55
Views
1
CrossRef citations to date
0
Altmetric
Original

TERBUTALINE IMPROVES ISCHEMIA-REPERFUSION INJURY AFTER LEFT-SIDED ORTHOTOPIC RAT LUNG TRANSPLANTATION

, , &
Pages 175-185 | Received 15 Jul 2008, Accepted 18 Sep 2008, Published online: 02 Jul 2009

REFERENCES

  • Jassem W, Roake J. The molecular and cellular basis of reperfusion injury following organ transplantation. Transplant Rev 1998; 12: 14–33
  • Stammberger U, Gaspert A, Hillinger S, Vogt P, Odermatt B, Weder W, et al. Apoptosis induced by ischemia and reperfusion in experimental lung transplantation. Ann Thorac Surg 2000; 69: 1532–1536
  • de Perrot M, Liu M, Waddell T K, Keshavjee S. Ischemia-reperfusion-induced lung injury. Am J Respir Crit Care Med 2003; 167: 490–511
  • Sugita M, Ferraro P, Dagenais A, Clermont M E, Barbry P, Michel R P, et al. Alveolar liquid clearance and sodium channel expression are decreased in transplanted canine lungs. Am J Respir Crit Care Med 2003; 167: 1440–1450
  • Hummler E, Barker P, Gatzy J, Beermann F, Verdumo C, Schmidt A, et al. Early death due to defective neonatal lung liquid clearance in alpha-ENaC-deficient mice. Nat Genet 1996; 12: 325–328
  • Fang X, Fukuda N, Barbry P, Sartori C, Verkman A S, Matthay M A. Novel role for CFTR in fluid absorption from the distal airspaces of the lung. J Gen Physiol 2002; 119: 199–208
  • Sartori C, Matthay M A. Alveolar epithelial fluid transport in acute lung injury: new insights. Eur Respir Mon 2002; 20: 47–69
  • Matthay M A, Wiener-Kronish J P. Intact epithelial barrier function is critical for the resolution of alveolar edema in humans. Am Rev Respir Dis 1990; 142: 1250–1257, (6 Pt 1)
  • Ware L B, Matthay M A. Alveolar fluid clearance is impaired in the majority of patients with acute lung injury and the acute respiratory distress syndrome. Am J Respir Crit Care Med 2001; 163: 1376–1383
  • Ware L B, Golden J A, Finkbeiner W E, Matthay M A. Alveolar epithelial fluid transport capacity in reperfusion lung injury after lung transplantation. Am J Respir Crit Care Med 1999; 159: 980–988
  • Eisenhut M. Changes in ion transport in inflammatory disease. J Inflamm (Lond) 2006; 3: 5
  • Berthiaume Y, Folkesson H G, Matthay M A. Lung edema clearance: 20 years of progress: invited review: alveolar edema fluid clearance in the injured lung. J Appl Physiol 2002; 93: 2207–2213
  • Vivona M L, Matthay M A, Blot-Chabaud M, Friedlander G, Clerici C. Hypoxia reduces alveolar epithelial sodium and fluid transport in rats in vivo: reversal by β2-adrenergic agonist treatment. Am J Respir Cell Mol Biol 2001; 25: 554–561
  • Planes C, Blot-Chabaud M, Matthay M A, Couette S, Uchida T, Clerici C. Hypoxia and beta-2 agonists regulate cell surface expression of the epithelial sodium channel in native alveolar epithelial cells. J Biol Chem 2002; 277: 47318–47324
  • Perkins G D, McAuley D F, Thickett D R, Gao F. The beta-Agonist Lung Injury Trial (BALTI): a randomized placebo-controlled clinical trial. Am J Respir Crit Care Med 20061; 173: 281–287
  • Perkins G D, Gao F, Thickett D R. In vivo and in vitro effects of salbutamol on alveolar epithelial repair in acute lung injury. Thorax 2008; 63: 215–220
  • Licker M, Tschopp J M, Robert J, Frey J G, Diaper J, Ellenberger C. Aerosolized salbutamol accelerates the resolution of pulmonary edema after lung resection. Chest 2008; 133: 845–852
  • Matthay M A, Wiener-Kronish J P. Intact epithelial barrier function is critical for the resolution of alveolar edema in humans. Am Rev Respir Dis 1990; 142: 1250–1257, (6 Pt 1)
  • Verghese G M, Ware L B, Matthay B A, Matthay M A. Alveolar epithelial fluid transport and the resolution of clinically severe hydrostatic pulmonary edema. J Appl Physiol 1999; 87: 1301–1312
  • Pittet J F, Hashimoto S, Pian M, McElroy M C, Nitenberg G, Wiener-Kronish J P. Exotoxin A stimulates fluid reabsorption from distal airspaces of lung in anesthetized rats. Am J Physiol 1996; 270: L232–L241, (2 Pt 1)
  • Foy T, Marion J, Brigham K L, Harris T R. Isoproterenol and aminophylline reduce lung capillary filtration during high permeability. J Appl Physiol 1979; 46: 146–151
  • Bonsignore M R, Jerome E H, Culver P L, Dodek P M, Staub N C. Effects of beta-adrenergic agents in lungs of normal and air-embolized awake sheep. J Appl Physiol 1988; 64: 2647–2652
  • Persson C G, Ekman M, Erjefalt I. Vascular anti-permeability effects of beta-receptor agonists and theophylline in the lung. Acta Pharmacol Toxicol (Copenh) 1979; 44: 216–220
  • Sigurdsson G H, Christenson J T. Influence of terbutaline on endotoxin-induced lung injury. Circ Shock 1988; 25: 153–163
  • Hsu K, Wang D, Chang M L, Wu C P, Chen H I. Pulmonary edema induced by phorbol myristate acetate is attenuated by compounds that increase intracellular cAMP. Res Exp Med (Berl) 1996; 196: 17–28
  • Youssef H A, Sigurdsson G H, Christenson J T, Owunwanne A. Use of indium-111-labeled transferrin to study plasma extravasation during endotoxin shock and the effects of the beta-2 agonist terbutaline. Am J Physiol Imaging 1991; 6: 85–89
  • Saldias F J, Lecuona E, Comellas A P, Ridge K M, Rutschman D H, Sznajder J I. Beta-adrenergic stimulation restores rat lung ability to clear edema in ventilator-associated lung injury. Am J Respir Crit Care Med 2000; 162: 282–287
  • Sartori C, Allemann Y, Duplain H, Lepori M, Egli M, Lipp E, et al. Salmeterol for the prevention of high-altitude pulmonary edema. N Engl J Med 2002; 346: 1631–1636
  • Wetterberg T, Svensjo E, Larsson A, Sigurdsson G, Wagner Z, Willen H. Acute lung injury monitored with radiolabeled transferrin and lung volume measurements. Acta Anaesthesiol Scand 1989; 33: 359–368
  • Revenas B, Smedegard G, Arfors K E. Anaphylaxis in the monkey: pulmonary oedema after pre-treatment of beta-receptor stimulants. Acta Anaesthesiol Scand 1979; 23: 435–443
  • Braude S, Royston D. Infused salbutamol accentuates acid-induced lung injury in the rat. Clin Sci (Lond) 1986; 71: 205–209
  • Sayner S L, Alexeyev M, Dessauer C W, Stevens T. Soluble adenylyl cyclase reveals the significance of cAMP compartmentation on pulmonary microvascular endothelial cell barrier. Circ Res 2006; 98: 675–681
  • Dudek S M, Garcia J GN. Cytoskeletal regulation of pulmonary vascular permeability. J Appl Physiol 2001; 91: 1487–1500
  • Paik H C, Hoffmann S C, Egan T M. Pulmonary preservation studies: effects on endothelial function and pulmonary adenine nucleotides. Transplantation 2003; 75: 439–444
  • Lorenz J J, Furdon P J, Taylor J D, Verghese M W, Chandra G, Kost T A, et al. A cyclic adenosine 3′,5′-monophosphate signal is required for the induction of IL-1 beta by TNF-alpha in human monocytes. J Immunol 1995; 155: 836–844
  • Noel P E, Fletcher J R, Thompson W J. Rolipram and isoproterenol reverse platelet activating factor-induced increases in pulmonary microvascular permeability and vascular resistance. J Surg Res 1995; 59: 159–164
  • Adkins W K, Barnard J W, May S, Seibert A F, Haynes J, Taylor A E. Compounds that increase cAMP prevent ischemia-reperfusion pulmonary capillary injury. J Appl Physiol 1992; 72: 492–497
  • Seibert A F, Thompson W J, Taylor A, Wilborn W H, Barnard J, Haynes J. Reversal of increased microvascular permeability associated with ischemia-reperfusion: role of cAMP. J Appl Physiol 1992; 72: 389–395
  • Hsu K, Wang D, Shen C Y, Chiang C H. Protamine-induced acute lung injury and the protective effect of agents that increase cAMP. Proc Natl Sci Counc Repub China B 1993; 17: 57–61
  • Bleiweis M S, Jones D R, Hoffmann S C, Becker R M, Egan T M. Reduced ischemia-reperfusion injury with rolipram in rat cadaver lung donors: effect of cyclic adenosine monophosphate. Ann Thorac Surg 1999; 67: 194–199
  • Hoffmann S C, Bleiweis M S, Jones D R, Paik H C, Ciriaco P, Egan T M. Maintenance of cAMP in non-heart-beating donor lungs reduces ischemia-reperfusion injury. Am J Respir Crit Care Med 2001; 163: 1642–1647
  • Crandall E D, Heming T A, Palombo R L, Goodman B E. Effects of terbutaline on sodium transport in isolated perfused rat lung. J Appl Physiol 1986; 60: 289–294
  • Saumon G, Basset G, Bouchonnet F, Crone C. cAMP and beta-adrenergic stimulation of rat alveolar epithelium. Effects on fluid absorption and paracellular permeability. Pflugers Arch 1987; 410: 464–470
  • Saldias F, Lecuona E, Friedman E, Barnard M L, Ridge K M, Sznajder J I. Modulation of lung liquid clearance by isoproterenol in rat lungs. Am J Physiol 1998; 274: L694–L701, (5 Pt 1)
  • Sakuma T, Okaniwa G, Nakada T, Nishimura T, Fujimura S, Matthay M A. Alveolar fluid clearance in the resected human lung. Am J Respir Crit Care Med 1994; 150: 305–310
  • Yue G, Shoemaker R L, Matalon S. Regulation of low-amiloride-affinity sodium channels in alveolar type II cells. Am J Physiol 1994; 267: L94–L100, (1 Pt 1)
  • Frank J A, Wang Y, Osorio O, Matthay M A. Beta-adrenergic agonist therapy accelerates the resolution of hydrostatic pulmonary edema in sheep and rats. J Appl Physiol 2000; 89: 1255–1265
  • Adir Y, Factor P, Dumasius V, Ridge K M, Sznajder J I. Na,K-ATPase gene transfer increases liquid clearance during ventilation-induced lung injury. Am J Respir Crit Care Med 2003; 168: 1445–1448
  • Berthiaume Y, Staub N C, Matthay M A. Beta-adrenergic agonists increase lung liquid clearance in anesthetized sheep. J Clin Invest 1987; 79: 335–343
  • Garat C, Meignan M, Matthay M A, Luo D F, Jayr C. Alveolar epithelial fluid clearance mechanisms are intact after moderate hyperoxic lung injury in rats. Chest 1997; 111: 1381–1388
  • Sartori C, Fang X, McGraw D W, Koch P, Snider M E, Folkesson H G, et al. Selected contribution: long-term effects of beta(2)-adrenergic receptor stimulation on alveolar fluid clearance in mice. J Appl Physiol 2002; 93: 1875–1880
  • Frank J A, Pittet J F, Lee H, Godzich M, Matthay M A. High tidal volume ventilation induces NOS2 and impairs cAMP-dependent air space fluid clearance. Am J Physiol Lung Cell Mol Physiol 2003; 284: L791–L798
  • Dagenais A, Fréchette R, Yamagata Y, Yamagata T, Carmel J F, Clermont M E, et al. Downregulation of ENaC activity and expression by TNF- in alveolar epithelial cells. Am J Physiol Lung Cell Mol Physiol 2004; 286: L301–L311
  • Dagenais A, Gosselin D, Guilbault C, Radzioch D, Berthiaume Y. Modulation of epithelial sodium channel (ENaC) expression in mouse lung infected with Pseudomonas aeruginosa. Respir Res 2005; 6: 2
  • Haney S, Hancox R J. Recovery from bronchoconstriction and bronchodilator tolerance. Clin Rev Allergy Immunol 2006; 31: 181–196
  • Modelska K, Matthay M A, Brown L A, Deutch E, Lu L N, Pittet J F. Inhibition of beta-adrenergic-dependent alveolar epithelial clearance by oxidant mechanisms after hemorrhagic shock. Am J Physiol 1999; 276: L844–L857, (5 Pt 1)
  • Sakuma T, Tsukano C, Ishigaki M, Nambu Y, Osanai K, Toga H, et al. Lung deflation impairs alveolar epithelial fluid transport in ischemic rabbit and rat lungs. Transplantation 2000; 69: 1785–1793
  • Folkesson H G, Nitenberg G, Oliver B L, Jayr C, Albertine K H, Matthay M A. Upregulation of alveolar epithelial fluid transport after subacute lung injury in rats from bleomycin. Am J Physiol 1998; 275: L478–L490, (3 Pt 1)
  • Miyamoto M, Tomaki M, Lotvall J, Linden A. beta-Adrenoceptor stimulation and neutrophil accumulation in mouse airways. Eur Respir J 2004; 24: 231–237

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.