Molecular Identification of OXA Carbapenemase-Encoding Genes in Acinetobacter baumannii Isolated from Patients in Critical Care in Egypt.

IF 1.4 4区 医学 Q4 INFECTIOUS DISEASES Surgical infections Pub Date : 2024-11-26 DOI:10.1089/sur.2024.210
Nahla Y Sahlol, Nermin M K Mohamed, Khaled Z El-Baghdady, Iman M A El-Kholy, Gihan M Fahmy, Mai A Sahbal, Hagar L Mowafy
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Abstract

Background: The emergence of carbapenem-resistant Acinetobacter baumannii (CRAB) in hospitals, particularly within critical care units, has garnered substantial global concern. CRAB commonly arises from the degradation by various ß-lactamases. Objective: We aimed to assess OXA-type carbapenemases in clinical isolates of A. baumannii obtained from an Egyptian tertiary care facility. Patients and Methods: This study examined 25 distinct A. baumannii strains collected from various clinical samples of patients in intensive care unit. Bacterial identification was conducted utilizing both traditional methods and the Vitek2 system. Antibiotic resistance profiles were assessed according to the European Committee on Antimicrobial Susceptibility Testing standards using the Vitek2 Compact automated system. Additionally, multiplex real-time polymerase chain reaction was used to identify the presence of blaOXA23, blaOXA24, blaOXA51, and blaOXA58 carbapenemase genes. Colistin susceptibility was assessed utilizing the broth microdilution method. Results: Carbapenem resistance was identified in 100% of the studied isolates. The blaOXA51 gene was detected in all A. baumannii strains. The gene blaOXA23 was identified in 22 strains (88%), whereas blaOXA24 and blaOXA58 were present in 15 strains (60%). All isolates, except one, co-harbored two or more OXA encoding genes. Colistin resistance was detected in 4 of 25 strains (16%). Conclusion: Our findings demonstrate the widespread distribution of CRAB isolates that co-harbor multiple carbapenemase-encoding genes. Molecular epidemiological studies and the surveillance of antibiotic resistance profiles may aid in identifying and tracing the origins of resistant bacteria, thereby limiting their spread.

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埃及重症监护患者中分离出的鲍曼不动杆菌中 OXA 碳青霉烯酶编码基因的分子鉴定。
背景:耐碳青霉烯类鲍曼不动杆菌(CRAB)在医院,尤其是重症监护病房的出现引起了全球的高度关注。CRAB 通常由各种 ß 内酰胺酶降解引起。研究目的我们旨在评估从埃及一家三级医疗机构获得的鲍曼不动杆菌临床分离株中的 OXA 型碳青霉烯酶。患者和方法:本研究检测了从重症监护病房患者的各种临床样本中收集的 25 株不同的鲍曼尼甲菌。利用传统方法和 Vitek2 系统进行了细菌鉴定。根据欧洲抗菌药物敏感性检测委员会的标准,使用 Vitek2 Compact 自动系统对抗生素耐药性概况进行了评估。此外,还使用了多重实时聚合酶链反应来确定是否存在 blaOXA23、blaOXA24、blaOXA51 和 blaOXA58 碳青霉烯酶基因。采用肉汤微稀释法评估了对秋水仙素的敏感性。结果研究发现,100% 的分离菌株对碳青霉烯类耐药。在所有鲍曼不动杆菌菌株中都检测到了 blaOXA51 基因。在 22 株菌株(88%)中发现了 blaOXA23 基因,而在 15 株菌株(60%)中发现了 blaOXA24 和 blaOXA58 基因。除一株菌株外,所有分离株都有两种或两种以上的 OXA 编码基因。25 株菌株中有 4 株(16%)检测到了对考利司汀的耐药性。结论我们的研究结果表明,共同携带多种碳青霉烯酶编码基因的 CRAB 分离物分布广泛。分子流行病学研究和对抗生素耐药性特征的监测有助于识别和追踪耐药细菌的来源,从而限制其传播。
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来源期刊
Surgical infections
Surgical infections INFECTIOUS DISEASES-SURGERY
CiteScore
3.80
自引率
5.00%
发文量
127
审稿时长
6-12 weeks
期刊介绍: Surgical Infections provides comprehensive and authoritative information on the biology, prevention, and management of post-operative infections. Original articles cover the latest advancements, new therapeutic management strategies, and translational research that is being applied to improve clinical outcomes and successfully treat post-operative infections. Surgical Infections coverage includes: -Peritonitis and intra-abdominal infections- Surgical site infections- Pneumonia and other nosocomial infections- Cellular and humoral immunity- Biology of the host response- Organ dysfunction syndromes- Antibiotic use- Resistant and opportunistic pathogens- Epidemiology and prevention- The operating room environment- Diagnostic studies
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