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Published in: Intensive Care Medicine 5/2008

01-05-2008 | Physiological and Technical Notes

Rats surviving injurious mechanical ventilation show reversible pulmonary, vascular and inflammatory changes

Authors: Nicolás Nin, José A. Lorente, Marta de Paula, Mariam El Assar, Susana Vallejo, Oscar Peñuelas, Pilar Fernández-Segoviano, Antonio Ferruelo, Alberto Sánchez-Ferrer, Andrés Esteban

Published in: Intensive Care Medicine | Issue 5/2008

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Abstract

Objective

To describe the time course of the changes in pulmonary and vascular function, and systemic inflammation induced by injurious mechanical ventilation.

Design

Experimental study in an animal model of ventilator-induced lung injury.

Setting

Animal research laboratory.

Methods

Anesthetized male adult Sprague-Dawley rats were ventilated with VT 9 ml/kg and PEEP 5 cm H2O, or VT 35 ml/kg and zero PEEP for 1 h, and were killed. Other rats received ventilation for 1 h with high VT, to observe survival (n = 36), or to be monitored and killed at different points in time (24, 72 and 168 h; n = 7 in each group). Blood samples for measuring biochemical parameters were obtained. Post-mortem, a bronchoalveolar lavage (BAL) was performed, the aorta and pulmonary microvessels were isolated to examine ex-vivo vascular responses and pulmonary slices were examined (light microscopy).

Measurements and results

Mortality in rats ventilated with high VT was 19 of 36 (54%). Mechanical ventilation was associated with hypotension, hypoxaemia and membrane hyaline formation. AST, ALT, IL-6, MIP-2 serum and BAL fluid concentrations, as well as VEGF BAL fluid concentration, were increased in rats ventilated with high VT. Lung injury score was elevated. Aortic vascular responses to acetylcholine and norepinephrine, and microvascular responses to acetylcholine, were impaired. These changes resolved by 24–72 h.

Conclusions

Injurious ventilation is associated with respiratory and vascular dysfunction, accompanied by pulmonary and systemic inflammation. The survival rate was about 50%. In survivors, most induced changes completely normalized by 24–72 h after the insult.
Literature
1.
go back to reference Dreyfuss D, Basset G, Soler P, Saumon G (1985) Intermittent positive-pressure hyperventilation with high inflation pressures produces pulmonary microvascular injury in rats. Am Rev Respir Dis 132:880–884PubMed Dreyfuss D, Basset G, Soler P, Saumon G (1985) Intermittent positive-pressure hyperventilation with high inflation pressures produces pulmonary microvascular injury in rats. Am Rev Respir Dis 132:880–884PubMed
2.
go back to reference Dreyfuss D, Saumon G (1998) Ventilator-induced lung injury: lessons from experimental studies. Am J Respir Crit Care Med 157:294–323PubMed Dreyfuss D, Saumon G (1998) Ventilator-induced lung injury: lessons from experimental studies. Am J Respir Crit Care Med 157:294–323PubMed
3.
go back to reference von Bethmann AN, Brasch F, Müller K, Vogt K, Volk HD, Muller KM, Wendel A, Uhlig S (1996) Prolonged hyperventilation is required for release of tumor necrosis factor but not IL-6. Appl Cardiop Pathophysiol 16:171–177 von Bethmann AN, Brasch F, Müller K, Vogt K, Volk HD, Muller KM, Wendel A, Uhlig S (1996) Prolonged hyperventilation is required for release of tumor necrosis factor but not IL-6. Appl Cardiop Pathophysiol 16:171–177
4.
go back to reference Held HD, Boettcher S, Hamann L, Uhlig S (2001) Ventilation-induced chemokine and cytokine release is associated with activation of nuclear factor-kB and is blocked by steroids. Am J Respir Crit Care Med 163:771–716 Held HD, Boettcher S, Hamann L, Uhlig S (2001) Ventilation-induced chemokine and cytokine release is associated with activation of nuclear factor-kB and is blocked by steroids. Am J Respir Crit Care Med 163:771–716
5.
go back to reference Tremblay L, Valenza F, Ribeiro SP, Li J, Slutsky AS (1997) Injurious ventilatory strategies increase cytokines and c-fos m-RNA expression in an isolated rat lung model. J Clin Invest 99:944–952PubMedCrossRef Tremblay L, Valenza F, Ribeiro SP, Li J, Slutsky AS (1997) Injurious ventilatory strategies increase cytokines and c-fos m-RNA expression in an isolated rat lung model. J Clin Invest 99:944–952PubMedCrossRef
6.
go back to reference Chiumello D, Pristine G, Slutsky AS (1999) Mechanical ventilation affects local and systemic cytokines in an animal model of acute respiratory syndrome. Am J Respir Crit Care Med 160:109–116PubMed Chiumello D, Pristine G, Slutsky AS (1999) Mechanical ventilation affects local and systemic cytokines in an animal model of acute respiratory syndrome. Am J Respir Crit Care Med 160:109–116PubMed
7.
go back to reference Imai Y, Kajikawa I, Frevert C, de Perrot M, Fischer F, Parodo J, Edwards V, Cutz E, Zhang H, Ranieri M, Liu M, Keshavjee S, Marshall JC, Martin TR, Slutsky AS (2003) Injurious mechanical ventilation and end-organ epithelial cell apoptosis and organ dysfunction in an experimental model of acute respiratory distress syndrome. J Am Med Assoc 289:1204–2112CrossRef Imai Y, Kajikawa I, Frevert C, de Perrot M, Fischer F, Parodo J, Edwards V, Cutz E, Zhang H, Ranieri M, Liu M, Keshavjee S, Marshall JC, Martin TR, Slutsky AS (2003) Injurious mechanical ventilation and end-organ epithelial cell apoptosis and organ dysfunction in an experimental model of acute respiratory distress syndrome. J Am Med Assoc 289:1204–2112CrossRef
8.
go back to reference Choi WI, Quinn DA, Park KM, Moufarrej RK, Jafari B, Syrkina O, Bonventre JV, Hales CA (2003) Systemic microvascular leak in an in vivo rat model of ventilator-induced lung injury. Am J Resp Crit Care Med 167:1627–1632PubMedCrossRef Choi WI, Quinn DA, Park KM, Moufarrej RK, Jafari B, Syrkina O, Bonventre JV, Hales CA (2003) Systemic microvascular leak in an in vivo rat model of ventilator-induced lung injury. Am J Resp Crit Care Med 167:1627–1632PubMedCrossRef
9.
go back to reference Nin N, Valero JA, Lorente JA, de Paula M, Fdez-Segoviano P, Sánchez-Ferrer A, Esteban A (2005) Large tidal volume ventilation induces vascular dysfunction in rats. J Trauma 59:711–716 Nin N, Valero JA, Lorente JA, de Paula M, Fdez-Segoviano P, Sánchez-Ferrer A, Esteban A (2005) Large tidal volume ventilation induces vascular dysfunction in rats. J Trauma 59:711–716
10.
go back to reference Nin N, Penuelas O, de Paula M, Lorente JA, Fernández-Segoviano P, Esteban A (2006) Ventilation-induced lung injury in rats is associated with organ injury and systemic inflammation that is attenuated by dexamethasone. Crit Care Med 34:1093–1098PubMedCrossRef Nin N, Penuelas O, de Paula M, Lorente JA, Fernández-Segoviano P, Esteban A (2006) Ventilation-induced lung injury in rats is associated with organ injury and systemic inflammation that is attenuated by dexamethasone. Crit Care Med 34:1093–1098PubMedCrossRef
11.
go back to reference Mandava S, Kolobow T, Vitale G, Feti G, Aprigliano M, Jones M, Muller E (2003) Lethal systemic capillary leak syndrome associated with severe ventilator-induced lung injury: an experimental study. Crit Care Med 31:885–892PubMedCrossRef Mandava S, Kolobow T, Vitale G, Feti G, Aprigliano M, Jones M, Muller E (2003) Lethal systemic capillary leak syndrome associated with severe ventilator-induced lung injury: an experimental study. Crit Care Med 31:885–892PubMedCrossRef
12.
go back to reference Guery BP, Welsh DA, Viget NB, Robriquet L, Fialdes P, Mason CM, Beaucaire G, Bagby GJ, Neviere R (2003) Ventilation-induced lung injury is associated with an increase in gut permeability. Shock 19:559–563PubMedCrossRef Guery BP, Welsh DA, Viget NB, Robriquet L, Fialdes P, Mason CM, Beaucaire G, Bagby GJ, Neviere R (2003) Ventilation-induced lung injury is associated with an increase in gut permeability. Shock 19:559–563PubMedCrossRef
13.
go back to reference Ranieri VM, Suter PM, Tortorella C, de Tullio R, Dayer JM, Brienza A, Bruno F, Slutsky A (1999) Effect of mechanical ventilation on inflammatory mediators in patients with acute respiratory distress syndrome J Am Med Assoc 282:54–61 Ranieri VM, Suter PM, Tortorella C, de Tullio R, Dayer JM, Brienza A, Bruno F, Slutsky A (1999) Effect of mechanical ventilation on inflammatory mediators in patients with acute respiratory distress syndrome J Am Med Assoc 282:54–61
14.
go back to reference Ranieri VM, Giunta F, Suter PM, Slutsky AS (2000) Mechanical ventilation as a mediator of multisystem organ failure in acute respiratory distress syndrome J Am Med Assoc 284:43–44 Ranieri VM, Giunta F, Suter PM, Slutsky AS (2000) Mechanical ventilation as a mediator of multisystem organ failure in acute respiratory distress syndrome J Am Med Assoc 284:43–44
15.
go back to reference Selinger SL, Bland RD, Demling RH, Staub NC (1970) Distribution volumes of [131I]albumin, [14C]sucrose, and 36Cl in sheep lung. J Appl Physiol 39:773–779 Selinger SL, Bland RD, Demling RH, Staub NC (1970) Distribution volumes of [131I]albumin, [14C]sucrose, and 36Cl in sheep lung. J Appl Physiol 39:773–779
16.
go back to reference Muscedere JG, Mullen JB, Gan K, Slutsky AS (1994) Tidal ventilation at low airway pressures can augment lung injury. Am J Respir Crit Care Med 149:1327–1334PubMed Muscedere JG, Mullen JB, Gan K, Slutsky AS (1994) Tidal ventilation at low airway pressures can augment lung injury. Am J Respir Crit Care Med 149:1327–1334PubMed
17.
go back to reference Mascarenhas MM, Day RM, Ochoa CD, Choi WI, Yu L, Ouyang B, Garg HG, Hales CA, Quinn DA (2004) Low molecular weight hyaluronan from stretched lung enhances interleukin-8 expression. Am J Respir Cel Mol Biol 30:51–60CrossRef Mascarenhas MM, Day RM, Ochoa CD, Choi WI, Yu L, Ouyang B, Garg HG, Hales CA, Quinn DA (2004) Low molecular weight hyaluronan from stretched lung enhances interleukin-8 expression. Am J Respir Cel Mol Biol 30:51–60CrossRef
18.
go back to reference Quinn DA, Tager AM, Joseph P, Bonventre J, Force T, Hales CA (1999) Stretch-induced mitogen-activated protein kinase activation and IL-8 production in type-2 alveolar cells. Chest 116:89S–90SPubMedCrossRef Quinn DA, Tager AM, Joseph P, Bonventre J, Force T, Hales CA (1999) Stretch-induced mitogen-activated protein kinase activation and IL-8 production in type-2 alveolar cells. Chest 116:89S–90SPubMedCrossRef
19.
go back to reference Liu M, Transwell K, Post M (1999) Mechanical force-induced signal transduction in lung cells. Am J Physiol 277:L667–L683PubMed Liu M, Transwell K, Post M (1999) Mechanical force-induced signal transduction in lung cells. Am J Physiol 277:L667–L683PubMed
20.
go back to reference Pan J, Fukuda K, Saito M, Matsuzaki J, Kodama H, Sano M, Takahashi T, Kato T, Ogawa S (1999) Mechanical stretch activates the JAK/STAT pathway in rat cardiomyocytes. Circulation Res 84:1127–1136PubMed Pan J, Fukuda K, Saito M, Matsuzaki J, Kodama H, Sano M, Takahashi T, Kato T, Ogawa S (1999) Mechanical stretch activates the JAK/STAT pathway in rat cardiomyocytes. Circulation Res 84:1127–1136PubMed
21.
go back to reference Ferrara N, Gerber HP, LeCouter J (2003) The biology of VEGF and its receptors. Nat Med 9:669–676PubMedCrossRef Ferrara N, Gerber HP, LeCouter J (2003) The biology of VEGF and its receptors. Nat Med 9:669–676PubMedCrossRef
22.
go back to reference Mittermayer F, Pleiner J, Schaller G, Weltermann A, Kapiotis S, Jilma B, Woltz M (2003) Marked increase in vascular endothelial growth factor concentrations during Escherichia coli endotoxin-induced acute inflammation in humans. Eur J Clin Invest 33:758–761PubMedCrossRef Mittermayer F, Pleiner J, Schaller G, Weltermann A, Kapiotis S, Jilma B, Woltz M (2003) Marked increase in vascular endothelial growth factor concentrations during Escherichia coli endotoxin-induced acute inflammation in humans. Eur J Clin Invest 33:758–761PubMedCrossRef
23.
go back to reference Thickett DR, Armstrong L, Christie SJ, Millar AB (2001) Vascular endothelial growth factor may contribute to increased vascular permeability in acute respiratory distress syndrome. Am J Respir Crit Care Med 164:1601–1605PubMed Thickett DR, Armstrong L, Christie SJ, Millar AB (2001) Vascular endothelial growth factor may contribute to increased vascular permeability in acute respiratory distress syndrome. Am J Respir Crit Care Med 164:1601–1605PubMed
24.
go back to reference Eppler SM, Combs DL, Henry TD, Lopez JJ, Ellis SG, Yi JH, Annex BH, McCluskey ER, Zioncheck TF (2002) A target-mediated model to describe the pharmacokinetics and hemodynamic effects of recombinant human vascular endothelial growth factor in humans. Clin Pharmacol Ther 5:107–110 Eppler SM, Combs DL, Henry TD, Lopez JJ, Ellis SG, Yi JH, Annex BH, McCluskey ER, Zioncheck TF (2002) A target-mediated model to describe the pharmacokinetics and hemodynamic effects of recombinant human vascular endothelial growth factor in humans. Clin Pharmacol Ther 5:107–110
25.
go back to reference Mura M, dos Santos CC, Stewart D, Liu M (2004) Vascular endothelial growth factor and related molecules in acute lung injury. J Appl Physiol 97:1605–1617PubMedCrossRef Mura M, dos Santos CC, Stewart D, Liu M (2004) Vascular endothelial growth factor and related molecules in acute lung injury. J Appl Physiol 97:1605–1617PubMedCrossRef
26.
go back to reference Ohwada A, Yoshioka Y, Iwabuchi K, Nagaoka I, Dambara T, Fukuchi Y (2003) VEGF regulates the proliferation of acid-exposed alveolar lining epithelial cells. Thorax 58:328–332PubMedCrossRef Ohwada A, Yoshioka Y, Iwabuchi K, Nagaoka I, Dambara T, Fukuchi Y (2003) VEGF regulates the proliferation of acid-exposed alveolar lining epithelial cells. Thorax 58:328–332PubMedCrossRef
27.
go back to reference Borelli M, Kolobow T, Spatola R, Prato P, Tsuno K (1988) Severe acute respiratory failure managed with continuous positive airway pressure and partial extracorporeal carbon dioxide removal by an artificial membrane lung. Am Rev Respir Dis 138:1480–1487PubMed Borelli M, Kolobow T, Spatola R, Prato P, Tsuno K (1988) Severe acute respiratory failure managed with continuous positive airway pressure and partial extracorporeal carbon dioxide removal by an artificial membrane lung. Am Rev Respir Dis 138:1480–1487PubMed
Metadata
Title
Rats surviving injurious mechanical ventilation show reversible pulmonary, vascular and inflammatory changes
Authors
Nicolás Nin
José A. Lorente
Marta de Paula
Mariam El Assar
Susana Vallejo
Oscar Peñuelas
Pilar Fernández-Segoviano
Antonio Ferruelo
Alberto Sánchez-Ferrer
Andrés Esteban
Publication date
01-05-2008
Publisher
Springer-Verlag
Published in
Intensive Care Medicine / Issue 5/2008
Print ISSN: 0342-4642
Electronic ISSN: 1432-1238
DOI
https://doi.org/10.1007/s00134-007-0959-6

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