Nanocrystal Agglomerates of Curcumin Prepared by Electrospray Drying as an Excipient-Free Dry Powder for Inhalation.

IF 2.1 Q3 PHARMACOLOGY & PHARMACY Advances in Pharmacological and Pharmaceutical Sciences Pub Date : 2024-09-06 eCollection Date: 2024-01-01 DOI:10.1155/2024/6288621
Shahram Emami, Zahra Hemmati, Shadi Yaqoubi, Hamed Hamishehkar, Amin Alvani
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Abstract

Curcumin has shown beneficial effects on pulmonary diseases with chronic inflammation or abnormal inflammatory responses, including chronic obstructive pulmonary disease, asthma, and pulmonary fibrosis. Clinical applications of curcumin are limited due to its chemical instability in solution, low water solubility, poor oral bioavailability, and intestinal and liver first-pass metabolism. Pulmonary delivery of curcumin can address these challenges and provide a high concentration in lung tissues. The purpose of the current work was to prepare a novel inhalable dry powder of curcumin nanocrystals without added excipients using electrospray drying (ED) with improved dissolution and aerosolization properties. ED of curcumin was performed at 2 and 4% w/v concentrations in acetone. Physicochemical properties of the formulated powders were evaluated by powder X-ray diffraction (PXRD), Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), density and powder flow measurements, and in vitro dissolution. The in vitro deposition studies were conducted using next-generation impactor (NGI) and aerosol performance and aerodynamic particle size parameters were calculated for prepared formulations. ED could produce agglomerates of nanocrystals with a size of about 500 nm at an acceptable yield of about 50%. PXRD and FTIR data revealed that prepared nanocrystals were in a stable crystalline state. The bulk and tapped density of prepared agglomerates were in the range appropriate for pulmonary delivery. Formed nanocrystals could significantly improve the dissolution rate of water-insoluble curcumin. The optimized formulation exhibited acceptable recovered dose percentage, high emitted dose percentage, optimum mean mass median aerodynamic diameter, small geometric standard deviation, and high fine-particle fraction that favors delivery of curcumin to the deep lung regions. The ED proved to be an efficient technique to prepare curcumin nanocrystals for pulmonary delivery in a single step, at a mild condition, and with no surfactant.

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用电喷雾干燥法制备的姜黄素纳米结晶团块作为不含赋形剂的干粉吸入。
姜黄素对慢性炎症或炎症反应异常的肺部疾病(包括慢性阻塞性肺病、哮喘和肺纤维化)具有有益的作用。由于姜黄素在溶液中的化学性质不稳定、水溶性低、口服生物利用度差以及肠道和肝脏的首过代谢,姜黄素的临床应用受到了限制。姜黄素的肺部给药可以解决这些难题,并在肺组织中提供高浓度。本次研究的目的是利用电喷雾干燥(ED)技术制备一种新型姜黄素纳米晶体吸入干粉,不添加辅料,具有更好的溶解和气溶胶特性。姜黄素在丙酮中的浓度分别为 2% 和 4% w/v。通过粉末 X 射线衍射 (PXRD)、傅立叶变换红外光谱 (FTIR)、扫描电子显微镜 (SEM)、密度和粉末流动性测量以及体外溶解度,对配制粉末的理化性质进行了评估。使用新一代冲击器(NGI)进行了体外沉积研究,并计算了制备配方的气溶胶性能和空气动力学粒度参数。ED 能产生粒径约为 500 nm 的纳米晶体团块,产量约为 50%。PXRD 和 FTIR 数据显示,制备的纳米晶体处于稳定的结晶状态。所制备的团聚体的体积密度和敲击密度都在适合肺输送的范围内。所制备的纳米晶体能显著提高水不溶性姜黄素的溶出率。优化配方具有可接受的回收剂量百分比、较高的发射剂量百分比、最佳平均质量中值空气动力学直径、较小的几何标准偏差和较高的细颗粒分数,有利于将姜黄素输送到肺深部。事实证明,ED 是一种高效的姜黄素纳米晶体制备技术,只需一步,条件温和,无需表面活性剂,即可用于肺部给药。
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来源期刊
CiteScore
4.30
自引率
3.60%
发文量
0
审稿时长
17 weeks
期刊最新文献
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