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Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes

Cardiopulmonary bypass (CPB) is required during most cardiac surgeries. CBP drives systemic inflammation and multiorgan dysfunction that is especially severe in neonatal patients. Limited understanding of molecular mechanisms underlying CPB-associated inflammation presents a significant barrier to i...

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Autores principales: Tu, Lan N., Hsieh, Lance, Kajimoto, Masaki, Charette, Kevin, Kibiryeva, Nataliya, Forero, Adriana, Hampson, Sarah, Marshall, Jennifer A., O’Brien, James, Scatena, Marta, Portman, Michael A., Savan, Ram, Benner, Chris, Aliseda, Alberto, Nuri, Muhammad, Bittel, Douglas, Pastuszko, Peter, Nigam, Vishal
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Clinical Investigation 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7821587/
https://www.ncbi.nlm.nih.gov/pubmed/33232305
http://dx.doi.org/10.1172/jci.insight.141341
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author Tu, Lan N.
Hsieh, Lance
Kajimoto, Masaki
Charette, Kevin
Kibiryeva, Nataliya
Forero, Adriana
Hampson, Sarah
Marshall, Jennifer A.
O’Brien, James
Scatena, Marta
Portman, Michael A.
Savan, Ram
Benner, Chris
Aliseda, Alberto
Nuri, Muhammad
Bittel, Douglas
Pastuszko, Peter
Nigam, Vishal
author_facet Tu, Lan N.
Hsieh, Lance
Kajimoto, Masaki
Charette, Kevin
Kibiryeva, Nataliya
Forero, Adriana
Hampson, Sarah
Marshall, Jennifer A.
O’Brien, James
Scatena, Marta
Portman, Michael A.
Savan, Ram
Benner, Chris
Aliseda, Alberto
Nuri, Muhammad
Bittel, Douglas
Pastuszko, Peter
Nigam, Vishal
author_sort Tu, Lan N.
collection PubMed
description Cardiopulmonary bypass (CPB) is required during most cardiac surgeries. CBP drives systemic inflammation and multiorgan dysfunction that is especially severe in neonatal patients. Limited understanding of molecular mechanisms underlying CPB-associated inflammation presents a significant barrier to improve clinical outcomes. To better understand these clinical issues, we performed mRNA sequencing on total circulating leukocytes from neonatal patients undergoing CPB. Our data identify myeloid cells, particularly monocytes, as the major cell type driving transcriptional responses to CPB. Furthermore, IL-8 and TNF-α were inflammatory cytokines robustly upregulated in leukocytes from both patients and piglets exposed to CPB. To delineate the molecular mechanism, we exposed THP-1 human monocytic cells to CPB-like conditions, including artificial surfaces, high shear stress, and cooling/rewarming. Shear stress was found to drive cytokine upregulation via calcium-dependent signaling pathways. We also observed that a subpopulation of THP-1 cells died via TNF-α–mediated necroptosis, which we hypothesize contributes to post-CPB inflammation. Our study identifies a shear stress–modulated molecular mechanism that drives systemic inflammation in pediatric CPB patients. These are also the first data to our knowledge to demonstrate that shear stress causes necroptosis. Finally, we observe that calcium and TNF-α signaling are potentially novel targets to ameliorate post-CPB inflammation.
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spelling pubmed-78215872021-01-25 Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes Tu, Lan N. Hsieh, Lance Kajimoto, Masaki Charette, Kevin Kibiryeva, Nataliya Forero, Adriana Hampson, Sarah Marshall, Jennifer A. O’Brien, James Scatena, Marta Portman, Michael A. Savan, Ram Benner, Chris Aliseda, Alberto Nuri, Muhammad Bittel, Douglas Pastuszko, Peter Nigam, Vishal JCI Insight Research Article Cardiopulmonary bypass (CPB) is required during most cardiac surgeries. CBP drives systemic inflammation and multiorgan dysfunction that is especially severe in neonatal patients. Limited understanding of molecular mechanisms underlying CPB-associated inflammation presents a significant barrier to improve clinical outcomes. To better understand these clinical issues, we performed mRNA sequencing on total circulating leukocytes from neonatal patients undergoing CPB. Our data identify myeloid cells, particularly monocytes, as the major cell type driving transcriptional responses to CPB. Furthermore, IL-8 and TNF-α were inflammatory cytokines robustly upregulated in leukocytes from both patients and piglets exposed to CPB. To delineate the molecular mechanism, we exposed THP-1 human monocytic cells to CPB-like conditions, including artificial surfaces, high shear stress, and cooling/rewarming. Shear stress was found to drive cytokine upregulation via calcium-dependent signaling pathways. We also observed that a subpopulation of THP-1 cells died via TNF-α–mediated necroptosis, which we hypothesize contributes to post-CPB inflammation. Our study identifies a shear stress–modulated molecular mechanism that drives systemic inflammation in pediatric CPB patients. These are also the first data to our knowledge to demonstrate that shear stress causes necroptosis. Finally, we observe that calcium and TNF-α signaling are potentially novel targets to ameliorate post-CPB inflammation. American Society for Clinical Investigation 2021-01-11 /pmc/articles/PMC7821587/ /pubmed/33232305 http://dx.doi.org/10.1172/jci.insight.141341 Text en © 2021 Lan Tu et al. https://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/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Tu, Lan N.
Hsieh, Lance
Kajimoto, Masaki
Charette, Kevin
Kibiryeva, Nataliya
Forero, Adriana
Hampson, Sarah
Marshall, Jennifer A.
O’Brien, James
Scatena, Marta
Portman, Michael A.
Savan, Ram
Benner, Chris
Aliseda, Alberto
Nuri, Muhammad
Bittel, Douglas
Pastuszko, Peter
Nigam, Vishal
Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
title Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
title_full Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
title_fullStr Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
title_full_unstemmed Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
title_short Shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
title_sort shear stress associated with cardiopulmonary bypass induces expression of inflammatory cytokines and necroptosis in monocytes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7821587/
https://www.ncbi.nlm.nih.gov/pubmed/33232305
http://dx.doi.org/10.1172/jci.insight.141341
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