Cytosolic phospholipase A2α mediates Pseudomonas aeruginosa LPS-induced airway constriction of CFTR -/- mice
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  • 作者:Yong-Zheng Wu (1) (2)
    Mohammad Abolhassani (3)
    Mario Ollero (4)
    Fariel Dif (1) (2)
    Naonori Uozumi (5)
    Micheline Lagranderie (3)
    Takao Shimizu (5)
    Michel Chignard (1) (2)
    Lhousseine Touqui (1) (2)
  • 刊名:Respiratory Research
  • 出版年:2010
  • 出版时间:December 2010
  • 年:2010
  • 卷:11
  • 期:1
  • 全文大小:4364KB
  • 参考文献:1. Balough K, McCubbin M, Weinberger M, Smits W, Ahrens R, Fick R: The relationship between infection and inflammation in the early stages of lung disease from cystic fibrosis. / Pediatr Pulmonol 1995, 20:63-0. CrossRef
    2. Khan TZ, Wagener JS, Bost T, Martinez J, Accurso FJ, Riches DW: Early pulmonary inflammation in infants with cystic fibrosis. / Am J Respir Crit Care Med 1995, 151:1075-082.
    3. Weinberger M: Airways reactivity in patients with CF. / Clin Rev Allergy Immunol 2002, 23:77-5. CrossRef
    4. Konstan MW, Walenga RW, Hilliard KA, Hilliard JB: Leukotriene B4 markedly elevated in the epithelial lining fluid of patients with cystic fibrosis. / Am Rev Respir Dis 1993, 148:896-01.
    5. Ghosh M, Tucker DE, Burchett SA, Leslie CC: Properties of the Group IV phospholipase A2 family. / Prog Lipid Res 2006, 45:487-10. CrossRef
    6. Six DA, Dennis EA: The expanding superfamily of phospholipase A(2) enzymes: classification and characterization. / Biochim Biophys Acta 2000, 1488:1-9.
    7. Bonventre JV, Huang Z, Taheri MR, O'Leary E, Li E, Moskowitz MA, Sapirstein A: Reduced fertility and postischaemic brain injury in mice deficient in cytosolic phospholipase A2. / Nature 1997, 390:622-25. CrossRef
    8. Uozumi N, Kume K, Nagase T, Nakatani N, Ishii S, Tashiro F, Komagata Y, Maki K, Ikuta K, Ouchi Y, / et al.: Role of cytosolic phospholipase A(2) in allergic response and parturition. / Nature 1997, 390:618-22. CrossRef
    9. Snouwaert JN, Brigman KK, Latour AM, Malouf NN, Boucher RC, Smithies O, Koller BH: An animal-model for cystic-fibrosis made by gene targeting. / Science 1992, 257:1083-088. CrossRef
    10. Clarke LL, Gawenis LR, Franklin CL, Harline MC: Increased survival of CFTR knockout mice with an oral osmotic laxative. / Lab Anim Sci 1996, 46:612-18.
    11. Goncalves de Moraes VL, Boris Vargaftig B, Lefort J, Meager A, Chignard M: Effect of cyclo-oxygenase inhibitors and modulators of cyclic AMP formation on lipopolysaccharide-induced neutrophil infiltration in mouse lung. / Br J Pharmacol 1996, 117:1792-796.
    12. Nagase T, Uozumi N, Aoki-Nagase T, Terawaki K, Ishii S, Tomita T, Yamamoto H, Hashizume K, Ouchi Y, Shimizu T: A potent inhibitor of cytosolic phospholipase A2, arachidonyl trifluoromethyl ketone, attenuates LPS-induced lung injury in mice. / Am J Physiol Lung Cell Mol Physiol 2003, 284:L720-26.
    13. Dohi M, Tsukamoto S, Nagahori T, Shinagawa K, Saitoh K, Tanaka Y, Kobayashi S, Tanaka R, To Y, Yamamoto K: Noninvasive system for evaluating the allergen-specific airway response in a murine model of asthma. / Lab Invest 1999, 79:1559-571.
    14. Quinn TJ, Taylor S, Wohlford-Lenane CL, Schwartz DA: IL-10 reduces grain dust-induced airway inflammation and airway hyperreactivity. / J Appl Physiol 2000, 88:173-79.
    15. Zeldin DC, Wohlford-Lenane C, Chulada P, Bradbury JA, Scarborough PE, Roggli V, Langenbach R, Schwartz DA: Airway inflammation and responsiveness in prostaglandin H synthase-deficient mice exposed to bacterial lipopolysaccharide. / Am J Respir Cell Mol Bio 2001, 25:457-65.
    16. Alvarez JG, Storey BT: Differential incorporation of fatty acids into and peroxidative loss of fatty acids from phospholipids of human spermatozoa. / Mol Reprod Dev 1995, 42:334-46. CrossRef
    17. Chignard M, Balloy V: Neutrophil recruitment and increased permeability during acute lung injury induced by lipopolysaccharide. / Am J Physiol Lung Cell Mol Physiol 2000, 279:L1083-090.
    18. Fujimura M, Myou S, Kamio Y, Ishiura Y, Iwasa K, Hashimoto T, Matsuda T: Increased airway responsiveness to acetaldehyde in asthmatic subjects with alcohol-induced bronchoconstriction. / Eur Respir J 1999, 14:19-2. CrossRef
    19. Millqvist E, Ternesten-Hasseus E, Bende M: Inhaled ethanol potentiates the cough response to capsaicin in patients with airway sensory hyperreactivity. / Pulm Pharmacol Ther 2008, 21:794-97. CrossRef
    20. Wonne R, Hofmann D, Posselt HG, Stover B, Bender SW: Bronchial allergy in cystic-fibrosis. / Clin Allergy 1985, 15:455-63. CrossRef
    21. Borot F, Vieu DL, Faure G, Fritsch J, Colas J, Moriceau S, Baudouin-Legros M, Brouillard F, Ayala-Sanmartin J, Touqui L, / et al.: Eicosanoid release is increased by membrane destabilization and CFTR inhibition in Calu-3 cells. / PLoS One 2009, 4:e7116. CrossRef
    22. Ackermann EJ, Conde-Frieboes K, Dennis EA: Inhibition of macrophage Ca 2+ -independent phospholipase A2 by bromoenol lactone and trifluoromethyl ketones. / J Biol Chem 1995, 270:445-50. CrossRef
    23. Kilian Conde-Frieboes LJR, Yi-Ching Lio, Hale MichaelR, Wasserman HarryH, Dennis EdwardA: Activated Ketones as Inhibitors of Intracellular Ca2+-Dependent and Ca2+-Independent Phospholipase A2. / J Am Chem Soc 1996, 118:5519-525. CrossRef
    24. Vincent D, Lefort J, Bureau M, Dry J, Vargaftig BB: Dissociation between LPS-induced bronchial hyperreactivity and airway edema in the guinea-pig. / Agents Actions 1991, 34:203-04. CrossRef
    25. Held HD, Uhlig S: Mechanisms of endotoxin-induced airway and pulmonary vascular hyperreactivity in mice. / Am J Respir Crit Care Med 2000, 162:1547-552.
    26. Freedman SD, Weinstein D, Blanco PG, Martinez-Clark P, Urman S, Zaman M, Morrow JD, Alvarez JG: Characterization of LPS-induced lung inflammation in cftr -/- mice and the effect of docosahexaenoic acid. / J Appl Physiol 2002, 92:2169-176.
    27. Owens JM, Shroyer KR, Kingdom TT: Expression of cyclooxygenase and lipoxygenase enzymes in sinonasal mucosa of patients with cystic fibrosis. / Arch Otolaryngol Head Neck Surg 2008, 134:825-31. CrossRef
    28. Berguerand M, Klapisz E, Thomas G, Humbert L, Jouniaux AM, Olivier JL, Bereziat G, Masliah J: Differential stimulation of cytosolic phospholipase A2 by bradykinin in human cystic fibrosis cell lines. / Am J Respir Cell Mol Biol 1997, 17:481-90.
    29. Medjane S, Raymond B, Wu YZ, Touqui L: Impact of CFTR Delta F508 mutation on prostaglandin E 2 production and type IIA phospholipase A 2 expression by pulmonary epithelial cells. / Am J Physiol Lung Cell Mol Physiol 2005, 289:L816-L824. CrossRef
    30. Miele L, Cordella-Miele E, Xing M, Frizzell R, Mukherjee AB: Cystic fibrosis gene mutation (deltaF508) is associated with an intrinsic abnormality in Ca2+-induced arachidonic acid release by epithelial cells. / DNA Cell Biol 1997, 16:749-59.
    31. Roca-Ferrer J, Pujols L, Gartner S, Moreno A, Pumarola F, Mullol J, Cobos N, Picado C: Upregulation of COX-1 and COX-2 in nasal polyps in cystic fibrosis. / Thorax 2006, 61:592-96. CrossRef
    32. Hays SR, Ferrando RE, Carter R, Wong HH, Woodruff PG: Structural changes to airway smooth muscle in cystic fibrosis. / Thorax 2005, 60:226-28. CrossRef
    33. Regamey N, Ochs M, Hilliard TN, Muhlfeld C, Cornish N, Fleming L, Saglani S, Alton E, Bush A, Jeffery PK, Davies JC: Increased airway smooth muscle mass in children with asthma, cystic fibrosis, and non-cystic fibrosis bronchiectasis. / Am J Respir Crit Care Med 2008, 177:837-43. CrossRef
    34. Tanaka H, Watanabe K, Tamaru N, Yoshida M: Arachidonic-acid metabolites and glucocorticoid regulatory mechanism in cultured porcine tracheal smooth-muscle cells. / Lung 1995, 173:347-61. CrossRef
    35. Cloutier M, Campbell S, Basora N, Proteau S, Payet MD, Rousseau E: 20-HETE inotropic effects involve the activation of a nonselective cationic current in airway smooth muscle. / Am J Physiol Lung Cell Mol Physio 2003, 285:L560-L568.
    36. Vandebrouck C, Melin P, Norez C, Robert R, Guibert C, Mettey Y, Becq F: Evidence that CFTR is expressed in rat tracheal smooth muscle cells and contributes to bronchodilation. / Respir Res 2006, 7:1-0. CrossRef
    37. Bonvin E, Le Rouzic P, Bernaudin JF, Cottart CH, Vandebrouck C, Crie A, Leal T, Clement A, Bonora M: Congenital tracheal malformation in cystic fibrosis transmembrane conductance regulator-deficient mice. / J Physiol 2008, 586:3231-243. CrossRef
    38. Vancheri C, Mastruzzo C, Sortino MA, Crimi N: The lung as a privileged site for the beneficial actions of PGE(2). / Trends Immunol 2004, 25:40-6. CrossRef
    39. Lefort J, Singer M, Leduc D, Renesto P, Nahori MA, Huerre M, Creminon C, Chignard M, Vargaftig BB: Systemic administration of endotoxin induces bronchopulmonary hyperreactivity dissociated from TNF-alpha formation and neutrophil sequestration into the murine lungs. / J Immunol 1998, 161:474-80.
  • 作者单位:Yong-Zheng Wu (1) (2)
    Mohammad Abolhassani (3)
    Mario Ollero (4)
    Fariel Dif (1) (2)
    Naonori Uozumi (5)
    Micheline Lagranderie (3)
    Takao Shimizu (5)
    Michel Chignard (1) (2)
    Lhousseine Touqui (1) (2)

    1. Unité de Défense Innée et Inflammation, Institut Pasteur, Paris, France
    2. INSERM U.874, Paris, France
    3. Laboratoire d'Immunothérapie, Institut Pasteur, Paris, France
    4. INSERM U845, Université Paris-Descartes, Paris, France
    5. Department of Biochemistry and Molecular Biology, Faculty of Medicine, The University of Tokyo, Tokyo, Japan
文摘
Background Lungs of cystic fibrosis (CF) patients are chronically infected with Pseudomonas aeruginosa. Increased airway constriction has been reported in CF patients but underplaying mechanisms have not been elucidated. Aim: to examine the effect of P. aeruginosa LPS on airway constriction in CF mice and the implication in this process of cytosolic phospholipase A2α (cPLA2α), an enzyme involved in arachidonic acid (AA) release. Methods Mice were instilled intra-nasally with LPS. Airway constriction was assessed using barometric plethysmograph. MIP-2, prostaglandin E2 (PGE2), leukotrienes and AA concentrations were measured in BALF using standard kits and gas chromatography. Results LPS induced enhanced airway constriction and AA release in BALF of CF compared to littermate mice. This was accompanied by increased levels of PGE2, but not those of leukotrienes. However, airway neutrophil influx and MIP-2 production remained similar in both mouse strains. The cPLA2α inhibitor arachidonyl trifluoro-methyl-ketone (ATK), but not aspirin which inhibit PGE2 synthesis, reduced LPS-induced airway constriction. LPS induced lower airway constriction and PGE2 production in cPLA2α -/- mice compared to corresponding littermates. Neither aspirin nor ATK interfered with LPS-induced airway neutrophil influx or MIP-2 production. Conclusions CF mice develop enhanced airway constriction through a cPLA2α-dependent mechanism. Airway inflammation is dissociated from airway constriction in this model. cPLA2α may represent a suitable target for therapeutic intervention in CF. Attenuation of airway constriction by cPLA2α inhibitors may help to ameliorate the clinical status of CF patients.

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