Institut d'Innovations Écomatériaux, Écoproduits et Écoénergies à Base de Biomasse, Université du Québec à Trois-Rivières (I2E3, UQTR), Trois-Rivières, QC G8Z 4M3, Canada.
Kruger Inc., Montréal, QC H3S 1G5, Canada.
Viruses. 2022 Nov 9;14(11):2478. doi: 10.3390/v14112478.
In this study, a novel antimicrobial formula that incorporates Listeria bacteriophage P100 and silver nanoparticles into an alginate matrix was successfully developed. Paper coated with the antimicrobial formula inhibited the growth of Listeria monocytogenes. The effects of alginate concentration on the formation of silver nanoparticles, silver concentration on the infectivity of phages, and of low alginate concentrations on the sustained release of silver and phages were explored. The highest antimicrobial activity of the alginate-silver coating was achieved with an alginate concentration of 1%. Adding phage P100 (10 PFU/mL) into the alginate-silver coating led to a synergic effect that resulted in a 5-log reduction in . A bioactive paper was then developed by coating a base paper with the antimicrobial formula at different coating weights, followed by infrared drying. The higher coating weight was a crucial factor for the maintenance of phage infectivity throughout the coating and drying processes. Phages incorporated into the alginate matrix remained functional even after high-temperature infrared drying. Taken together, an optimized coating matrix is critical in improving the antimicrobial performance of bioactive paper as well as maintaining phage infectivity during the paper manufacturing process.
在这项研究中,成功开发了一种将李斯特菌噬菌体 P100 和银纳米粒子结合到海藻酸钠基质中的新型抗菌配方。涂有抗菌配方的纸张抑制了单核细胞增生李斯特菌的生长。研究探索了海藻酸钠浓度对银纳米粒子形成的影响、银浓度对噬菌体感染力的影响,以及低海藻酸钠浓度对银和噬菌体持续释放的影响。当海藻酸钠浓度为 1%时,海藻酸钠-银涂层的抗菌活性最高。将噬菌体 P100(10 PFU/mL)添加到海藻酸钠-银涂层中会产生协同作用,导致对数减少 5。然后,通过在不同的涂层重量下将抗菌配方涂覆在基底纸上,再进行红外干燥,开发出一种生物活性纸。较高的涂层重量是在整个涂层和干燥过程中保持噬菌体感染力的关键因素。噬菌体掺入海藻酸钠基质中后,即使经过高温红外干燥仍保持功能。综上所述,优化的涂层基质对于提高生物活性纸的抗菌性能以及在纸张制造过程中保持噬菌体感染力至关重要。