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Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis

OBJECTIVE: To compare immune cell phenotype and function in psoriatic arthritis (PsA) versus psoriasis in order to better understand the pathogenesis of PsA. METHODS: In‐depth immunophenotyping of different T cell and dendritic cell subsets was performed in patients with PsA, psoriasis, or axial spo...

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Autores principales: Leijten, Emmerik F., van Kempen, Tessa S., Olde Nordkamp, Michel A., Pouw, Juliette N., Kleinrensink, Nienke J., Vincken, Nanette L., Mertens, Jorre, Balak, Deepak M. W., Verhagen, Fleurieke H., Hartgring, Sarita A., Lubberts, Erik, Tekstra, Janneke, Pandit, Aridaman, Radstake, Timothy R., Boes, Marianne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362143/
https://www.ncbi.nlm.nih.gov/pubmed/33452865
http://dx.doi.org/10.1002/art.41652
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author Leijten, Emmerik F.
van Kempen, Tessa S.
Olde Nordkamp, Michel A.
Pouw, Juliette N.
Kleinrensink, Nienke J.
Vincken, Nanette L.
Mertens, Jorre
Balak, Deepak M. W.
Verhagen, Fleurieke H.
Hartgring, Sarita A.
Lubberts, Erik
Tekstra, Janneke
Pandit, Aridaman
Radstake, Timothy R.
Boes, Marianne
author_facet Leijten, Emmerik F.
van Kempen, Tessa S.
Olde Nordkamp, Michel A.
Pouw, Juliette N.
Kleinrensink, Nienke J.
Vincken, Nanette L.
Mertens, Jorre
Balak, Deepak M. W.
Verhagen, Fleurieke H.
Hartgring, Sarita A.
Lubberts, Erik
Tekstra, Janneke
Pandit, Aridaman
Radstake, Timothy R.
Boes, Marianne
author_sort Leijten, Emmerik F.
collection PubMed
description OBJECTIVE: To compare immune cell phenotype and function in psoriatic arthritis (PsA) versus psoriasis in order to better understand the pathogenesis of PsA. METHODS: In‐depth immunophenotyping of different T cell and dendritic cell subsets was performed in patients with PsA, psoriasis, or axial spondyloarthritis and healthy controls. Subsequently, we analyzed cells from peripheral blood, synovial fluid (SF), and skin biopsy specimens using flow cytometry, along with high‐throughput transcriptome analyses and functional assays on the specific cell populations that appeared to differentiate PsA from psoriasis. RESULTS: Compared to healthy controls, the peripheral blood of patients with PsA was characterized by an increase in regulatory CD4+ T cells and interleukin‐17A (IL‐17A) and IL‐22 coproducing CD8+ T cells. One population specifically differentiated PsA from psoriasis: i.e., CD8+CCR10+ T cells were enriched in PsA. CD8+CCR10+ T cells expressed high levels of DNAX accessory molecule 1 and were effector memory cells that coexpressed skin‐homing receptors CCR4 and cutaneous lymphocyte antigen. CD8+CCR10+ T cells were detected under inflammatory and homeostatic conditions in skin, but were not enriched in SF. Gene profiling further revealed that CD8+CCR10+ T cells expressed GATA3, FOXP3, and core transcriptional signature of tissue‐resident memory T cells, including CD103. Specific genes, including RORC, IFNAR1, and ERAP1, were up‐regulated in PsA compared to psoriasis. CD8+CCR10+ T cells were endowed with a Tc2/22‐like cytokine profile, lacked cytotoxic potential, and displayed overall regulatory function. CONCLUSION: Tissue‐resident memory CD8+ T cells derived from the skin are enhanced in the circulation of patients with PsA compared to patients with psoriasis alone. This may indicate that aberrances in cutaneous tissue homeostasis contribute to arthritis development.
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spelling pubmed-83621432021-08-17 Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis Leijten, Emmerik F. van Kempen, Tessa S. Olde Nordkamp, Michel A. Pouw, Juliette N. Kleinrensink, Nienke J. Vincken, Nanette L. Mertens, Jorre Balak, Deepak M. W. Verhagen, Fleurieke H. Hartgring, Sarita A. Lubberts, Erik Tekstra, Janneke Pandit, Aridaman Radstake, Timothy R. Boes, Marianne Arthritis Rheumatol Psoriatic Arthritis OBJECTIVE: To compare immune cell phenotype and function in psoriatic arthritis (PsA) versus psoriasis in order to better understand the pathogenesis of PsA. METHODS: In‐depth immunophenotyping of different T cell and dendritic cell subsets was performed in patients with PsA, psoriasis, or axial spondyloarthritis and healthy controls. Subsequently, we analyzed cells from peripheral blood, synovial fluid (SF), and skin biopsy specimens using flow cytometry, along with high‐throughput transcriptome analyses and functional assays on the specific cell populations that appeared to differentiate PsA from psoriasis. RESULTS: Compared to healthy controls, the peripheral blood of patients with PsA was characterized by an increase in regulatory CD4+ T cells and interleukin‐17A (IL‐17A) and IL‐22 coproducing CD8+ T cells. One population specifically differentiated PsA from psoriasis: i.e., CD8+CCR10+ T cells were enriched in PsA. CD8+CCR10+ T cells expressed high levels of DNAX accessory molecule 1 and were effector memory cells that coexpressed skin‐homing receptors CCR4 and cutaneous lymphocyte antigen. CD8+CCR10+ T cells were detected under inflammatory and homeostatic conditions in skin, but were not enriched in SF. Gene profiling further revealed that CD8+CCR10+ T cells expressed GATA3, FOXP3, and core transcriptional signature of tissue‐resident memory T cells, including CD103. Specific genes, including RORC, IFNAR1, and ERAP1, were up‐regulated in PsA compared to psoriasis. CD8+CCR10+ T cells were endowed with a Tc2/22‐like cytokine profile, lacked cytotoxic potential, and displayed overall regulatory function. CONCLUSION: Tissue‐resident memory CD8+ T cells derived from the skin are enhanced in the circulation of patients with PsA compared to patients with psoriasis alone. This may indicate that aberrances in cutaneous tissue homeostasis contribute to arthritis development. John Wiley and Sons Inc. 2021-05-25 2021-07 /pmc/articles/PMC8362143/ /pubmed/33452865 http://dx.doi.org/10.1002/art.41652 Text en © 2021 The Authors. Arthritis & Rheumatology published by Wiley Periodicals LLC on behalf of American College of Rheumatology. https://creativecommons.org/licenses/by-nc/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc/4.0/ (https://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Psoriatic Arthritis
Leijten, Emmerik F.
van Kempen, Tessa S.
Olde Nordkamp, Michel A.
Pouw, Juliette N.
Kleinrensink, Nienke J.
Vincken, Nanette L.
Mertens, Jorre
Balak, Deepak M. W.
Verhagen, Fleurieke H.
Hartgring, Sarita A.
Lubberts, Erik
Tekstra, Janneke
Pandit, Aridaman
Radstake, Timothy R.
Boes, Marianne
Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis
title Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis
title_full Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis
title_fullStr Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis
title_full_unstemmed Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis
title_short Tissue‐Resident Memory CD8+ T Cells From Skin Differentiate Psoriatic Arthritis From Psoriasis
title_sort tissue‐resident memory cd8+ t cells from skin differentiate psoriatic arthritis from psoriasis
topic Psoriatic Arthritis
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8362143/
https://www.ncbi.nlm.nih.gov/pubmed/33452865
http://dx.doi.org/10.1002/art.41652
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