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在改良半固体 Rappaport Vassiliadis 培养基上同时分离沙门氏菌和噬菌体。

Simultaneous Salmonella and bacteriophage isolation on Modified Semisolid Rappaport Vassiliadis media.

机构信息

Food & Health Lab, Institute of Materials Science, University of Valencia, Valencia, 46980, Spain; Centro de Calidad Avícola y Alimentación Animal de la Comunidad Valenciana (CECAV), Castellón, 12539, Spain.

Centro de Calidad Avícola y Alimentación Animal de la Comunidad Valenciana (CECAV), Castellón, 12539, Spain; Departamento de Producción y Sanidad Animal, Salud Pública Veterinaria y Ciencia y Tecnología de los Alimentos, Instituto de Ciencias Biomédicas, Facultad de Veterinaria, Universidad Cardenal Herrera-CEU, CEU Universities, Moncada, 46113, Spain.

出版信息

Poult Sci. 2023 Oct;102(10):102960. doi: 10.1016/j.psj.2023.102960. Epub 2023 Jul 25.

Abstract

Salmonella represents a food safety concern worldwide. Despite the application of National Control Programs (NCP) against Salmonella, regulated by the European Union, every year the European Food Safety Authority reports new cases. On the look for new alternatives to antibiotics, bacteriophages, or phages, rise as a promising alternative to treat multidrug resistance infections. Although they are known to be ubiquitous in the environment, their high specificity to host cells hinders their isolation and usage for phage therapy. The ISO 6579-1:2017 is performed as a reference method in the NCP and uses an unspecific media to enrich the sample the same way most phage isolation protocols do. Later, the protocol uses a more selective media to isolate the Salmonella, Modified Semisolid Rappaport Vassiliadis (MSRV). This paper aims to find out whether, due to the similarity between phage isolation protocols and the ISO 6579-1:2017, this last one could be used as a protocol to also isolate phages against the same bacterium that is being simultaneously isolated. To do so, 2 experiments were performed to assess phage isolation from MSRV media in in-vivo conditions. The results from experiments 1 and 2 proved that the MSRV media was usable for simultaneous phage and pathogen isolation through a single procedure. Additionally, there is a correlation between the antigenic formulae from the bacteria and the phage's host range, seeming to be effective against bacteria with similar antigenic formulae.

摘要

沙门氏菌是全球食品安全关注的一个问题。尽管欧盟实施了国家控制计划(NCP)来对抗沙门氏菌,但每年欧洲食品安全局仍会报告新的病例。在寻找抗生素替代品的过程中,噬菌体或噬菌体作为治疗多药耐药感染的一种有前途的替代方法出现了。尽管它们在环境中无处不在,但由于它们对宿主细胞具有高度特异性,限制了它们的分离和用于噬菌体治疗的用途。ISO 6579-1:2017 是 NCP 中的参考方法,它使用非特异性培养基来富集样品,这与大多数噬菌体分离方案的方式相同。之后,该方案使用更具选择性的培养基来分离沙门氏菌,即改良半固体 Rappaport Vassiliadis 培养基(MSRV)。本文旨在探讨由于噬菌体分离方案与 ISO 6579-1:2017 之间的相似性,后者是否可被用作同时分离同一细菌的噬菌体的方案。为此,进行了两项实验以评估在体内条件下从 MSRV 培养基中分离噬菌体的情况。实验 1 和 2 的结果证明,MSRV 培养基可通过单一程序同时用于噬菌体和病原体的分离。此外,细菌的抗原公式与噬菌体的宿主范围之间存在相关性,似乎对具有相似抗原公式的细菌有效。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c935/10429287/ab647a364047/gr1.jpg

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