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Updated: Jun 20, 2026

Biosensor for Detection of Antibiotic Resistant Staphylococcus Bacteria
Published on: May 8, 2013
A Rapid Antimicrobial Resistance Diagnostic Platform for Staphylococcus aureus Using Recombinase Polymerase
Chuangxin Lin1,2, Yongmei Zeng1, Zhihong Zhu3
1Department of Pediatrics, Second Affiliated Hospital of Shantou University Medical College, Shantou, Guangdong, China.
Abstract:
Antimicrobial resistance (AMR) has posed a global threat to public health. The Staphylococcus aureus strains have especially developed AMR to practically all antimicrobial medications. There is an unmet need for rapid and accurate detection of the S. aureus AMR. In this study, we developed two versions of recombinase polymerase amplification (RPA), the fluorescent signal monitoring and lateral flow dipstick, for detecting the clinically relevant AMR genes retained by S. aureus isolates and simultaneously identifying such isolates at the species level. The sensitivity and specificity were validated with clinical samples. Our results showed that this RPA tool was able to detect antibiotic resistance for all the 54 collected S. aureus isolates with high sensitivity, specificity, and accuracy (all higher than 92%). Moreover, results of the RPA tool are 100% consistent with that of PCR. In sum, we successfully developed a rapid and accurate AMR diagnostic platform for S. aureus. The RPA might be used as an effective diagnostic test in clinical microbiology laboratories to improve the design and application of antibiotic therapy. IMPORTANCE Staphylococcus aureus is a species of Staphylococcus and belongs to Gram-positive. Meanwhile, S. aureus remains one of the most common nosocomial and community-acquired infections, causing blood flow, skin, soft tissue, and lower respiratory tract infections. The identification of the particular nuc gene and the other eight genes of drug-resistant S. aureus can reliably and quickly diagnose the illness, allowing doctors to prescribe treatment regimens sooner. The detection target in this work is a particular gene of S. aureus, and a POCT is built to simultaneously recognize S. aureus and analyze genes representing four common antibiotic families. We developed and assessed a rapid and on-site diagnostic platform for the specific and sensitive detection of S. aureus. This method allows the determination of S. aureus infection and 10 different AMR genes representing four different families of antibiotics within 40 min. It was easily adaptable in low-resource circumstances and professional-lacking circumstances. It should be supported in overcoming the continuous difficulty of drug-resistant S. aureus infections, which is a shortage of diagnostic tools that can swiftly detect infectious bacteria and numerous antibiotic resistance indicators.
Insights
A new diagnostic tool using recombinase polymerase amplification (RPA) rapidly detects antimicrobial resistance (AMR) in Staphylococcus aureus. This accurate and sensitive method aids in timely antibiotic therapy and can be used in diverse settings.
Area of Science:
- Microbiology and Infectious Diseases
- Molecular Diagnostics
- Antimicrobial Resistance
Background:
- Antimicrobial resistance (AMR) in Staphylococcus aureus is a significant global public health threat.
- There is a critical need for rapid and accurate diagnostic methods to detect S. aureus and its AMR genes.
- S. aureus causes common nosocomial and community-acquired infections, necessitating swift diagnosis and treatment.
Purpose of the Study:
- To develop and validate a rapid diagnostic platform for simultaneous detection of S. aureus and its clinically relevant AMR genes.
- To assess the performance of recombinase polymerase amplification (RPA) for identifying S. aureus and multiple AMR markers.
- To provide an accessible diagnostic tool for low-resource and professional-lacking settings.
Main Methods:
- Development of two RPA-based detection versions: fluorescent signal monitoring and lateral flow dipstick.
- Detection of the specific S. aureus nuc gene and eight other AMR genes representing four antibiotic families.
- Validation of sensitivity, specificity, and accuracy using clinical samples and comparison with PCR.
Main Results:
- The RPA tool achieved high sensitivity, specificity, and accuracy (all >92%) in detecting AMR for all 54 S. aureus isolates.
- RPA results demonstrated 100% consistency with conventional PCR methods.
- The platform identified S. aureus and 10 different AMR genes within 40 minutes.
Conclusions:
- A rapid, accurate, and sensitive diagnostic platform for S. aureus and its AMR has been successfully developed using RPA.
- The RPA method is a viable and effective tool for clinical microbiology laboratories to guide antibiotic therapy.
- This adaptable diagnostic platform can address the shortage of rapid detection tools for drug-resistant S. aureus infections.
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