Zakrzewski Arkadiusz Józef, Chajęcka-Wierzchowska Wioleta, Zadernowska Anna
Department of Industrial and Food Microbiology, University of Warmia and Mazury, Plac Cieszyński 1, 10-726 Olsztyn, Poland.
Foods. 2022 Jul 29;11(15):2270. doi: 10.3390/foods11152270.
sp. and sp. belong to the Tribe ; although they are not considered pathogenic bacteria, there are many documented cases of diseases caused by these microorganisms. The aim of this study was to determine the antibiotic resistance profiles of strains belonging to the genus and isolated from fish and shrimps. Phenotypic antibiotic resistance was determined using the semi-automatic Vitek 2 system (bioMérieux, Marcy-l'Étoile, France), while the presence of the extended-spectrum beta-lactamase, AmpC beta-lactamases, carbapenemases and Metallo-β-Lactamase producing strains were determined using the MIC Test Strip (Liofilchem, Roseto degli Abbruzzi, Italy). As a result of the conducted research, it was observed that a vast number of sp. strains were resistant to cefalexin (84.61%), while sp. Strains to cefuroxime (79.41%) and nitrofurantoin (85.29%). In addition, it was observed that of all strains, only one had an ability to produce enzymes typical for β-lactamase-producing Enterobacterales. Although the strains of sp. and sp. isolated from fish and shrimp are not characterized by frequent resistance to antibiotics, taking into account the constantly growing number of antibiotic-resistant strains, this may be a problem in the future, mainly due to gene transfer through mobile genetic elements and the acquisition of resistance expressed phenotypically through contact with stress factors. Therefore, studies monitoring the antibiotic resistance profile of these species should be carried out on a regular basis.
某菌属和另一菌属属于该菌族;尽管它们不被视为病原菌,但有许多由这些微生物引起疾病的记录案例。本研究的目的是确定从鱼类和虾类中分离出的某菌属和另一菌属菌株的抗生素耐药谱。使用半自动Vitek 2系统(法国生物梅里埃公司,马西 - 埃图瓦勒)测定表型抗生素耐药性,同时使用MIC测试条(意大利利奥菲化学公司,罗塞托 - 德利亚布鲁齐)测定产超广谱β - 内酰胺酶、AmpCβ - 内酰胺酶、碳青霉烯酶和金属β - 内酰胺酶菌株的存在情况。作为所进行研究的结果,观察到大量某菌属菌株对头孢氨苄耐药(84.61%),而另一菌属菌株对头孢呋辛(79.41%)和呋喃妥因(85.29%)耐药。此外,观察到在所有菌株中,只有一株具有产β - 内酰胺酶肠杆菌科典型酶的能力。虽然从鱼类和虾类中分离出的某菌属和另一菌属菌株的特点不是频繁对抗生素耐药,但考虑到抗生素耐药菌株数量不断增加,这在未来可能会成为一个问题,主要是由于通过移动遗传元件进行基因转移以及通过与应激因素接触表型表达获得耐药性。因此,应定期开展监测这些物种抗生素耐药谱的研究。