Research Center Pharmaceutical Engineering GmbH, Inffeldgasse 13 8010, Graz, Austria; Institute of Process and Particle Engineering, Graz University of Technology, Inffeldgasse 13 8010, Graz, Austria.
Research Center Pharmaceutical Engineering GmbH, Inffeldgasse 13 8010, Graz, Austria.
Int J Pharm. 2024 Dec 5;666:124822. doi: 10.1016/j.ijpharm.2024.124822. Epub 2024 Oct 12.
Inhalable formulations of medicines intended to act locally in the lung are therapeutically effective at lower doses with targeted delivery, compared to parenteral or oral administration. Meanwhile, different APIs, including biologics, have proven to be challenging regarding formulation and final bioavailability. This study focuses on the production, improved stability performance, and delivery of spray-dried, inhalable protein powders to the lungs. By spray-drying 11 aqueous formulations of proteinX with varying L-leucine content and by employing a Design of Experiment (DoE), two formulations have been selected for stability studies based on the highest fine particle fraction (FPF), highest monomer content, and lowest particle size. We found that 5 %w/w L-leucine (based on protein content) resulted in similar or higher FPF at 2-8 °C and 25 °C/60 %RH (67.12 % and 48.50 %) stored for six months than 10 %w/w L-leucine (68.49 % and 35.04 %). This indicates that less leucine may be sufficient to produce stable, spray-dried inhalable particles with an improved FPF, and by doubling the leucine content, the aerosolization stability can deteriorate. We have discussed the postulated hypothesis underlying the observed stability behavior based on solid-state and morphological analysis. Our results suggest that spray-dried proteinX-leu-powders can be delivered to the lung at a lower dose than for intravenous administration.
与肠外或口服给药相比,旨在肺部局部发挥作用的可吸入药物制剂具有靶向递送作用,可在较低剂量下实现治疗效果。同时,不同的 API(包括生物制剂)在制剂和最终生物利用度方面已被证明具有挑战性。本研究专注于可吸入蛋白质粉末的喷雾干燥生产、提高稳定性和肺部递药性能。通过喷雾干燥含有不同 L-亮氨酸含量的 11 种蛋白质 X 的水性制剂,并采用实验设计(DoE),根据最高的细微颗粒分数(FPF)、最高的单体含量和最低的粒径,选择了两种制剂进行稳定性研究。我们发现,5%w/w L-亮氨酸(基于蛋白质含量)在 2-8°C 和 25°C/60%RH 下储存六个月后,FPF 相似或更高(67.12%和 48.50%),而 10%w/w L-亮氨酸(68.49%和 35.04%)。这表明,较少的亮氨酸可能足以产生稳定的可吸入喷雾干燥颗粒,且具有改善的 FPF,而亮氨酸含量增加一倍,则可能会恶化雾化稳定性。我们根据固态和形态分析讨论了观察到的稳定性行为的假设基础。我们的结果表明,可吸入蛋白质 X-亮氨酸粉末可以以比静脉内给药更低的剂量递送到肺部。