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首页> 外文期刊>African Journal of Biotechnology >A fast method for large-scale isolation of phages from hospital sewage using clinical drug-resistant Escherichia coli
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A fast method for large-scale isolation of phages from hospital sewage using clinical drug-resistant Escherichia coli

机译:使用临床抗药性大肠杆菌从医院污水中大规模分离噬菌体的快速方法

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With the continued emergence of multi-drug resistant genes and drug-resistant bacteria, the functions and applications of traditional antibiotics are challenged. Thus, products that can be combined with existing antibiotics or replace them are of great interest to the research and medical communities. As a natural parasite of bacteria, phages have been reconsidered for use in treating super or drug-resistant bacterial infections. The main aim of this study was to isolate new phages from hospital sewage, especially those with broad-spectrum infectivity for the establishment of anEscherichia?phage library. According to differences in their infection spectrum, bacteriophages were identified using a plaque method. In total, 18?E. coli?phages were isolated from hospital sewage. The characteristics of the wide host spectrum?E. colibacteriophage E12P1 were further studied. Electronic micrographs indicated that phage E12P1 had a cubic symmetry and a long tail. The growth curve suggested the incubation time was 30 min, the burst phase was 20 min, and the burst size was 43. This plaque-forming method could be adopted to isolate?E. coli?phage easily, rapidly and in large quantities. Among the 18 isolated?E. coli?phages, 10 of them had a broad host range in?E. coli?and warrant further study.
机译:随着多重耐药基因和耐药细菌的不断涌现,传统抗生素的功能和应用受到了挑战。因此,可以与现有抗生素结合或替代它们的产品引起了研究和医学界的极大兴趣。作为细菌的天然寄生虫,已经考虑将噬菌体用于治疗超级或耐药细菌感染。这项研究的主要目的是从医院污水中分离出新的噬菌体,特别是那些具有广谱感染性的噬菌体,以建立大肠杆菌噬菌体文库。根据感染谱的差异,使用噬菌斑方法鉴定噬菌体。总共18?E。从医院污水中分离出大肠杆菌噬菌体。主机频谱范围广的特征?进一步研究了噬菌体E12P1。电子显微照片表明,噬菌体E12P1具有立方对称性和长尾巴。生长曲线表明,孵育时间为30分钟,爆发阶段为20分钟,爆发大小为43。这种噬菌斑形成方法可用于分离ΔE。大肠杆菌噬菌体容易,快速且大量。在孤立的18个中?大肠杆菌噬菌体,其中有10个具有广泛的宿主范围。大肠杆菌并需要进一步研究。

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