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Poly-γ-Glutamic Acid: Biodegradable Polymer for Potential Protection of Beneficial Viruses

机译:聚γ-谷氨酸:潜在保护有益病毒的可生物降解聚合物

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摘要

Poly-γ-glutamic acid (γ-PGA) is a naturally occurring polymer, which due to its biodegradable, non-toxic and non-immunogenic properties has been used successfully in the food, medical and wastewater industries. A major hurdle in bacteriophage application is the inability of phage to persist for extended periods in the environment due to their susceptibility to environmental factors such as temperature, sunlight, desiccation and irradiation. Thus, the aim of this study was to protect useful phage from the harmful effect of these environmental factors using the γ-PGA biodegradable polymer. In addition, the association between γ-PGA and phage was investigated. Formulated phage (with 1% γ-PGA) and non-formulated phage were exposed to 50 °C. A clear difference was noticed as viability of non-formulated phage was reduced to 21% at log10 1.3 PFU/mL, while phage formulated with γ-PGA was 84% at log10 5.2 PFU/mL after 24 h of exposure. In addition, formulated phage remained viable at log10 2.5 PFU/mL even after 24 h of exposure at pH 3 solution. In contrast, non-formulated phages were totally inactivated after the same time of exposure. In addition, non-formulated phages when exposed to UV irradiation died within 10 min. In contrast also phages formulated with 1% γ-PGA had a viability of log10 4.1 PFU/mL at the same exposure time. Microscopy showed a clear interaction between γ-PGA and phages. In conclusion, the results suggest that γ-PGA has an unique protective effect on phage particles.
机译:聚-γ-谷氨酸(γ-PGA)是天然存在的聚合物,由于其具有可生物降解,无毒和无免疫原性的特性,已成功用于食品,医疗和废水处理行业。噬菌体应用的主要障碍是由于噬菌体对环境因素(例如温度,阳光,干燥和辐射)的敏感性,因此它们无法在环境中长期存在。因此,本研究的目的是使用γ-PGA生物可降解聚合物保护有用的噬菌体免受这些环境因素的有害影响。此外,研究了γ-PGA与噬菌体之间的关联。将配制的噬菌体(含1%γ-PGA)和未配制的噬菌体暴露于50°C。注意到明显的差异,因为暴露24 h后,未配制的噬菌体的活力在log10 1.3 PFU / mL下降低到21%,而用γ-PGA配制的噬菌体在log10 5.2 PFU / mL下为84%。此外,即使在pH 3溶液中暴露24小时后,配制的噬菌体仍能以log10 2.5 PFU / mL保持活力。相反,未配制的噬菌体在同一时间暴露后被完全灭活。此外,未配制的噬菌体在暴露于紫外线照射下会在10分钟内死亡。相比之下,用1%γ-PGA配制的噬菌体在相同的暴露时间具有log10 4.1 PFU / mL的生存力。显微镜检查显示,γ-PGA与噬菌体之间存在清晰的相互作用。总之,结果表明γ-PGA对噬菌体颗粒具有独特的保护作用。

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