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ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies

Giant cell arteritis (GCA) is a common form of primary systemic vasculitis in adults, with no reliable indicators of prognosis or treatment responses. We used single cell technologies to comprehensively map immune cell populations in the blood of patients with GCA and identified the CD66b(+)CD15(+)C...

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Autores principales: Wang, Lihui, Ai, Zhichao, Khoyratty, Tariq, Zec, Kristina, Eames, Hayley L., van Grinsven, Erinke, Hudak, Alison, Morris, Susan, Ahern, David, Monaco, Claudia, Eruslanov, Evgeniy B., Luqmani, Raashid, Udalova, Irina A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7605529/
https://www.ncbi.nlm.nih.gov/pubmed/32960815
http://dx.doi.org/10.1172/jci.insight.139163
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author Wang, Lihui
Ai, Zhichao
Khoyratty, Tariq
Zec, Kristina
Eames, Hayley L.
van Grinsven, Erinke
Hudak, Alison
Morris, Susan
Ahern, David
Monaco, Claudia
Eruslanov, Evgeniy B.
Luqmani, Raashid
Udalova, Irina A.
author_facet Wang, Lihui
Ai, Zhichao
Khoyratty, Tariq
Zec, Kristina
Eames, Hayley L.
van Grinsven, Erinke
Hudak, Alison
Morris, Susan
Ahern, David
Monaco, Claudia
Eruslanov, Evgeniy B.
Luqmani, Raashid
Udalova, Irina A.
author_sort Wang, Lihui
collection PubMed
description Giant cell arteritis (GCA) is a common form of primary systemic vasculitis in adults, with no reliable indicators of prognosis or treatment responses. We used single cell technologies to comprehensively map immune cell populations in the blood of patients with GCA and identified the CD66b(+)CD15(+)CD10(lo/–)CD64(–) band neutrophils and CD66b(hi)CD15(+)CD10(lo/–)CD64(+/bright) myelocytes/metamyelocytes to be unequivocally associated with both the clinical phenotype and response to treatment. Immature neutrophils were resistant to apoptosis, remained in the vasculature for a prolonged period of time, interacted with platelets, and extravasated into the tissue surrounding the temporal arteries of patients with GCA. We discovered that immature neutrophils generated high levels of extracellular reactive oxygen species, leading to enhanced protein oxidation and permeability of endothelial barrier in an in vitro coculture system. The same populations were also detected in other systemic vasculitides. These findings link functions of immature neutrophils to disease pathogenesis, establishing a clinical cellular signature of GCA and suggesting different therapeutic approaches in systemic vascular inflammation.
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spelling pubmed-76055292020-11-04 ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies Wang, Lihui Ai, Zhichao Khoyratty, Tariq Zec, Kristina Eames, Hayley L. van Grinsven, Erinke Hudak, Alison Morris, Susan Ahern, David Monaco, Claudia Eruslanov, Evgeniy B. Luqmani, Raashid Udalova, Irina A. JCI Insight Research Article Giant cell arteritis (GCA) is a common form of primary systemic vasculitis in adults, with no reliable indicators of prognosis or treatment responses. We used single cell technologies to comprehensively map immune cell populations in the blood of patients with GCA and identified the CD66b(+)CD15(+)CD10(lo/–)CD64(–) band neutrophils and CD66b(hi)CD15(+)CD10(lo/–)CD64(+/bright) myelocytes/metamyelocytes to be unequivocally associated with both the clinical phenotype and response to treatment. Immature neutrophils were resistant to apoptosis, remained in the vasculature for a prolonged period of time, interacted with platelets, and extravasated into the tissue surrounding the temporal arteries of patients with GCA. We discovered that immature neutrophils generated high levels of extracellular reactive oxygen species, leading to enhanced protein oxidation and permeability of endothelial barrier in an in vitro coculture system. The same populations were also detected in other systemic vasculitides. These findings link functions of immature neutrophils to disease pathogenesis, establishing a clinical cellular signature of GCA and suggesting different therapeutic approaches in systemic vascular inflammation. American Society for Clinical Investigation 2020-10-15 /pmc/articles/PMC7605529/ /pubmed/32960815 http://dx.doi.org/10.1172/jci.insight.139163 Text en © 2020 Wang et al. http://creativecommons.org/licenses/by/4.0/ This work is licensed under the Creative Commons Attribution 4.0 International License. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/.
spellingShingle Research Article
Wang, Lihui
Ai, Zhichao
Khoyratty, Tariq
Zec, Kristina
Eames, Hayley L.
van Grinsven, Erinke
Hudak, Alison
Morris, Susan
Ahern, David
Monaco, Claudia
Eruslanov, Evgeniy B.
Luqmani, Raashid
Udalova, Irina A.
ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
title ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
title_full ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
title_fullStr ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
title_full_unstemmed ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
title_short ROS-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
title_sort ros-producing immature neutrophils in giant cell arteritis are linked to vascular pathologies
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7605529/
https://www.ncbi.nlm.nih.gov/pubmed/32960815
http://dx.doi.org/10.1172/jci.insight.139163
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