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Updated: Mar 12, 2026

Isolation and Identification of Waterborne Antibiotic-Resistant Bacteria and Molecular Characterization of their Antibiotic Resistance Genes
Published on: March 3, 2023
Antibiotic resistance among Ureaplasma spp. isolates: cause for concern?
1Department of Biomedical Sciences, Cardiff Metropolitan University, Western Avenue, Cardiff CF5 2YB, UK mbeeton@cardiffmet.ac.uk.
Abstract:
There is growing global concern regarding the rise of antibiotic-resistant organisms. Many of these reports have focused on various Gram-positive and Gram-negative pathogens, with little attention to the genus Ureaplasma. Ureaplasma spp. are associated with numerous infectious diseases affecting pregnant women, neonates and the immunocompromised. Treatment options are extremely limited due to high levels of intrinsic resistance resulting from the unique physiology of these organisms and further restricted in cases of the developing fetus or neonate, often limiting therapeutic options to predominantly macrolides or rarely fluoroquinolones. The increasing presence of macrolide- and fluoroquinolone-resistant strains among neonatal infections may result in pan-drug resistance and potentially untreatable conditions. Here, we review the requirements for accurate measurement of antimicrobial susceptibility, provide a comprehensive review of the antimicrobial resistance (AMR) for Ureaplasma species in the literature and contextualize these results relative to some investigators' reliance on commercial kits that are not CLSI compliant when determining AMR. The dramatic variation in the resistance patterns and impact of high levels of AMR amongst neonatal populations suggests the need for continued surveillance. Commercial kits represent an excellent tool for initial antibiotic susceptibility determination and screening. However, AMR reporting must utilize internationally standardized methods, as high-titre samples, or Mycoplasma hominis-contaminated samples routinely give false AMR results. Furthermore, there is a requirement for future reports to determine the underlying AMR mechanisms and determine whether expanding AMR is due to spontaneous mutation, transmission of resistance genes on mobile elements or selection and expansion of resistant clones.
Insights
Antibiotic resistance in Ureaplasma is a growing concern, especially in neonates. Standardized methods are crucial for accurate susceptibility testing to combat potentially untreatable infections.
Area of Science:
- Microbiology
- Infectious Diseases
- Antimicrobial Resistance
Background:
- Global concern over rising antibiotic-resistant organisms often overlooks Ureaplasma species.
- Ureaplasma spp. infections affect vulnerable populations like neonates and the immunocompromised.
- Limited treatment options exist due to intrinsic resistance and developing resistance to macrolides and fluoroquinolones.
Purpose of the Study:
- To review accurate antimicrobial susceptibility measurement requirements for Ureaplasma.
- To comprehensively review existing literature on Ureaplasma antimicrobial resistance (AMR).
- To contextualize AMR findings in relation to non-CLSI compliant commercial kit usage.
Main Methods:
- Literature review of Ureaplasma antimicrobial resistance (AMR).
- Analysis of factors affecting accurate antimicrobial susceptibility testing.
- Comparison of standardized methods versus commercial kits for AMR determination.
Main Results:
- Significant variation in AMR patterns observed across neonatal populations.
- Non-CLSI compliant commercial kits can yield false AMR results.
- High levels of AMR in Ureaplasma pose a threat of untreatable infections.
Conclusions:
- Continued surveillance of Ureaplasma AMR is necessary.
- Standardized methods are essential for reliable AMR reporting.
- Future research should investigate AMR mechanisms and origins in Ureaplasma.
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