姜黄素
甘露醇
生物利用度
气溶胶化
喷雾干燥
纳米晶
溶解
纳米技术
纳米囊
材料科学
溶解度
化学
化学工程
色谱法
纳米颗粒
药理学
医学
有机化学
生物化学
吸入
工程类
解剖
作者
Luca Casula,Emanuela Fabiola Craparo,Eliana Lai,Cinzia Scialabba,Donatella Valenti,Michele Schlich,Chiara Sinico,Gennara Cavallaro,Francesco Lai
出处
期刊:Pharmaceuticals
[Multidisciplinary Digital Publishing Institute]
日期:2024-12-18
卷期号:17 (12): 1708-1708
摘要
Background/Objectives: Curcumin is well known for its great anti-inflammatory and antioxidant efficacy, representing a potential strategy for the treatment of respiratory disorders. However, several drawbacks, such as chemical instability, poor water solubility and rapid metabolism, result in low bioavailability, limiting its clinical applications. In this study, curcumin nanocrystals were incorporated into mannitol-based microparticles to obtain an inhalable dry powder. Methods: A curcumin nanosuspension was produced by wet-ball media milling and thoroughly characterized. Spray drying was then used to produce mannitol microparticles incorporating curcumin nanocrystals. In vitro release/dissolution tests were carried out in simulated lung fluids, and the aerosolization properties were evaluated using a Next-Generation Impactor (NGI, Apparatus E Ph. Eu.). Results: The incorporation of curcumin nanocrystals into mannitol-based microparticles influenced their morphological properties, such as geometric diameters, and flowability. Despite these changes, nebulization studies confirmed optimal MMAD values (<5 µm), while multi-step dissolution/release studies evidenced the influence of mannitol. Conclusions: The developed curcumin nanocrystals-loaded mannitol microparticles show promise as an inhalable treatment for respiratory diseases, combining effective aerodynamic properties with controlled drug release.
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