BACKGROUND: Metagenomic sequencing of respiratory microbial communities for pathogen identification in pneumonia may help overcome the limitations of culture-based methods. We examined the feasibility and clinical validity of rapid-turnaround metagenomics with Nanopore™ sequencing of clinical respiratory specimens. METHODS: We conducted a case-control study of mechanically-ventilated patients with pneumonia (nine culture-positive and five culture-negative) and without pneumonia (eight controls). We collected endotracheal aspirates and applied a microbial DNA enrichment method prior to metagenomic sequencing with the Oxford Nanopore MinION device. For reference, we compared Nanopore results against clinical microbiologic cultures and bacteri...
ABSTRACT Metagenomic next-generation sequencing (mNGS) offers an agnostic approach for emerging path...
The advent of next generation sequencing technologies has enabled the characterization of the geneti...
Cancer patients are at high risk of infections and infection-related mortality; thereby, prompt diag...
The gold standard for clinical diagnosis of bacterial lower respiratory infections (LRIs) is culture...
Background: The diagnosis of bacterial pathogens in lower respiratory tract infections (LRI) using c...
BackgroundAntimicrobial resistance (AMR) is rising at an alarming rate and complicating the manageme...
Background Metagenomic next-generation sequencing (mNGS) is an important supplement to conventional ...
BACKGROUND: Influenza virus presents a considerable challenge to public health by causing seasonal e...
BackgroundThe usefulness of metagenomic next-generation sequencing (mNGS) in identifying pathogens i...
Abstract Background Enzyme-based host depletion significantly improves the sensitivity of clinical m...
<p>Etiologic diagnosis of bacterial pneumonia relies on identification of causative pathogens by cul...
BackgroundSevere community-acquired pneumonia (sCAP) is life-threatening and characterized by intens...
Abstract Background Aetiology detection is crucial in...
Background Human metapneumovirus (HMPV) infection causes a spectrum of respiratory tract disease, an...
Abstract Background Clinical metagenomics (CMg) has the potential to be translated from a research t...
ABSTRACT Metagenomic next-generation sequencing (mNGS) offers an agnostic approach for emerging path...
The advent of next generation sequencing technologies has enabled the characterization of the geneti...
Cancer patients are at high risk of infections and infection-related mortality; thereby, prompt diag...
The gold standard for clinical diagnosis of bacterial lower respiratory infections (LRIs) is culture...
Background: The diagnosis of bacterial pathogens in lower respiratory tract infections (LRI) using c...
BackgroundAntimicrobial resistance (AMR) is rising at an alarming rate and complicating the manageme...
Background Metagenomic next-generation sequencing (mNGS) is an important supplement to conventional ...
BACKGROUND: Influenza virus presents a considerable challenge to public health by causing seasonal e...
BackgroundThe usefulness of metagenomic next-generation sequencing (mNGS) in identifying pathogens i...
Abstract Background Enzyme-based host depletion significantly improves the sensitivity of clinical m...
<p>Etiologic diagnosis of bacterial pneumonia relies on identification of causative pathogens by cul...
BackgroundSevere community-acquired pneumonia (sCAP) is life-threatening and characterized by intens...
Abstract Background Aetiology detection is crucial in...
Background Human metapneumovirus (HMPV) infection causes a spectrum of respiratory tract disease, an...
Abstract Background Clinical metagenomics (CMg) has the potential to be translated from a research t...
ABSTRACT Metagenomic next-generation sequencing (mNGS) offers an agnostic approach for emerging path...
The advent of next generation sequencing technologies has enabled the characterization of the geneti...
Cancer patients are at high risk of infections and infection-related mortality; thereby, prompt diag...