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以羟丙基-β-环糊精为辅料通过喷雾冷冻干燥法制备的可吸入蛋白质粉末。

Inhalable Protein Powder Prepared by Spray-Freeze-Drying Using Hydroxypropyl-β-Cyclodextrin as Excipient.

作者信息

Lo Jason C K, Pan Harry W, Lam Jenny K W

机构信息

Department of Pharmacology and Pharmacy, Li Ka Shing Faculty of Medicine, The University of Hong Kong, 21 Sassoon Road, Pokfulam, Hong Kong, China.

Advanced Biomedical Instrumentation Centre, Hong Kong Science Park, Shatin, New Territories, Hong Kong, China.

出版信息

Pharmaceutics. 2021 Apr 24;13(5):615. doi: 10.3390/pharmaceutics13050615.

Abstract

The prospect of inhaled biologics has garnered particular interest given the benefits of the pulmonary route of administration. Pertinent considerations in producing inhalable dry powders containing biological medicines relate to aerosol performance and protein stability. Spray-freeze-drying (SFD) has emerged as an established method to generate microparticles that can potentially be deposited in the lungs. Here, the SFD conditions and formulation composition were evaluated using bovine serum albumin (BSA) as a model protein and 2-hydroxypropyl-beta-cyclodextrin (HPβCD) as the protein stabilizer. A factorial design analysis was performed to investigate the effects of BSA content, solute concentration of feed solution, and atomization gas flow rate on dispersibility (as an emitted fraction), respirability (as fine particle fraction), particle size, and level of protein aggregation. The atomization gas flow rate was identified as a significant factor in influencing the aerosol performance of the powder formulations and protein aggregation. Nonetheless, high atomization gas flow rate induced aggregation, highlighting the need to further optimize the formulation. Of note, all the formulations exhibited excellent dispersibility, while no fragmentation of BSA occurred, indicating the feasibility of SFD and the promise of HPβCD as an excipient.

摘要

鉴于肺部给药途径的优势,吸入式生物制剂前景备受关注。生产含生物药物的可吸入干粉时,相关考虑因素涉及气溶胶性能和蛋白质稳定性。喷雾冷冻干燥(SFD)已成为一种成熟方法,可生成可能沉积在肺部的微粒。在此,以牛血清白蛋白(BSA)为模型蛋白、2-羟丙基-β-环糊精(HPβCD)为蛋白稳定剂,对SFD条件和制剂组成进行了评估。进行析因设计分析,以研究BSA含量、进料溶液溶质浓度和雾化气体流速对分散性(作为发射分数)、可吸入性(作为细颗粒分数)、粒径和蛋白质聚集水平的影响。雾化气体流速被确定为影响粉末制剂气溶胶性能和蛋白质聚集的重要因素。尽管如此,高雾化气体流速会导致聚集,这凸显了进一步优化制剂的必要性。值得注意的是,所有制剂均表现出优异的分散性,且BSA未发生破碎,这表明SFD的可行性以及HPβCD作为辅料的前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/328a/8145196/82af80de3f79/pharmaceutics-13-00615-g001.jpg

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