Related Experiment Video
Updated: Sep 27, 2026

Induction of Periodontitis via a Combination of Ligature and Lipopolysaccharide Injection in a Rat Model
Published on: February 17, 2023
The Role of Porphyromonas gingivalis Lipopolysaccharide (PG-LPS) in Advanced Periodontitis-A Scoping Review
Tim Klomp1,2, Andreas Braun1, Georg Conrads2
1Department of Operative Dentistry, Periodontology and Preventive Dentistry, Rheinisch-Westfälische Technische Hochschule University Hospital, 52074 Aachen, Germany.
Abstract:
Background: Porphyromonas gingivalis is a Gram-negative, anaerobic keystone pathogen strongly implicated in the pathogenesis of periodontitis. Its pathogenicity is mediated through virulence factors, such as lipopolysaccharides (PG-LPS), which have been reported to display conflicting results regarding structural composition and immunogenicity. Objectives: This scoping review investigates how PG-LPS modulates host immunity and contributes to advanced periodontitis, with emphasis on its structural composition, divergent immunogenic properties, and the possible regulatory factors underlying these observations. Furthermore, PG-LPS interactions with periodontal tissues and associations with outer membrane vesicles (OMV) are examined. Materials and Methods: A structured literature search was conducted in PubMed following the PRISMA-ScR guidelines and PCC frameworks. Results: Structural heterogeneity, especially within the lipid A moiety of PG-LPS, accounts for previously inconsistent findings regarding its immunogenicity. Minor alterations in lipid A composition through enzymatic dephosphorylation or deacylation profoundly affect Toll-like receptor (TLR) engagement, antimicrobial resistance, and cytokine induction, and contribute to the biogenesis of OMVs. Environmental factors such as hemin availability and temperature influence enzymatic activity, resulting in lipid A isoforms that act as TLR4 agonists, antagonists, or remain immunologically inert. This structural plasticity mediates dynamic immune modulation that fosters polymicrobial dysbiosis and perpetuates non-resolving inflammation, leading to progressive tissue destruction, while concurrently contributing to the systemic inflammatory burden. Conclusions: Lipid A heterogeneity represents a central adaptive strategy potentially linking environmental cues and the bioenergetic status of P. gingivalis to immunomodulative properties. Verification of in vivo lipid A structural shifts in clinical isolates could inform novel therapeutic approaches targeting P. gingivalis-mediated inflammation.
Related Concept Videos
The Oral Microbiota
Formation of Lipopolysaccharides
Determinants of Bacterial Pathogenicity and Virulence
Biofilms
Colonisation of Pathogens
