Cytokine inductions and intracellular signal profiles by stimulation of dsRNA and SEB in the macrophages and epithelial cells
Cytokine inductions and intracellular signal profiles by stimulation of dsRNA and SEB in the macrophages and epithelial cells
Foreign molecules, including viruses and bacteria-derived toxins, can also induce airway inflammation. However, to the best of our knowledge, the roles of these molecules in the development of airway inflammation have not been fully elucidated. Herein, we investigated the precise role and synergistic effect of virus-mimicking double-stranded RNA (dsRNA) and staphylococcal enterotoxin B (SEB) in macrophages and epithelial cells. To identify cytokine expression profiles, both the THP-1-derived macrophages and BEAS-2B epithelial cells were stimulated with dsRNA or SEB. A total of 21 cytokines were evaluated in the culture supernatants. We observed that stimulation with dsRNA induced cytokine production in both cell types. However, cytokine production was not induced in SEB-stimulated epithelial cells, compared to the macrophages. The synergistic effect of dsRNA and SEB was evaluated observing cytokine level and intracellular phospho-signaling. Fifteen different types were detected in high-dose dsRNA-stimulated epithelial cells, and 12 distinct types were detected in macrophages; those found in macrophages lacked interferon production compared to the epithelial cells. Notably, a synergistic effect of cytokine induction by co-stimulation of dsRNA and SEB was observed mainly in epithelial cells, via activation of most intracellular phosphor-signaling. However, macrophages only showed an accumulative effect. This study showed that the type and severity of cytokine productions from the epithelium or macrophages could be affected by different intensities and a combination of dsRNA and SEB. Further studies with this approach may improve our understanding of the development and exacerbation of airway inflammation and asthma.
e15
Choi, Jun-Pyo
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Losol, Purevsuren
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Ayoub, Ghazal
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Ji, Mihong
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Kim, Sae-Hoon
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Cho, Sang-Heon
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Chang, Yoon-Seok
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Choi, Jun-Pyo
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Losol, Purevsuren
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Ayoub, Ghazal
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Ji, Mihong
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Kim, Sae-Hoon
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Cho, Sang-Heon
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Chang, Yoon-Seok
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Choi, Jun-Pyo, Losol, Purevsuren, Ayoub, Ghazal, Ji, Mihong, Kim, Sae-Hoon, Cho, Sang-Heon and Chang, Yoon-Seok
(2022)
Cytokine inductions and intracellular signal profiles by stimulation of dsRNA and SEB in the macrophages and epithelial cells.
Immune network, 22 (2), .
(doi:10.4110/in.2022.22.e15).
Abstract
Foreign molecules, including viruses and bacteria-derived toxins, can also induce airway inflammation. However, to the best of our knowledge, the roles of these molecules in the development of airway inflammation have not been fully elucidated. Herein, we investigated the precise role and synergistic effect of virus-mimicking double-stranded RNA (dsRNA) and staphylococcal enterotoxin B (SEB) in macrophages and epithelial cells. To identify cytokine expression profiles, both the THP-1-derived macrophages and BEAS-2B epithelial cells were stimulated with dsRNA or SEB. A total of 21 cytokines were evaluated in the culture supernatants. We observed that stimulation with dsRNA induced cytokine production in both cell types. However, cytokine production was not induced in SEB-stimulated epithelial cells, compared to the macrophages. The synergistic effect of dsRNA and SEB was evaluated observing cytokine level and intracellular phospho-signaling. Fifteen different types were detected in high-dose dsRNA-stimulated epithelial cells, and 12 distinct types were detected in macrophages; those found in macrophages lacked interferon production compared to the epithelial cells. Notably, a synergistic effect of cytokine induction by co-stimulation of dsRNA and SEB was observed mainly in epithelial cells, via activation of most intracellular phosphor-signaling. However, macrophages only showed an accumulative effect. This study showed that the type and severity of cytokine productions from the epithelium or macrophages could be affected by different intensities and a combination of dsRNA and SEB. Further studies with this approach may improve our understanding of the development and exacerbation of airway inflammation and asthma.
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Accepted/In Press date: 30 March 2022
e-pub ahead of print date: 15 April 2022
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Local EPrints ID: 507156
URI: http://eprints.soton.ac.uk/id/eprint/507156
ISSN: 1598-2629
PURE UUID: 6b0fbc56-5145-41b3-b698-a515fda5007c
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Date deposited: 28 Nov 2025 17:31
Last modified: 29 Nov 2025 03:07
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Author:
Jun-Pyo Choi
Author:
Purevsuren Losol
Author:
Ghazal Ayoub
Author:
Mihong Ji
Author:
Sae-Hoon Kim
Author:
Sang-Heon Cho
Author:
Yoon-Seok Chang
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