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Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis

OBJECTIVE: To identify the key coding genes underlying the biomarkers and pathways associated with giant cell arteritis (GCA), we performed an in situ spatial profiling of molecules involved in the temporal arteries of GCA patients and controls. Furthermore, we performed pharmacogenomic network anal...

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Autores principales: Parreau, Simon, Molina, Elsa, Dumonteil, Stéphanie, Goulabchand, Radjiv, Naves, Thomas, Bois, Melanie C., Akil, Hussein, Terro, Faraj, Fauchais, Anne-Laure, Liozon, Eric, Jauberteau, Marie-Odile, Weyand, Cornelia M., Ly, Kim-Heang
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10512077/
https://www.ncbi.nlm.nih.gov/pubmed/37744332
http://dx.doi.org/10.3389/fimmu.2023.1237986
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author Parreau, Simon
Molina, Elsa
Dumonteil, Stéphanie
Goulabchand, Radjiv
Naves, Thomas
Bois, Melanie C.
Akil, Hussein
Terro, Faraj
Fauchais, Anne-Laure
Liozon, Eric
Jauberteau, Marie-Odile
Weyand, Cornelia M.
Ly, Kim-Heang
author_facet Parreau, Simon
Molina, Elsa
Dumonteil, Stéphanie
Goulabchand, Radjiv
Naves, Thomas
Bois, Melanie C.
Akil, Hussein
Terro, Faraj
Fauchais, Anne-Laure
Liozon, Eric
Jauberteau, Marie-Odile
Weyand, Cornelia M.
Ly, Kim-Heang
author_sort Parreau, Simon
collection PubMed
description OBJECTIVE: To identify the key coding genes underlying the biomarkers and pathways associated with giant cell arteritis (GCA), we performed an in situ spatial profiling of molecules involved in the temporal arteries of GCA patients and controls. Furthermore, we performed pharmacogenomic network analysis to identify potential treatment targets. METHODS: Using human formalin-fixed paraffin-embedded temporal artery biopsy samples (GCA, n = 9; controls, n = 7), we performed a whole transcriptome analysis using the NanoString GeoMx Digital Spatial Profiler. In total, 59 regions of interest were selected in the intima, media, adventitia, and perivascular adipose tissue (PVAT). Differentially expressed genes (DEGs) (fold-change > 2 or < −2, p-adjusted < 0.01) were compared across each layer to build a spatial and pharmacogenomic network and to explore the pathophysiological mechanisms of GCA. RESULTS: Most of the transcriptome (12,076 genes) was upregulated in GCA arteries, compared to control arteries. Among the screened genes, 282, 227, 40, and 5 DEGs were identified in the intima, media, adventitia, and PVAT, respectively. Genes involved in the immune process and vascular remodeling were upregulated within GCA temporal arteries but differed across the arterial layers. The immune-related functions and vascular remodeling were limited to the intima and media. CONCLUSION: This study is the first to perform an in situ spatial profiling characterization of the molecules involved in GCA. The pharmacogenomic network analysis identified potential target genes for approved and novel immunotherapies.
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spelling pubmed-105120772023-09-22 Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis Parreau, Simon Molina, Elsa Dumonteil, Stéphanie Goulabchand, Radjiv Naves, Thomas Bois, Melanie C. Akil, Hussein Terro, Faraj Fauchais, Anne-Laure Liozon, Eric Jauberteau, Marie-Odile Weyand, Cornelia M. Ly, Kim-Heang Front Immunol Immunology OBJECTIVE: To identify the key coding genes underlying the biomarkers and pathways associated with giant cell arteritis (GCA), we performed an in situ spatial profiling of molecules involved in the temporal arteries of GCA patients and controls. Furthermore, we performed pharmacogenomic network analysis to identify potential treatment targets. METHODS: Using human formalin-fixed paraffin-embedded temporal artery biopsy samples (GCA, n = 9; controls, n = 7), we performed a whole transcriptome analysis using the NanoString GeoMx Digital Spatial Profiler. In total, 59 regions of interest were selected in the intima, media, adventitia, and perivascular adipose tissue (PVAT). Differentially expressed genes (DEGs) (fold-change > 2 or < −2, p-adjusted < 0.01) were compared across each layer to build a spatial and pharmacogenomic network and to explore the pathophysiological mechanisms of GCA. RESULTS: Most of the transcriptome (12,076 genes) was upregulated in GCA arteries, compared to control arteries. Among the screened genes, 282, 227, 40, and 5 DEGs were identified in the intima, media, adventitia, and PVAT, respectively. Genes involved in the immune process and vascular remodeling were upregulated within GCA temporal arteries but differed across the arterial layers. The immune-related functions and vascular remodeling were limited to the intima and media. CONCLUSION: This study is the first to perform an in situ spatial profiling characterization of the molecules involved in GCA. The pharmacogenomic network analysis identified potential target genes for approved and novel immunotherapies. Frontiers Media S.A. 2023-09-06 /pmc/articles/PMC10512077/ /pubmed/37744332 http://dx.doi.org/10.3389/fimmu.2023.1237986 Text en Copyright © 2023 Parreau, Molina, Dumonteil, Goulabchand, Naves, Bois, Akil, Terro, Fauchais, Liozon, Jauberteau, Weyand and Ly https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Immunology
Parreau, Simon
Molina, Elsa
Dumonteil, Stéphanie
Goulabchand, Radjiv
Naves, Thomas
Bois, Melanie C.
Akil, Hussein
Terro, Faraj
Fauchais, Anne-Laure
Liozon, Eric
Jauberteau, Marie-Odile
Weyand, Cornelia M.
Ly, Kim-Heang
Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
title Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
title_full Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
title_fullStr Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
title_full_unstemmed Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
title_short Use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
title_sort use of high-plex data provides novel insights into the temporal artery processes of giant cell arteritis
topic Immunology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10512077/
https://www.ncbi.nlm.nih.gov/pubmed/37744332
http://dx.doi.org/10.3389/fimmu.2023.1237986
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