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Research Article

Assessment of Lung Inflammation in a Mouse Model of Smoke Inhalation and Burn Injury: Strain-Specific Differences

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Pages 551-559 | Received 23 Apr 2008, Accepted 05 Jun 2008, Published online: 20 Oct 2008

REFERENCES

  • E.N. Atochina, M.F. Beers, Y. Tomer, S.T. Scanlon, S.J. Russo, R.A. PanettieriJr., and A. Haczku. (2003). Attenuated allergic airway hyperresponsiveness in C57BL/6 mice is associated with enhanced surfactant protein (SP)-D production following allergic sensitization. Respir. Res. 4:15.
  • R.E. Barrow. (1990). Chemical structure of phospholipids in the lungs and airways of sheep. Respir. Physiol. 79:1–8.
  • R.E. Barrow, S.E. Morris, H.A. Linares, and DN. Herndon. (1991). Tracheal venous blood and lymph collection: a model to study airway injury in sheep. J. Appl. Physiol. 70:1645–1649.
  • M.M. Bradford. (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.
  • R.A. Cox, A.S. Burke, and K. Soejima. (2003). Airway obstruction in sheep with burn and smoke inhalation injuries. Am. J. Respir. Cell Mol. Biol. 29:295–302.
  • R.A. Cox, R.P. Mlcak, and D.L. Chinkes. (2008). Upper airway mucus deposition in lung tissue of burn trauma victims. Shock 29:356–361.
  • R.A. Cox, A.S. Burke, D.L. Traber, D.N. Herndon, and H.K. Hawkins. (2007). Production of pro-inflammatory polypeptides by airway mucous glands and its potential significance. Pulm. Pharmacol. Ther. 20:172–177.
  • J.M. Dodd-o, M.L. Hristopoulos, L.E. Welsh-Servinsky, C.G. Tankersley, and D.B. Pearse. (2006). Strain-specific differences in sensitivity to ischemia-reperfusion lung injury in mice. J. Appl. Physiol. 100:1590–1595.
  • F.N. Dost. (1991). Acute toxicology of components of vegetation smoke. Rev. Environ. Contam. Toxicol. 119:1–46.
  • P. Enkhbaatar, and D.L. Traber. (2004). Pathophysiology of acute lung injury in combined burn and smoke inhalation injury. Clin. Sci. (Lond). 107:137–143.
  • I. Gur, R. Or, M.J. Segel, M. Shriki, G. Izbicki, and R. Breuer. (2000). Lymphokines in bleomycin-induced lung injury in bleomycin-sensitive C57BL/6 and-resistant BALB/c mice. Exp. Lung Res. 26:521–534.
  • D.G. Hoyt, and J.S. Lazo. (1992). Murine strain differences in acute lung injury and activation of poly(ADP-ribose) polymerase by in vitro exposure of lung slices to bleomycin. Am. J. Respir. Cell Mol. Biol. 7:645–651.
  • M. Kolb, P. Bonniaud, T. Galt, P.J. Sime, M.M. Kelly, P.J. Margetts, and J. Gauldie. (2002). Differences in the fibrogenic response after transfer of active transforming growth factor-beta1 gene to lungs of “fibrosis-prone” and “fibrosis-resistant” mouse strains. Am. J. Respir. Cell Mol. Biol. 27:141–150.
  • C. LaLonde, U. Nayak, J. Hennigan, and R. Demling. (1996). Antioxidants prevent the cellular deficit produced in response to burn injury. J. Burn Care Rehabil. 17:379–383.
  • H.M. Lee, G.H. Greeley, D.N. Herndon, M. Sinha, B.A. Luxon, and E.W. Englander. (2005). A rat model of smoke inhalation injury: influence of combustion smoke on gene expression in the brain. Toxicol. Appl. Pharmacol. 208:255–265.
  • H.A. Linares. (1981). A report of 115 consecutive autopsies in burned children: 1966–80. Burns 8:263–270.
  • B. Ma, M.R. Blackburn, C.G. Lee, R.J. Homer, W. Liu, R.A. Flavell, L. Boyden, R.P. Lifton, C.X. Sun, H.W. Young, and J.A. Elias. (2006). Adenosine metabolism and murine strain-specific IL-4-induced inflammation, emphysema, and fibrosis. J. Clin. Invest. 116:1274–1283.
  • A. Mizutani, P. Enkhbaatar, A. Esechie, L.D. Traber, R.A. Cox, H.K. Hawkins, D.J. Deyo, K. Murakami, T. Noguchi, and D.L. Traber. (2008). Pulmonary changes in a mouse model of combined burn and smoke inhalation-induced injury. J. Appl. Physiol. 105:678–684.
  • J.S. Mogil, S.B. Smith, M.K. O’Reilly, and G. Plourde. (2005). Influence of nociception and stress-induced antinociception on genetic variation in isoflurane anesthetic potency among mouse strains. Anesthesiology 103:751–758.
  • M. Ozaki, K. Ozaki, T. Watanabe, S. Uwagawa, Y. Okuno, and T. Shirai. (2005). Susceptibilities of p53 knockout and rasH2 transgenic mice to urethane-induced lung carcinogenesis are inherited from their original strains. Toxicol. Pathol. 33:267–271.
  • X. Peng, P.M. Hassoun, S. Sammani, B.J. McVerry, M.J Burne, H. Rabb, D. Pearse, R.M. Tuder, and J.G. Garcia. (2004). Protective effects of sphingosine 1-phosphate in murine endotoxin-induced inflammatory lung injury. Am. J. Respir. Crit. Care Med. 169:1245–1251.
  • J.A. Preston, K.W. Beagley, P.G. Gibson, and P.M. Hansbro. (2004). Genetic background affects susceptibility in nonfatal pneumococcal bronchopneumonia. Eur. Respir. J. 23:224–231.
  • D.R. Prows, M.J. Daly, H.G. Shertzer, and G.D. Leikauf. (1999). Ozone-induced acute lung injury: genetic analysis of F(2) mice generated from A/J and C57BL/6J strains. Am. J. Physiol. 277:L372–L380.
  • R.R. Rowland, K.T. Yamaguchi, A.S. Santibanez, K.T. Kodama, V.T. Ness, and D.E. Grubbs. (1986). Smoke inhalation model for lung permeability studies. J. Trauma 26:153–156.
  • H. Sakurai, R. Johnigan, Y. Kikuchi, M. Harada, L.D. Traber, and D.L. Traber. (1998). Effect of reduced bronchial circulation on lung fluid flux after smoke inhalation in sheep. J. Appl. Physiol. 84:980–986.
  • K.Z. Shirani, J.A. Moylan, and B.A. PruittJr.. (1987). The influence of inhalation injury and pneumonia on burn mortality. Ann. Surg. 205 (1):82–87.
  • R.A. Stone, C.C. Tisher, H.K. Hawkins, and R.R. Robinson. (1973). Juxtaglomerular hyperplasia and hyperreninemia in progressive systemic sclerosis complicated by acute renal failure. Am. J. Med. 56:119–123.
  • K. Takeda, A. Haczku, J.J. Lee, C.G. Irvin, and E.W. Gelfand. (2001). Strain dependence of airway hyperresponsiveness reflects differences in eosinophil localization in the lung. Am. J. Physiol. Lung Cell Mol. Physiol. 281:L394–L402.
  • C.G. Tankersley, R.S. Fitzgerald, and S.R. Kleeberger. (1994). Differential control of ventilation among inbred strains of mice. Am. J. Physiol. Regul. Int. Comp. Physiol. 267:R1371–R1377.
  • T.E. Toliver-Kinsky, T.K. Varma, C.Y. Lin, D.N. Herndon, and E.R. Sherwood. (2002). Interferon-gamma production is suppressed in thermally injured mice: decreased production of regulatory cytokines and corresponding receptors. Shock 18:322–330.
  • D.L. Traber, and D.N. Herndon. Pathophysiology of smoke inhalationRespiratory InjuryE.F. Haponik, and A.M. Munster. McGraw-Hill, New York, (1990)61–71.
  • K. Tsuno, P. Prato, and T. Kolobow. (1990). Acute lung injury from mechanical ventilation at moderately high airway pressures. J. Appl. Physiol. 69:956–961.
  • I.F. Wang, M. Patel, H.M. Razavi, S. Weicker, M.G. Joseph, D.G. McCormack, and S. Mehta. (2002). Role of inducible nitric oxide synthase in pulmonary microvascular protein leak in murine sepsis. Am. J. Respir. Crit. Care Med. 165:1634–1639.
  • N. Weissmann, E. Akkayagil, K. Quanz, R.T. Schermuly, H.A. Ghofrani, L. Fink, J. Hanze, F. Rose, W. Seeger, and F. Grimminger. (2004). Basic features of hypoxic pulmonary vasoconstriction in mice. Respir. Physiol. Neurobiol. 139:191–202.
  • M. Zhao, L.G. Fernandez, A. Doctor, A.K. Sharma, A. Zarbock, C.G. Tribble, I.L. Kron, and E. Laubach. (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.

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