Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.

BACKGROUND: Prostaglandin D2 (PGD2) and cysteinyl leukotrienes (cysLTs) are lipid mediators derived from mast cells, which activate TH2 cells. The combination of PGD2 and cysLTs (notably cysteinyl leukotriene E4 [LTE4]) enhances TH2 cytokine production. However, the synergistic interaction of cysLTs...

全面介紹

書目詳細資料
Main Authors: Xue, L, Fergusson, J, Salimi, M, Panse, I, Ussher, J, Hegazy, A, Vinall, S, Jackson, D, Hunter, MG, Pettipher, R, Ogg, G, Klenerman, P
格式: Journal article
語言:English
出版: Elsevier 2015
_version_ 1826280653410271232
author Xue, L
Fergusson, J
Salimi, M
Panse, I
Ussher, J
Hegazy, A
Vinall, S
Jackson, D
Hunter, MG
Pettipher, R
Ogg, G
Klenerman, P
author_facet Xue, L
Fergusson, J
Salimi, M
Panse, I
Ussher, J
Hegazy, A
Vinall, S
Jackson, D
Hunter, MG
Pettipher, R
Ogg, G
Klenerman, P
author_sort Xue, L
collection OXFORD
description BACKGROUND: Prostaglandin D2 (PGD2) and cysteinyl leukotrienes (cysLTs) are lipid mediators derived from mast cells, which activate TH2 cells. The combination of PGD2 and cysLTs (notably cysteinyl leukotriene E4 [LTE4]) enhances TH2 cytokine production. However, the synergistic interaction of cysLTs with PGD2 in promoting TH2 cell activation is still poorly understood. The receptors for these mediators are drug targets in the treatment of allergic diseases, and hence understanding their interaction is likely to have clinical implications. OBJECTIVE: We aimed to comprehensively define the roles of PGD2, LTE4, and their combination in activating human TH2 cells and how such activation might allow the TH2 cells to engage downstream effectors, such as neutrophils, which contribute to the pathology of allergic responses. METHODS: The effects of PGD2, LTE4, and their combination on human TH2 cell gene expression were defined by using a microarray, and changes in specific inflammatory pathways were confirmed by means of PCR array, quantitative RT-PCR, ELISA, Luminex, flow cytometry, and functional assays, including analysis of downstream neutrophil activation. Blockade of PGD2 and LTE4 was tested by using TM30089, an antagonist of chemoattractant receptor-homologous molecule expressed on TH2 cells, and montelukast, an antagonist of cysteinyl leukotriene receptor 1. RESULTS: PGD2 and LTE4 altered the transcription of a wide range of genes and induced diverse functional responses in TH2 cells, including cell adhesion, migration, and survival and cytokine production. The combination of these lipids synergistically or additively enhanced TH2 responses and, strikingly, induced marked production of diverse nonclassical TH2 inflammatory mediators, including IL-22, IL-8, and GM-CSF, at concentrations sufficient to affect neutrophil activation. CONCLUSIONS: PGD2 and LTE4 activate TH2 cells through different pathways but act synergistically to promote multiple downstream effector functions, including neutrophil migration and survival. Combined inhibition of both PGD2 and LTE4 pathways might provide an effective therapeutic strategy for allergic responses, particularly those involving interaction between TH2 cells and neutrophils, such as in patients with severe asthma.
first_indexed 2024-03-07T00:16:56Z
format Journal article
id oxford-uuid:7b2bf6ee-fce2-4a3e-9160-593bccdd249c
institution University of Oxford
language English
last_indexed 2024-03-07T00:16:56Z
publishDate 2015
publisher Elsevier
record_format dspace
spelling oxford-uuid:7b2bf6ee-fce2-4a3e-9160-593bccdd249c2022-03-26T20:48:55ZProstaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:7b2bf6ee-fce2-4a3e-9160-593bccdd249cEnglishSymplectic Elements at OxfordElsevier2015Xue, LFergusson, JSalimi, MPanse, IUssher, JHegazy, AVinall, SJackson, DHunter, MGPettipher, ROgg, GKlenerman, PBACKGROUND: Prostaglandin D2 (PGD2) and cysteinyl leukotrienes (cysLTs) are lipid mediators derived from mast cells, which activate TH2 cells. The combination of PGD2 and cysLTs (notably cysteinyl leukotriene E4 [LTE4]) enhances TH2 cytokine production. However, the synergistic interaction of cysLTs with PGD2 in promoting TH2 cell activation is still poorly understood. The receptors for these mediators are drug targets in the treatment of allergic diseases, and hence understanding their interaction is likely to have clinical implications. OBJECTIVE: We aimed to comprehensively define the roles of PGD2, LTE4, and their combination in activating human TH2 cells and how such activation might allow the TH2 cells to engage downstream effectors, such as neutrophils, which contribute to the pathology of allergic responses. METHODS: The effects of PGD2, LTE4, and their combination on human TH2 cell gene expression were defined by using a microarray, and changes in specific inflammatory pathways were confirmed by means of PCR array, quantitative RT-PCR, ELISA, Luminex, flow cytometry, and functional assays, including analysis of downstream neutrophil activation. Blockade of PGD2 and LTE4 was tested by using TM30089, an antagonist of chemoattractant receptor-homologous molecule expressed on TH2 cells, and montelukast, an antagonist of cysteinyl leukotriene receptor 1. RESULTS: PGD2 and LTE4 altered the transcription of a wide range of genes and induced diverse functional responses in TH2 cells, including cell adhesion, migration, and survival and cytokine production. The combination of these lipids synergistically or additively enhanced TH2 responses and, strikingly, induced marked production of diverse nonclassical TH2 inflammatory mediators, including IL-22, IL-8, and GM-CSF, at concentrations sufficient to affect neutrophil activation. CONCLUSIONS: PGD2 and LTE4 activate TH2 cells through different pathways but act synergistically to promote multiple downstream effector functions, including neutrophil migration and survival. Combined inhibition of both PGD2 and LTE4 pathways might provide an effective therapeutic strategy for allergic responses, particularly those involving interaction between TH2 cells and neutrophils, such as in patients with severe asthma.
spellingShingle Xue, L
Fergusson, J
Salimi, M
Panse, I
Ussher, J
Hegazy, A
Vinall, S
Jackson, D
Hunter, MG
Pettipher, R
Ogg, G
Klenerman, P
Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.
title Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.
title_full Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.
title_fullStr Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.
title_full_unstemmed Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.
title_short Prostaglandin D2 and leukotriene E4 synergize to stimulate diverse TH2 functions and TH2 cell/neutrophil crosstalk.
title_sort prostaglandin d2 and leukotriene e4 synergize to stimulate diverse th2 functions and th2 cell neutrophil crosstalk
work_keys_str_mv AT xuel prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT fergussonj prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT salimim prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT pansei prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT ussherj prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT hegazya prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT vinalls prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT jacksond prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT huntermg prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT pettipherr prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT oggg prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk
AT klenermanp prostaglandind2andleukotrienee4synergizetostimulatediverseth2functionsandth2cellneutrophilcrosstalk