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Development of a Carrier Free Dry Powder Inhalation Formulation of Ketotifen for Pulmonary Drug Delivery

机译:开发酮酮酮酮类肺炎药物递送的载体无干粉吸入制剂

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Background Pulmonary drug delivery route is gaining much attention because it enables to target the active ingredients directly to lung both for local and systemic treatments, which maximize the therapeutic effect and minimize unwanted systemic toxicity. Dry powder inhaler (DPI) systems for asthma therapy have shown several merits to the other pulmonary delivery systems such as nebulizers and metered dose inhalers. Purpose The present study aims to develop and optimize a DPI formulation for Ketotifen fumarate through spray drying technique. Methods Particles size and morphology, crystallinity, and drug-excipient interaction of fabricated DPI formulations were evaluated by scanning electron microscopy, X-ray diffraction (XRD), differential scanning calorimetry (DSC), and Fourier Transform Infrared Spectroscopy methods, respectively. The aerosolization indexes and aerodynamic properties of dry powders were determined by next generation impactor. The powder flowability was assessed by measuring the Hausner ratio and compressibility index. Results Among solvent systems, ethanol-water mixture produced the most desirable powder property for inhalation after spray drying. Although co-spray dried formulations with ammonium bicarbonate resulted in the porous structure, it was not beneficial for DPI formulations due to the interaction with Ketotifen. DSC and XRD experiments proved the amorphous structure of prepared powders, which were stable for 12 months. Conclusion The results of this study demonstrate the potential of Ketotifen DPI formulation and pave a way to use it easily in an industrial scale.
机译:背景技术肺药物递送途径正在受到巨大的关注,因为它能够将活性成分直接靶向局部和全身治疗,这使得治疗效果最大化并最大限度地减少了不需要的全身毒性。用于哮喘治疗的干粉吸入器(DPI)系统对其他肺部递送系统(如雾化剂和计量剂量吸入器)显示了几种优点。目的本研究旨在通过喷雾干燥技术开发和优化用于Keetotifen富马酸的DPI配方。方法通过扫描电子显微镜,X射线衍射(XRD),差示扫描量热法(DSC)和傅立叶变换红外光谱法评价制造的DPI制剂的颗粒尺寸和形态学,结晶度和药物 - 赋形剂相互作用。通过下一代撞击器测定干粉的雾化指数和空气动力学性质。通过测量Hausner比率和可压缩指数来评估粉末流动性。溶剂体系中的结果,乙醇 - 水混合物生产喷雾干燥后吸入最理想的粉末性能。尽管与碳酸氢铵的共喷干燥制剂导致多孔结构,但由于与Ketotifen的相互作用,它没有有益于DPI制剂。 DSC和XRD实验证明了制备粉末的无定形结构,稳定为12个月。结论本研究的结果表明了Ketotifen DPI配方的潜力,并在工业规模中轻松使用它。

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