Department of Molecular Biology and Genetics, Faculty of Arts and Sciences, Yildiz Technical University, Istanbul, Turkey.
Department of Molecular Biology and Genetics, Faculty of Arts and Sciences, Yildiz Technical University, Istanbul, Turkey.
J Pharm Sci. 2024 Jun;113(6):1488-1497. doi: 10.1016/j.xphs.2024.01.010. Epub 2024 Jan 26.
Phage therapy has regained value as a potential alternative and a complementary anti-infective approach to antibiotics in the fight against bacterial pathogens. Due to their host specificity, non-pathogenic nature for humans, and low production cost, phages offer an effective opportunity for utilization in healthcare, agriculture, and food preservation. Well-defined storage conditions are essential for commercialization and dissemination of phage usage. For this purpose, in our study, after the isolation and characterization of two different phages, one lytic and the other lysogenic; storage and shelf-life studies of phages were evaluated in a presence of various protectants (glycerol, sodium azide, DMSO with chloroform) and without any protectant during 8-month period at four different temperatures. The short-time stability of the lytic P. syringae phage and lysogenic MRSA phage, which were determined by STEM analysis to belong to the Straboviridae and Siphoviridae families, respectively were also examined for the different temperatures and the pH levels ranging from 1.0 to 14.0. This study revealed the storage-model of phages that exhibit distinct lifecycles, for the first time and provided a theoretical basis for development and application of phages, has yielded valuable findings contributing to understanding of phage biology.
噬菌体疗法作为一种潜在的替代抗生素的抗感染方法,在与细菌病原体的斗争中重新获得了价值。由于其宿主特异性、对人类的非致病性和低成本,噬菌体为医疗保健、农业和食品保存提供了有效的利用机会。明确的储存条件是噬菌体商业化和传播的关键。为此,在我们的研究中,在分离和表征了两种不同的噬菌体(一种裂解性和另一种溶源性)之后,评估了在存在各种保护剂(甘油、叠氮化钠、含氯仿的 DMSO)和没有任何保护剂的情况下,噬菌体在 8 个月的时间内,在四个不同温度下的储存和保质期。通过 STEM 分析分别属于 Straboviridae 和 Siphoviridae 家族的裂解性 P. syringae 噬菌体和溶源性 MRSA 噬菌体的短期稳定性,也在不同温度和 pH 值范围为 1.0 到 14.0 的条件下进行了研究。本研究首次揭示了具有不同生命周期的噬菌体的储存模式,为噬菌体的开发和应用提供了理论基础,为理解噬菌体生物学提供了有价值的发现。