Literature DB >> 30199644

Relation between Respiratory Mechanics, Inflammation, and Survival in Experimental Mechanical Ventilation.

Margit V Szabari1,2, Kazue Takahashi3, Yan Feng1,4, Joseph J Locascio5, Wei Chao1,4, Edward A Carter6, Marcos F Vidal Melo1, Guido Musch1,7.   

Abstract

Low-tidal volume (Vt) ventilation might protect healthy lungs from volutrauma but lead to inflammation resulting from other mechanisms, namely alveolar derecruitment and the ensuing alveolar collapse and tidal reexpansion. We hypothesized that the different mechanisms of low- and high-volume injury would be reflected in different mechanical properties being associated with development of pulmonary inflammation and mortality: an increase of hysteresis, reflecting progressive alveolar derecruitment, at low Vt; an increase of elastance, as a result of overdistension, at higher Vt. Mice were allocated to "protective" (6 ml/kg) or "injurious" (15-20 ml/kg) Vt groups and ventilated for 16 hours or until death. We measured elastance and hysteresis; pulmonary IL-6, IL-1β, and MIP-2 (macrophage inflammatory protein 2); wet-to-dry ratio; and blood gases. Survival was greater in the protective group (60%) than in the injurious group (25%). Nonsurvivors showed increased pulmonary cytokines, particularly in the injurious group, with the increase of elastance reflecting IL-6 concentration. Survivors instead showed only modest increases of cytokines, independent of Vt and unrelated to the increase of elastance. No single lung strain threshold could discriminate survivors from nonsurvivors. Hysteresis increased faster in the protective group, but, contrary to our hypothesis, its change was inversely related to the concentration of cytokines. In this model, significant mortality associated with pulmonary inflammation occurred even for strain values as low as about 0.8. Low Vt improved survival. The accompanying increase of hysteresis was not associated with greater inflammation.

Entities:  

Keywords:  acute lung injury; artificial respiration; respiratory mechanics; ventilator-induced lung injury

Mesh:

Substances:

Year:  2019        PMID: 30199644      PMCID: PMC6376413          DOI: 10.1165/rcmb.2018-0100OC

Source DB:  PubMed          Journal:  Am J Respir Cell Mol Biol        ISSN: 1044-1549            Impact factor:   6.914


  71 in total

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Journal:  Am J Respir Cell Mol Biol       Date:  2011-05       Impact factor: 6.914

4.  Genetic control of differential baseline breathing pattern.

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5.  Association between use of lung-protective ventilation with lower tidal volumes and clinical outcomes among patients without acute respiratory distress syndrome: a meta-analysis.

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Journal:  JAMA       Date:  2012-10-24       Impact factor: 56.272

6.  Ventilator-associated lung injury in patients without acute lung injury at the onset of mechanical ventilation.

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Journal:  Crit Care Med       Date:  2004-09       Impact factor: 7.598

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8.  Comparative Effects of Volutrauma and Atelectrauma on Lung Inflammation in Experimental Acute Respiratory Distress Syndrome.

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Journal:  Crit Care Med       Date:  2016-09       Impact factor: 7.598

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Authors:  Fabienne D Simonis; Jan M Binnekade; Annemarije Braber; Harry P Gelissen; Jeroen Heidt; Janneke Horn; Gerard Innemee; Evert de Jonge; Nicole P Juffermans; Peter E Spronk; Lotte M Steuten; Pieter Roel Tuinman; Marijn Vriends; Gwendolyn de Vreede; Rob B de Wilde; Ary Serpa Neto; Marcelo Gama de Abreu; Paolo Pelosi; Marcus J Schultz
Journal:  Trials       Date:  2015-05-24       Impact factor: 2.279

10.  Mechanical ventilation using non-injurious ventilation settings causes lung injury in the absence of pre-existing lung injury in healthy mice.

Authors:  Esther K Wolthuis; Alexander P J Vlaar; Goda Choi; Joris J T H Roelofs; Nicole P Juffermans; Marcus J Schultz
Journal:  Crit Care       Date:  2009-01-19       Impact factor: 9.097

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2.  Aspirin reverts lipopolysaccharide-induced learning and memory impairment: first evidence from an invertebrate model system.

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3.  [Pathogenic role leukotriene B4 in lung injury induced by lung-protective mechanical ventilation in rabbits].

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Review 8.  Antioxidants as Therapeutic Agents in Acute Respiratory Distress Syndrome (ARDS) Treatment-From Mice to Men.

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  8 in total

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