Carba PBP: a novel penicillin-binding protein-based lateral flow assay for rapid phenotypic detection of carbapenemase-producing Enterobacterales

Author:

Lu Zhimin1,Wang Xiaonan1,Ma Licai2,Dou Leina1,Zhao Xiangjun1,Tao Jin1,Wang Yang1ORCID,Wang Shaolin1ORCID,Liu Dejun1,Shen Yingbo1,Yu Xuezhi1,Yu Wenbo1,Jia Liangxi1,Wang Zhanhui1,Shen Jianzhong1ORCID,Wen Kai1ORCID

Affiliation:

1. College of Veterinary Medicine, Beijing Key Laboratory of Detection Technology for Animal-Derived Food Safety, Beijing Laboratory for Food Quality and Safety, College of Veterinary Medicine, China Agricultural University, Beijing, China

2. Beijing WDWK Biotechnology Co. Ltd., Beijing, China

Abstract

ABSTRACT Rapid phenotypic detection assays, including Carba NP and its variants, are widely applied for clinical diagnosis of carbapenemase-producing Enterobacterales (CPE). However, these tests are based on the acidification of the pH indicator during carbapenem hydrolysis, which limits test sensitivity and speed, especially for the detection of CPE producing low-activity carbapenem (e.g., OXA-48 variants). Herein, we developed a novel rapid and sensitive CPE detection method (Carba PBP) that could measure substrate (meropenem) consumption based on penicillin-binding protein (PBP). Meropenem-specific PBP was used to develop a competitive lateral flow assay (LFA) for meropenem identification. For the detection of carbapenemase activity, meropenem concentration was optimized using a checkerboard assay. The performance of Carba PBP was evaluated and compared with that of Carba NP using a panel of 94 clinical strains characterized by whole-genome sequencing and carbapenem susceptibility test. The limit of detection of PBP-based LFA for meropenem identification was 7 ng mL −1 . Using 10 ng mL −1 meropenem as the substrate, Carba PBP and Carba NP could detect 10 ng mL −1 carbapenemase within 25 min and 1,280 ng mL −1 CPE in 2 h, respectively. The sensitivity and specificity were 100% (75/75) and 100% (19/19) for Carba PBP and 85.3% (64/75) and 100% (19/19) for Carba NP, respectively. When compared with Carba NP, Carba PBP showed superior performance in detecting all the tested CPE strains (including OXA-48-like variants) within 25 min and presented two orders of magnitude higher analytical sensitivity, demonstrating potential for clinical diagnosis of CPE. IMPORTANCE This study successfully achieved the goal of carbapenemase activity detection with both high sensitivity and convenience, offering a convenient lateral flow assay for clinical diagnosis of carbapenemase-producing Enterobacterales .

Funder

MOST | National Key Research and Development Program of China

Publisher

American Society for Microbiology

Subject

Microbiology (medical)

Reference29 articles.

1. Centers for Disease Control and Prevention (U.S), National center for emerging Zoonotic and infectious diseases (U.S), National center for HIV/AIDS V H, STD, and TB prevention (U.S.), national center for immunization and respiratory diseases (U.S.). 2013. Antibiotic resistance threats in the United States. Atlanta, Georgia.

2. Epidemiology of Carbapenem-Resistant Enterobacteriaceae Infections: Report from the China CRE Network

3. The difficult-to-control spread of carbapenemase producers among Enterobacteriaceae worldwide

4. Origins and Evolution of Antibiotic Resistance

5. Past and Present Perspectives on β-Lactamases

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