applications is introduced. The HA derivatives HA-NOPD1 and HA-NOPD2 demonstrated NO release under blue light activation. Biological assays on HaCaT keratinocytes revealed enhanced proliferation and migration under light stimuli, underscoring the therapeutic potential of HA-NOPD1. The derivatives are formulated into microemulsions (MEs) to allow their skin transport. MEs loaded with the photoresponsive derivatives are stable in the dark and provide effective NO photorelease with higher quantum yields than the free compounds. Skin permeation studies using porcine and artificial membranes confirmed that HA-NOPD2 distributed in all the skin layers, reaching the dermis and releasing NO in situ.
透明质酸(HA)以其保湿特性而闻名,在极低分子量时能更深入地渗透到皮肤中,促进细胞修复并减轻炎症。一氧化氮(NO)作为一种在许多生理和病理生理过程中发挥重要作用的气态介质,有望通过其血管舒张、抗炎和再生特性来补充HA在皮肤中的功能。在此,引入了一类新型的用NO光供体(NOPD)功能化的HA衍生物,用于光激活治疗应用。HA衍生物HA-NOPD1和HA-NOPD2在蓝光激活下表现出NO释放。对HaCaT角质形成细胞的生物学分析表明,在光刺激下细胞增殖和迁移增强,突出了HA-NOPD1的治疗潜力。这些衍生物被制成微乳剂(MEs)以实现其经皮转运。负载光响应衍生物的MEs在黑暗中稳定,并且比游离化合物具有更高的量子产率,能有效进行NO光释放。使用猪皮和人工膜进行的皮肤渗透研究证实,HA-NOPD2分布于所有皮肤层,到达真皮并在原位释放NO。