Laboratory of Pharmaceutics and Biopharmaceutics, Faculty of Pharmacy, ULB, 1050 Brussels, Belgium.
Laboratory for Molecular and Cellular Technology, Queen Astrid Military Hospital, 1120 Brussels, Belgium.
Viruses. 2021 Sep 24;13(10):1926. doi: 10.3390/v13101926.
In the present study, we evaluated the effect of spray-drying formulations and operating parameters of a laboratory-scale spray-dryer on the characteristics of spray-dried powders containing two bacteriophages exhibiting different morphotypes: a podovirus (LUZ19) and a myovirus (14-1). We optimized the production process for bacteriophage-loaded powders, with an emphasis on long-term storage under ICH (international conference on harmonization) conditions. D-trehalose-/L-isoleucine-containing bacteriophage mixtures were spray-dried from aqueous solutions using a Büchi Mini Spray-dryer B-290 (Flawil, Switzerland). A response surface methodology was used for the optimization of the spray-drying process, with the following as-evaluated parameters: Inlet temperature, spray gas flow rate, and the D-trehalose/L-isoleucine ratio. The dried powders were characterized in terms of yield, residual moisture content, and bacteriophage lytic activity. L-isoleucine has demonstrated a positive impact on the activity of LUZ19, but a negative impact on 14-1. We observed a negligible impact of the inlet temperature and a positive correlation of the spray gas flow rate with bacteriophage activity. After optimization, we were able to obtain dry powder preparations of both bacteriophages, which were stable for a minimum of one year under different ICH storage conditions (up to and including 40 °C and 75% relative humidity).
在本研究中,我们评估了喷雾干燥制剂和实验室规模喷雾干燥器操作参数对含有两种形态不同噬菌体(一种 Podovirus(LUZ19)和一种 Myovirus(14-1))的喷雾干燥粉末特性的影响。我们优化了载菌粉末的生产工艺,重点是在 ICH(国际协调会议)条件下进行长期储存。使用 Büchi Mini Spray-dryer B-290(瑞士 Flawil)从水溶液中喷雾干燥 D-海藻糖/L-异亮氨酸含噬菌体混合物。使用响应面法对喷雾干燥过程进行了优化,评估的参数包括入口温度、喷雾气体流速和 D-海藻糖/L-异亮氨酸的比例。干燥粉末的产率、残余水分含量和噬菌体溶菌活性。L-异亮氨酸对 LUZ19 的活性有积极影响,但对 14-1 的活性有负面影响。我们观察到入口温度的影响可以忽略不计,喷雾气体流速与噬菌体活性呈正相关。优化后,我们能够获得两种噬菌体的干粉制剂,在不同的 ICH 储存条件下(高达和包括 40°C 和 75%相对湿度)至少稳定一年。