Evaluation of CHROMagar™ B. cepacia agar for the detection of Burkholderia cepacia complex species from sputum samples of patients with cystic fibrosis
Introduction Burkholderia cepacia complex (BCC) are non-fermenting Gram-negative bacteria that can chronically colonize the lungs of people with cystic fibrosis (pwCF), causing a severe and progressive respiratory failure, post-transplant complications and epidemic outbreaks. Therefore, rapid and ac...
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Veröffentlicht in: | European journal of clinical microbiology & infectious diseases 2024-07, Vol.43 (7), p.1349-1353 |
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Zusammenfassung: | Introduction
Burkholderia cepacia
complex (BCC) are non-fermenting Gram-negative bacteria that can chronically colonize the lungs of people with cystic fibrosis (pwCF), causing a severe and progressive respiratory failure, post-transplant complications and epidemic outbreaks. Therefore, rapid and accurate identification of these bacteria is relevant for pwCF, in order to facilitate early eradication and prevent chronic colonization. However, BCCs are often quite difficult to detect on culture media as they have a slow growth rate and can be hidden by other fast-growing microorganisms, including
Pseudomonas aeruginosa
and filamentous fungi.
Material and methods
We evaluated the sensitivity of CHROMagar™
B. cepacia
agar using 11 isolates from a well-characterized BCC collection, using BCA agar (Oxoid, UK) as a gold standard. We also studied 180 clinical sputum samples to calculate positive (PPV) and negative (NPV) predictive values. Furthermore, we used three of the well-characterized BCC isolates to determine the limit of detection (LOD).
Results
Eleven isolates grew on CHROMagar™
B. cepacia
at 37ºC after 48 h. The NPV and PPV of CHROMagar™
B. cepacia
were 100% and 87.5%, respectively. The LOD of CHROMagar™
B. cepacia
was around 1 × 10
3
CFU/ml, requiring a ten-fold dilution lower bacterial load than BCA for BCC detection.
Conclusion
CHROMagar™
B. cepacia
agar proved to have a very good sensitivity and specificity for the detection of clinical BCCs. Moreover, the chromogenic nature of the medium allowed us to clearly differentiate BCC from other Gram-negative species, filamentous fungi and yeasts, thereby facilitating the identification of contaminants. |
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ISSN: | 0934-9723 1435-4373 1435-4373 |
DOI: | 10.1007/s10096-024-04845-4 |