Literature DB >> 17558352

Ventilator-induced injury augments interleukin-1beta production and neutrophil sequestration in lipopolysaccharide-treated lungs.

Shu-Min Lin1, Horng-Chyuan Lin, Kang-Yun Lee, Chien-Da Huang, Chien-Ying Liu, Chun-Hua Wang, Han-Pin Kuo.   

Abstract

Mechanical ventilators are commonly used to support critically ill patients; however, inappropriate ventilator settings might initiate or augment lung injury. To determine whether a large tidal volume (Vt) augments inflammatory responses and neutrophil sequestration in the lungs of rats receiving intratracheal lipopolysaccharides (LPS). Rats received intratracheal instillation of LPS (0.5 mg/kg) followed by 4 h of mechanical ventilation (MV) at 60 strokes per min with a Vt of 10 mL/kg as control MV, or 30 strokes per min with a Vt of 20 mL/kg of body weight as high-volume MV (HMV). In addition, monoclonal antibodies against rat intercellular adhesion molecule 1 (ICAM-1) or immunoglobulin G (50 mg/kg) were administered 30 min before LPS instillation and MV. Our study demonstrates that HMV enhances pulmonary permeability and induces neutrophil recruitment into the alveolar space and pulmonary edema. Intratracheal instillation of LPS caused marked lung injury, neutrophil recruitment, and production of cytokines and chemokines. Combining LPS instillation and HMV synergistically upregulated interleukin 1beta (IL-1beta) production and neutrophil sequestration in lung tissues. The ICAM-1 expression in lung tissues was responsible for the synergistic effects of neutrophil sequestration. Synergistic upregulation of IL-1beta production and neutrophil sequestration was attenuated by blocking ICAM-1 by neutralizing antibody pretreatment. High Vt MV in LPS-injured lung causes synergistic production of IL-1beta and sequestration of neutrophil via ICAM-1-dependent effects.

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Year:  2007        PMID: 17558352     DOI: 10.1097/shk.0b013e3180487fb5

Source DB:  PubMed          Journal:  Shock        ISSN: 1073-2322            Impact factor:   3.454


  10 in total

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Authors:  Dejie Liu; Zhibo Yan; Richard D Minshall; David E Schwartz; Yuguo Chen; Guochang Hu
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2.  Knockdown of lung phosphodiesterase 2A attenuates alveolar inflammation and protein leak in a two-hit mouse model of acute lung injury.

Authors:  Otgonchimeg Rentsendorj; Mahendra Damarla; Neil R Aggarwal; Ji-Young Choi; Laura Johnston; Franco R D'Alessio; Michael T Crow; David B Pearse
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3.  Imatinib attenuates inflammation and vascular leak in a clinically relevant two-hit model of acute lung injury.

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Journal:  Am J Physiol Lung Cell Mol Physiol       Date:  2015-10-02       Impact factor: 5.464

4.  Mild endotoxemia during mechanical ventilation produces spatially heterogeneous pulmonary neutrophilic inflammation in sheep.

Authors:  Eduardo L V Costa; Guido Musch; Tilo Winkler; Tobias Schroeder; R Scott Harris; Hazel A Jones; Jose G Venegas; Marcos F Vidal Melo
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5.  Role of lung-marginated monocytes in an in vivo mouse model of ventilator-induced lung injury.

Authors:  Michael R Wilson; Kieran P O'Dea; Da Zhang; Alexander D Shearman; Nico van Rooijen; Masao Takata
Journal:  Am J Respir Crit Care Med       Date:  2009-02-12       Impact factor: 21.405

6.  JAK2/STAT1-mediated HMGB1 translocation increases inflammation and cell death in a ventilator-induced lung injury model.

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7.  Effects of vagus nerve stimulation and vagotomy on systemic and pulmonary inflammation in a two-hit model in rats.

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8.  Intravenous superoxide dismutase as a protective agent to prevent impairment of lung function induced by high tidal volume ventilation.

Authors:  Nan-Chun Wu; Fan-Ting Liao; Hao-Min Cheng; Shih-Hsien Sung; Yu-Chun Yang; Jiun-Jr Wang
Journal:  BMC Pulm Med       Date:  2017-07-26       Impact factor: 3.317

9.  Inflammasome in the Pathogenesis of Pulmonary Diseases.

Authors:  Fengying Xu; Zongmei Wen; Xueying Shi; Jie Fan
Journal:  Exp Suppl       Date:  2018

10.  Glutamine attenuates acute lung injury caused by acid aspiration.

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Journal:  Nutrients       Date:  2014-08-05       Impact factor: 5.717

  10 in total

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