Sputum microbiome profiling in COPD: beyond singular pathogen detection

Benedikt Ditz*, Stephanie Christenson, John Rossen, Chris Brightling, Huib A M Kerstjens, Maarten van den Berge, Alen Faiz

*Corresponding author for this work

Research output: Contribution to journalReview articlepeer-review

40 Citations (Scopus)
156 Downloads (Pure)

Abstract

Culture-independent microbial sequencing techniques have revealed that the respiratory tract harbours a complex microbiome not detectable by conventional culturing methods. The contribution of the microbiome to chronic obstructive pulmonary disease (COPD) pathobiology and the potential for microbiome-based clinical biomarkers in COPD are still in the early phases of investigation. Sputum is an easily obtainable sample and has provided a wealth of information on COPD pathobiology, and thus has been a preferred sample type for microbiome studies. Although the sputum microbiome likely reflects the respiratory microbiome only in part, there is increasing evidence that microbial community structure and diversity are associated with disease severity and clinical outcomes, both in stable COPD and during the exacerbations. Current evidence has been limited to mainly cross-sectional studies using 16S rRNA gene sequencing, attempting to answer the question 'who is there?' Longitudinal studies using standardised protocols are needed to answer outstanding questions including differences between sputum sampling techniques. Further, with advancing technologies, microbiome studies are shifting beyond the examination of the 16S rRNA gene, to include whole metagenome and metatranscriptome sequencing, as well as metabolome characterisation. Despite being technically more challenging, whole-genome profiling and metabolomics can address the questions 'what can they do?' and 'what are they doing?' This review provides an overview of the basic principles of high-throughput microbiome sequencing techniques, current literature on sputum microbiome profiling in COPD, and a discussion of the associated limitations and future perspectives.

Original languageEnglish
Pages (from-to)338-344
Number of pages7
JournalThorax
Volume75
Issue number4
Early online date27-Mar-2020
DOIs
Publication statusPublished - 1-Apr-2020

Keywords

  • COPD
  • sputum microbiome
  • high-throughput sequencing techniques
  • OBSTRUCTIVE PULMONARY-DISEASE
  • 16S RIBOSOMAL-RNA
  • LUNG MICROBIOME
  • AIRWAY MICROBIOME
  • STABLE STATE
  • EXACERBATIONS
  • BACTERIAL
  • METABOLITES
  • DIVERSITY
  • DYNAMICS

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