Anti-FimA monoclonal antibodies reveal dual roles in porphyromonas gingivalis pathogenesis

Background Porphyromonas gingivalis (P. gingivalis) is a keystone pathogen in periodontitis, a chronic inflammatory disease with systemic links. Its major fimbrial protein, FimA, is essential for bacterial adhesion and co‑aggregation, making it a promising immunotherapeutic target. Although anti-FimA antibodies are detected in patients and correlate with disease severity, their functional roles remain incompletely understood.Objective To generate and functionally characterize FimA-targeting monoclonal antibodies (mAbs) and define their functional impact on P. gingivalis pathogenesis.Design Mice were immunized with recombinant FimA (rFimA) protein to generate hybridomas producing high-affinity mAbs that recognize distinct, non-overlapping epitopes. The functional effects of these mAbs on P. gingivalis adhesion, phagocytosis, complement killing, aggregation and biofilm architecture were evaluated using binding assays, flow cytometry, biolayer interferometry and microscopy.Results A panel of high-affinity anti-FimA mAbs targeting distinct, non-overlapping epitopes was generated. Although all mAbs blocked bacterial adhesion and enhanced phagocytosis, they showed limited complement-dependent killing and, paradoxically, induced aggregation that promoted structured biofilm formation.Conclusion Anti-FimA mAbs exert a dual and opposing functionality, conferring host protection while paradoxically enhancing bacterial persistence through biofilm promotion. These findings reveal a previously unrecognized complexity in anti-FimA humoral immunity and provide important insights for the design of targeted immunotherapies against P. gingivalis infection.

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Publication Details

Journal
Journal of Oral Microbiology
Published
2026-09-29
DOI
https://doi.org/10.1080/20002297.2026.2729552
Primary Topic
Oral microbiology and periodontitis research
Type
article
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article

Anti-FimA monoclonal antibodies reveal dual roles in porphyromonas gingivalis pathogenesis

Yichang Gao, Mingya Cao, Jingying Chen, Yuanyuan Pan et al.
Journal of Oral Microbiology
Oral microbiology and periodontitis research
article

Anti-FimA monoclonal antibodies reveal dual roles in porphyromonas gingivalis pathogenesis

Yichang Gao, Mingya Cao, Jingying Chen, Yuanyuan Pan, Han Wang, Shengke Zhou, Siyu Wang, Chengye He, Zihan Zhao, Min Yan, Xia Li, Jieyu Zhang
article en

Abstract

Background Porphyromonas gingivalis (P. gingivalis) is a keystone pathogen in periodontitis, a chronic inflammatory disease with systemic links. Its major fimbrial protein, FimA, is essential for bacterial adhesion and co‑aggregation, making it a promising immunotherapeutic target. Although anti-FimA antibodies are detected in patients and correlate with disease severity, their functional roles remain incompletely understood.Objective To generate and functionally characterize FimA-targeting monoclonal antibodies (mAbs) and define their functional impact on P. gingivalis pathogenesis.Design Mice were immunized with recombinant FimA (rFimA) protein to generate hybridomas producing high-affinity mAbs that recognize distinct, non-overlapping epitopes. The functional effects of these mAbs on P. gingivalis adhesion, phagocytosis, complement killing, aggregation and biofilm architecture were evaluated using binding assays, flow cytometry, biolayer interferometry and microscopy.Results A panel of high-affinity anti-FimA mAbs targeting distinct, non-overlapping epitopes was generated. Although all mAbs blocked bacterial adhesion and enhanced phagocytosis, they showed limited complement-dependent killing and, paradoxically, induced aggregation that promoted structured biofilm formation.Conclusion Anti-FimA mAbs exert a dual and opposing functionality, conferring host protection while paradoxically enhancing bacterial persistence through biofilm promotion. These findings reveal a previously unrecognized complexity in anti-FimA humoral immunity and provide important insights for the design of targeted immunotherapies against P. gingivalis infection.

Journal of Oral MicrobiologyVol. 18(1)
Henan University (CN)
Openalex Percentile: Top 10%
Oral microbiology and periodontitis research
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