期刊论文详细信息
Respiratory Research
Autocrine ligands of the epithelial growth factor receptor mediate inflammatory responses to diesel exhaust particles
Donna E Davies2  Anthony J Frew1  Stephen T Holgate1  Sarah M Puddicombe1  Lynnsey M Hamilton1  Sam Parnia1 
[1] The Brooke Laboratories, Division of Infection, Inflammation and Repair, School of Medicine, University of Southampton, Southampton General Hospital, Southampton SO16 6YD, UK;Allergy & Inflammation Research, The Brooke Laboratory, Level F South Block, Mailpoint 888, Southampton General Hospital, Southampton SO16 6YD, UK
关键词: Ligand shedding;    Transactivation;    Interleukin-8;    Epidermal growth factor receptor;    Inflammation;    Neutrophilia;    Air pollution;   
Others  :  790396
DOI  :  10.1186/1465-9921-15-22
 received in 2013-05-24, accepted in 2014-02-03,  发布年份 2014
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【 摘 要 】

Background

Diesel exhaust is associated with cardiovascular and respiratory mortality and morbidity. Acute exposure leads to increased IL-8 expression and airway neutrophilia, however the mechanism of this response is unknown. Objectives: As cigarette smoke-induced IL-8 expression by epithelial cells involves transactivation of the epidermal growth factor receptor (EGFR), we studied the effects of diesel exhaust particles (DEP) on IL-8 release and the role of the EGFR.

Methods

Primary bronchial epithelial cells (PBEC) were exposed to DEPs or carbon black. IL-8 and EGFR ligand expression (transforming growth factor alpha (TGFα), heparin-binding EGF-like growth factor, and amphiregulin (AR)) were assessed by quantitative RT-PCR and ELISA.

Results

DEP, but not carbon black, caused a dose-dependent increase in mitogen-activated protein kinase (MAPK) activation and IL-8 expression, however above 50 μg/ml there was an increase in cytotoxicity. At 50 μg/ml, DEPs stimulated transcription and release of IL-8 and EGFR ligands. IL-8 release was blocked by EGFR neutralizing antibodies, an EGFR-selective tyrosine kinase inhibitor and by the metalloprotease inhibitor, GM6001, which blocks EGFR ligand shedding. Neutralizing antibodies to AR, TGFα and heparin-binding (HB)-EGF reduced DEP-induced IL-8 by >50%. Conclusion Expression of IL-8 in response to DEPs is dependent on EGFR activation and that autocrine production of EGFR ligands makes a substantial contribution to this response. Capsule Summary: This study identifies a mechanism whereby diesel particles stimulates IL-8 release from bronchial epithelial cells. This mechanism may help to explain the recruitment of neutrophils into the airways of people exposed to particulate air pollution.

【 授权许可】

   
2014 Parnia et al.; licensee BioMed Central Ltd.

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【 参考文献 】
  • [1]Dockery DW, Pope CA III: Acute respiratory effects of particulate air pollution. Annu Rev Public Health 1994, 15:107-132.
  • [2]Salvi SS, Frew A, Holgate S: Is diesel exhaust a cause for increasing allergies? Clin Exp Allergy 1999, 29(1):4-8.
  • [3]Ristovsky ZD, Miljevic B, Surawski LM, Fong KM, Goh F, Yang IA: Respiratory health effects of diesel particulate matter. Respirology 2012, 17:201-212.
  • [4]Saber AT, Bornholdt J, Dybdahl M, Sharma AK, Loft S, Vogel U, et al.: Tumor necrosis factor is not required for particle-induced genotoxicity and pulmonary inflammation. Arch Toxicol 2005, 79(3):177-182.
  • [5]Salvi S, Blomberg A, Rudell B, Kelly F, Sandstrom T, Holgate ST, et al.: Acute inflammatory responses in the airways and peripheral blood after short-term exposure to diesel exhaust in healthy human volunteers. Am J Respir Crit Care Med 1999, 159(3):702-709.
  • [6]Fahy O, Tsicopoulos A, Hammad H, Pestel J, Tonnel AB, Wallaert B: Effects of diesel organic extracts on chemokine production by peripheral blood mononuclear cells. J Allergy Clin Immunol 1999, 103(6):1115-1124.
  • [7]Boland S, Baeza-Squiban A, Fournier T, Houcine O, Gendron MC, Chevrier M, et al.: Diesel exhaust particles are taken up by human airway epithelial cells in vitro and alter cytokine production. Am J Physiol 1999, 276(4 Pt 1):L604-L613.
  • [8]Bayram H, Devalia JL, Sapsford RJ, Ohtoshi T, Miyabara Y, Sagai M, et al.: The effect of diesel exhaust particles on cell function and release of inflammatory mediators from human bronchial epithelial cells in vitro. Am J Respir Cell Mol Biol 1998, 18(3):441-448.
  • [9]Hashimoto S, Gon Y, Takeshita I, Matsumoto K, Jibiki I, Takizawa H, Kudoh S: Horie T Diesel exhaust particles activate p38 MAP kinase to produce interleukin 8 and RANTES by human bronchial epithelial cells and N-acetylcysteine attenuates p38 MAP kinase activation. Am J Respir Crit Care Med 2000, 161:280-285.
  • [10]Deforge LE, Preston AM, Takeuchi E, Kenney J, Boxer LA, Remick DG: Regulation of interleukin 8 gene expression by oxidant stress. J Biol Chem 1993, 268:25568-25576.
  • [11]Richter A, O’Donnell RA, Powell RM, Sanders MW, Holgate ST, Djukanovic R, et al.: Autocrine ligands for the epidermal growth factor receptor mediate interleukin-8 release from bronchial epithelial cells in response to cigarette smoke. Am J Respir Cell Mol Biol 2002, 27(1):85-90.
  • [12]Puddicombe SM, Polosa R, Richter A, Krishna MT, Howarth PH, Holgate ST, et al.: Involvement of the epidermal growth factor receptor in epithelial repair in asthma. FASEB J 2000, 14:1362-1374.
  • [13]O’Donnell RA, Richter A, Ward J, Angco G, Mehta A, Rousseau K, et al.: Expression of ErbB receptors and mucins in the airways of long term current smokers. Thorax 2004, 59(12):1032-1040.
  • [14]Polosa R, Prosperini G, Leir SH, Holgate ST, Lackie PM, Davies DE: Expression of c-erbB receptors and ligands in human bronchial mucosa. Am J Respir Cell Mol Biol 1999, 20(5):914-923.
  • [15]Massague J, Pandiella A: Membrane-anchored growth factors. Annu Rev Biochem 1993, 62:515-541.
  • [16]Prenzel N, Zwick E, Daub H, Leserer M, Abraham R, Wallasch C, et al.: EGF receptor transactivation by G-protein-coupled receptors requires metalloproteinase cleavage of proHB-EGF. Nature 1999, 402(6764):884-888.
  • [17]Hamilton LM, Puddicombe SM, Dearman RJ, Kimber I, Sandstrom T, Wallin A, et al.: Altered protein tyrosine phosphorylation in asthmatic bronchial epithelium. Eur Respir J 2005, 25(6):978-985.
  • [18]Pourazar J, Blomberg A, Kelly FJ, Davies DE, Wilson SJ, Holgate ST, et al.: Diesel exhaust increases EGFR and phosphorylated C-terminal Tyr 1173 in the bronchial epithelium. Part Fibre Toxicol 2008, 5(1):8. BioMed Central Full Text
  • [19]Salvi SS, Nordenhall C, Blomberg A, Rudell B, Pourazar J, Kelly FJ, et al.: Acute exposure to diesel exhaust increases IL-8 and GRO-alpha production in healthy human airways. Am J Respir Crit Care Med 2000, 161(2 Pt 1):550-557.
  • [20]Cohen S, Ushiro H, Stoscheck C, Chinkers M: A native 170,000 epidermal growth factor receptor-kinase complex from shed plasma membrane vesicles. J Biol Chem 1982, 257(3):1523-1531.
  • [21]Hurd SZ: Workshop summary and guidelines: investigative use of bronchoscopy, lavage, and bronchial biopsies in asthma and other airway diseases. J Allergy Clin Immunol 1991, 88(5):808-814.
  • [22]Bucchieri F, Puddicombe SM, Lordan JL, Richter A, Buchanan D, Wilson SJ, et al.: Asthmatic bronchial epithelium is more susceptible to oxidant-induced apoptosis. Am J Respir Cell Mol Biol 2002, 27(2):179-185.
  • [23]Oliver MH, Harrison NK, Bishop JE, Cole PJ, Laurent GJ: A rapid and convenient assay for counting cells cultured in microwell plates: application for assessment of growth factors. J Cell Sci 1989, 92(Pt 3):513-518.
  • [24]Ma JY, Ma JK: The dual effect of the particulate and organic components of diesel exhaust particles on the alteration of pulmonary immune/inflammatory responses and metabolic enzymes. J Environ Sci Health C Environ Carcinog Ecotoxicol Rev 2002, 20(2):117-147.
  • [25]Blanchet S, Ramgolam K, Baulig A, Marano F, Baeza-Squiban A: Fine particulate matter induces amphiregulin secretion by bronchial epithelial cells. Am J Respir Cell Mol Biol 2004, 30(4):421-427.
  • [26]Sjogren M, Li H, Banner C, Rafter J, Westerholm R, Rannug U: Influence of physical and chemical characteristics of diesel fuels and exhaust emissions on biological effects of particle extracts: a multivariate statistical analysis of ten diesel fuels. Chem Res Toxicol 1996, 9(1):197-207.
  • [27]van ZM, de HC, van BA, van LH, Penninks A, Pieters R: Coadministration of antigen and particles optimally stimulates the immune response in an intranasal administration model in mice. Toxicol Appl Pharmacol 2001, 177(3):174-178.
  • [28]Barnard JA, Graves-Deal R, Pittelkow MR, DuBois R, Cook P, Ramsey GW, et al.: Auto- and cross-induction within the mammalian epidermal growth factor-related peptide family. J Biol Chem 1994, 269(36):22817-22822.
  • [29]Stringer B, Imrich A, Kobzik L: Lung epithelial cell (A549) interaction with unopsonized environmental particulates: quantitation of particle-specific binding and IL-8 production. Exp Lung Res 1996, 22(5):495-508.
  • [30]Becker S, Mundandhara S, Devlin RB, Madden M: Regulation of cytokine production in human alveolar macrophages and airway epithelial cells in response to ambient air pollution particles: Further mechanistic studies. Toxicol Appl Pharmacol 2005, 207(2 Suppl):269-275.
  • [31]Baughman RP, Lower EE, Miller MA, Bejarano PA, Heffelfinger SC: Overexpression of transforming growth factor-alpha and epidermal growth factor-receptor in idiopathic pulmonary fibrosis. Sarcoidosis Vasc Diffuse Lung Dis 1999, 16(1):57-61.
  • [32]Korfhagen TR, Swantz RJ, Wert SE, McCarty JM, Kerlakian CB, Glasser SW, et al.: Respiratory epithelial cell expression of human transforming growth factor-alpha induces lung fibrosis in transgenic mice. J Clin Invest 1994, 93(4):1691-1699.
  • [33]Hardie WD, Piljan-Gentle A, Dunlavy MR, Ikegami M, Korfhagen TR: Dose-dependent lung remodeling in transgenic mice expressing transforming growth factor-alpha. Am J Physiol Lung Cell Mol Physiol 2001, 281(5):L1088-L1094.
  • [34]Le Cras TD, Hardie WD, Deutsch GH, Albertine KH, Ikegami M, Whitsett JA, et al.: Transient induction of TGF-alpha disrupts lung morphogenesis, causing pulmonary disease in adulthood. Am J Physiol Lung Cell Mol Physiol 2004, 287(4):L718-L729.
  • [35]Asano K, Nakamura H, Lilly CM, Klagsbrun M, Drazen JM: Interferon gamma induces prostaglandin G/H synthase-2 through an autocrine loop via the epidermal growth factor receptor in human bronchial epithelial cells. J Clin Invest 1997, 99(5):1057-1063.
  • [36]Ma L, de Roquancourt A, Bertheau P, Chevret S, Millot G, Sastre-Garau X, et al.: Expression of amphiregulin and epidermal growth factor receptor in human breast cancer: analysis of autocriny and stromal-epithelial interactions. J Pathol 2001, 194(4):413-419.
  • [37]Basbaum C, Li D, Gensch E, Gallup M, Lemjabbar H: Mechanisms by which gram-positive bacteria and tobacco smoke stimulate mucin induction through the epidermal growth factor receptor (EGFR). Novartis Found Symp 2002, 248:171-176.
  • [38]Nolan TM, Di Girolamo N, Coroneo MT, Wakefield D: Proliferative effects of heparin-binding epidermal growth factor-like growth factor on pterygium epithelial cells and fibroblasts. Invest Ophthalmol Vis Sci 2004, 45(1):110-113.
  • [39]Ingram JL, Rice AB, Santos J, Van Houten B, Bonner JC: Vanadium-induced HB-EGF expression in human lung fibroblasts is oxidant dependent and requires MAP kinases. Am J Physiol Lung Cell Mol Physiol 2003, 284(5):L774-L782.
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