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多相颗粒解聚及其对治疗性气溶胶性能的影响。

Heterogeneous particle deaggregation and its implication for therapeutic aerosol performance.

机构信息

Division of Molecular Pharmaceutics, Eshelman School of Pharmacy, University of North Carolina, Chapel Hill, North Carolina 27599-7360, USA.

出版信息

J Pharm Sci. 2010 Aug;99(8):3442-61. doi: 10.1002/jps.22057.

Abstract

Aerosolization performance of dry powder blends of drugs for the treatment of asthma or chronic obstructive pulmonary diseases have been reported in three previous articles. In vitro aerosolization was performed at defined shear stresses (0.624-13.143 N/m(2)). Formulations were characterized aerodynamically and powder aerosol deaggregation equations (PADE) and corresponding linear regression analyses for pharmaceutical aerosolization were applied. Particle deaggregation is the result of overcoming fundamental forces acting at the particle interface. A new method, PADE, describing dry powder formulation performance in a shear stress range has been developed which may allow a fundamental understanding of interparticulate and surface forces. The application of PADE predicts performance efficiency and reproducibility and supports rational design of dry powder formulations. The analogy of aerosol performance with surface molecular adsorption has important implications. Expressions describing surface adsorption were intended to allow elucidation of mechanisms involving surface heterogeneity, lateral interaction, and multilayer adsorption of a variety of materials. By using a similar expression for drug aerosolization performance, it is conceivable that an analogous mechanistic approach to the evaluation of particulate systems would be possible.

摘要

已有三篇先前的文章报道了用于治疗哮喘或慢性阻塞性肺疾病的干粉混合物的药物气溶胶化性能。在定义的剪切应力(0.624-13.143 N/m²)下进行体外气溶胶化。对制剂进行空气动力学特性表征,并应用粉末气溶胶解团聚方程(PADE)和相应的药物气溶胶化线性回归分析。颗粒解团聚是克服颗粒界面上作用的基本力的结果。已经开发出一种新的方法 PADE,用于描述剪切应力范围内的干粉配方性能,这可能有助于深入了解颗粒间和表面力。PADE 的应用可预测干粉制剂的性能效率和重现性,并支持干粉制剂的合理设计。气溶胶性能与表面分子吸附的类比具有重要意义。描述表面吸附的表达式旨在阐明涉及表面不均匀性、横向相互作用和各种材料的多层吸附的机制。通过对药物气溶胶化性能使用类似的表达式,可以想象对颗粒系统进行类似的机械评估方法是可能的。

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