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首页> 外文期刊>Pharmaceutical research >Understanding the Impacts of Surface Compositions on the In-Vitro Dissolution and Aerosolization of Co-Spray-Dried Composite Powder Formulations for Inhalation
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Understanding the Impacts of Surface Compositions on the In-Vitro Dissolution and Aerosolization of Co-Spray-Dried Composite Powder Formulations for Inhalation

机译:了解表面组合物对吸入的共喷干复合粉末制剂的体外溶解和气雾化的影响

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PurposeDissolution behavior of dry powder inhaler (DPI) antibiotic formulations in the airways may affect their efficacy especially for poorly-soluble antibiotics such as azithromycin. The main objective of this study was to understand the effects of surface composition on the dissolution of spray dried azithromycin powders by itself and in combination with colistin.MethodsComposite formulations of azithromycin (a poorly water-soluble molecule) and colistin (a water-soluble molecule) were produced by spray drying. The resultant formulations were characterized for particle size, morphology, surface composition, solid-state properties, solubility and dissolution.ResultsThe results demonstrate that surfaces composition has critical impacts on the dissolution of composite formulations. Colistin was shown to increase the solubility of azithromycin. For composite formulations with no surface colistin, azithromycin released at a similar dissolution rate as the spray-dried azithromycin alone. An increase in surface colistin concentration was shown to accelerate the dissolution of azithromycin. The dissolution of colistin from the composite formulations was significantly slower than the spray-dried pure colistin. In addition, FTIR spectrum showed intermolecular interactions between azithromycin and colistin in the composite formulations, which could contribute to the enhanced solubility and dissolution of azithromycin.ConclusionsOur study provides fundamental understanding of the effects of surface concentration of colistin on azithromycin dissolution of co-spray-dried composite powder formulations.
机译:干粉吸入器(DPI)在气道中的抗生素制剂的Purposissolution行为可能影响它们的功效,尤其适用于诸如阿奇霉素的差异性抗生素。本研究的主要目的是了解表面组合物对自身喷雾干燥的氮霉素粉末溶解的影响,并与Colistin.Methodscomposite的二霉素(一种不良水溶性分子)和Colistin(一种水溶性分子)组合)通过喷雾干燥产生。所得制剂的特征在于粒度,形态,表面组合物,固态性质,溶解度和溶解。结果表明,表面组合物对复合制剂的溶解具有临界影响。表明Colistin增加了氮霉素的溶解度。对于没有表面Colistin的复合制剂,阿奇霉素以类似的溶解速率释放,因为单独喷雾干燥的二十霉素。显示表面菌落素浓度的增加,以加速二十霉素的溶解。从复合制剂中溶解的乳突溶解显着较大,而不是喷雾干燥的纯Colistin。此外,FTIR光谱在复合制剂中显示出阿奇霉素和Colistin之间的分子间相互作用,这可能有助于二十霉素的增强溶解度和溶解。Conclusionsour的研究提供了对Colistin表面浓度对共喷氏酶溶解的基本理解。干复合粉末制剂。

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