Cargando…
An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation
Interactions between fibroblasts and immune cells play an important role in tissue inflammation. Previous studies have found that eosinophils activated with interleukin-3 (IL-3) degranulate on aggregated immunoglobulin G (IgG) and release mediators that activate fibroblasts in the lung. However, the...
Autores principales: | , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2022
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558094/ https://www.ncbi.nlm.nih.gov/pubmed/36246374 http://dx.doi.org/10.3389/fbioe.2022.993872 |
_version_ | 1784807371881578496 |
---|---|
author | Zeng, Yuting Su, Xiaojing Takezawa, Meg G. Fichtinger, Paul S. Lee, Ulri N. Pippin, Jeffery W. Shankland, Stuart J. Lim, Fang Yun Denlinger, Loren C. Jarjour, Nizar N. Mathur, Sameer K. Sandbo, Nathan Berthier, Erwin Esnault, Stephane Bernau, Ksenija Theberge, Ashleigh B. |
author_facet | Zeng, Yuting Su, Xiaojing Takezawa, Meg G. Fichtinger, Paul S. Lee, Ulri N. Pippin, Jeffery W. Shankland, Stuart J. Lim, Fang Yun Denlinger, Loren C. Jarjour, Nizar N. Mathur, Sameer K. Sandbo, Nathan Berthier, Erwin Esnault, Stephane Bernau, Ksenija Theberge, Ashleigh B. |
author_sort | Zeng, Yuting |
collection | PubMed |
description | Interactions between fibroblasts and immune cells play an important role in tissue inflammation. Previous studies have found that eosinophils activated with interleukin-3 (IL-3) degranulate on aggregated immunoglobulin G (IgG) and release mediators that activate fibroblasts in the lung. However, these studies were done with eosinophil-conditioned media that have the capacity to investigate only one-way signaling from eosinophils to fibroblasts. Here, we demonstrate a coculture model of primary normal human lung fibroblasts (HLFs) and human blood eosinophils from patients with allergy and asthma using an open microfluidic coculture device. In our device, the two types of cells can communicate via two-way soluble factor signaling in the shared media while being physically separated by a half wall. Initially, we assessed the level of eosinophil degranulation by their release of eosinophil-derived neurotoxin (EDN). Next, we analyzed the inflammation-associated genes and soluble factors using reverse transcription quantitative polymerase chain reaction (RT-qPCR) and multiplex immunoassays, respectively. Our results suggest an induction of a proinflammatory fibroblast phenotype of HLFs following the coculture with degranulating eosinophils, validating our previous findings. Additionally, we present a new result that indicate potential impacts of activated HLFs back on eosinophils. This open microfluidic coculture platform provides unique opportunities to investigate the intercellular signaling between the two cell types and their roles in airway inflammation and remodeling. |
format | Online Article Text |
id | pubmed-9558094 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2022 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-95580942022-10-14 An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation Zeng, Yuting Su, Xiaojing Takezawa, Meg G. Fichtinger, Paul S. Lee, Ulri N. Pippin, Jeffery W. Shankland, Stuart J. Lim, Fang Yun Denlinger, Loren C. Jarjour, Nizar N. Mathur, Sameer K. Sandbo, Nathan Berthier, Erwin Esnault, Stephane Bernau, Ksenija Theberge, Ashleigh B. Front Bioeng Biotechnol Bioengineering and Biotechnology Interactions between fibroblasts and immune cells play an important role in tissue inflammation. Previous studies have found that eosinophils activated with interleukin-3 (IL-3) degranulate on aggregated immunoglobulin G (IgG) and release mediators that activate fibroblasts in the lung. However, these studies were done with eosinophil-conditioned media that have the capacity to investigate only one-way signaling from eosinophils to fibroblasts. Here, we demonstrate a coculture model of primary normal human lung fibroblasts (HLFs) and human blood eosinophils from patients with allergy and asthma using an open microfluidic coculture device. In our device, the two types of cells can communicate via two-way soluble factor signaling in the shared media while being physically separated by a half wall. Initially, we assessed the level of eosinophil degranulation by their release of eosinophil-derived neurotoxin (EDN). Next, we analyzed the inflammation-associated genes and soluble factors using reverse transcription quantitative polymerase chain reaction (RT-qPCR) and multiplex immunoassays, respectively. Our results suggest an induction of a proinflammatory fibroblast phenotype of HLFs following the coculture with degranulating eosinophils, validating our previous findings. Additionally, we present a new result that indicate potential impacts of activated HLFs back on eosinophils. This open microfluidic coculture platform provides unique opportunities to investigate the intercellular signaling between the two cell types and their roles in airway inflammation and remodeling. Frontiers Media S.A. 2022-09-29 /pmc/articles/PMC9558094/ /pubmed/36246374 http://dx.doi.org/10.3389/fbioe.2022.993872 Text en Copyright © 2022 Zeng, Su, Takezawa, Fichtinger, Lee, Pippin, Shankland, Lim, Denlinger, Jarjour, Mathur, Sandbo, Berthier, Esnault, Bernau and Theberge. 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 | Bioengineering and Biotechnology Zeng, Yuting Su, Xiaojing Takezawa, Meg G. Fichtinger, Paul S. Lee, Ulri N. Pippin, Jeffery W. Shankland, Stuart J. Lim, Fang Yun Denlinger, Loren C. Jarjour, Nizar N. Mathur, Sameer K. Sandbo, Nathan Berthier, Erwin Esnault, Stephane Bernau, Ksenija Theberge, Ashleigh B. An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
title | An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
title_full | An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
title_fullStr | An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
title_full_unstemmed | An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
title_short | An open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
title_sort | open microfluidic coculture model of fibroblasts and eosinophils to investigate mechanisms of airway inflammation |
topic | Bioengineering and Biotechnology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9558094/ https://www.ncbi.nlm.nih.gov/pubmed/36246374 http://dx.doi.org/10.3389/fbioe.2022.993872 |
work_keys_str_mv | AT zengyuting anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT suxiaojing anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT takezawamegg anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT fichtingerpauls anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT leeulrin anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT pippinjefferyw anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT shanklandstuartj anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT limfangyun anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT denlingerlorenc anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT jarjournizarn anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT mathursameerk anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT sandbonathan anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT berthiererwin anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT esnaultstephane anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT bernauksenija anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT thebergeashleighb anopenmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT zengyuting openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT suxiaojing openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT takezawamegg openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT fichtingerpauls openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT leeulrin openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT pippinjefferyw openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT shanklandstuartj openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT limfangyun openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT denlingerlorenc openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT jarjournizarn openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT mathursameerk openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT sandbonathan openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT berthiererwin openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT esnaultstephane openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT bernauksenija openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation AT thebergeashleighb openmicrofluidiccoculturemodeloffibroblastsandeosinophilstoinvestigatemechanismsofairwayinflammation |