AN INTEGRATED APPROACH TO SOLVING SALMONELLA ANTIBIOTIC RESISTANCE PROBLEM USING BACTERIOPHAGES AND A NANOSILVER-BASED PREPARATION

Valentina Pleshakova, Nadezhda A. Lescheva, T. Lorengel, Denis Stepanov
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Abstract

The purpose of the study is the scientific substantiation and experimental confirmation of an integrated approach to the use of antimicrobial drugs based on bacteriophages and a silver preparation. The work was carried out in a laboratory and poultry farm in the Omsk Region. Research was carried out in two stages. At the first stage, a microbiological examination of samples of pathological material, feces and ele-ments of technological equipment at a poultry farm was carried out. Identification of isolated cultures of microorganisms to species was established using the method of time-of-flight mass spectrometry with matrix-associated laser desorption/ionization (MALDI-TOF MS) using a VITEK NS mass spectrometer and Biotyper RTS software (Germany). The sensitivity of isolated microorganisms to antibiotics was determined by the disk diffusion method. For experimental studies, we used the anti-salmonella strain Phagum Salmonella enteritidis DS-1, deposited in the collection of the Federal Budgetary Institution of Scientific Research Center for Virology and Biochemistry Vector of Rospotrebnadzor, and the drug Argovit (SPC Vector-Vita LLC). At the second stage of research, three experimental groups of 10 broiler chickens each were formed. The chickens of the first experimental group were fed a suspension of Salmonella bacteriophage DS-1 in a dose of 0.5 ml. In the birds of the second experimental group, Salmonella bacteriophage DS-1 was used together with the drug Argovit in a dose of 0.5 and 1.5 ml, respectively. The third group was administered the antibiotic enrofloxacin, recommended for poultry salmonellosis according to the manufacturer's instructions. Modeling of Salmonella infection in broiler chickens was carried out by infec¬ting 10-day-old chickens with a Salmonella suspension, orally at the rate of 1•109 CFU/ml per 1 head. The conducted studies allow us to state that the Salmonella bacteriophage and the drug Argovit, created on the basis of cluster silver, have well-defined antimicrobial characteristics against bacteria of the genus Salmonella spp. in vitro. In addition, the complex use of drugs in the treatment of experimental salmonellosis in broiler chickens contributed to the optimization of the enteromicrobiome, reducing the level of opportunistic and pathogenic bacteria, in particular Salmonella spp.
利用噬菌体和纳米银制剂解决沙门氏菌抗生素耐药性问题的综合方法
研究的目的是对基于噬菌体和银制剂的综合抗菌药物使用方法进行科学论证和实验确认。这项工作是在鄂木斯克州的实验室和家禽养殖场进行的。研究分两个阶段进行。在第一阶段,对家禽养殖场的病理材料、粪便和技术设备部件样本进行了微生物检查。使用 VITEK NS 质谱仪和 Biotyper RTS 软件(德国),采用基质相关激光解吸/电离(MALDI-TOF MS)飞行时间质谱法,对分离培养的微生物进行物种鉴定。分离出的微生物对抗生素的敏感性是通过盘扩散法测定的。在实验研究中,我们使用了存放在 Rospotrebnadzor 的病毒学和生物化学向量科学研究中心联邦预算机构的抗沙门氏菌菌株 Phagum Salmonella enteritidis DS-1,以及药物 Argovit(SPC Vector-Vita LLC)。在研究的第二阶段,成立了三个实验组,每组 10 只肉鸡。第一实验组的鸡喂食剂量为 0.5 毫升的沙门氏菌噬菌体 DS-1 悬浮液。在第二组实验中,嗜沙门氏菌 DS-1 与药物 Argovit 同时使用,剂量分别为 0.5 毫升和 1.5 毫升。第三组按照生产商的说明,使用推荐用于家禽沙门氏菌病的抗生素恩诺沙星。肉鸡沙门氏菌感染模型的建立是通过给 10 日龄鸡口服沙门氏菌悬浮液来实现的,每头鸡的感染率为 1-109 CFU/ml。研究结果表明,沙门氏菌噬菌体和以银簇为基础制成的药物 Argovit 对沙门氏菌属细菌具有明确的体外抗菌特性。此外,在治疗肉鸡实验性沙门氏菌病时复合使用药物,有助于优化肠道微生物组,减少机会性细菌和致病性细菌,特别是沙门氏菌的数量。
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