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首页> 外文期刊>European journal of pharmaceutics and biopharmaceutics: official journal of Arbeitsgemeinschaft fuer Pharmazeutische Verfahrenstechnik e.V >Production of highly stable spray dried phage formulations for treatment of Pseudomonas aeruginosa lung infection
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Production of highly stable spray dried phage formulations for treatment of Pseudomonas aeruginosa lung infection

机译:生产高稳定的喷雾干燥噬菌体制剂,用于治疗铜绿假单胞菌肺活量

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摘要

Graphical abstract Display Omitted Abstract The potential of bacteriophage therapy for the treatment of pulmonary infections caused by antibiotic-resistant bacteria has been well recognised. The purpose of this study was to investigate the effect of excipients on stabilisation and aerosolisation of spray dried powders of morphologically different phages – PEV podovirus and PEV myovirus. Seven anti-pseudomonal phages were screened against 90 clinical strains of bacterial hosts and three of the phages were selected for formulation study based on the host range. Design of experiments was utilised to assess the effect of different excipients on the stabilisation and aerosolisation of spray dried phages. Both podovirus and myovirus phages were stable in spray dried formulations containing trehalose or lactose and leucine as excipients with less than 1-log 10 titre reduction during spray drying, with lactose providing superior phage protection over trehalose. Furthermore, the spray dried phage formulations dispersed in an Osmohaler at 85L/min produced a high fine particle fraction of over 50%. The results showed that the phages in this study can form respirable dry powder phage formulations using the same excipient composition. Spray dried various types of lytic phages hold significant potential for the treatment of pulmonary infections.
机译:图形摘要显示略摘自抗生素抗性细菌治疗肺部感染的噬菌体疗法的潜​​力得到了很好的认可。本研究的目的是探讨赋形剂对形态学不同噬菌体和PEV Myovirus的喷雾干燥粉末稳定和雾化的影响。筛选出七个抗假鼠噬菌体,针对90个临床宿主,选择基于宿主范围的制剂研究选择三种噬菌体。实验设计用于评估不同赋形剂对喷雾干燥噬菌体稳定和雾化的影响。 Podovirus和Myovirus噬菌体在喷雾干燥的制剂中稳定在含有海藻糖或乳糖和亮氨酸作为赋形剂,作为喷雾干燥期间的含量小于1-log 10滴度,乳糖在海藻糖上提供卓越的噬菌体保护。此外,在85L / min下分散在Osmohaler中的喷雾干燥的噬菌体制剂产生超过50%的高细粒粒径。结果表明,该研究中的噬菌体可以使用相同的赋形剂组合物形成可吸入的干粉噬菌体制剂。喷雾干燥各种类型的裂缝噬菌体对肺部感染的治疗具有重要潜力。

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