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Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity

The role of mouse dermal γδ T cells in inflammatory skin disorders and host defense has been studied extensively. It is known that dendritic epidermal T cells (DETC) have a monomorphic γδ T cell receptor (TCR) and reside in murine epidermis from birth. We asked if dermal γδ cells freely re-circulate...

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Autores principales: Jiang, Xiaodong, Park, Chang Ook, Geddes Sweeney, Jenna, Yoo, Min Jae, Gaide, Olivier, Kupper, Thomas Seth
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5230790/
https://www.ncbi.nlm.nih.gov/pubmed/28081153
http://dx.doi.org/10.1371/journal.pone.0169397
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author Jiang, Xiaodong
Park, Chang Ook
Geddes Sweeney, Jenna
Yoo, Min Jae
Gaide, Olivier
Kupper, Thomas Seth
author_facet Jiang, Xiaodong
Park, Chang Ook
Geddes Sweeney, Jenna
Yoo, Min Jae
Gaide, Olivier
Kupper, Thomas Seth
author_sort Jiang, Xiaodong
collection PubMed
description The role of mouse dermal γδ T cells in inflammatory skin disorders and host defense has been studied extensively. It is known that dendritic epidermal T cells (DETC) have a monomorphic γδ T cell receptor (TCR) and reside in murine epidermis from birth. We asked if dermal γδ cells freely re-circulated out of skin, or behaved more like dermal resident memory T cells (T(RM)) in mice. We found that, unlike epidermal γδ T cells (DETC), dermal γδ cells are not homogeneous with regard to TCR, express the tissue resident T cell markers CD69 and CD103, bear skin homing receptors, and produce IL-17 and IL-22. We created GFP(+): GFP(−) parabiotic mice and found that dermal γδ T cells re-circulate very slowly—more rapidly than authentic αβ TCR T(RM), but more slowly than the recently described dermal αβ TCR T migratory memory cells (T(MM)). Mice lacking the TCR δ gene (δ(-/-)) had a significant reduction of 2,4-dinitrofluorobenzene (DNFB)-induced contact hypersensitivity (CHS). We created mice deficient in dermal γδ T cells but not DETC, and these mice also showed a markedly reduced CHS response after DNFB challenge. The infiltration of effector T cells during CHS was not reduced in dermal γδ T cell-deficient mice; however, infiltration of Gr-1(+)CD11b(+) neutrophils, as well as ear swelling, was reduced significantly. We next depleted Gr-1(+) neutrophils in vivo, and demonstrated that neutrophils are required for ear swelling, the accepted metric for a CHS response. Depletion of IL-17-producing dermal Vγ4(+) cells and neutralization of IL-17 in vivo, respectively, also led to a significantly reduced CHS response and diminished neutrophil infiltration. Our findings here suggest that dermal γδ T cells have an intermediate phenotype of T cell residence, and play an important role in primary CHS through producing IL-17 to promote neutrophil infiltration.
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spelling pubmed-52307902017-01-31 Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity Jiang, Xiaodong Park, Chang Ook Geddes Sweeney, Jenna Yoo, Min Jae Gaide, Olivier Kupper, Thomas Seth PLoS One Research Article The role of mouse dermal γδ T cells in inflammatory skin disorders and host defense has been studied extensively. It is known that dendritic epidermal T cells (DETC) have a monomorphic γδ T cell receptor (TCR) and reside in murine epidermis from birth. We asked if dermal γδ cells freely re-circulated out of skin, or behaved more like dermal resident memory T cells (T(RM)) in mice. We found that, unlike epidermal γδ T cells (DETC), dermal γδ cells are not homogeneous with regard to TCR, express the tissue resident T cell markers CD69 and CD103, bear skin homing receptors, and produce IL-17 and IL-22. We created GFP(+): GFP(−) parabiotic mice and found that dermal γδ T cells re-circulate very slowly—more rapidly than authentic αβ TCR T(RM), but more slowly than the recently described dermal αβ TCR T migratory memory cells (T(MM)). Mice lacking the TCR δ gene (δ(-/-)) had a significant reduction of 2,4-dinitrofluorobenzene (DNFB)-induced contact hypersensitivity (CHS). We created mice deficient in dermal γδ T cells but not DETC, and these mice also showed a markedly reduced CHS response after DNFB challenge. The infiltration of effector T cells during CHS was not reduced in dermal γδ T cell-deficient mice; however, infiltration of Gr-1(+)CD11b(+) neutrophils, as well as ear swelling, was reduced significantly. We next depleted Gr-1(+) neutrophils in vivo, and demonstrated that neutrophils are required for ear swelling, the accepted metric for a CHS response. Depletion of IL-17-producing dermal Vγ4(+) cells and neutralization of IL-17 in vivo, respectively, also led to a significantly reduced CHS response and diminished neutrophil infiltration. Our findings here suggest that dermal γδ T cells have an intermediate phenotype of T cell residence, and play an important role in primary CHS through producing IL-17 to promote neutrophil infiltration. Public Library of Science 2017-01-12 /pmc/articles/PMC5230790/ /pubmed/28081153 http://dx.doi.org/10.1371/journal.pone.0169397 Text en © 2017 Jiang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Jiang, Xiaodong
Park, Chang Ook
Geddes Sweeney, Jenna
Yoo, Min Jae
Gaide, Olivier
Kupper, Thomas Seth
Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity
title Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity
title_full Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity
title_fullStr Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity
title_full_unstemmed Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity
title_short Dermal γδ T Cells Do Not Freely Re-Circulate Out of Skin and Produce IL-17 to Promote Neutrophil Infiltration during Primary Contact Hypersensitivity
title_sort dermal γδ t cells do not freely re-circulate out of skin and produce il-17 to promote neutrophil infiltration during primary contact hypersensitivity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5230790/
https://www.ncbi.nlm.nih.gov/pubmed/28081153
http://dx.doi.org/10.1371/journal.pone.0169397
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