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用于快速检测尿路感染中多种病原体及其抗生素耐药基因的离心盘系统的开发与评估

Development and evaluation of a centrifugal disk system for the rapid detection of multiple pathogens and their antibiotic resistance genes in urinary tract infection.

作者信息

Chen Nianzhen, Li Gen, Si Yuying, Ye Yangqin, Zhang Tong, Chi Dali, Zhang Wenyan, Pan Lifeng, Qu Guoying, Lu Yun, Zong Ming, Sui Guodong, Fan Lieying

机构信息

Department of Clinical Laboratory, Shanghai East Hospital, Tongji University School of Medicine, Shanghai, China.

Shanghai Key Laboratory of Atmospheric Particle Pollution and Prevention (LAP3), Department of Environmental Science and Engineering, Fudan University, Shanghai, China.

出版信息

Front Microbiol. 2023 May 2;14:1157403. doi: 10.3389/fmicb.2023.1157403. eCollection 2023.

Abstract

BACKGROUND

Urinary tract infections (UTIs) are some of the most common bacterial infections in the world. Nevertheless, as uncomplicated UTIs are treated empirically without culturing the urine, adequate knowledge of the resistance pattern of uropathogens is essential. Conventional urine culture and identification take at least 2 days. Here, we developed a platform based on LAMP and centrifugal disk system (LCD) to simultaneously detect the main pathogens and antibiotic resistant genes (ARGs) of urgent concern multidrug-resistant among UTIs.

METHODS

We designed specific primers to detect the target genes above and evaluated their sensitivity and specificity. We also assessed the result of our preload LCD platform on 645 urine specimens with a conventional culturing method and Sanger sequencing.

RESULTS

The results obtained with the 645 clinical samples indicated that the platform has high specificity (0.988-1) and sensitivity (0.904-1) for the studied pathogens and ARGs. Moreover, the kappa value of all pathogens was more than 0.75, revealing an excellent agreement between the LCD and culture method. Compared to phenotypic tests, the LCD platform is a practical and fast detection approach for methicillin-resistant , vancomycin-resistant , carbapenem-resistant , carbapenem-resistant , carbapenem-resistant (kappa value of all >0.75), and non-extended-spectrum β-lactamase producers.

CONCLUSION

We developed a detection platform that has high accuracy and that meets the need for rapid diagnosis, which can be completed within 1.5 h from specimen collection. It may be a powerful tool for evidence-based UTIs diagnosis, which has essential support for the rational use of antibiotics. More high-quality clinical studies are required to prove the effectiveness of our platform.

摘要

背景

尿路感染(UTIs)是世界上最常见的细菌感染之一。然而,由于非复杂性尿路感染通常是经验性治疗,无需对尿液进行培养,因此充分了解尿路病原体的耐药模式至关重要。传统的尿液培养和鉴定至少需要2天。在此,我们开发了一种基于环介导等温扩增(LAMP)和离心盘系统(LCD)的平台,用于同时检测尿路感染中迫切关注的主要病原体和多重耐药抗生素耐药基因(ARGs)。

方法

我们设计了特异性引物来检测上述目标基因,并评估其敏感性和特异性。我们还采用传统培养方法和桑格测序对645份尿液标本在预加载LCD平台上的检测结果进行了评估。

结果

645份临床样本的检测结果表明,该平台对所研究的病原体和ARGs具有高特异性(0.988 - 1)和敏感性(0.904 - 1)。此外,所有病原体的kappa值均大于0.75,表明LCD与培养方法之间具有极好的一致性。与表型检测相比,LCD平台对于耐甲氧西林、耐万古霉素、耐碳青霉烯、耐碳青霉烯、耐碳青霉烯(所有kappa值均>0.75)以及非超广谱β-内酰胺酶产生菌是一种实用且快速的检测方法。

结论

我们开发了一种具有高准确性且满足快速诊断需求的检测平台,从标本采集开始1.5小时内即可完成检测。它可能是基于证据的尿路感染诊断的有力工具,对合理使用抗生素具有重要支持作用。需要更多高质量的临床研究来证明我们平台的有效性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/70a5/10187633/182da5c5c1c2/fmicb-14-1157403-g001.jpg

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