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Updated: Feb 11, 2026

A Precise Pathogen Delivery and Recovery System for Murine Models of Secondary Bacterial Pneumonia
Published on: September 21, 2019
Simultaneous Detection of Key Bacterial Pathogens Related to Pneumonia and Meningitis Using Multiplex PCR Coupled
Chi Zhang1, Leshan Xiu1, Yan Xiao1,2
1MOH Key Laboratory of Systems Biology of Pathogens, Institute of Pathogen Biology, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.
Abstract:
Pneumonia and meningitis continue to present an enormous public health burden and pose a major threat to young children. Among the causative organisms of pneumonia and meningitis, bacteria are the most common causes of serious disease and deaths. It is challenging to accurately and rapidly identify these agents. To solve this problem, we developed and validated a 12-plex PCR coupled with matrix-assisted laser desorption ionization-time of flight mass spectrometry (MALDI-TOF MS) method (bacterial pathogen-mass spectrometry, BP-MS) that can be used to simultaneously screen for 11 key bacterial pathogens related to pneumonia and meningitis. Forty-six nasopharyngeal swabs and 12 isolates were used to determine the specificity of the method. The results showed that, using the BP-MS method, we could accurately identify the expected bacteria without cross-reactivity with other pathogens. For the 11 target bacterial pathogens, the analytical sensitivity of the BP-MS method was as low as 10 copies/reaction. To further evaluate the clinical effectiveness of this method, 204 nasopharyngeal swabs from hospitalized children with suspected pneumonia were tested using this method. In total, 81.9% (167/204) of the samples were positive for at least one of the 11 target pathogens. Among the 167 bacteria-positive samples, the rate of multiple infections was 55.7% (93/167), and the most frequent combination was Streptococcus pneumoniae with Haemophilus influenzae, representing 46.2% (43/93) two-pathogen mixed infections. We used real-time PCR and nested PCR to confirm positive results, with identical results obtained for 81.4% (136/167) of the samples. The BP-MS method is a sensitive and specific molecular detection technique in a multiplex format and with high sample throughput. Therefore, it will be a powerful tool for pathogen screening and antibiotic selection at an early stage of disease.
Insights
A new bacterial pathogen-mass spectrometry (BP-MS) method accurately detects 11 key bacteria causing pneumonia and meningitis in children. This sensitive and specific technique aids early pathogen screening and antibiotic selection.
Area of Science:
- Molecular diagnostics
- Microbiology
- Pediatric infectious diseases
Background:
- Pneumonia and meningitis pose significant public health challenges, particularly for young children.
- Bacterial pathogens are primary causes of severe pneumonia and meningitis, but rapid identification remains difficult.
- Accurate and timely diagnosis is crucial for effective treatment and public health management.
Purpose of the Study:
- To develop and validate a novel multiplex PCR coupled with MALDI-TOF MS method for simultaneous detection of 11 key bacterial pathogens.
- To assess the sensitivity, specificity, and clinical effectiveness of the bacterial pathogen-mass spectrometry (BP-MS) method.
Main Methods:
- A 12-plex PCR assay combined with MALDI-TOF MS (BP-MS) was developed for simultaneous screening of 11 bacterial pathogens.
- Method specificity was determined using nasopharyngeal swabs and bacterial isolates.
- Clinical effectiveness was evaluated on nasopharyngeal swabs from children with suspected pneumonia.
Main Results:
- The BP-MS method demonstrated high specificity without cross-reactivity and an analytical sensitivity as low as 10 copies/reaction.
- Clinical evaluation showed 81.9% of samples positive for at least one target pathogen.
- Multiple infections were common (55.7%), with *Streptococcus pneumoniae* and *Haemophilus influenzae* being the most frequent combination.
Conclusions:
- The BP-MS method is a sensitive, specific, and high-throughput molecular technique for multiplex pathogen detection.
- This method offers a powerful tool for early-stage pathogen screening in pediatric pneumonia and meningitis.
- BP-MS can facilitate timely antibiotic selection, improving patient outcomes and disease management.
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