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不同方法检测碳青霉烯酶的方法学评价。

Methodological Evaluation of Carbapenemase Detection by Different Methods.

机构信息

The First Affiliated Hospital of Anhui Medical University, Hefei, China.

Anhui Public Health Clinical Center, Hefei, China.

出版信息

Pol J Microbiol. 2024 Sep 13;73(3):383-394. doi: 10.33073/pjm-2024-034. eCollection 2024 Sep 1.

Abstract

The global proliferation of carbapenemase-producing bacteria (CPB) has garnered significant attention worldwide. Early diagnosis of CPB and accurate identification of carbapenemases are crucial for preventing the spread of CPB and ensuring targeted antibiotic therapy. Therefore, efficient and accurate identification of carbapenemases is paramount in clinically treating diseases associated with CPB. In this study, 58 CPB strains were collected and detected using the DNA endonuclease-targeted CRISPR trans reporter (DETECTR) method, a rapid detection platform based on CRISPR-Cas12a gene editing and isothermal amplification. Additionally, four conventional methods (the APB/EDTA method, PCR, NG-test Carba 5, and GeneXpert Carba-R) were employed and compared against whole genome sequencing (WGS) results, considered the gold standard, to evaluate their efficacy in detecting carbapenemases. Detection by the APB/EDTA method revealed that 29 strains were positive for Class A serine endopeptidases, while 29 strains were positive for Class B metalloenzymes. The classification of these zymotypes was consistent with the sequencing result. All target carbapenemases for KPC were identified with 100% sensitivity using NG-test Carba 5, PCR, DETECTR, and GeneXpert Carba-R. In the case of NDM, both Xpert Carba-R and DETECTR showed a sensitivity of 100%. In contrast, NG-test Carba 5 and PCR had a slightly lower sensitivity of 96.7%, each missing one target carbapenemase. n this study, the APB/EDTA method is capable of identifying the zymotype classification but not the specific resistant genes, while Xpert Carba-R and DETECTR are able to detect all target carbapenemases.

摘要

全球碳青霉烯酶产生菌(CPB)的扩散引起了全球的关注。早期诊断 CPB 并准确识别碳青霉烯酶对于防止 CPB 的传播和确保靶向抗生素治疗至关重要。因此,高效准确地识别碳青霉烯酶对于治疗与 CPB 相关的疾病至关重要。在本研究中,使用 DNA 内切酶靶向 CRISPR 转报告(DETECTR)方法,即基于 CRISPR-Cas12a 基因编辑和等温扩增的快速检测平台,对 58 株 CPB 菌株进行了收集和检测。此外,还采用了 4 种常规方法(APB/EDTA 法、PCR、NG-test Carba 5 和 GeneXpert Carba-R),并与被认为是金标准的全基因组测序(WGS)结果进行了比较,以评估它们在检测碳青霉烯酶方面的效果。APB/EDTA 法检测结果显示,29 株为 A 类丝氨酸内肽酶阳性,29 株为 B 类金属酶阳性。这些酶型的分类与测序结果一致。使用 NG-test Carba 5、PCR、DETECTR 和 GeneXpert Carba-R,对所有目标碳青霉烯酶 KPC 的检测均具有 100%的敏感性。对于 NDM,Xpert Carba-R 和 DETECTR 的敏感性均为 100%。相比之下,NG-test Carba 5 和 PCR 的敏感性略低,均为 96.7%,每种方法各漏掉一个目标碳青霉烯酶。在本研究中,APB/EDTA 方法能够识别酶型分类,但无法识别具体的耐药基因,而 Xpert Carba-R 和 DETECTR 能够检测到所有目标碳青霉烯酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c031/11395418/b9bf1735e678/j_pjm-2024-034_fig_001.jpg

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