Mechanical ventilation with moderate tidal volumes synergistically increases lung cytokine response to systemic endotoxin

Author:

Altemeier William A.,Matute-Bello Gustavo,Frevert Charles W.,Kawata Yasunobu,Kajikawa Osamu,Martin Thomas R.,Glenny Robb W.

Abstract

Previous animal studies have identified a role for activation of innate immunity in the pathogenesis of ventilator-associated lung injury. These studies have used large tidal volume ventilation to study the effect of alveolar overdistension on induction of inflammatory pathways. We hypothesized an alternative mechanism for the pathogenesis of lung injury in which moderate tidal volume ventilation does not independently cause clinical inflammation but rather interacts with innate immune activation by bacterial products, resulting in an enhanced inflammatory response. We measured cytokine expression and lung injury in normal and lipopolysaccharide (LPS)-treated anesthetized rabbits randomized to either spontaneous respiration or mechanical ventilation. Outcome parameters were analyzed by two-way factorial analysis of variance to identify synergism between ventilation and systemic LPS. Mechanical ventilation alone resulted in minimal cytokine expression in the lung but did enhance LPS-induced expression of tumor necrosis factor-α, the CXC chemokines interleukin-8 and growth-related protein-α, and the CC chemokine monocyte chemoattractant protein-1. Increased mRNA expression and activation of the transcription factors nuclear factor-κB and activator protein-1 accompanied the cytokine responses. We conclude that moderate volume ventilation strategies augment the innate immune response to bacterial products in the lung and may play a role in the development of acute lung injury in patients with sepsis.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

Reference39 articles.

1. Anthonisen NR and Fleetham JA. Ventilation: total, alveolar, and dead space. In: The Respiratory System: Gas Exchange, edited by Farhi LE and Tenney SM. Bethesda, MD: American Physiological Society, 1987, p. 115.

2. Ventilation with Lower Tidal Volumes as Compared with Traditional Tidal Volumes for Acute Lung Injury and the Acute Respiratory Distress Syndrome

3. Critical role for CXCR2 and CXCR2 ligands during the pathogenesis of ventilator-induced lung injury

4. Blackwell TS, Blackwell TR, and Christman JW. Impaired activation of nuclear factor-κB in endotoxin-tolerant rats is associated with down-regulation of chemokine gene expression and inhibition of neutrophilic lung inflammation. J Immunol 158: 5934–5940, 1997.

5. Multiorgan Nuclear Factor Kappa B Activation in a Transgenic Mouse Model of Systemic Inflammation

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