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Application of disaccharides alone and in combination, for the improvement of stability and particle properties of spray-freeze dried IgG

机译:单独应用二糖和组合的应用,用于改善喷雾冷冻干燥IgG的稳定性和颗粒性能

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Purpose: Spray-freeze drying (SFD) is a recently applied method to develop pharmaceutical powders. This study aimed to analyze the competence of Trehalose, Mannitol, Lactose, and Sorbitol instability and aerosolization of Immunoglobulin G (IgG) via SFD. Methods: Induced soluble aggregates were quantified at 0 and 3 months, and 45 degrees C using size-exclusion chromatography. Conformation and thermogravimetric assessments were done by Fourier transform infrared spectroscopy and differential scanning calorimetry. Laser light scattering was performed to determine the particle sizes. Aerodynamic features were characterized by twin stage impinger and scanning electron microscopy. Results: Although sugars/polyols preferably stabilized IgG following the process, storage stabilization was achieved in Trehalose, Trehalose-Lactose, Lactose, and Trehalose-Mannitol-based powders with soluble aggregates <5%. The conformation of antibody was preserved with beta sheet content from 66.28% to 76.37%. Particle sizes ranged from 5.23 to 8.12 mu m. Mannitol exhibited the best aerodynamic behavior, fine particle fraction (FPF: 70%) but high degree of protein aggregation during storage. Conclusions: SFD could favorably stabilize antibody using Trehalose and its combination with Lactose and Mannitol, and also, Lactose alone. Sorbitol disturbed IgG powder recovery. Incorporation of other types of excipient is required for efficient respiratory delivery of IgG molecules.
机译:目的:喷雾冷冻干燥(SFD)是一种开发药物粉末的最近应用的方法。本研究旨在通过SFD分析海藻糖,甘露醇,乳果糖醇稳定性和免疫球蛋白G(IgG)的稳定性和雾化的能力。方法:使用尺寸排阻色谱法在0和3个月和45摄氏度下量化诱导的可溶性聚集体。通过傅里叶变换红外光谱和差示扫描量热法进行构象和热重评估。进行激光散射以确定颗粒尺寸。通过双阶段浸出和扫描电子显微镜表征空气动力学特征。结果:虽然糖/多元醇优选在该方法后稳定IgG,但在海藻糖,海藻糖 - 乳糖,乳糖和海藻糖 - 甘露醇基粉末中达到储存稳定化,溶于聚集体<5%。将抗体的构象保存,β含量为66.28%至76.37%。粒度范围为5.23至8.12 mu m。甘露醇表现出最佳的空气动力学行为,细粒级分(FPF:70%),但在储存期间高度的蛋白质聚集。结论:SFD可以利用海藻糖及其与乳糖和甘露醇的组合有利地稳定抗体,以及单独的乳糖。山梨糖醇干扰IgG粉末回收。需要掺入其他类型的赋形剂,以获得IgG分子的有效呼吸递送。

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