ArticleFrontiers in cellular and infection microbiology2018
Limited Correlation of Shotgun Metagenomics Following Host Depletion and Routine Diagnostics for Viruses and Bacteria in Low Concentrated Surrogate and Clinical Samples.
Article in Frontiers in cellular and infection microbiology, 2018. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 38 papers.
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Who cites it
38 citing papers in PubMed.
- Article
- A more complete picture: capturing single nucleotide variant diversity in extended-spectrum beta-lactamase producingMicrobial genomics · 2026Article
- Review
- Assessment of the effectiveness of host depletion techniques for profiling fish skin microbiomes and metagenomic analysis.Microbiology spectrum · 2026Article
- Research progress on the current status of respiratory pathogen infections and their detection methods.Frontiers in microbiology · 2026Review
- A comprehensive reference catalog of human skin DNA virome reveals novel viral diversity and microenvironmental influences.Microbiology spectrum · 2025Article
- Metagenomic Applications to Herbivore Gut Microbiomes: A Comprehensive Review of Microbial Diversity and Host Interactions.Animals : an open access journal from MDPI · 2025Review
- Benefits and challenges of host depletion methods in profiling the upper and lower respiratory microbiome.NPJ biofilms and microbiomes · 2025Article
- The application of endoscopic debridement combined with metagenomic next-generation sequencing technology in primary spinal infections: a retrospective study.Journal of orthopaedic surgery and research · 2025Article
- Clinical application of targeted nanopore sequencing in pathogen detection in patients with sepsis.BMC infectious diseases · 2025Article
- Clinical Metagenomic Next-Generation Sequencing for Diagnosis of Central Nervous System Infections: Advances and Challenges.Molecular diagnosis & therapy · 2024Review
- Application of metagenomic next-generation sequencing in optimizing the diagnosis of ascitic infection in patients with liver cirrhosis.BMC infectious diseases · 2024Article
- New and old lessons from a devastating case of neonatal E coli meningitis.BMC pediatrics · 2024Article
- Enhancing Clinical Utility: Utilization of International Standards and Guidelines for Metagenomic Sequencing in Infectious Disease Diagnosis.International journal of molecular sciences · 2024Review
- Clinical application of bronchoalveolar lavage fluid metagenomics next-generation sequencing in cancer patients with severe pneumonia.Respiratory research · 2024Article
- The 28S rRNA RT-qPCR assay for host depletion evaluation to enhance avian virus detection in Illumina and Nanopore sequencing.Frontiers in microbiology · 2024Article
- Microbial-enrichment method enables high-throughput metagenomic characterization from host-rich samples.Nature methods · 2023Article
- Report of the third conference on next-generation sequencing for adventitious virus detection in biologics for humans and animals.Biologicals : journal of the International Association of Biological Standardization · 2023Article
- The clinical application of metagenomic next-generation sequencing in sepsis of immunocompromised patients.Frontiers in cellular and infection microbiology · 2023Article
- Progress in etiological diagnosis of viral meningitis.Frontiers in neurology · 2023Review
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8 authors.
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No grant is acknowledged in the PubMed record.
Abstract
The etiologic cause of encephalitis, meningitis or meningo-encephalitis is unknown in up to 70% of cases. Clinical shotgun metagenomics combined with host depletion is a promising technique to identify infectious etiologies of central nervous system (CNS) infections. We developed a straightforward eukaryotic host nucleic acid depletion method that preserves intact viruses and bacteria for subsequent shotgun metagenomics screening of clinical samples, focusing on cerebrospinal fluid (CSF). A surrogate CSF sample for a CNS infection paradigm was used to evaluate the proposed depletion method consisting of selective host cell lysis, followed by enzymatic degradation of the liberated genomic DNA for final depletion with paramagnetic beads. Extractives were subjected to reverse transcription, followed by whole genome amplification and next generation sequencing. The effectiveness of the host depletion method was demonstrated in surrogate CSF samples spiked with three 1:100 dilutions of Influenza A H3N2 virus (qPCR Ct-values 20.7, 28.8, >42/negative). Compared to the native samples, host depletion increased the amount of the virus subtype reads by factor 7127 and 132, respectively, while in the qPCR negative sample zero vs. 31 (1.4E-4 %) virus subtype reads were detected (native vs. depleted). The workflow was applied to thirteen CSF samples of patients with meningo-/encephalitis (two bacterial, eleven viral etiologies), a serum of an Andes virus infection and a nose swab of a common cold patient. Unlike surrogate samples, host depletion of the thirteen human CSF samples and the nose swab did not result in more reads indicating presence of damaged pathogens due to, e.g., host immune response. Nevertheless, previously diagnosed pathogens in the human CSF samples (six viruses, two bacteria), the serum, and the nose swab (Human rhinovirus A31) were detected in the depleted and/or the native samples. Unbiased evaluation of the taxonomic profiles supported the diagnosed pathogen in two native CSF samples and the native and depleted serum and nose swab, while detecting various contaminations that interfered with pathogen identification at low concentration levels. In summary, damaged pathogens and contaminations complicated analysis and interpretation of clinical shotgun metagenomics data. Still, proper consideration of these issues may enable future application of metagenomics for clinical diagnostics.
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