Related Experiment Video
Updated: May 19, 2026

Detection of Live Escherichia coli O157:H7 Cells by PMA-qPCR
Published on: February 1, 2014
Regional outbreak of CTX-M-2 β-lactamase-producing Proteus mirabilis in Japan
Ryuichi Nakano1,2, Akiyo Nakano3, Michiko Abe4
1Department of Microbiology and Immunology, Teikyo University School of Medicine, 2-11-1 Kaga, Itabashi-ku, Tokyo 173-8605, Japan.
Abstract:
Proteus mirabilis is a common cause of urinary tract infection. Wild-type P. mirabilis strains are usually susceptible to penicillins and cephalosporins, but occurrences of P. mirabilis producing extended-spectrum β-lactamases (ESBLs) have been recently reported. Here, we surveyed the prevalence of cefotaxime resistance among P. mirabilis strains at seven different hospitals in Kanagawa Prefecture, Japan, and investigated their molecular epidemiology to explain the mechanism of their spread. The prevalence of cefotaxime resistance among P. mirabilis increased annually, from 10.1 % in 1998 to 23.1 % in 2003, and increased drastically in 2004, exceeding 40 %. We collected 105 consecutive and non-duplicate cefotaxime-resistant P. mirabilis isolates (MIC 16 to >256 µg ml(-1)) from these hospitals from June 2004 to May 2005 and characterized their profile. PCR and sequence analysis revealed that all resistant strains produced exclusively CTX-M-2 β-lactamase. PFGE analysis identified 47 banding patterns with 83 % or greater similarity. These results indicated that a regional outbreak of P. mirabilis producing CTX-M-2 β-lactamase has occurred in Japan and suggest that the epidemic spread occurred within and across hospitals and communities by extended clonal strains. Plasmid analysis revealed that 44.8 % of plasmids harboured by bla(CTX-M-2) isolates had common profiles, encoding ISEcp1, IS26 and Int1, and belonged to incompatibility group T. Spread of the resistant isolates in Japan resulted from dissemination of narrow-host-range plasmids of the IncT group encoding bla(CTX-M-2). These findings indicate the rapidly developing problem of treating the species to prevent dissemination of ESBL producers.
Insights
Extended-spectrum β-lactamase (ESBL) producing Proteus mirabilis strains are spreading in Japan. CTX-M-2 β-lactamase, carried on IncT plasmids, is responsible for cefotaxime resistance, indicating a growing public health concern.
Area of Science:
- Microbiology
- Epidemiology
- Molecular Biology
Background:
- Proteus mirabilis is a common cause of urinary tract infections.
- While typically susceptible to penicillins and cephalosporins, P. mirabilis strains producing extended-spectrum β-lactamases (ESBLs) are emerging.
- Cefotaxime resistance in P. mirabilis is a growing clinical concern.
Purpose of the Study:
- To survey the prevalence of cefotaxime resistance in P. mirabilis in Kanagawa Prefecture, Japan.
- To investigate the molecular epidemiology of cefotaxime-resistant P. mirabilis.
- To elucidate the mechanisms driving the spread of resistance.
Main Methods:
- Prevalence survey of cefotaxime-resistant P. mirabilis isolates from seven hospitals (1998-2004).
- Characterization of 105 resistant isolates (June 2004-May 2005) using PCR, sequence analysis, and pulsed-field gel electrophoresis (PFGE).
- Plasmid analysis to identify genetic elements associated with resistance.
Main Results:
- Cefotaxime resistance in P. mirabilis increased significantly from 10.1% in 1998 to over 40% in 2004.
- All resistant strains exclusively produced CTX-M-2 β-lactamase.
- PFGE revealed clonal spread, with 83% similarity among strains, indicating a regional outbreak.
- Common plasmid profiles in bla(CTX-M-2) isolates, including ISEcp1, IS26, Int1, and belonging to incompatibility group T (IncT).
Conclusions:
- A regional outbreak of P. mirabilis producing CTX-M-2 β-lactamase has occurred in Japan.
- Epidemic spread is driven by extended clonal strains within and across healthcare settings and communities.
- Dissemination is facilitated by narrow-host-range IncT plasmids carrying bla(CTX-M-2), posing a significant challenge for infection control.
Related Concept Videos
Bacterial Gastroenteritis
Clinical Significance of Antibiotic Resistance
Mechanism of Antibiotic Resistance in MRSA
Investigation of Disease Outbreaks
Microbiota of the Urogenital Tract
Bacterial Toxins
