Ibukun Elizabeth Osadare, Abdinasir Abdilahi, Elke Müller, M. Lohde, Celia Diezel, Maximillian Collatz, S. Braun, Bärbel Kieninger, Anja Eichner, W. Schneider-Brachert, T. Wellhöfer, Katrin Frankenfeld, O. Dorneanu, S. Monecke, R. Ehricht
2026.2.2BIOTECHNIQUES
tlooto Summary
An existing DNA microarray platform for the molecular characterization of vancomycin-resistant Enterococcus (VRE) is expanded and optimized by incorporating resistance, virulence, species-specific, and typing markers, providing a practical alternative to conventional typing systems and facilitates early detection of outbreaks and emerging clones.
Abstract
Antimicrobial resistance poses a significant challenge for infection control, requiring the development of accurate and high-throughput diagnostic techniques. We expanded and optimized an existing DNA microarray platform for the molecular characterization of vancomycin-resistant Enterococcus (VRE) by incorporating resistance, virulence, species-specific, and typing markers. The enhanced microarray allows for the simultaneous analysis of up to 96 strains, providing detailed genetic profiles of clinical isolates. VRE strains from Romania and Bavaria, Germany, were analyzed, and the results were compared to those obtained using traditional typing methods, such as multilocus sequence typing (MLST). Next-generation sequencing (NGS) was used in parallel to validate the microarray findings and explore genomic relationships. The microarray revealed considerable genetic diversity and potential epidemiological linkages among isolates. A novel hexadecimal-based nomenclature system was introduced for standardized and scalable strain classification. Comparative analysis demonstrated that the array profiles provided greater discriminatory power and practical resolution than MLST. Receiver operating characteristic (ROC) curve analysis of 187 target genes in 220 isolates gave diagnostic sensitivity and specificity of 100%. This integrated approach offers a cost-effective, rapid, and adaptable global VRE surveillance and infection control tool. It provides a practical alternative to conventional typing systems and facilitates early detection of outbreaks and emerging clones.
Citation format
OSADARE, Ibukun Elizabeth, et al. High-resolution molecular typing of vancomycin-resistant enterococcus faecium from romania and bavaria: Combining enhanced DNA microarray and next generation sequencing. BIOTECHNIQUES, 2026, 78 1-12(1-12): 1–15.