印度尼西亚泗水传统市场肉鸡小肠中产广谱β-内酰胺酶大肠埃希氏菌基因型的鉴定

Reichan Lisa Az Zahra, Sasqia Khairunnisa Aulia Prayudi, T. W. Suprayogi, D. Wardhana, M. Effendi, A. Khairullah, S. Kurniawan
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摘要

背景:如果之前屠宰的鸡受到病原体污染或鸡笼卫生条件不佳,鸡体内可能会感染大肠杆菌。肠杆菌科革兰氏阴性菌对抗生素的耐药机制之一是产生广谱β-内酰胺酶(ESBL)。需要进行研究以确定从泗水传统市场收集的肉鸡样本中哪些大肠杆菌基因型会产生 ESBL。研究方法本研究共使用了 100 份从肉鸡身上采集的小肠样本。初步处理后,将所有样本分别注入伊红亚甲基蓝琼脂(EMBA),并使用吲哚、甲基红、Voges Proskauer 和柠檬酸盐(IMViC)测试来确认结果。根据柯比-鲍尔法进行的抗生素敏感性检测称为双盘协同试验(DDST),用于分析对阿曲南有耐药性和耐多药(MDR)的分离物。对经 ESBL 验证的分离株进行了 PCR 测试,以检测 TEM 和 CTX-M 基因。检测结果大肠杆菌抗生素耐药性检测结果显示,14 个分离物被证实具有多重耐药性(MDR),其中 6 个分离物是产生 ESBL 的大肠杆菌。经过基因分型分析,发现 4 个分离物携带 TEM 和 CTX-M 基因。了解使用抗生素作为饲料添加剂和生长促进剂的危害,对于养殖户解决鸡肉中产生 ESBL 的大肠杆菌问题至关重要。此外,政府需要采取行动,对市场上随处可见的抗生素的使用进行监测并实施更严格的控制。
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Identification of the Genotypes of Extended-spectrum β-lactamase Producing Escherichia coli in the Small Intestine of Broiler Chickens at a Traditional Market in Surabaya, Indonesia
Background: Escherichia coli infection from inside the chicken’s body may be present if the previously slaughtered chicken was contaminated with pathogens or the cage’s hygiene is inadequate. One of the resistance mechanisms against antibiotics used by Gram-negative bacteria of the Enterobacteriaceae family is the production of extended-spectrum β-lactamases (ESBL). Research is required to determine which E. coli genotypes in broiler chicken samples collected from Surabaya’s traditional marketplaces produce ESBL. Methods: A total of 100 small intestine samples collected from broiler chickens were used in this study. After initial processing all the samples were separately injected into Eosin Methylene Blue Agar (EMBA) and Indole, Methyl Red, Voges Proskauer and Citrate (IMViC) tests were used to confirm the results. A test for antibiotic sensitivity based on the Kirby-Bauer method called the Double Disk Synergy Test (DDST) was used to analyze isolates that showed resistance to aztreonam and multidrug resistance (MDR). PCR testing was performed on ESBL-verified isolates to detect the TEM and CTX-M genes. Result: The results of the test for E. coli antibiotic resistance revealed that 14 isolates were proven to be multidrug-resistant (MDR) and six of them were found to be E. coli that produced ESBL. Four isolates were found to carry the TEM and CTX-M genes after genotyping analysis. Understanding the dangers of using antibiotics as feed additives and growth promoters is crucial for farmers to address the problem of ESBL-producing E. coli bacteria in chickens. Furthermore, the government needs to take action to monitor and enforce stronger controls on the use of antibiotics, which are even readily available on the market.
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