Division of Gene Technology, Katholieke Universiteit Leuven, Heverlee, Belgium.
Eur J Pharm Biopharm. 2013 Aug;84(3):578-82. doi: 10.1016/j.ejpb.2012.12.022. Epub 2013 Jan 23.
The use of bacterial viruses for antibacterial treatment (bacteriophage therapy) is currently being reevaluated. In this study, we analyze the potential of processing bacteriophages in a dry powder formulation, using a laboratory spray dryer. The phages were dried in the presence of lactose, trehalose or dextran 35, serving as an excipient to give the resulting powder the necessary bulk mass and offer protection to the delicate phage structure. Out of the three excipients tested, trehalose was found to be the most efficient in protecting the phages from temperature and shear stress throughout the spray drying process. A low inlet air temperature and atomizing force appeared to be the best parameter conditions for phage survival. Pseudomonas podovirus LUZ19 was remarkably stable, suffering less than 1 logarithmic unit reduction in phage titer. The phage titer of Staphyloccus phage Romulus-containing powders, a member of the Myoviridae family, showed more than 2.5 logarithmic units reduction. On the other hand, Romulus-containing powders showed more favorable characteristics for pulmonary delivery, with a high percentage of dry powder particles in the pulmonary deposition fraction (1-5 μm particle diameter). Even though the parameters were not optimized for spray drying all phages, it was demonstrated that spray drying phages with this industrial relevant and scalable set up was possible. The resulting powders had desirable size ranges for pulmonary delivery of phages with dry powder inhalers (DPIs).
利用细菌病毒进行抗菌治疗(噬菌体疗法)目前正在重新评估。在这项研究中,我们分析了在干粉制剂中加工噬菌体的潜力,使用了实验室喷雾干燥器。噬菌体在乳糖、海藻糖或葡聚糖 35 的存在下干燥,作为赋形剂赋予所得粉末必要的大量质量,并为脆弱的噬菌体结构提供保护。在所测试的三种赋形剂中,海藻糖被发现是在喷雾干燥过程中最有效地保护噬菌体免受温度和剪切力影响的赋形剂。低入口空气温度和雾化力似乎是噬菌体存活的最佳参数条件。假单胞菌 podovirus LUZ19 非常稳定,噬菌体滴度降低不到 1 个对数单位。属于肌尾噬菌体科的 Romulus 噬菌体的噬菌体滴度下降超过 2.5 个对数单位。另一方面,Romulus 噬菌体的粉末具有更有利于肺部给药的特性,在肺部沉积分数(1-5μm 粒径)中具有较高比例的干粉颗粒。尽管喷雾干燥噬菌体的参数不是针对喷雾干燥进行优化的,但证明使用这种工业相关且可扩展的设置进行喷雾干燥噬菌体是可行的。所得粉末具有使用干粉吸入器(DPIs)进行噬菌体肺部给药的理想粒径范围。