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噬菌体鸡尾酒在控制多药耐药嗜水气单胞菌噬菌体耐药性发展方面具有巨大的治疗潜力。

A phage cocktail in controlling phage resistance development in multidrug resistant Aeromonas hydrophila with great therapeutic potential.

机构信息

College of Animal Science and Technology, Key Laboratory of Animal Production and Product Quality Safety of Ministry of Education, Jilin Agricultural University, Changchun, 130118, China.

College of Animal Science and Technology, Northwest A&F University, Yangling, Shanxi, 712100, PR China.

出版信息

Microb Pathog. 2022 Jan;162:105374. doi: 10.1016/j.micpath.2021.105374. Epub 2021 Dec 28.

Abstract

Aeromonas hydrophila (A. hydrophila) is an opportunistic pathogen of fish-human-livestock, which poses a threat to the development of aquaculture. Lytic phage has long been considered as an effective bactericidal agent. However, the rapid development of phage resistance seriously hinders the continuous application of lytic phages. In our study, a new bacteriophage vB_ AhaP_PZL-Ah8 was isolated from sewage and its characteristics and genome were investigated. Phage vB_ AhaP_PZL-Ah8 has been classified as the member of the Podoviridae family, which exhibited the latent period was about 30 min. As revealed from the genomic sequence analysis, vB_ AhaP_PZL-Ah8 covered a double-stranded genome of 40,855 bp (exhibiting 51.89% G + C content), with encoding 52 predicted open reading frames (ORFs). The results suggested that the combination of vB_ AhaP_PZL-Ah8 and another A. hydrophila phage vB_ AhaP_PZL-Ah1 could improve the therapeutic efficacy both in vitro and in vivo. The resistance mutation frequency of A. hydrophila cells infected with the mixture phage (vB_ AhaP_PZL-Ah8+ vB_ AhaP_PZL-Ah1) was significantly lower than cells treated with single phage (P <0.01). Phage therapy in vivo showed that the survival rate in the mixture phage treatment group was significantly higher than that in single phage treatment group.

摘要

嗜水气单胞菌(Aeromonas hydrophila,A. hydrophila)是一种鱼类-人类-牲畜的机会致病菌,对水产养殖业的发展构成威胁。溶菌噬菌体长期以来被认为是一种有效的杀菌剂。然而,噬菌体耐药性的迅速发展严重阻碍了溶菌噬菌体的持续应用。在我们的研究中,从污水中分离到了一种新的噬菌体 vB_AhaP_PZL-Ah8,并对其特性和基因组进行了研究。噬菌体 vB_AhaP_PZL-Ah8 被归类为 Podoviridae 科的成员,其潜伏期约为 30 分钟。从基因组序列分析结果可知,vB_AhaP_PZL-Ah8 覆盖了一条长为 40855bp 的双链基因组(GC 含量为 51.89%),编码 52 个预测的开放阅读框(ORFs)。结果表明,vB_AhaP_PZL-Ah8 和另一种嗜水气单胞菌噬菌体 vB_AhaP_PZL-Ah1 的组合可以提高体外和体内的治疗效果。混合噬菌体(vB_AhaP_PZL-Ah8+vB_AhaP_PZL-Ah1)感染的嗜水气单胞菌细胞的耐药突变频率明显低于单独噬菌体处理的细胞(P<0.01)。体内噬菌体治疗表明,混合噬菌体治疗组的存活率明显高于单独噬菌体治疗组。

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