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New Short Tandem Repeat-Based Molecular Typing Method for Pneumocystis jirovecii Reveals Intrahospital Transmission
Maud Gits-Muselli1, Marie-Noelle Peraldi2, Nathalie de Castro3
1Laboratoire de Parasitologie-Mycologie, AP-HP, Groupe Hospitalier Saint-Louis-Lariboisière-Fernand-Widal, Paris, France.
Abstract:
Pneumocystis pneumonia is a severe opportunistic infection in immunocompromised patients caused by the unusual fungus Pneumocystis jirovecii. Transmission is airborne, with both immunocompromised and immunocompetent individuals acting as a reservoir for the fungus. Numerous reports of outbreaks in renal transplant units demonstrate the need for valid genotyping methods to detect transmission of a given genotype. Here, we developed a short tandem repeat (STR)-based molecular typing method for P. jirovecii. We analyzed the P. jirovecii genome and selected six genomic STR markers located on different contigs of the genome. We then tested these markers in 106 P. jirovecii PCR-positive respiratory samples collected between October 2010 and November 2013 from 91 patients with various underlying medical conditions. Unique (one allele per marker) and multiple (more than one allele per marker) genotypes were observed in 34 (32%) and 72 (68%) samples, respectively. A genotype could be assigned to 55 samples (54 patients) and 61 different genotypes were identified in total with a discriminatory power of 0.992. Analysis of the allelic distribution of the six markers and minimum spanning tree analysis of the 61 genotypes identified a specific genotype (Gt21) in our hospital, which may have been transmitted between 10 patients including six renal transplant recipients. Our STR-based molecular typing method is a quick, cheap and reliable approach to genotype Pneumocystis jirovecii in hospital settings and is sensitive enough to detect minor genotypes, thus enabling the study of the transmission and pathophysiology of Pneumocystis pneumonia.
Insights
A new short tandem repeat (STR) method accurately genotypes Pneumocystis jirovecii, identifying transmission of specific strains in immunocompromised patients. This rapid, cost-effective tool aids in understanding Pneumocystis pneumonia outbreaks.
Area of Science:
- Medical Mycology
- Molecular Epidemiology
- Infectious Diseases
Background:
- Pneumocystis pneumonia (PCP) is a severe opportunistic infection caused by Pneumocystis jirovecii.
- Airborne transmission occurs, with both immunocompromised and immunocompetent individuals serving as reservoirs.
- Outbreaks in renal transplant units highlight the need for reliable P. jirovecii genotyping methods.
Purpose of the Study:
- To develop and validate a short tandem repeat (STR)-based molecular typing method for P. jirovecii.
- To assess the method's ability to detect transmission and identify specific genotypes in clinical settings.
Main Methods:
- Selection of six genomic STR markers from the P. jirovecii genome.
- Analysis of 106 P. jirovecii PCR-positive respiratory samples from 91 patients.
- Genotyping using the selected STR markers and minimum spanning tree analysis.
Main Results:
- A high discriminatory power (0.992) was achieved, identifying 61 distinct P. jirovecii genotypes.
- Multiple alleles per marker were observed in 68% of samples.
- A specific genotype (Gt21) was identified, potentially transmitted among 10 patients, including six renal transplant recipients.
Conclusions:
- The developed STR-based method is a quick, cheap, and reliable approach for P. jirovecii genotyping.
- The method is sensitive enough to detect minor genotypes, facilitating studies on PCP transmission and pathophysiology.
- This tool is valuable for hospital settings to monitor and control P. jirovecii outbreaks.
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