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Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures

Lymphangiogenesis associated with tertiary lymphoid structure (TLS) has been reported in numerous studies. However, the kinetics and dynamic changes occurring to the lymphatic vascular network during TLS development have not been studied. Using a viral-induced, resolving model of TLS formation in th...

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Autores principales: Nayar, Saba, Campos, Joana, Chung, Ming May, Navarro-Núñez, Leyre, Chachlani, Menka, Steinthal, Nathalie, Gardner, David H., Rankin, Philip, Cloake, Thomas, Caamaño, Jorge H., McGettrick, Helen M., Watson, Steve P., Luther, Sanjiv, Buckley, Christopher D., Barone, Francesca
Formato: Online Artículo Texto
Lenguaje:English
Publicado: AAI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4991245/
https://www.ncbi.nlm.nih.gov/pubmed/27474071
http://dx.doi.org/10.4049/jimmunol.1500686
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author Nayar, Saba
Campos, Joana
Chung, Ming May
Navarro-Núñez, Leyre
Chachlani, Menka
Steinthal, Nathalie
Gardner, David H.
Rankin, Philip
Cloake, Thomas
Caamaño, Jorge H.
McGettrick, Helen M.
Watson, Steve P.
Luther, Sanjiv
Buckley, Christopher D.
Barone, Francesca
author_facet Nayar, Saba
Campos, Joana
Chung, Ming May
Navarro-Núñez, Leyre
Chachlani, Menka
Steinthal, Nathalie
Gardner, David H.
Rankin, Philip
Cloake, Thomas
Caamaño, Jorge H.
McGettrick, Helen M.
Watson, Steve P.
Luther, Sanjiv
Buckley, Christopher D.
Barone, Francesca
author_sort Nayar, Saba
collection PubMed
description Lymphangiogenesis associated with tertiary lymphoid structure (TLS) has been reported in numerous studies. However, the kinetics and dynamic changes occurring to the lymphatic vascular network during TLS development have not been studied. Using a viral-induced, resolving model of TLS formation in the salivary glands of adult mice we demonstrate that the expansion of the lymphatic vascular network is tightly regulated. Lymphatic vessel expansion occurs in two distinct phases. The first wave of expansion is dependent on IL-7. The second phase, responsible for leukocyte exit from the glands, is regulated by lymphotoxin (LT)βR signaling. These findings, while highlighting the tight regulation of the lymphatic response to inflammation, suggest that targeting the LTα(1)β(2)/LTβR pathway in TLS-associated pathologies might impair a natural proresolving mechanism for lymphocyte exit from the tissues and account for the failure of therapeutic strategies that target these molecules in diseases such as rheumatoid arthritis.
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spelling pubmed-49912452016-08-22 Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures Nayar, Saba Campos, Joana Chung, Ming May Navarro-Núñez, Leyre Chachlani, Menka Steinthal, Nathalie Gardner, David H. Rankin, Philip Cloake, Thomas Caamaño, Jorge H. McGettrick, Helen M. Watson, Steve P. Luther, Sanjiv Buckley, Christopher D. Barone, Francesca J Immunol Mucosal Immunology Lymphangiogenesis associated with tertiary lymphoid structure (TLS) has been reported in numerous studies. However, the kinetics and dynamic changes occurring to the lymphatic vascular network during TLS development have not been studied. Using a viral-induced, resolving model of TLS formation in the salivary glands of adult mice we demonstrate that the expansion of the lymphatic vascular network is tightly regulated. Lymphatic vessel expansion occurs in two distinct phases. The first wave of expansion is dependent on IL-7. The second phase, responsible for leukocyte exit from the glands, is regulated by lymphotoxin (LT)βR signaling. These findings, while highlighting the tight regulation of the lymphatic response to inflammation, suggest that targeting the LTα(1)β(2)/LTβR pathway in TLS-associated pathologies might impair a natural proresolving mechanism for lymphocyte exit from the tissues and account for the failure of therapeutic strategies that target these molecules in diseases such as rheumatoid arthritis. AAI 2016-09-01 2016-07-29 /pmc/articles/PMC4991245/ /pubmed/27474071 http://dx.doi.org/10.4049/jimmunol.1500686 Text en Copyright © 2016 The Authors This is an open-access article distributed under the terms of the CC-BY 3.0 Unported license.
spellingShingle Mucosal Immunology
Nayar, Saba
Campos, Joana
Chung, Ming May
Navarro-Núñez, Leyre
Chachlani, Menka
Steinthal, Nathalie
Gardner, David H.
Rankin, Philip
Cloake, Thomas
Caamaño, Jorge H.
McGettrick, Helen M.
Watson, Steve P.
Luther, Sanjiv
Buckley, Christopher D.
Barone, Francesca
Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures
title Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures
title_full Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures
title_fullStr Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures
title_full_unstemmed Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures
title_short Bimodal Expansion of the Lymphatic Vessels Is Regulated by the Sequential Expression of IL-7 and Lymphotoxin α(1)β(2) in Newly Formed Tertiary Lymphoid Structures
title_sort bimodal expansion of the lymphatic vessels is regulated by the sequential expression of il-7 and lymphotoxin α(1)β(2) in newly formed tertiary lymphoid structures
topic Mucosal Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4991245/
https://www.ncbi.nlm.nih.gov/pubmed/27474071
http://dx.doi.org/10.4049/jimmunol.1500686
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