Antibiotic resistance and phage sensitivity of topical listeriosis pathogens

P. Shastin, E. Yakimova, A. V. Supova, V. Savinov, E. G. Ezhova, A. Khabarova, A. I. Laishevtsev
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Abstract

Relevance. The problem of listeriosis infection continues to be relevant in epizootology and epidemiology. Resistance to eradication of Listeria spp. due to the ability of the bacterium to adapt and persist in various environments, as well as its intracellular location and weak intracellular diffusion of some antibiotics. Listeriosis refers to saprozoonoses, listeria often seed food products. As a pathogen of animal origin, Listeria is of concern not only from the point of view of public health and biosafety of products, but also as a causative agent of animal disease, leading to serious economic losses. The haphazard use of antibiotics to combat listeriosis has led to a change in the background of drug sensitivity. The aim of the work was to determine the antibiotic resistance of topical listeria strains and their sensitivity to bacteriophages to substantiate the prospects of phage treatments in the fight against listeriosis infection.Methods. The methodology is based on routine bacteriological studies, spot tests and sensitivity determination by the disco-diffusion method with 132 Listeria spp pathogens.Results. Multiple antibiotic resistance to fosfomycin, meropenem, cefotaxime, bacitracin, tylosin, cephalexin, polymyxin-B, lincomycin, benzylpenicillin, cefpirom, cefaclor and other drugs was noted. Listeria phagolysis was established by bacteriophages of our collection Lm1 (97.70%), Lm2 (96.20%). These bacteriophages are deposited in the collection of the Federal Scientific Centre VIEV. Thus, the aim of the study was to expand knowledge about listeriosis bacteriophages and their use as an effective method of prevention, treatment and control of listeriosis infections in the food and livestock industry.
局部李斯特菌病病原体的抗生素耐药性和噬菌体敏感性
相关性。李斯特菌病感染问题仍然与动物生态学和流行病学有关。由于李斯特菌具有在各种环境中适应和存活的能力,以及它在细胞内的位置和某些抗生素在细胞内的弱扩散性,因此对根除李斯特菌具有抗药性。李斯特菌病指的是溶菌酶病,李斯特菌经常播种食品。作为一种动物源病原体,李斯特菌不仅从公共卫生和产品生物安全的角度令人担忧,而且还是动物疾病的致病菌,导致严重的经济损失。为防治李斯特菌病而胡乱使用抗生素导致了药物敏感性背景的变化。这项工作的目的是确定局部李斯特菌株的抗生素耐药性及其对噬菌体的敏感性,以证实噬菌体疗法在抗李斯特菌感染中的前景。该方法以常规细菌学研究为基础,通过132种李斯特菌病原体的斑点试验和迪斯科扩散法测定敏感性。结果发现,李斯特菌对磷霉素、美罗培南、头孢他啶、杆菌肽、泰乐菌素、头孢氨苄、多粘菌素-B、林可霉素、苄青霉素、头孢匹罗、头孢克洛等多种抗生素产生耐药性。我们收集的噬菌体 Lm1(97.70%)和 Lm2(96.20%)能溶解李斯特菌。这些噬菌体保存在 VIEV 联邦科学中心的菌种库中。因此,这项研究的目的是扩大对李斯特菌病噬菌体的了解,并将其用作预防、治疗和控制食品和畜牧业中李斯特菌病感染的有效方法。
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