Literature DB >> 27402698

Mucosal Langerhans Cells Promote Differentiation of Th17 Cells in a Murine Model of Periodontitis but Are Not Required for Porphyromonas gingivalis-Driven Alveolar Bone Destruction.

Peter D Bittner-Eddy1, Lori A Fischer1, Daniel H Kaplan2, Kathleen Thieu1, Massimo Costalonga3.   

Abstract

Periodontitis is a chronic oral inflammatory disease affecting one in five individuals that can lead to tooth loss. CD4(+) Th cells activated by a microbial biofilm are thought to contribute to the destruction of alveolar bone surrounding teeth by influencing osteoclastogenesis through IL-17A and receptor activator for NF-κB ligand effects. The relative roles of mucosal Ag presentation cells in directing Th cell immune responses against oral pathogens and their contribution to destruction of alveolar bone remain unknown. We tested the contribution of mucosal Langerhans cells (LCs) to alveolar bone homeostasis in mice following oral colonization with a well-characterized human periodontal pathogen, Porphyromonas gingivalis We found that oral mucosal LCs did not protect from or exacerbate crestal alveolar bone destruction but were responsible for promoting differentiation of Th17 cells specific to P. gingivalis. In mice lacking LCs the Th17 response was suppressed and a Th1 response predominated. Bypassing LCs with systemic immunization of P. gingivalis resulted in a predominantly P. gingivalis-specific Th1 response regardless of whether LCs were present. Interestingly, we find that in vivo clonal expansion of P. gingivalis-specific Th cells and induced regulatory T cells does not depend on mucosal LCs. Furthermore, destruction of crestal alveolar bone induced by P. gingivalis colonization occurred regardless of the presence of mucosal LCs or P. gingivalis-specific Th17 cells. Our data indicate that both LCs and Th17 cells are redundant in contributing to alveolar bone destruction in a murine model of periodontitis.
Copyright © 2016 by The American Association of Immunologists, Inc.

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Year:  2016        PMID: 27402698      PMCID: PMC4974489          DOI: 10.4049/jimmunol.1502693

Source DB:  PubMed          Journal:  J Immunol        ISSN: 0022-1767            Impact factor:   5.422


  63 in total

1.  Langerhans cells require MyD88-dependent signals for Candida albicans response but not for contact hypersensitivity or migration.

Authors:  Krystal Haley; Botond Z Igyártó; Daniela Ortner; Aleh Bobr; Sakeen Kashem; Dominik Schenten; Daniel H Kaplan
Journal:  J Immunol       Date:  2012-03-21       Impact factor: 5.422

2.  Genetic analyses of proteolysis, hemoglobin binding, and hemagglutination of Porphyromonas gingivalis. Construction of mutants with a combination of rgpA, rgpB, kgp, and hagA.

Authors:  Y Shi; D B Ratnayake; K Okamoto; N Abe; K Yamamoto; K Nakayama
Journal:  J Biol Chem       Date:  1999-06-18       Impact factor: 5.157

3.  Cancer-associated epithelial cell adhesion molecule (EpCAM; CD326) enables epidermal Langerhans cell motility and migration in vivo.

Authors:  Maria R Gaiser; Tim Lämmermann; Xu Feng; Botond Z Igyarto; Daniel H Kaplan; Lino Tessarollo; Ronald N Germain; Mark C Udey
Journal:  Proc Natl Acad Sci U S A       Date:  2012-03-12       Impact factor: 11.205

4.  Distinct and complex bacterial profiles in human periodontitis and health revealed by 16S pyrosequencing.

Authors:  Ann L Griffen; Clifford J Beall; James H Campbell; Noah D Firestone; Purnima S Kumar; Zamin K Yang; Mircea Podar; Eugene J Leys
Journal:  ISME J       Date:  2011-12-15       Impact factor: 10.302

5.  Resolvin E1 and chemokine-like receptor 1 mediate bone preservation.

Authors:  Li Gao; Dan Faibish; Gabrielle Fredman; Bruno S Herrera; Nan Chiang; Charles N Serhan; Thomas E Van Dyke; Robert Gyurko
Journal:  J Immunol       Date:  2012-12-14       Impact factor: 5.422

Review 6.  Immunomicrobial pathogenesis of periodontitis: keystones, pathobionts, and host response.

Authors:  George Hajishengallis
Journal:  Trends Immunol       Date:  2013-10-23       Impact factor: 16.687

7.  Porphyromonas gingivalis promotes Th17 inducing pathways in chronic periodontitis.

Authors:  Niki M Moutsopoulos; Heather M Kling; Nikola Angelov; Wenwen Jin; Robert J Palmer; Salvador Nares; Manuel Osorio; Sharon M Wahl
Journal:  J Autoimmun       Date:  2012-05-03       Impact factor: 7.094

8.  The leukocyte integrin antagonist Del-1 inhibits IL-17-mediated inflammatory bone loss.

Authors:  Mehmet A Eskan; Ravi Jotwani; Toshiharu Abe; Jindrich Chmelar; Jong-Hyung Lim; Shuang Liang; Paul A Ciero; Jennifer L Krauss; Fenge Li; Martina Rauner; Lorenz C Hofbauer; Eun Young Choi; Kyoung-Jin Chung; Ahmed Hashim; Michael A Curtis; Triantafyllos Chavakis; George Hajishengallis
Journal:  Nat Immunol       Date:  2012-03-25       Impact factor: 25.606

9.  Th17 cells, not IL-17+ γδ T cells, drive arthritic bone destruction in mice and humans.

Authors:  Bernadette Pöllinger; Tobias Junt; Barbara Metzler; Ulrich A Walker; Alan Tyndall; Cyril Allard; Serkan Bay; Roland Keller; Friedrich Raulf; Franco Di Padova; Terrence O'Reilly; Nicole J Horwood; Dhavalkumar D Patel; Amanda Littlewood-Evans
Journal:  J Immunol       Date:  2011-01-07       Impact factor: 5.422

10.  Small intestine lamina propria dendritic cells promote de novo generation of Foxp3 T reg cells via retinoic acid.

Authors:  Cheng-Ming Sun; Jason A Hall; Rebecca B Blank; Nicolas Bouladoux; Mohamed Oukka; J Rodrigo Mora; Yasmine Belkaid
Journal:  J Exp Med       Date:  2007-07-09       Impact factor: 14.307

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  12 in total

Review 1.  Revisiting the Page & Schroeder model: the good, the bad and the unknowns in the periodontal host response 40 years later.

Authors:  George Hajishengallis; Jonathan M Korostoff
Journal:  Periodontol 2000       Date:  2017-10       Impact factor: 7.589

2.  Fetal Weight Outcomes in C57BL/6J and C57BL/6NCrl Mice after Oral Colonization with Porphyromonas gingivalis.

Authors:  Lori A Fischer; Peter D Bittner-Eddy; Massimo Costalonga
Journal:  Infect Immun       Date:  2019-09-19       Impact factor: 3.441

3.  Update on B Cell Response in Periodontitis.

Authors:  Julien Demoersman; Jacques Olivier Pers
Journal:  Adv Exp Med Biol       Date:  2022       Impact factor: 2.622

4.  Discriminating between Interstitial and Circulating Leukocytes in Tissues of the Murine Oral Mucosa Avoiding Nasal-Associated Lymphoid Tissue Contamination.

Authors:  Peter D Bittner-Eddy; Lori A Fischer; Andy A Tu; Daniel A Allman; Massimo Costalonga
Journal:  Front Immunol       Date:  2017-10-30       Impact factor: 7.561

Review 5.  Genes Critical for Developing Periodontitis: Lessons from Mouse Models.

Authors:  Teun J de Vries; Stefano Andreotta; Bruno G Loos; Elena A Nicu
Journal:  Front Immunol       Date:  2017-10-27       Impact factor: 7.561

6.  Cre-loxP Reporter Mouse Reveals Stochastic Activity of the Foxp3 Promoter.

Authors:  Peter D Bittner-Eddy; Lori A Fischer; Massimo Costalonga
Journal:  Front Immunol       Date:  2019-09-20       Impact factor: 7.561

Review 7.  Mucosal Immunity and the FOXO1 Transcription Factors.

Authors:  Dana T Graves; Tatyana N Milovanova
Journal:  Front Immunol       Date:  2019-11-29       Impact factor: 7.561

Review 8.  Infectious Triggers in Periodontitis and the Gut in Rheumatoid Arthritis (RA): A Complex Story About Association and Causality.

Authors:  Burkhard Möller; Florian Kollert; Anton Sculean; Peter M Villiger
Journal:  Front Immunol       Date:  2020-06-03       Impact factor: 7.561

9.  Sequential BMP7/TGF-β1 signaling and microbiota instruct mucosal Langerhans cell differentiation.

Authors:  Tal Capucha; Noam Koren; Maria Nassar; Oded Heyman; Tsipora Nir; Maayan Levy; Gili Zilberman-Schapira; Katya Zelentova; Luba Eli-Berchoer; Martin Zenke; Thomas Hieronymus; Asaf Wilensky; Herve Bercovier; Eran Elinav; Björn E Clausen; Avi-Hai Hovav
Journal:  J Exp Med       Date:  2018-01-17       Impact factor: 14.307

10.  Transient Expression of IL-17A in Foxp3 Fate-Tracked Cells in Porphyromonas gingivalis-Mediated Oral Dysbiosis.

Authors:  Peter D Bittner-Eddy; Lori A Fischer; Massimo Costalonga
Journal:  Front Immunol       Date:  2020-04-23       Impact factor: 7.561

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