尼日利亚东南部产大肠杆菌CTX-M和TEM广谱β -内酰胺酶非临床来源的鱼养殖和鱼部位

Jennifer Onyekachi Adibe-Nwafor, I. Peter, Kenneth Adibe Nwafor, C. Iroha, A. L. Onuora, C. I. Edemekong, F. Ibiam, I. Iroha
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引用次数: 1

摘要

背景和目的:鱼类养殖中抗菌剂的使用产生了一种选择压力,导致水生环境中产生广谱β -内酰胺酶的大肠杆菌蓄水池。本研究筛选了尼日利亚东南部产大肠杆菌CTX-M和TEM扩展谱β -内酰胺酶(ESBL)的鱼养殖和鱼部位作为非临床来源。方法:从Abakaliki大都市区的A、C、F和G鱼养殖场共收集了60个鱼部位[鱼鳃、身体部位和肠道样本]。使用标准微生物学技术对样品进行细菌学分析,以进行分离和鉴定。采用双盘扩散技术对大肠杆菌分离株进行了ESBL酶的表型检测。用特异性引物聚合酶链反应测定TEM和CTX-M基因的存在。结果:大肠杆菌和产广谱β -内酰胺酶大肠杆菌的总发生率分别为27例(45.0%)和17例(28.3%)。大肠杆菌和ESBL-E的发生率比较,差异无统计学意义。不同样品间大肠杆菌含量差异P>0.05。TEM和CTX-M基因的检出率分别为80%和100%。结论:本研究报告了ESBL基因在鱼养殖和鱼体中存在,对了解这些常见病原菌的抗性机制具有重要意义,这些病原菌在大多数鱼养殖区都是特有的。强烈建议对鱼类养殖活动中使用的抗菌剂制定严格的规则并进行监测/监测,同时对农场主/饲养者进行有关良好卫生习惯各方面的食品安全培训。
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Pisciculture and Fish Parts as Non-clinical Source of CTX-M and TEM Extended Spectrum Beta-lactamases Producing Escherichia coli in Southeastern Nigeria
Background and Objectives: Antimicrobial agent use in pisciculture exerts a selective pressure, resulting in a reservoirs of extended spectrum beta-lactamase producing Escherichia coli in the aquatic environment.  Here we screened pisciculture and fish parts as non-clinical source of CTX-M and TEM Extended Spectrum Beta-lactamases (ESBL) producing Escherichia coli in Southeastern Nigeria Methodology: A total of sixty fish parts [fish gills, body part and intestinal swab samples] were collected from pisciculture farm A, C, F and G within Abakaliki metropolis. The samples were bacteriologically analyzed using standard microbiological techniques for isolation and identification. ESBL enzymes were phenotypically detected in E. coli, isolates using the double disk diffusion technique. The presence of TEM and CTX-M genes was determined by polymerase chain reaction using specific primers. Results: Escherichia coli and Extended spectrum beta-lactamase producing Escherichia coli accounted for overall occurrence rate of 27(45.0 %) and 17(28.3 %) respectively. There was no statistically significant difference in the occurrence of Escherichia coli and ESBL-E. coli among the different samples P>0.05. The presence of TEM and CTX-M gene 80 % and 100 % respectively were confirmed among the isolates. Conclusion: Our findings reports the presence of ESBL gene in pisciculture and fish parts and it is important in understanding the mechanism of resistance operating in these common pathogens, which are also endemic in most pisciculture area. Strict rules and monitoring/surveillance of antimicrobial agent used in pisciculture activities combined with food safety training of farmer owners/breeders on various aspects of good hygiene practices are strongly recommended.
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