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Callus γδ T cells and microbe-induced intestinal Th17 cells improve fracture healing in mice
Hamid Y. Dar, Daniel S. Perrien, Subhashis Pal, Andreea Stoica, Sasidhar Uppuganti, Jeffry S. Nyman, Rheinallt M. Jones, M. Neale Weitzmann, Roberto Pacifici
Hamid Y. Dar, Daniel S. Perrien, Subhashis Pal, Andreea Stoica, Sasidhar Uppuganti, Jeffry S. Nyman, Rheinallt M. Jones, M. Neale Weitzmann, Roberto Pacifici
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Research Article Bone biology Microbiology

Callus γδ T cells and microbe-induced intestinal Th17 cells improve fracture healing in mice

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Abstract

IL-17A (IL-17), a driver of the inflammatory phase of fracture repair, is produced locally by several cell lineages including γδ T cells and Th17 cells. However, the origin of these T cells and their relevance for fracture repair are unknown. Here, we show that fractures rapidly expanded callus γδ T cells, which led to increased gut permeability by promoting systemic inflammation. When the microbiota contained the Th17 cell–inducing taxon segmented filamentous bacteria (SFB), activation of γδ T cells was followed by expansion of intestinal Th17 cells, their migration to the callus, and improved fracture repair. Mechanistically, fractures increased the S1P receptor 1–mediated (S1PR1-mediated) egress of Th17 cells from the intestine and enhanced their homing to the callus through a CCL20-mediated mechanism. Fracture repair was impaired by deletion of γδ T cells, depletion of the microbiome by antibiotics (Abx), blockade of Th17 cell egress from the gut, or Ab neutralization of Th17 cell influx into the callus. These findings demonstrate the relevance of the microbiome and T cell trafficking for fracture repair. Modifications of microbiome composition via Th17 cell–inducing bacteriotherapy and avoidance of broad-spectrum Abx may represent novel therapeutic strategies to optimize fracture healing.

Authors

Hamid Y. Dar, Daniel S. Perrien, Subhashis Pal, Andreea Stoica, Sasidhar Uppuganti, Jeffry S. Nyman, Rheinallt M. Jones, M. Neale Weitzmann, Roberto Pacifici

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Figure 2

Effects of fractures and Abx-induced microbiota depletion on callus and intestinal γδ T cells and Th17 cells, and gut permeability in WT and γδ T cell–/– mice.

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Effects of fractures and Abx-induced microbiota depletion on callus and ...
Femoral fractures were induced in 12-week-old female SFB+ JAX mice, SFB– JAX mice, and SFB+ Tcrd–/– mice, a strain lacking γδ T cells. SFB+ JAX mice and SFB– JAX mice were treated or not with broad-spectrum Abx starting 1 week before fracture surgery. Frequencies of (A) callus γδ T cells (CD3ε+CD45+TCRγδ+ cells), (B) PP γδ T cells, (C) callus Th17 cells (TCRβ+CD45+CD4+IL-17A+ cells), and (D) PP Th17 cells. (E) Callus and PP Th17 cells in Tcrd–/– mice. (F) Gut permeability in SFB+ WT mice and SFB+ Tcrd–/– mice. Gut permeability was assessed by serum LPS levels and FITC-dextran absorption. n = 5 mice/group. Data are expressed as the mean ± SEM. All data were normally distributed according to the Shapiro-Wilk normality test and analyzed by 2-way ANOVA and with post hoc Bonferroni correction for multiple comparisons. **P < 0.01, ***P < 0.001, and ****P < 0.0001 compared with the indicated group (A–E) or compared with intact bone (F). Nonsignificant comparisons are not shown.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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