Root Microbiota in Primary and Secondary Apical Periodontitis

Микробиота корневых каналов при первичном и вторичном апикальном периодонтите
Jacques Schrenzel, Serge Bouillaguet, Daniel Manoil, Myriam Girard, Justine Louis, Nadia Gaïa, Stefano Léo, Vladimir Lazarević
2018-10-09

16S rRNA gene amplicon sequencingEnterococcus faecalisFusobacterium nucleatumIllumina MiSeqV3-V4 regionapical periodontitisco-occurrence network analysisintraradicular microbiotaoperational taxonomic units (OTUs)primary apical periodontitissecondary apical periodontitis
Apical periodontitis is an inflammatory disease of the dental periradicular tissues triggered by bacteria colonizing necrotic root canals. Primary apical periodontitis results from the microbial colonization of necrotic pulp tissues. Secondary apical periodontitis results from a persistent infection of incorrectly treated root canals. The aim of this study was to characterize the microbiota present in primary and secondary intra-radicular infections associated with apical periodontitis using 16S rRNA gene amplicon sequencing. Teeth exhibiting apical periodontitis with or without root canal treatment were extracted after informed consent. From each tooth, the intra-radicular content as well as a dentin sample (control) were collected and subjected to DNA extraction. PCR amplicons of the V3-V4 region of the bacterial 16S rRNA gene were pooled and sequenced (2x300) on an Illumina MiSeq instrument. The bioinformatics analysis pipeline included quality filtering, merging of forward and reverse reads, clustering of reads into operational taxonomic units (OTUs), removal of putative contaminant OTUs and assigning taxonomy. The most prevalent and abundant OTU in both dentin and root canal samples was assigned to anaerobic bacterium Fusobacterium nucleatum. Multivariate analysis showed clustering of microbiota by sample type (dentin vs intra-radicular content) and, in root canals, by pathology (primary vs secondary infection). The proportions of Enterococcus faecalis and F. nucleatum were respectively higher and lower when comparing secondary to primary infected root canals. Co-occurrence network analysis provided evidence of microbial interactions specific to the infection type. The identification of bacterial taxa differentially abundant in primary and secondary intra-radicular infections may provide the basis for targeted therapeutic approaches aimed at reducing the incidence of apical periodontitis.
1
16S rRNA V3-V4 amplicon sequencing characterized microbiota in primary and secondary intraradicular infections associated with apical periodontitis.
2
Co-occurrence network analysis revealed microbial interaction patterns specific to primary versus secondary infection types.
3
Differentially abundant bacterial taxa between primary and secondary infections could inform targeted therapeutic approaches to reduce apical periodontitis incidence.
4
Fusobacterium nucleatum was the most prevalent and abundant OTU in both dentin controls and root canal samples.
5
Microbiota clustered by sample type (dentin vs intraradicular content) and, within root canals, by pathology (primary vs secondary infection).
6
Secondary infected root canals showed higher proportions of Enterococcus faecalis and lower proportions of Fusobacterium nucleatum compared to primary infections.

Microbiota of intraradicular (root canal) and dentin samples from teeth with primary and secondary apical periodontitis

Characterization and comparison of bacterial community composition, differential abundance (e.g., Fusobacterium nucleatum, Enterococcus faecalis), community clustering by sample type and pathology, and co-occurrence microbial interaction networks in primary versus secondary intraradicular infections using 16S rRNA gene amplicon sequencing

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2018-10-09
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Jacques Schrenzel
Serge Bouillaguet
Daniel Manoil
Myriam Girard
Justine Louis
Nadia Gaïa
Stefano Léo
Vladimir Lazarević
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