Elhabal Sammar Fathy, Farahat Marwa Saeed, Teaima Mahmoud H, Elzohairy Nahla A, El-Nabarawi Mohamed
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Modern University for Technology and Information (MTI), Mokattam, 11571, Cairo, Egypt.
Department of Pharmaceutics and Industrial Pharmacy, Faculty of Pharmacy, Cairo University, Cairo, 11562, Egypt.
Drug Deliv Transl Res. 2025 Jul 17. doi: 10.1007/s13346-025-01915-8.
Oral ulcerative mucositis (OUM) is a common painful disease that affects oral functions, such as eating or speaking leading to a low quality of life. This study aims to develop a novel strategy for relieving pain associated with OUM by using local anesthetics. Here, a hybrid dissolving microneedle patch integrated with lidocaine (Lido)-encapsulated invasomes (modified liposomes containing terpenes as penetration enhancers) depots are introduced for sustained Lido delivery, reduced dosing frequency, and improved patient compliance. Different Lido-loaded invasomes formulations were developed using design expert software to study the effects of different type terpenes (Limonene, Cineole, Camphor) and their concentration using a thin-film hydration approach. Dissolving microneedle (MN) patches made of sodium alginate (SA), Glycerol and polyvinyl alcohol (PVA) via the casting method. Optimized invasomes formulations containing cineole exhibited excellent stability, a high entrapment efficiency of 83.5%, and a nanoscale size of approximately 295 nm. The incorporation of SA/PVA with 1% glycerin MNs resulted in effective mucosal penetration, rapid dissolution within 10 min, and significant mechanical strength. Research conducted in-vitro and ex-vivo demonstrated enhanced permeation and a significant increase in lidocaine release, achieving 95% within 24 h. In-vivo evaluations demonstrated substantial pain relief, reduced inflammation (evidenced by decreased TNF-α and NF-κB levels), enhanced anti-inflammatory IL-10 expression, and modulation of angiogenesis via VEGF downregulation, leading to accelerated mouth healing with complete epithelial restoration. This hybrid system significantly improves drug delivery and patient comfort by aiding in biocompatibility, Mucoadhesion, and healing. This innovative system transcends traditional anesthetic administration, providing a painless and targeted therapeutic platform that improves OUM management.
口腔溃疡性黏膜炎(OUM)是一种常见的疼痛性疾病,会影响口腔功能,如进食或说话,导致生活质量下降。本研究旨在开发一种通过使用局部麻醉剂来缓解与OUM相关疼痛的新策略。在此,引入了一种混合溶解微针贴片,其集成了包裹利多卡因(Lido)的侵入体(含有萜类作为渗透促进剂的改良脂质体)贮库,用于持续递送Lido、减少给药频率并提高患者依从性。使用设计专家软件开发了不同的载Lido侵入体制剂,以研究不同类型萜类(柠檬烯、桉叶油素、樟脑)及其浓度的影响,采用薄膜水化法。通过浇铸法由海藻酸钠(SA)、甘油和聚乙烯醇(PVA)制成溶解微针(MN)贴片。含有桉叶油素的优化侵入体制剂表现出优异的稳定性、83.5%的高包封率和约295nm的纳米级尺寸。SA/PVA与1%甘油MNs的结合导致有效的黏膜渗透、10分钟内快速溶解以及显著的机械强度。体外和离体研究表明渗透增强且利多卡因释放显著增加,24小时内达到95%。体内评估表明疼痛显著减轻、炎症减轻(通过TNF-α和NF-κB水平降低证明)、抗炎性IL-10表达增强以及通过VEGF下调调节血管生成,导致口腔愈合加速且上皮完全修复。这种混合系统通过有助于生物相容性、黏膜黏附性和愈合,显著改善了药物递送和患者舒适度。这种创新系统超越了传统的麻醉给药方式,提供了一个无痛且靶向的治疗平台,改善了OUM的管理。