Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF
Summary: Regulatory T cells (Treg) prevent the migration of effector T cells toward sites of inflammation, thereby limiting disease progression. We investigated this aspect of Treg function using psoriatic arthritis (PsA) as an exemplar of chronic inflammation. Patients with PsA had an increased Th1...
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doaj-c68d354117f2470399042318fcd4a6552021-09-25T05:09:57ZengElsevieriScience2589-00422021-09-01249102973Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNFDao X. Nguyen0Helen M. Baldwin1Amara N. Ezeonyeji2Mohammed Rohan Butt3Michael R. Ehrenstein4Centre for Rheumatology, Division of Medicine, University College London, 5 University Street, WC1E 6JF London, UKCentre for Rheumatology, Division of Medicine, University College London, 5 University Street, WC1E 6JF London, UKCentre for Rheumatology, Division of Medicine, University College London, 5 University Street, WC1E 6JF London, UKCentre for Rheumatology, Division of Medicine, University College London, 5 University Street, WC1E 6JF London, UKCentre for Rheumatology, Division of Medicine, University College London, 5 University Street, WC1E 6JF London, UK; Corresponding authorSummary: Regulatory T cells (Treg) prevent the migration of effector T cells toward sites of inflammation, thereby limiting disease progression. We investigated this aspect of Treg function using psoriatic arthritis (PsA) as an exemplar of chronic inflammation. Patients with PsA had an increased Th17:Treg ratio which was reversed by anti-tumor necrosis factor (TNF) therapy. Utilizing an in vitro migration assay, Treg from patients with PsA treated with conventional therapy paradoxically boosted CCR6+ effector T-cell (a surrogate for Th17) migration toward CCL20. In contrast, Treg from patients with PsA treated with anti-TNF suppressed CCL20-driven effector T-cell migration. The boosting effect of TNF blockade upon Treg suppression of migration was accompanied by increased effector T-cell CCL20 production and enhanced interaction between Treg and effector T cells. This study provides mechanistic insight into Treg modulation of effector T-cell migration in patients with chronic inflammation and how this can be targeted by therapy.http://www.sciencedirect.com/science/article/pii/S258900422100941Xbiological sciencesimmunologyimmune system disorder |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Dao X. Nguyen Helen M. Baldwin Amara N. Ezeonyeji Mohammed Rohan Butt Michael R. Ehrenstein |
spellingShingle |
Dao X. Nguyen Helen M. Baldwin Amara N. Ezeonyeji Mohammed Rohan Butt Michael R. Ehrenstein Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF iScience biological sciences immunology immune system disorder |
author_facet |
Dao X. Nguyen Helen M. Baldwin Amara N. Ezeonyeji Mohammed Rohan Butt Michael R. Ehrenstein |
author_sort |
Dao X. Nguyen |
title |
Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF |
title_short |
Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF |
title_full |
Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF |
title_fullStr |
Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF |
title_full_unstemmed |
Regulatory T cells enhance Th17 migration in psoriatic arthritis which is reversed by anti-TNF |
title_sort |
regulatory t cells enhance th17 migration in psoriatic arthritis which is reversed by anti-tnf |
publisher |
Elsevier |
series |
iScience |
issn |
2589-0042 |
publishDate |
2021-09-01 |
description |
Summary: Regulatory T cells (Treg) prevent the migration of effector T cells toward sites of inflammation, thereby limiting disease progression. We investigated this aspect of Treg function using psoriatic arthritis (PsA) as an exemplar of chronic inflammation. Patients with PsA had an increased Th17:Treg ratio which was reversed by anti-tumor necrosis factor (TNF) therapy. Utilizing an in vitro migration assay, Treg from patients with PsA treated with conventional therapy paradoxically boosted CCR6+ effector T-cell (a surrogate for Th17) migration toward CCL20. In contrast, Treg from patients with PsA treated with anti-TNF suppressed CCL20-driven effector T-cell migration. The boosting effect of TNF blockade upon Treg suppression of migration was accompanied by increased effector T-cell CCL20 production and enhanced interaction between Treg and effector T cells. This study provides mechanistic insight into Treg modulation of effector T-cell migration in patients with chronic inflammation and how this can be targeted by therapy. |
topic |
biological sciences immunology immune system disorder |
url |
http://www.sciencedirect.com/science/article/pii/S258900422100941X |
work_keys_str_mv |
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