TY - JOUR
T1 - Neutrophil extracellular traps and extracellular histones potentiate IL-17 inflammation in periodontitis
AU - NIDCD/NIDCR Genomics and Computational Biology Core
AU - Kim, Tae Sung
AU - Silva, Lakmali M.
AU - Theofilou, Vasileios Ionas
AU - Greenwell-Wild, Teresa
AU - Li, Lu
AU - Williams, Drake Winslow
AU - Ikeuchi, Tomoko
AU - Brenchley, Laurie
AU - Bugge, Thomas H.
AU - Diaz, Patricia I.
AU - Kaplan, Mariana J.
AU - Carmona-Rivera, Carmelo
AU - Moutsopoulos, Niki M.
N1 - Publisher Copyright:
© 2023 Moutsopoulos et al.
PY - 2023/9/4
Y1 - 2023/9/4
N2 - Neutrophil infiltration is a hallmark of periodontitis, a prevalent oral inflammatory condition in which Th17-driven mucosal inflammation leads to destruction of tooth-supporting bone. Herein, we document that neutrophil extracellular traps (NETs) are early triggers of pathogenic inflammation in periodontitis. In an established animal model, we demonstrate that neutrophils infiltrate the gingival oral mucosa at early time points after disease induction and expel NETs to trigger mucosal inflammation and bone destruction in vivo. Investigating mechanisms by which NETs drive inflammatory bone loss, we find that extracellular histones, a major component of NETs, trigger upregulation of IL-17/Th17 responses, and bone destruction. Importantly, human findings corroborate our experimental work. We document significantly increased levels of NET complexes and extracellular histones bearing classic NET-associated posttranslational modifications, in blood and local lesions of severe periodontitis patients, in the absence of confounding disease. Our findings suggest a feed-forward loop in which NETs trigger IL-17 immunity to promote immunopathology in a prevalent human inflammatory disease.
AB - Neutrophil infiltration is a hallmark of periodontitis, a prevalent oral inflammatory condition in which Th17-driven mucosal inflammation leads to destruction of tooth-supporting bone. Herein, we document that neutrophil extracellular traps (NETs) are early triggers of pathogenic inflammation in periodontitis. In an established animal model, we demonstrate that neutrophils infiltrate the gingival oral mucosa at early time points after disease induction and expel NETs to trigger mucosal inflammation and bone destruction in vivo. Investigating mechanisms by which NETs drive inflammatory bone loss, we find that extracellular histones, a major component of NETs, trigger upregulation of IL-17/Th17 responses, and bone destruction. Importantly, human findings corroborate our experimental work. We document significantly increased levels of NET complexes and extracellular histones bearing classic NET-associated posttranslational modifications, in blood and local lesions of severe periodontitis patients, in the absence of confounding disease. Our findings suggest a feed-forward loop in which NETs trigger IL-17 immunity to promote immunopathology in a prevalent human inflammatory disease.
UR - https://www.scopus.com/pages/publications/85160968506
U2 - 10.1084/jem.20221751
DO - 10.1084/jem.20221751
M3 - Article
C2 - 37261457
AN - SCOPUS:85160968506
SN - 0022-1007
VL - 220
JO - Journal of Experimental Medicine
JF - Journal of Experimental Medicine
IS - 9
ER -