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Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats

BACKGROUND: Patients with acute respiratory distress syndrome receiving mechanical ventilation show inhomogeneous lung aeration. Atelectasis during uneven mechanical ventilation leads to alveolar hypoxia and could therefore result in lung inflammation and injury. We aimed to elucidate whether and ho...

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Autores principales: Tojo, Kentaro, Nagamine, Yusuke, Yazawa, Takuya, Mihara, Takahiro, Baba, Yasuko, Ota, Shuhei, Goto, Takahisa, Kurahashi, Kiyoyasu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4480346/
https://www.ncbi.nlm.nih.gov/pubmed/26215820
http://dx.doi.org/10.1186/s40635-015-0056-z
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author Tojo, Kentaro
Nagamine, Yusuke
Yazawa, Takuya
Mihara, Takahiro
Baba, Yasuko
Ota, Shuhei
Goto, Takahisa
Kurahashi, Kiyoyasu
author_facet Tojo, Kentaro
Nagamine, Yusuke
Yazawa, Takuya
Mihara, Takahiro
Baba, Yasuko
Ota, Shuhei
Goto, Takahisa
Kurahashi, Kiyoyasu
author_sort Tojo, Kentaro
collection PubMed
description BACKGROUND: Patients with acute respiratory distress syndrome receiving mechanical ventilation show inhomogeneous lung aeration. Atelectasis during uneven mechanical ventilation leads to alveolar hypoxia and could therefore result in lung inflammation and injury. We aimed to elucidate whether and how atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in an open-chest differential-ventilation rat model. METHODS: We first investigated inflammatory and histological changes in the bilateral lungs of unilaterally ventilated rats, in which the right lung was atelectatic and the left lung was ventilated with high tidal volume (HTV). In the next series, we investigated the effects of normal tidal volume (NTV) ventilation of the right lungs with 60 % O(2) or 100 % N(2) during HTV ventilation of the left lungs. Then, proinflammatory cytokine secretions were quantified from murine lung epithelial (MLE15) and murine alveolar macrophage (MH-S) cells cultured under a hypoxic condition (5 % O(2)) mimicking atelectasis. Further, activities of nuclear factor (NF)-κB and hypoxia-inducible factor (HIF)-1 were assessed in the nonventilated atelectatic lung and MLE15 cells cultured under the hypoxic condition. Finally, effects of NF-κB inhibition and HIF-1α knockdown on the cytokine secretions from MLE15 cells cultured under the hypoxic condition were assessed. RESULTS: The nonventilated atelectatic lungs showed inflammatory responses and minimal histological changes comparable to those of the HTV-ventilated lungs. NTV ventilation with 60 % O(2) attenuated the increase in chemokine (C-X-C motif) ligand (CXCL)-1 secretion and neutrophil accumulation observed in the atelectatic lungs, but that with 100 % N(2) did not. MLE15 cells cultured with tumor necrosis factor (TNF)-α under the hypoxic condition showed increased CXCL-1 secretion. NF-κB and HIF-1α were activated in the nonventilated atelectatic lungs and MLE15 cells cultured under the hypoxic condition. NF-κB inhibition abolished the hypoxia-induced increase in CXCL-1 secretion from MLE15 cells, while HIF-1α knockdown augmented it. CONCLUSIONS: Atelectasis causes alveolar hypoxia-induced inflammatory responses including NF-κB-dependent CXCL-1 secretion from lung epithelial cells. HIF-1 activation in lung epithelial cells is an anti-inflammatory response to alveolar hypoxia in atelectatic lungs.
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spelling pubmed-44803462015-07-22 Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats Tojo, Kentaro Nagamine, Yusuke Yazawa, Takuya Mihara, Takahiro Baba, Yasuko Ota, Shuhei Goto, Takahisa Kurahashi, Kiyoyasu Intensive Care Med Exp Research BACKGROUND: Patients with acute respiratory distress syndrome receiving mechanical ventilation show inhomogeneous lung aeration. Atelectasis during uneven mechanical ventilation leads to alveolar hypoxia and could therefore result in lung inflammation and injury. We aimed to elucidate whether and how atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in an open-chest differential-ventilation rat model. METHODS: We first investigated inflammatory and histological changes in the bilateral lungs of unilaterally ventilated rats, in which the right lung was atelectatic and the left lung was ventilated with high tidal volume (HTV). In the next series, we investigated the effects of normal tidal volume (NTV) ventilation of the right lungs with 60 % O(2) or 100 % N(2) during HTV ventilation of the left lungs. Then, proinflammatory cytokine secretions were quantified from murine lung epithelial (MLE15) and murine alveolar macrophage (MH-S) cells cultured under a hypoxic condition (5 % O(2)) mimicking atelectasis. Further, activities of nuclear factor (NF)-κB and hypoxia-inducible factor (HIF)-1 were assessed in the nonventilated atelectatic lung and MLE15 cells cultured under the hypoxic condition. Finally, effects of NF-κB inhibition and HIF-1α knockdown on the cytokine secretions from MLE15 cells cultured under the hypoxic condition were assessed. RESULTS: The nonventilated atelectatic lungs showed inflammatory responses and minimal histological changes comparable to those of the HTV-ventilated lungs. NTV ventilation with 60 % O(2) attenuated the increase in chemokine (C-X-C motif) ligand (CXCL)-1 secretion and neutrophil accumulation observed in the atelectatic lungs, but that with 100 % N(2) did not. MLE15 cells cultured with tumor necrosis factor (TNF)-α under the hypoxic condition showed increased CXCL-1 secretion. NF-κB and HIF-1α were activated in the nonventilated atelectatic lungs and MLE15 cells cultured under the hypoxic condition. NF-κB inhibition abolished the hypoxia-induced increase in CXCL-1 secretion from MLE15 cells, while HIF-1α knockdown augmented it. CONCLUSIONS: Atelectasis causes alveolar hypoxia-induced inflammatory responses including NF-κB-dependent CXCL-1 secretion from lung epithelial cells. HIF-1 activation in lung epithelial cells is an anti-inflammatory response to alveolar hypoxia in atelectatic lungs. Springer International Publishing 2015-06-19 /pmc/articles/PMC4480346/ /pubmed/26215820 http://dx.doi.org/10.1186/s40635-015-0056-z Text en © Tojo et al. 2015 This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly credited.
spellingShingle Research
Tojo, Kentaro
Nagamine, Yusuke
Yazawa, Takuya
Mihara, Takahiro
Baba, Yasuko
Ota, Shuhei
Goto, Takahisa
Kurahashi, Kiyoyasu
Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
title Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
title_full Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
title_fullStr Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
title_full_unstemmed Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
title_short Atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
title_sort atelectasis causes alveolar hypoxia-induced inflammation during uneven mechanical ventilation in rats
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4480346/
https://www.ncbi.nlm.nih.gov/pubmed/26215820
http://dx.doi.org/10.1186/s40635-015-0056-z
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