Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli
A key function of human eosinophils is to secrete cytokines, chemokines and cationic proteins, trafficking and releasing these mediators for roles in inflammation and other immune responses. Eosinophil activation leads to secretion of pre-synthesized granule-stored mediators through different mechan...
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2016-10-01
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doaj-108a8a59009849d4aa1fcb79b635ecfc2020-11-24T21:43:03ZengFrontiers Media S.A.Frontiers in Cell and Developmental Biology2296-634X2016-10-01410.3389/fcell.2016.00117205152Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuliPraveen Akuthota0Praveen Akuthota1Lívia A. S. Carmo2Kennedy Bonjour3Ryann Murphy4Thiago P. Silva5Juliana P. Gamalier6Kelsey Capron7John Tigges8Vasilis Toxavidis9Virginia Camacho10Ionita Ghiran11Shigeharu Ueki12Peter F. Weller13Rossana C.N. Melo14Rossana C.N. Melo15Beth Israel Deaconess Medical Center, Harvard Medical SchoolUniversity of California San DiegoFederal University of Juiz de ForaFederal University of Juiz de ForaBeth Israel Deaconess Medical Center, Harvard Medical SchoolFederal University of Juiz de ForaFederal University of Juiz de ForaBeth Israel Deaconess Medical Center, Harvard Medical SchoolBeth Israel Deaconess Medical Center, Harvard Medical SchoolBeth Israel Deaconess Medical Center, Harvard Medical SchoolBeth Israel Deaconess Medical Center, Harvard Medical SchoolBeth Israel Deaconess Medical Center, Harvard Medical SchoolAkita University Graduate School of MedicineBeth Israel Deaconess Medical Center, Harvard Medical SchoolFederal University of Juiz de ForaBeth Israel Deaconess Medical Center, Harvard Medical SchoolA key function of human eosinophils is to secrete cytokines, chemokines and cationic proteins, trafficking and releasing these mediators for roles in inflammation and other immune responses. Eosinophil activation leads to secretion of pre-synthesized granule-stored mediators through different mechanisms, but the ability of eosinophils to secrete extracellular vesicles (EVs), very small vesicles with preserved membrane topology, is still poorly understood. In the present work, we sought to identify and characterize EVs released from human eosinophils during different conditions: after a culturing period or after isolation and stimulation with inflammatory stimuli, which are known to induce eosinophil activation and secretion: CCL11 (eotaxin-1) and tumor necrosis factor alpha (TNF-α). EV production was investigated by nanoscale flow cytometry, conventional transmission electron microscopy (TEM) and pre-embedding immunonanogold EM. The tetraspanins CD63 and CD9 were used as EV biomarkers for both flow cytometry and ultrastructural immunolabeling. Nanoscale flow cytometry showed that human eosinophils produce EVs in culture and that a population of EVs expressed detectable CD9, while CD63 was not consistently detected. When eosinophils were stimulated immediately after isolation and analyzed by TEM, EVs were clearly identified as microvesicles (MVs)outwardly budding off the plasma membrane. Both CCL11 and TNF-α induced significant increases of MVs compared to unstimulated cells.TNF-α induced amplified release of MVs more than CCL11. Eosinophil MV diameters varied from 20-1000 nm. Immunonanogold EM revealed clear immunolabeling for CD63 and CD9 on eosinophil MVs, although not all MVs were labeled. Altogether, we identified, for the first time, that human eosinophils secrete MVs and that this production increases in response to inflammatory stimuli. This is important to understand the complex secretory activities of eosinophils underlying immune responses. The contribution of the eosinophil-derived MVs to the regulation of immune responses awaits further investigation.http://journal.frontiersin.org/Journal/10.3389/fcell.2016.00117/fullInflammationTetraspaninsCD9CD63Transmission electron microscopyTumor necrosis factor alpha (TNF-α) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Praveen Akuthota Praveen Akuthota Lívia A. S. Carmo Kennedy Bonjour Ryann Murphy Thiago P. Silva Juliana P. Gamalier Kelsey Capron John Tigges Vasilis Toxavidis Virginia Camacho Ionita Ghiran Shigeharu Ueki Peter F. Weller Rossana C.N. Melo Rossana C.N. Melo |
spellingShingle |
Praveen Akuthota Praveen Akuthota Lívia A. S. Carmo Kennedy Bonjour Ryann Murphy Thiago P. Silva Juliana P. Gamalier Kelsey Capron John Tigges Vasilis Toxavidis Virginia Camacho Ionita Ghiran Shigeharu Ueki Peter F. Weller Rossana C.N. Melo Rossana C.N. Melo Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli Frontiers in Cell and Developmental Biology Inflammation Tetraspanins CD9 CD63 Transmission electron microscopy Tumor necrosis factor alpha (TNF-α) |
author_facet |
Praveen Akuthota Praveen Akuthota Lívia A. S. Carmo Kennedy Bonjour Ryann Murphy Thiago P. Silva Juliana P. Gamalier Kelsey Capron John Tigges Vasilis Toxavidis Virginia Camacho Ionita Ghiran Shigeharu Ueki Peter F. Weller Rossana C.N. Melo Rossana C.N. Melo |
author_sort |
Praveen Akuthota |
title |
Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli |
title_short |
Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli |
title_full |
Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli |
title_fullStr |
Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli |
title_full_unstemmed |
Extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli |
title_sort |
extracellular microvesicle production by human eosinophils activated by “inflammatory” stimuli |
publisher |
Frontiers Media S.A. |
series |
Frontiers in Cell and Developmental Biology |
issn |
2296-634X |
publishDate |
2016-10-01 |
description |
A key function of human eosinophils is to secrete cytokines, chemokines and cationic proteins, trafficking and releasing these mediators for roles in inflammation and other immune responses. Eosinophil activation leads to secretion of pre-synthesized granule-stored mediators through different mechanisms, but the ability of eosinophils to secrete extracellular vesicles (EVs), very small vesicles with preserved membrane topology, is still poorly understood. In the present work, we sought to identify and characterize EVs released from human eosinophils during different conditions: after a culturing period or after isolation and stimulation with inflammatory stimuli, which are known to induce eosinophil activation and secretion: CCL11 (eotaxin-1) and tumor necrosis factor alpha (TNF-α). EV production was investigated by nanoscale flow cytometry, conventional transmission electron microscopy (TEM) and pre-embedding immunonanogold EM. The tetraspanins CD63 and CD9 were used as EV biomarkers for both flow cytometry and ultrastructural immunolabeling. Nanoscale flow cytometry showed that human eosinophils produce EVs in culture and that a population of EVs expressed detectable CD9, while CD63 was not consistently detected. When eosinophils were stimulated immediately after isolation and analyzed by TEM, EVs were clearly identified as microvesicles (MVs)outwardly budding off the plasma membrane. Both CCL11 and TNF-α induced significant increases of MVs compared to unstimulated cells.TNF-α induced amplified release of MVs more than CCL11. Eosinophil MV diameters varied from 20-1000 nm. Immunonanogold EM revealed clear immunolabeling for CD63 and CD9 on eosinophil MVs, although not all MVs were labeled. Altogether, we identified, for the first time, that human eosinophils secrete MVs and that this production increases in response to inflammatory stimuli. This is important to understand the complex secretory activities of eosinophils underlying immune responses. The contribution of the eosinophil-derived MVs to the regulation of immune responses awaits further investigation. |
topic |
Inflammation Tetraspanins CD9 CD63 Transmission electron microscopy Tumor necrosis factor alpha (TNF-α) |
url |
http://journal.frontiersin.org/Journal/10.3389/fcell.2016.00117/full |
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