对使用新型质粒 pK432-IMP 的产 IMP-8 肠杆菌进行基因组分析。

IF 3.7 3区 医学 Q2 INFECTIOUS DISEASES Journal of global antimicrobial resistance Pub Date : 2024-11-13 DOI:10.1016/j.jgar.2024.11.001
Jiao Feng, Zhiwei Song, Piaopiao Dai, Huimin Chen, Dakang Hu, Lianhua Yu, Jin Zhang, Xinhua Luo
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引用次数: 0

摘要

背景:耐碳青霉烯类肠杆菌(CR-ECC)复合物给临床治疗感染带来了巨大挑战,而荷马肠杆菌是最常见的 CR-ECC 病原菌:方法:采用免疫胶体金技术检测碳青霉烯酶。方法:用免疫胶体金技术检测碳青霉烯酶,用 VITEK2 测定 MIC 值,获得并分析 K432 菌株的基因组序列:该菌株对多种抗生素耐药,包括头孢他啶、哌拉西林/他唑巴坦、阿曲南、亚胺培南、美罗培南、环丙沙星、左氧氟沙星、米诺环素和三甲双胍/磺胺甲噁唑。菌株 K432 的基因组由染色体 cK432(4,863 kb)和三个质粒组成:pK432-IMP(45.8 kb)、pK432-TEM(75.6 kb)和 pK432-NR(4.8 kb)。在 K432 中检测到 6 个耐药基因,包括 cK432 上的 blaACT-7 和 fosA、pK432-IMP 上的 blaIMP-8 和 qnrS1、pK432-TEM 上的 blaSFO-1 和 blaTEM-1。这两种质粒与它们的参考质粒分别具有相似的保守骨架区。然而,这两个质粒中的单个附属区与其参考质粒不同,表明 K432 中发生了新的重组和整合事件:本研究全面了解了 K432 的基因组特征,并发现了一种新型 IMP 传播质粒。有必要对 pK432-IMP 型质粒进行进一步调查和监测。中国有必要对 MDR E. hormaechei 菌株进行常规监测。
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Genomic analysis of IMP-8-producing Enterobacter hormaechei with a novel plasmid pK432-IMP.

Background: Carbapenem-resistant Enterobacter cloacae (CR-ECC) complex has posed significant challenges to the clinical treatment of infections, and Enterobacter hormaechei is the most commonly identified nosocomial pathogen of CR-ECC.

Methods: Carbapenemases were detected by the immunocolloidal gold technique. The MIC values were determined by VITEK2. The genome sequence of strain K432 was obtained and analyzed.

Results: We isolated the IMP-8-producing E. hormaechei strain K432 from a patient's urine specimen in a Chinese Hospital, which exhibited resistance to multiple antibiotics including ceftazidime, piperacillin/tazobactam, aztreonam, imipenem, meropenem, ciprofloxacin, levofloxacin, minocycline and trimethoprim/sulfamethoxazole. The genome of strain K432 was composed of the chromosome cK432 (4,863 kb) and three plasmids: pK432-IMP (45.8 kb), pK432-TEM (75.6 kb) and pK432-NR (4.8 kb). In K432, six drug-resistant genes were detected, including blaACT-7 and fosA on cK432, blaIMP-8 and qnrS1 on pK432-IMP, blaSFO-1 and blaTEM-1 on pK432-TEM. pK432-IMP belonged to a novel incompatibility group, and pK432-TEM was an IncR plasmid. Both of these two plasmids shared similar conserved backbone regions with their reference plasmids, respectively. However, the single accessory regions in these two plasmids were different from their reference plasmids, indicating that new recombination and integration events had occurred in K432.

Conclusions: This study provides a comprehensive understanding of the genomic characterization of K432 and identified a novel plasmid for IMP transmission. Further investigation and surveillance are warranted for pK432-IMP-type plasmid. While routine monitoring of MDR E. hormaechei strains is necessary in China.

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来源期刊
Journal of global antimicrobial resistance
Journal of global antimicrobial resistance INFECTIOUS DISEASES-PHARMACOLOGY & PHARMACY
CiteScore
8.70
自引率
2.20%
发文量
285
审稿时长
34 weeks
期刊介绍: The Journal of Global Antimicrobial Resistance (JGAR) is a quarterly online journal run by an international Editorial Board that focuses on the global spread of antibiotic-resistant microbes. JGAR is a dedicated journal for all professionals working in research, health care, the environment and animal infection control, aiming to track the resistance threat worldwide and provides a single voice devoted to antimicrobial resistance (AMR). Featuring peer-reviewed and up to date research articles, reviews, short notes and hot topics JGAR covers the key topics related to antibacterial, antiviral, antifungal and antiparasitic resistance.
期刊最新文献
Surveillance and Characteristics of Vancomycin-Resistant Enterococcus Isolates in a Chinese Tertiary Hospital in Shenzhen, 2018 to 2024. Genomic analysis of IMP-8-producing Enterobacter hormaechei with a novel plasmid pK432-IMP. Monte Carlo simulation for dosage optimization of the best available therapy for bloodstream infections secondary to carbapenemase-producing Klebsiella pneumoniae in critically ill patients. Refining the gut colonization Zophobas morio larvae model using an oral administration of multidrug-resistant Escherichia coli. From Forgotten Cure to Modern Medicine: The Resurgence of Bacteriophage Therapy.
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