Literature DB >> 15332391

Reduced inspiratory flow attenuates IL-8 release and MAPK activation of lung overstretch.

M Kotani1, T Kotani, Z Li, R Silbajoris, C A Piantadosi, Y-C T Huang.   

Abstract

Lung overstretch involves mechanical factors, including large tidal volumes (VT), which induce inflammatory responses. The current authors hypothesised that inspiratory flow contributes to ventilator-induced inflammation. Buffer-perfused rabbit lungs were ventilated for 2 h with 21%, O2+5%, CO2, positive end-expiratory pressure of 2-3 cmH2O and randomly assigned to either: 1) normal VT (6 mL x kg(-1)) at respiratory rate (RR) 30, inspiration:expiration time ratio (I:E) 1:1, low inspiratory flow 6 mL x kg(-1) x s(-1); 2) large VT (12 mL x kg(-1)) at RR 30, I:E 1:1, high inspiratory flow 12 mL x kg(-1) x s(-1) (HRHF); 3) large VT at RR 15, I:E 1:1, low inspiratory flow 6 mL x kg(-1) x s(-1) (LRLF); or 4) large VT at RR 15, I:E 1:2.3, high inspiratory flow 10 mL x kg(-1) x s(-1) (LRHF). Physiological parameters, tumour necrosis factor (TNF)-alpha, interleukin (IL)-8 and activation of mitogen-activated protein kinases (extracellular signal-regulated kinase (ERK)1/2, p38 and stress-activated protein kinase (SAPK)/ c-Jun N-terminal kinase (JNK)) were measured. HRHF increased weight gain, perfusate IL-8 and phosphorylation of ERK1/2, p38 and SAPK/JNK. These responses were absent during LRLF but present during LRHF. Changes in TNF-alpha were small. Tissue IL-8 and phospho-ERK1/2 staining was localised primarily to smooth muscle, adventitia and bronchial epithelium within larger bronchioles and arterioles. These results indicate that mild overstretch of perfused lungs during high inspiratory flow enhances inflammatory signalling by cells in lung regions most affected by strong turbulent airflow.

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Year:  2004        PMID: 15332391     DOI: 10.1183/09031936.04.00128703

Source DB:  PubMed          Journal:  Eur Respir J        ISSN: 0903-1936            Impact factor:   16.671


  8 in total

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2.  Bactericidal function of alveolar macrophages in mechanically ventilated rabbits.

Authors:  Nina G Hall; Yuliang Liu; Judy M Hickman-Davis; Glenda C Davis; Carpantato Myles; Eric J Andrews; Sadis Matalon; John D Lang
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Journal:  Ann Transl Med       Date:  2018-10

4.  Animal model of unilateral ventilator-induced lung injury.

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5.  Effects of dynamic ventilatory factors on ventilator-induced lung injury in acute respiratory distress syndrome dogs.

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Journal:  World J Emerg Med       Date:  2012

6.  Modulatory effects of hypercapnia on in vitro and in vivo pulmonary endothelial-neutrophil adhesive responses during inflammation.

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7.  Anti-inflammatory effects of clarithromycin in ventilator-induced lung injury.

Authors:  Laura Amado-Rodríguez; Adrián González-López; Inés López-Alonso; Alina Aguirre; Aurora Astudillo; Estefanía Batalla-Solís; Jorge Blazquez-Prieto; Emilio García-Prieto; Guillermo M Albaiceta
Journal:  Respir Res       Date:  2013-05-10

8.  How I manage the adult potential organ donor: donation after neurological death (part 1).

Authors:  Jennifer A Frontera; Thomas Kalb
Journal:  Neurocrit Care       Date:  2010-02       Impact factor: 3.210

  8 in total

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