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Effect of Particle Formation Process on Characteristics and Aerosol Performance of Respirable Protein Powders

机译:颗粒形成过程对可吸入蛋白粉体特性和气溶胶性能的影响

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Pulmonary delivery of biopharmaceuticals may enable targeted local therapeutic effect and noninvasive systemic administration. Dry powder inhaler (DPI) delivery is an established patient-friendly approach for delivering large molecules to the lungs; however, the complexities of balancing protein stability with aerosol performance require that the design space of biopharmaceutical DPI formulations is rigorously explored. Utilizing four rationally selected formulations obtained using identical atomization conditions, an extensive study of the effect of the particle formation process (spray drying or spray freeze-drying) on powder properties, aerosol performance, and protein stability was performed. Multiple linear regression analysis was used to understand the relationship between powder properties, device dispersion mechanism, and aerosol performance. Spray drying and spray freeze-drying, despite the same spraying conditions, produced powders with vastly different physical characteristics, though similar aerosol performance. The resulting regression model points to the significance of particle size, density, and surface properties on the resulting aerosol performance, with these factors weighing differently according to the device dispersion mechanism utilized (shear-based or impaction-based). The physical properties of the produced spray dried and spray freeze-dried powders have differing implications for long-term stability, which will be explored extensively in a future study.
机译:生物药物的肺部递送可以使靶向局部治疗效果和非侵入性全身给药能够实现。干粉吸入器(DPI)递送是一种既定的患者友好的方法,用于向肺部递送大分子;然而,平衡蛋白质稳定性与气溶胶性能的复杂性要求生物制药DPI配方的设计空间严格探索。利用使用相同雾化条件获得的四种合理选择的制剂,进行了对颗粒形成过程(喷雾干燥或喷雾冷冻干燥)对粉末性能,气溶胶性能和蛋白质稳定性的广泛研究。多元线性回归分析用于了解粉末性能,装置分散机构和气溶胶性能之间的关系。喷雾干燥和喷雾冷冻干燥,尽管具有相同的喷雾条件,产生的粉末具有出色的物理特性,虽然是类似的气溶胶性能。得到的回归模型指向粒度,密度和表面性能的显着性,这些因素根据所使用的装置分散机制而不同地称重(基于剪切或基于剪切)。所生产的喷雾干燥和喷雾冷冻干燥粉末的物理性质具有不同对长期稳定性的影响,这将在未来的研究中进行广泛探讨。

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