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Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment

Clearance of apoptotic neutrophils by alveolar macrophages plays an important role in the resolution phase of lung inflammation. If not cleared, apoptotic neutrophils are postulated to release histotoxic granular contents. Since numerous cellular proteins are degraded during apoptosis, we sought to...

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Autores principales: Liu, Chien-Ying, Liu, Yun-Hen, Lin, Shu-Min, Yu, Chih-Ten, Wang, Chun-Hua, Lin, Horng-Chyuan, Lin, Chien-Huang, Kuo, Han-Pin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Kluwer Academic Publishers 2003
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7102366/
https://www.ncbi.nlm.nih.gov/pubmed/14631114
http://dx.doi.org/10.1007/BF02256327
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author Liu, Chien-Ying
Liu, Yun-Hen
Lin, Shu-Min
Yu, Chih-Ten
Wang, Chun-Hua
Lin, Horng-Chyuan
Lin, Chien-Huang
Kuo, Han-Pin
author_facet Liu, Chien-Ying
Liu, Yun-Hen
Lin, Shu-Min
Yu, Chih-Ten
Wang, Chun-Hua
Lin, Horng-Chyuan
Lin, Chien-Huang
Kuo, Han-Pin
author_sort Liu, Chien-Ying
collection PubMed
description Clearance of apoptotic neutrophils by alveolar macrophages plays an important role in the resolution phase of lung inflammation. If not cleared, apoptotic neutrophils are postulated to release histotoxic granular contents. Since numerous cellular proteins are degraded during apoptosis, we sought to determine whether functional serine proteinases are indeed released by apoptosing neutrophils in vitro. In a coculture system, cytokine-activated neutrophils induced detachment in the human epithelial cell line, A549. This process was CD18- and serine proteinase-dependent. Early apoptotic neutrophils induced significant detachment, but live, senescent, resting neutrophils and terminal, secondary necrotic neutrophils had a different effect. This detachment process was CD18-independent but serine proteinase-dependent. Similarly, detachment occurred with primary human small airway epithelial cells. Notably, epithelial cell detachment correlated with the transition of early apoptotic neutrophils to secondary necrosis and with the accumulation of elastase in the supernatant. The membrane integrity of lung epithelial cells was damaged in advance of significant cell detachment. These observations suggest that not only live activated neutrophils but also apoptosing neutrophils can reveal functional elastase activities. Furthermore, the rapidity of the transition emphasizes the importance of the prompt clearance of apoptotic neutrophils before they progress to secondary necrosis at the site of lung inflammation.
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spelling pubmed-71023662020-03-31 Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment Liu, Chien-Ying Liu, Yun-Hen Lin, Shu-Min Yu, Chih-Ten Wang, Chun-Hua Lin, Horng-Chyuan Lin, Chien-Huang Kuo, Han-Pin J Biomed Sci Original Paper Clearance of apoptotic neutrophils by alveolar macrophages plays an important role in the resolution phase of lung inflammation. If not cleared, apoptotic neutrophils are postulated to release histotoxic granular contents. Since numerous cellular proteins are degraded during apoptosis, we sought to determine whether functional serine proteinases are indeed released by apoptosing neutrophils in vitro. In a coculture system, cytokine-activated neutrophils induced detachment in the human epithelial cell line, A549. This process was CD18- and serine proteinase-dependent. Early apoptotic neutrophils induced significant detachment, but live, senescent, resting neutrophils and terminal, secondary necrotic neutrophils had a different effect. This detachment process was CD18-independent but serine proteinase-dependent. Similarly, detachment occurred with primary human small airway epithelial cells. Notably, epithelial cell detachment correlated with the transition of early apoptotic neutrophils to secondary necrosis and with the accumulation of elastase in the supernatant. The membrane integrity of lung epithelial cells was damaged in advance of significant cell detachment. These observations suggest that not only live activated neutrophils but also apoptosing neutrophils can reveal functional elastase activities. Furthermore, the rapidity of the transition emphasizes the importance of the prompt clearance of apoptotic neutrophils before they progress to secondary necrosis at the site of lung inflammation. Kluwer Academic Publishers 2003-10 /pmc/articles/PMC7102366/ /pubmed/14631114 http://dx.doi.org/10.1007/BF02256327 Text en © National Science Council 2003 This article is made available via the PMC Open Access Subset for unrestricted research re-use and secondary analysis in any form or by any means with acknowledgement of the original source. These permissions are granted for the duration of the World Health Organization (WHO) declaration of COVID-19 as a global pandemic.
spellingShingle Original Paper
Liu, Chien-Ying
Liu, Yun-Hen
Lin, Shu-Min
Yu, Chih-Ten
Wang, Chun-Hua
Lin, Horng-Chyuan
Lin, Chien-Huang
Kuo, Han-Pin
Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
title Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
title_full Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
title_fullStr Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
title_full_unstemmed Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
title_short Apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
title_sort apoptotic neutrophils undergoing secondary necrosis induce human lung epithelial cell detachment
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7102366/
https://www.ncbi.nlm.nih.gov/pubmed/14631114
http://dx.doi.org/10.1007/BF02256327
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