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Mixed infections of Mycobacterium tuberculosis, defined as the coexistence of multiple genetically distinct strains within a single host, have been associated with unfavorable treatment outcomes. Different methods have been used to detect mixed infections, but their performances have not been carefully evaluated. To compare the sensitivity of whole-genome sequencing (WGS) and variable-number tandem repeats (VNTR) typing to detect mixed infections, we prepared 10 artificial samples composed of DNA mixtures from two strains in different proportions and retrospectively collected 1,084 clinical isolates. The limit of detection (LOD) for the presence of a minor strain was 5% for both WGS and VNTR typing. The overall clinical detection rate of mixed infections was 3.7% (40/1,084) for the two methods combined, WGS identified 37/1,084 (3.4%), and VNTR typing identified 14/1,084 (1.3%), including 11 also identified by WGS. Multivariate analysis demonstrated that retreatment patients had a 2.7 times (95% confidence interval [CI], 1.2 to 6.0) higher risk of mixed infections than new cases. Collectively, WGS is a more reliable tool to identify mixed infections than VNTR typing, and mixed infections are more common in retreated patients. Mixed infections of M. tuberculosis have the potential to render treatment regimens ineffective and affect the transmission dynamics of the disease. VNTR typing, currently the most widely used method for the detection of mixed infections, detects mixed infections only by interrogating a small fraction of the M. tuberculosis genome, which necessarily limits sensitivity. With the introduction of WGS, it became possible to study the entire genome, but no quantitative comparison has yet been undertaken. Our systematic comparison of the ability of WGS and VNTR typing to detect mixed infections, using both artificial samples and clinical isolates, revealed the superior performance of WGS at a high sequencing depth (~100×) and found that mixed infections are more common in patients being retreated for tuberculosis (TB) in the populations studied. This provides valuable information for the application of WGS in the detection of mixed infections and the implications of mixed infections for tuberculosis control.
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http://dx.doi.org/10.1128/spectrum.03570-22 | DOI Listing |
PLoS One
September 2025
Department of Microbiology and Parasitology, Faculty of Biology - Aquatic One Health Research Center (iARCUS), Universidade de Santiago de Compostela, Santiago de Compostela, Spain.
Uropathogenic Escherichia coli (UPEC) are among the first pathogens to colonise in catheter and non-catheter-associated urinary tract infections. However, these infections are often polymicrobial, resulting in multi-species infections that persist by forming biofilms. Living within these highly antimicrobial tolerant communities, bacteria can establish intra- and inter-specific interactions, including quorum sensing (QS)-mediated signalling mechanisms, which play a key role in biofilm establishment and maturation.
View Article and Find Full Text PDFJ Med Microbiol
September 2025
Department of Microbiology, Meiji Pharmaceutical University, Tokyo, Japan.
Biofilms are a primary form of device-associated infections and typically exhibit high tolerance to antimicrobial agents. In biofilms formed by multiple microbial species, microorganisms may show even greater tolerance, complicating treatment. There is evidence that meropenem (MEPM) tolerance in is increased in dual-species biofilms with , and effective treatments have not been established.
View Article and Find Full Text PDFInfection
September 2025
General Intensive Care Unit, University Hospital Southampton NHS Foundation Trust, Tremona Road, Southampton, SO16 6YD, UK.
Introduction: Severe viral infections are common in patients requiring admission to intensive care units (ICU). Furthermore, these patients often have additional secondary or co-infections. Despite their prevalence, it remains uncertain to what extent those additional infections contribute to worse outcomes for patients with severe viral infections requiring ICU admission.
View Article and Find Full Text PDFInt J Cancer
September 2025
Faculty of Dental Medicine and Oral Health Sciences, McGill University, Montreal, Quebec, Canada.
In Canada, the incidence of human papillomavirus (HPV)-related head and neck cancer (HNC) is increasing. The role of multiple oral HPV infections in HNC etiology remains unclear, and evidence of HPV vaccination's effectiveness in reducing HNC incidence is limited. We investigated oral HPV co-infection patterns, estimated the association between multiple oral HPV infections and HNC risk, and the effect of eliminating vaccine-targeted HPV genotypes on HNC incidence.
View Article and Find Full Text PDFAvian Pathol
September 2025
Department of Animal Medicine, Production and Health (MAPS), University of Padua, Legnaro (PD), Italy.
Infectious bursal disease virus (IBDV) is a highly contagious, economically relevant immunosuppressive pathogen of chickens. Despite belonging to a single serotype, virulent IBDVs display a remarkable heterogeneity in genetic and functional features. Traditionally, strains are categorized into classical, variant and very virulent viruses, but many atypical IBDVs have been recently identified.
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