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NF-κB/MAPK activation underlies ACVR1-mediated inflammation in human heterotopic ossification
Emilie Barruet, Blanca M. Morales, Corey J. Cain, Amy N. Ton, Kelly L. Wentworth, Tea V. Chan, Tania A. Moody, Mariëlle C. Haks, Tom H.M. Ottenhoff, Judith Hellman, Mary C. Nakamura, Edward C. Hsiao
Emilie Barruet, Blanca M. Morales, Corey J. Cain, Amy N. Ton, Kelly L. Wentworth, Tea V. Chan, Tania A. Moody, Mariëlle C. Haks, Tom H.M. Ottenhoff, Judith Hellman, Mary C. Nakamura, Edward C. Hsiao
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Clinical Research and Public Health Bone biology Inflammation

NF-κB/MAPK activation underlies ACVR1-mediated inflammation in human heterotopic ossification

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Abstract

BACKGROUND. Inflammation helps regulate normal growth and tissue repair. Although bone morphogenetic proteins (BMPs) and inflammation are known contributors to abnormal bone formation, how these pathways interact in ossification remains unclear. METHODS. We examined this potential link in patients with fibrodysplasia ossificans progressiva (FOP), a genetic condition of progressive heterotopic ossification caused by activating mutations in the Activin A type I receptor (ACVR1/ALK2). FOP patients show exquisite sensitivity to trauma, suggesting that BMP pathway activation may alter immune responses. We studied primary blood, monocyte, and macrophage samples from control and FOP subjects using multiplex cytokine, gene expression, and protein analyses; examined CD14+ primary monocyte and macrophage responses to TLR ligands; and assayed BMP, TGF-β activated kinase 1 (TAK1), and NF-κB pathways. RESULTS. FOP subjects at baseline without clinically evident heterotopic ossification showed increased serum IL-3, IL-7, IL-8, and IL-10. CD14+ primary monocytes treated with the TLR4 activator LPS showed increased CCL5, CCR7, and CXCL10; abnormal cytokine/chemokine secretion; and prolonged activation of the NF-κB pathway. FOP macrophages derived from primary monocytes also showed abnormal cytokine/chemokine secretion, increased TGF-β production, and p38MAPK activation. Surprisingly, SMAD phosphorylation was not significantly changed in the FOP monocytes/macrophages. CONCLUSIONS. Abnormal ACVR1 activity causes a proinflammatory state via increased NF-κB and p38MAPK activity. Similar changes may contribute to other types of heterotopic ossification, such as in scleroderma and dermatomyositis; after trauma; or with recombinant BMP-induced bone fusion. Our findings suggest that chronic antiinflammatory treatment may be useful for heterotopic ossification.

Authors

Emilie Barruet, Blanca M. Morales, Corey J. Cain, Amy N. Ton, Kelly L. Wentworth, Tea V. Chan, Tania A. Moody, Mariëlle C. Haks, Tom H.M. Ottenhoff, Judith Hellman, Mary C. Nakamura, Edward C. Hsiao

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Figure 7

LPS-stimulated FOP macrophages show abnormal proinflammatory cytokine secretion.

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LPS-stimulated FOP macrophages show abnormal proinflammatory cytokine se...
Primary CD14+ monocytes were differentiated into proinflammatory (stimulated with GMCSF, M1) or antiinflammatory (stimulated with MCSF, M2) macrophages. Multiplex assay for 41 cytokines on M1 (control, n = 4; FOP, n = 3) and M2 (control, n = 3; FOP, n = 3) macrophages were either untreated (NT) or treated with 10 ng/ml of LPS for 24 hours. (A) Principle component analysis. Shapes represent expression profiles of the different groups. (B) Heatmap representing color-coded cytokine secretion by Control, Control+LPS, FOP, FOP+LPS for M1 and M2 macrophage samples. (C) Cytokines MIP1-β and IL-1RA were significantly increased in FOP M1 polarized macrophages stimulated with LPS. PDGFAA and PDGFBB were significantly increased in nonstimulated FOP M1 polarized macrophages. (D) Chemokine ligands eotaxin, VEGF, IL-3, and IL-17A were increased at baseline in FOP subject M2 macrophages. (E) GROα and GCSF were significantly increased in FOP monocytes stimulated with LPS. The distribution of the subjects is described in Supplemental Table 9. *P < 0.05, **P < 0.01, and ****P < 0.0001 by Sidak’s multiple comparison test. Error bars represent means ± 1 SD.

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