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Research Article

Mechanisms of toxic smoke inhalation and burn injury: Role of neutral endopeptidase and vascular leakage in mice

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Pages 191-196 | Received 10 Dec 2008, Accepted 06 Jan 2009, Published online: 01 Mar 2009

References

  • Abdi S, Evans MJ, Cox RA, Lubbesmeyer H, Herndon DN, Traber DL. (1990). Inhalation injury to tracheal epithelium in an ovine model of cotton smoke exposure. Early phase. (30 minutes). Am Rev Respir Dis 142: 1436–1439.
  • Barbara G, Giorgio R, Stanghellini V, Corinaldesi R, Cremon C, Gerard N, Gerard C, Grady EF, Bunnett NW, Blennerhassett SM, Collins A. (2003). Neutral endopeptidase (EC 3.4.24.11) downregulates the onset of intestinal inflammation in the nematode infected mouse. Gut 52: 1457–1464.
  • Barnes PJ. (1996). Role of neural mechanisms in airway defense. In: Chretien J, Dusser D (Eds.), Environmental Impact in the Airways, Marcel Dekker, New York, pp. 93–121.
  • Barrow RE, Morris SE, Basadre JO, Herndon DN. (1990). Selective permeability changes in the lungs and airways of sheep after toxic smoke inhalation. J Appl Physiol 68: 2165–2170.
  • Bidani A, Hawkins HK, Wang CZ, Heming TA. (1999). Dose dependence and time course of smoke inhalation injury in a rabbit model. Lung 177:111–122.
  • Birklein F, Schmelz M. (2008). Neuropeptides, neurogenic inflammation and complex regional pain syndrome (CRPS). Neurosci Lett :437: 199–202.
  • Bradford MM. (1976). A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem 72:248–254.
  • Chung KF. (2006). Airway neuropeptides and neutral endopeptidase in asthma. Clin Exp Allergy 26:491–493.
  • Crapo RO. (1981). Smoke-inhalation injuries. JAMA 246:1694–1696.
  • Damas V, Bourdon JF, Simmons WH. (1996). Influence of several peptidase inhibitors on the pro-inflammatory effects of substance P, capsaicin and collagenase. Naunyn-Schmiedeberg’s Arch Pharmacol 354:662–669.
  • Day AL, Wick E, Jordan TH, Jaffray CE, Bunnett NW, Grady EF, Kirkwood KS. (2005). Neutral endopeptidase determines the severity of pancreatitis-associated lung injury. J Surg Res 128:21–27.
  • Dost FN. (1991). Acute toxicology of components of vegetation smoke. Rev Environ Contam Toxicol 119:1–46.
  • Edwards RM, Pullen M, Ponnal N. (1999). Distribution of neutral endopeptidase activity along the rat and rabbit nephron. Pharmacology 59:45–50.
  • Jacob S, Deyo DJ, Cox RA, Traber DL, Hawkins HK. (2008). Assessment of lung inflammation in a mouse model of smoke inhalation and burn injury: strain-specific differences. Toxicol Mech Meth 18:1–9.
  • Johnson AR, Ashthon J, Scypinski L, Dusser D, Nadel J, Borson D. (1985). Toluene diisothiocynate increases airway responsiveness to substance P and decreases airway neutral endopeptidase in human lung tissue and cultured cells. Am Rev Resp Dis 132:564–568.
  • Katayama M, Nadel JA, Bunnett NW, Di Maria GU, Hax-hiu M, Borson DB. (1991). Catabolism of calcitonin gene related peptide and substance P by neutral endopeptidase. Peptides 12:563–567.
  • Lee LY, Widdicombe JG. (2001). Modulation of airway sensitivity to inhaled irritants: role of inflammatory mediators. Environ Health Perspect 109(Suppl 4):585–589.
  • Maria GU, Bellofiore S, Geppetti P. (1998). Regulation of airway neurogenic inflammation by neutral endopeptidase. Eur Respir J 12:1454–1462.
  • Nadel JA. (1991). Neutral endopeptidase modulates neurogeic inflammation. Eur Respir J 4:745–754.
  • Nicolau M, Dovichi SS, Cuttle G. (2003). Pro-inflammatory effect of quercetin by dual blockade of angiotensin converting-enzyme and neutral endopeptidase in vivo. Nutr Neurosci 6:309–316.
  • Pham D, Jeng AY, Escher E, Sirois P, Battistini B. (2000). Effects of a selective neutral endopeptidase and a nonselective neutral endopeptidase/endothelin-converting enzyme inhibitor on lipopolysaccharide-induced endotoxaemia in anaesthetized Sprague-Dawley rats. J Cardiovasc Pharmacol 36(5 Suppl 1):S362–S366.
  • Richardson JD, Vasko MR. (2002). Cellular mechanisms of neurogenic inflammation. J Pharmacol Exp Ther 302:839–845.
  • Roques BP, Noble F, Dauge V, Fournie-Zaluski MC, Beaumont A. (1993). Neutral endopeptidase 24.11: structure, inhibition, and experimental and clinical pharmacology. Pharmacol Rev 45:87–146.
  • Solway J, Leff AR. (1991). Sensory neuropeptides and airway function. J Appl Physiol 71: 2077–2087.
  • Speyer CL, Gao H, Rancilio NJ, Neff TA, Huffnagle GB, Sarma JV, Ward PA. (2004). Novel chemokine responsiveness and mobilization of neutrophiles during sepsis. Am J Pathol 165:2187–2196.
  • Stephenson SF, Esrig BC, Polk HC, Fulton RL. (1975). The pathophysiology of smoke inhalation injury. Ann Surg 182:652–660.
  • Thorning DR, Howard ML, Hudson LD, Schumacher RL. (1982). Pulmonary responses to smoke inhalation: morphologic changes in rabbits exposed to pine wood smoke. Human Pathol 13:355–364.
  • Traber DL, Herndon DN. (1991). Pathophysiology of smoke inhalation. In: Haponik EF, Munster AM (Eds.), Respiratory injury: Smoke inhalation and burns, McGraw-Hill, New York, pp. 61–71.
  • Turner CR, Stow RB, Hubbs SJ, Gomes BC, Williams JC. (1993). Acrolein increases airway sensitivity to substance P and decreases NEP activity in guinea pigs. J Appl Physiol 74:1830–1839.
  • Umeno E, Nadel JA, Huang HT, McDonald DM. (1989). Inhibition of neutral endopeptidase potentiates neurogenic inflammation in the rat trachea. J Appl Physiol 66: 2647–2652.
  • Wang LF, Patel M, Razavi HM, Weicker S, Joseph MG, McCormack DG, Mehta S. (2002). Role of inducible nitric oxide synthase in pulmonary microvascular protein leak in murine sepsis. Am J Respir Crit Care Med 165:1634–1639.
  • Yang Q, Battistini B, D’Orleans-Juste P, Jeng AY, Sirois P. (1997). Modulation of endothelin production and metabolism in guinea-pig tracheal epithelial cells by peptidase inhibitors. Am J Respir Crit Care Med 155:1884–1889.
  • Zhao M, Fernandez LG, Doctor A, Sharma AK, Zarbock A, Tribble CG, Kron IL, Laubach VE. (2006). Alveolar macrophage activation is a key initiation signal for acute lung ischemia-reperfusion injury. Am J Physiol Lung Cell Mol Physiol 291:L1018–L1026.