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Identification of Mycobacterium Species by DNA Microarray Chip Method
Published on: June 24, 2025
DNA microarray-based detection and identification of fungal pathogens in clinical samples from neutropenic patients
Birgit Spiess1, Wolfgang Seifarth, Margit Hummel
1III Medizinische Universitätsklinik, Medizinische Fakultät Mannheim der Universität Heidelberg, Theodor-Kutzer-Ufer 1-3, D-68167, Mannheim, Germany.
Abstract:
The increasing incidence of invasive fungal infections (IFI) in immunocompromised patients emphasizes the need to improve diagnostic tools. We established a DNA microarray to detect and identify DNA from 14 fungal pathogens (Aspergillus fumigatus, Aspergillus flavus, Aspergillus terreus, Candida albicans, Candida dubliniensis, Candida glabrata, Candida lusitaniae, Candida tropicalis, Fusarium oxysporum, Fusarium solani, Mucor racemosus, Rhizopus microsporus, Scedosporium prolificans, and Trichosporon asahii) in blood, bronchoalveolar lavage, and tissue samples from high-risk patients. The assay combines multiplex PCR and consecutive DNA microarray hybridization. PCR primers and capture probes were derived from unique sequences of the 18S, 5.8S, and internal transcribed spacer 1 regions of the fungal rRNA genes. Hybridization with genomic DNA of fungal species resulted in species-specific hybridization patterns. By testing clinical samples from 46 neutropenic patients with proven, probable, or possible IFI or without IFI, we detected A. flavus, A. fumigatus, C. albicans, C. dubliniensis, C. glabrata, F. oxysporum, F. solani, R. microsporus, S. prolificans, and T. asahii. For 22 of 22 patients (5 without IFI and 17 with possible IFI), negative diagnostic results corresponded with negative microarray data. For 11 patients with proven (n = 4), probable (n = 2), and possible IFI (n = 5), data for results positive by microarray were validated by other diagnostic findings. For 11 of 11 patients with possible IFI, the microarray results provided additional information. For two patients with proven and probable invasive aspergillosis, respectively, microarray results were negative. The assay detected genomic DNA from 14 fungal pathogens from the clinical samples, pointing to a high significance for improving the diagnosis of IFI.
Insights
A new DNA microarray assay aids in diagnosing invasive fungal infections (IFI) by detecting DNA from 14 common fungal pathogens in patient samples. This tool offers significant potential for improving early and accurate IFI diagnosis in high-risk individuals.
Area of Science:
- Medical Microbiology
- Molecular Diagnostics
- Infectious Diseases
Background:
- Invasive fungal infections (IFI) pose a significant threat to immunocompromised patients.
- Current diagnostic methods for IFI often lack the speed and specificity required for timely intervention.
Purpose of the Study:
- To develop and evaluate a novel DNA microarray assay for the simultaneous detection and identification of 14 key fungal pathogens.
- To assess the utility of this assay in clinical samples from high-risk patients.
Main Methods:
- Development of a multiplex PCR combined with DNA microarray hybridization assay.
- Design of primers and probes targeting conserved fungal rRNA gene regions (18S, 5.8S, ITS1).
- Testing of the assay on clinical samples (blood, BAL, tissue) from neutropenic patients.
Main Results:
- The assay successfully detected DNA from multiple fungal species, including Aspergillus, Candida, Fusarium, Rhizopus, Scedosporium, and Trichosporon.
- Negative microarray results correlated well with the absence of IFI in patients.
- Positive microarray findings were validated by other diagnostic methods, and the assay provided additional diagnostic information in several cases.
- The assay demonstrated high significance in improving the diagnosis of IFI.
Conclusions:
- The developed DNA microarray assay is a sensitive and specific tool for the rapid identification of a broad range of fungal pathogens.
- This diagnostic approach holds considerable promise for enhancing the management of invasive fungal infections in immunocompromised populations.
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