Cargando…

Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury

The lung is highly vulnerable during sepsis, yet its functional deterioration accompanied by disturbances in the pulmonary microcirculation is poorly understood. This study aimed to investigate how the pulmonary microcirculation is distorted in sepsis-induced acute lung injury (ALI) and reveal the u...

Descripción completa

Detalles Bibliográficos
Autores principales: Park, Inwon, Kim, Mingyo, Choe, Kibaek, Song, Eunjoo, Seo, Howon, Hwang, Yoonha, Ahn, Jinhyo, Lee, Seung-Hyo, Lee, Jae Hyuk, Jo, You Hwan, Kim, Kyuseok, Koh, Gou Young, Kim, Pilhan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Respiratory Society 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6437604/
https://www.ncbi.nlm.nih.gov/pubmed/30635296
http://dx.doi.org/10.1183/13993003.00786-2018
_version_ 1783406962738724864
author Park, Inwon
Kim, Mingyo
Choe, Kibaek
Song, Eunjoo
Seo, Howon
Hwang, Yoonha
Ahn, Jinhyo
Lee, Seung-Hyo
Lee, Jae Hyuk
Jo, You Hwan
Kim, Kyuseok
Koh, Gou Young
Kim, Pilhan
author_facet Park, Inwon
Kim, Mingyo
Choe, Kibaek
Song, Eunjoo
Seo, Howon
Hwang, Yoonha
Ahn, Jinhyo
Lee, Seung-Hyo
Lee, Jae Hyuk
Jo, You Hwan
Kim, Kyuseok
Koh, Gou Young
Kim, Pilhan
author_sort Park, Inwon
collection PubMed
description The lung is highly vulnerable during sepsis, yet its functional deterioration accompanied by disturbances in the pulmonary microcirculation is poorly understood. This study aimed to investigate how the pulmonary microcirculation is distorted in sepsis-induced acute lung injury (ALI) and reveal the underlying cellular pathophysiologic mechanism. Using a custom-made intravital lung microscopic imaging system in a murine model of sepsis-induced ALI, we achieved direct real-time visualisation of the pulmonary microcirculation and circulating cells in vivo. We derived the functional capillary ratio (FCR) as a quantitative parameter for assessing the fraction of functional microvasculature in the pulmonary microcirculation and dead space. We identified that the FCR rapidly decreases in the early stage of sepsis-induced ALI. The intravital imaging revealed that this decrease resulted from the generation of dead space, which was induced by prolonged neutrophil entrapment within the capillaries. We further showed that the neutrophils had an extended sequestration time and an arrest-like dynamic behaviour, both of which triggered neutrophil aggregates inside the capillaries and arterioles. Finally, we found that Mac-1 (CD11b/CD18) was upregulated in the sequestered neutrophils and that a Mac-1 inhibitor restored the FCR and improved hypoxaemia. Using the intravital lung imaging system, we observed that Mac-1-upregulated neutrophil aggregates led to the generation of dead space in the pulmonary microcirculation that was recovered by a Mac-1 inhibitor in sepsis-induced ALI.
format Online
Article
Text
id pubmed-6437604
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher European Respiratory Society
record_format MEDLINE/PubMed
spelling pubmed-64376042019-04-01 Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury Park, Inwon Kim, Mingyo Choe, Kibaek Song, Eunjoo Seo, Howon Hwang, Yoonha Ahn, Jinhyo Lee, Seung-Hyo Lee, Jae Hyuk Jo, You Hwan Kim, Kyuseok Koh, Gou Young Kim, Pilhan Eur Respir J Original Articles The lung is highly vulnerable during sepsis, yet its functional deterioration accompanied by disturbances in the pulmonary microcirculation is poorly understood. This study aimed to investigate how the pulmonary microcirculation is distorted in sepsis-induced acute lung injury (ALI) and reveal the underlying cellular pathophysiologic mechanism. Using a custom-made intravital lung microscopic imaging system in a murine model of sepsis-induced ALI, we achieved direct real-time visualisation of the pulmonary microcirculation and circulating cells in vivo. We derived the functional capillary ratio (FCR) as a quantitative parameter for assessing the fraction of functional microvasculature in the pulmonary microcirculation and dead space. We identified that the FCR rapidly decreases in the early stage of sepsis-induced ALI. The intravital imaging revealed that this decrease resulted from the generation of dead space, which was induced by prolonged neutrophil entrapment within the capillaries. We further showed that the neutrophils had an extended sequestration time and an arrest-like dynamic behaviour, both of which triggered neutrophil aggregates inside the capillaries and arterioles. Finally, we found that Mac-1 (CD11b/CD18) was upregulated in the sequestered neutrophils and that a Mac-1 inhibitor restored the FCR and improved hypoxaemia. Using the intravital lung imaging system, we observed that Mac-1-upregulated neutrophil aggregates led to the generation of dead space in the pulmonary microcirculation that was recovered by a Mac-1 inhibitor in sepsis-induced ALI. European Respiratory Society 2019-03-28 /pmc/articles/PMC6437604/ /pubmed/30635296 http://dx.doi.org/10.1183/13993003.00786-2018 Text en Copyright ©ERS 2019 http://creativecommons.org/licenses/by-nc/4.0/This version is distributed under the terms of the Creative Commons Attribution Non-Commercial Licence 4.0.
spellingShingle Original Articles
Park, Inwon
Kim, Mingyo
Choe, Kibaek
Song, Eunjoo
Seo, Howon
Hwang, Yoonha
Ahn, Jinhyo
Lee, Seung-Hyo
Lee, Jae Hyuk
Jo, You Hwan
Kim, Kyuseok
Koh, Gou Young
Kim, Pilhan
Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
title Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
title_full Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
title_fullStr Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
title_full_unstemmed Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
title_short Neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
title_sort neutrophils disturb pulmonary microcirculation in sepsis-induced acute lung injury
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6437604/
https://www.ncbi.nlm.nih.gov/pubmed/30635296
http://dx.doi.org/10.1183/13993003.00786-2018
work_keys_str_mv AT parkinwon neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT kimmingyo neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT choekibaek neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT songeunjoo neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT seohowon neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT hwangyoonha neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT ahnjinhyo neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT leeseunghyo neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT leejaehyuk neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT joyouhwan neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT kimkyuseok neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT kohgouyoung neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury
AT kimpilhan neutrophilsdisturbpulmonarymicrocirculationinsepsisinducedacutelunginjury