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Isolation of Hv-CRKP with co-production of three carbapenemases (
Ping Li1,2,3, Wan-Ying Luo1,2, Tian-Xin Xiang4
1Department of Pulmonary and Critical Care Medicine, The First Affiliated Hospital of Nanchang University, Nanchang University, Nanchang, China.
Background:
The worldwide dissemination of K. pneumoniae isolates is a significant public health concern, as these organisms possess a unique capacity to acquire genetic elements encoding both resistance and hypervirulence. This study aims to investigate the epidemiological, resistance, and virulence characteristics of K. pneumoniae isolates that carry both virulence plasmids and blaOXA-48-like genes in a tertiary hospital in China.
Methods:
A total of 217 clinical isolates of carbapenem-resistant K. pneumoniae (CRKP) were collected between April 2020 and March 2022. The antimicrobial susceptibility test was conducted to evaluate the drug resistance profile. All isolates were screened for the presence of genes encoding carbapenemases (blaKPC, blaNDM, blaIMP, blaVIM, and blaOXA-48-like), ESBLs genes (blaCTX-M, blaSHV, blaTEM), and virulence plasmid pLVPK-borne genes (rmpA, rmpA2, iucA, iroB, and peg344) using polymerase chain reaction (PCR) amplification. Clonal lineages were assigned using multilocus sequence typing (MLST) and pulsed-field gel electrophoresis (PFGE). The plasmid incompatibility groups were identified using PCR-based replicon typing (PBRT). The transferability of carbapenemase-encoding plasmids and pLVPK-like virulence plasmids was assessed via conjugation. The plasmid location of rmpA2 was determined using S1-Pulsed Field Gel Electrophoresis (S1-PFGE) and southern blotting hybridization. The virulence potential of the isolates was assessed using the string test, capsular serotyping, serum killing assay and a Galleria mellonella larval infection model.
Results:
Of the 217 CRKP clinical isolates collected, 23% were identified as carrying blaOXA-48-like genes. All blaOXA-48-like isolates exhibited resistance to commonly used clinical antimicrobial agents, except for ceftazidime/avibactam, colistin, tigecycline, trimethoprim-sulfamethOXAzole, polymyxin B, and nitrofurantoin. The main common OXA-48-like carbapenemase enzymes were found to be blaOXA-181 and blaOXA-232. MLST and PFGE fingerprinting analysis revealed clonal transmission and plasmid transmission. OXA-48-like producing CRKP isolates mainly clustered in K64 ST11 and K47 ST15. Results of the string Test, serum killing assay (in vitro) and Galleria mellonella infection model (in vivo) indicated hypervirulence. PBRT showed that the blaOXA-181 and blaOXA-232 producing hypervirulent carbapenem-resistant Klebsiella pneumoniae (Hv-CRKP) were mainly carried on ColE-type, IncF, and IncX3. Eight clinical isolates of hv-CRKP were identified as carrying three carbapenem-resistant genes (blaKPC, blaOXA-181 or OXA-232, and blaNDM-1). Moreover, Southern blotting hybridization revealed that all eight isolates had a pLVPK-like virulent plasmid (138.9-216.9 kb) with an uneven number and size of plasmid.
Conclusion:
In our investigation, we have observed the emergence of hv-CRKP carrying blaOXA-48-like genes, which identified two genetic relationships: clonal transmission and plasmid transmission. PBRT analysis showed that these genes were mainly carried on ColE-type, IncF, and IncX3 plasmids. These isolates have been shown to be hypervirulent in vitro and in vivo. Additionally, eight clinical isolates of hv-CRKP were identified as carrying three carbapenem-resistant genes (blaKPC, blaOXA-181 or OXA-232, and blaNDM-1) and carrying a pLVPK-like virulent plasmid. Hence, our findings highlight the need for further investigation and active surveillance of hypervirulent OXA-48-like producing Hv-CRKP isolates to control their transmission.
Insights
Hypervirulent carbapenem-resistant Klebsiella pneumoniae (Hv-CRKP) carrying blaOXA-48-like genes have emerged, exhibiting both resistance and virulence. These strains show clonal and plasmid transmission, necessitating active surveillance to control their spread.
Area of Science:
- Microbiology
- Genetics
- Public Health
Background:
- Klebsiella pneumoniae (K. pneumoniae) isolates are a global health concern due to their ability to acquire resistance and hypervirulence genes.
- This study focuses on K. pneumoniae isolates possessing both virulence plasmids and blaOXA-48-like genes.
Purpose of the Study:
- To investigate the epidemiological, resistance, and virulence characteristics of K. pneumoniae isolates carrying virulence plasmids and blaOXA-48-like genes.
- To understand the genetic relationships and transmission patterns of these specific K. pneumoniae strains.
Main Methods:
- Collected 217 carbapenem-resistant K. pneumoniae (CRKP) clinical isolates.
- Utilized antimicrobial susceptibility testing, PCR for resistance and virulence genes, MLST, PFGE, PBRT, conjugation assays, and Galleria mellonella infection models.
- Assessed plasmid location and transferability using S1-PFGE and southern blotting hybridization.
Main Results:
- 23% of CRKP isolates carried blaOXA-48-like genes (blaOXA-181 and blaOXA-232), exhibiting resistance to most antimicrobials except ceftazidime/avibactam, colistin, tigecycline, and others.
- MLST and PFGE revealed clonal and plasmid transmission, with isolates clustering in K64 ST11 and K47 ST15.
- In vitro and in vivo models demonstrated hypervirulence, with blaOXA-48-like genes primarily on ColE-type, IncF, and IncX3 plasmids. Eight isolates carried three carbapenem-resistant genes and a pLVPK-like virulent plasmid.
Conclusions:
- Emergence of hypervirulent CRKP (Hv-CRKP) carrying blaOXA-48-like genes, characterized by clonal and plasmid transmission.
- These genes are predominantly located on ColE-type, IncF, and IncX3 plasmids, contributing to hypervirulence.
- Highlights the need for enhanced surveillance of Hv-CRKP isolates producing blaOXA-48-like genes to prevent further transmission.
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