Epithelial cells modulate genes associated with NF kappa B activation in co-cultured human macrophages

. 2011 Oct ; 216 (10) : 1110-6. [epub] 20110501

Jazyk angličtina Země Nizozemsko Médium print-electronic

Typ dokumentu časopisecké články, práce podpořená grantem

Perzistentní odkaz   https://www.medvik.cz/link/pmid21601940

Grantová podpora
R01 ES019325 NIEHS NIH HHS - United States

Odkazy

PubMed 21601940
PubMed Central PMC4706171
DOI 10.1016/j.imbio.2011.04.009
PII: S0171-2985(11)00092-1
Knihovny.cz E-zdroje

Macrophages located in airways and the alveolar space are continually exposed to different signals from the respiratory mucosa. In this respect, epithelial cells represent an important source of cytokines and mediators modulating the state of activation and/or differentiation of mononuclear phagocytes. Many of the proinflammatory genes induced in macrophages during immune and immunopathological reactions are regulated by transcription factor NF kappa B. The aim of our study was to characterize changes in the expression of genes associated with NF kappa B activation and signalling in THP-1 human macrophages co-cultured with A549 respiratory epithelial cells. At least 4-fold upregulation of mRNA level was found in 29 of 84 tested genes including genes for multiple cytokines and chemokines, membrane antigens and receptors, and molecules associated with NF kappa B signalling. The mRNA induction was confirmed at the level of protein expression by evaluating the release of IL-6 and IL-8 and by ICAM-1 expression. Blocking of one NFκB subunit by p65 siRNA inhibited the production of IL-6 in both cell types while IL-8 release from THP-1 cells did not seem to be affected. We conclude from our data that unstimulated respiratory epithelial cells regulate genes associated with NF kappa B dependent immune responses in human macrophages and that these interactions may play a key role in immediate responses in the respiratory mucosa.

Zobrazit více v PubMed

Alfaro-Moreno E, Nawrot TS, Vanaudenaerde BM, Hoylaerts MF, Vanoirbeek JA, Nemery B, Hoet PH. Co-cultures of multiple cell types mimic pulmonary cell communication in response to urban PM10. Eur. Respir. J. 2008;32:1184–1194. PubMed

Biswas SK, Lewis CE. NF-{kappa}B as a central regulator of macrophage function in tumors. J. Leukoc. Biol. 2010;88:877–884. PubMed

Bulek K, Swaidani S, Aronica M, Li X. Epithelium: the interplay between innate and Th2 immunity. Immunol. Cell Biol. 2010;88:257–268. PubMed

Ge Q, Moir LM, Black JL, Oliver BG, Burgess JK. TGFbeta1 induces IL-6 and inhibits IL-8 release in human bronchial epithelial cells-the role of SMAD2/3. J. Cell Physiol. 2010;225:846–854. PubMed

Gomez-Martin D, Diaz-Zamudio M, Galindo-Campos M, Alcocer-Varela J. Early growth response transcription factors and the modulation of immune response: implications towards autoimmunity. Autoimmun. Rev. 2010;9:454–458. PubMed

Gordon S, Martinez FO. Alternative activation of macrophages: mechanism and functions. Immunity. 2010;32:593–604. PubMed

Han W, Joo M, Everhart MB, Christman JW, Yull FE, Blackwell TS. Myeloid cells control termination of lung inflammation through the NF-kappaB pathway. Am. J. Physiol. Lung Cell Mol. Physiol. 2009;296:L320–L327. PubMed PMC

Hashimoto S, Matsumoto K, Gon Y, Maruoka S, Kujime K, Hayashi S, Takeshita I, Horie T. p38 MAP kinase regulates TNF alpha-, IL-1 alpha- and PAF-induced RANTES and GM-CSF production by human bronchial epithelial cells. Clin. Exp. Allergy. 2000;30:48–55. PubMed

Hjort MR, Brenyo AJ, Finkelstein JN, Frampton MW, LoMonaco MB, Stewart JC, Johnston CJ, D’Angio CT. Alveolar epithelial cell–macrophage interactions affect oxygen-stimulated interleukin-8 release. Inflammation. 2003;27:137–145. PubMed

Howat WJ, Holgate ST, Lackie PM. TGF-beta isoform release and activation during in vitro bronchial epithelial wound repair. Am. J. Physiol. Lung Cell Mol. Physiol. 2002;282:L115–L123. PubMed

Krakauer T. Stimulant-dependent modulation of cytokines and chemokines by airway epithelial cells: cross talk between pulmonary epithelial and peripheral blood mononuclear cells. Clin. Diagn. Lab. Immunol. 2002;9:126–131. PubMed PMC

Lawrence T, Fong C. The resolution of inflammation: anti-inflammatory roles for NF-kappaB. Int. J. Biochem. Cell Biol. 2010;42:519–523. PubMed

Leigh R, Oyelusi W, Wiehler S, Koetzler R, Zaheer RS, Newton R, Proud D. Human rhinovirus infection enhances airway epithelial cell production of growth factors involved in airway remodeling. J. Allergy Clin. Immunol. 2008;121:1238–1245. e1234. PubMed

Liu X, Togo S, Al-Mugotir M, Kim H, Fang Q, Kobayashi T, Wang X, Mao L, Bitterman P, Rennard S. NF-kappaB mediates the survival of human bronchial epithelial cells exposed to cigarette smoke extract. Respir. Res. 2008;9:66. PubMed PMC

Mantovani A, Sica A, Locati M. New vistas on macrophage differentiation and activation. Eur. J. Immunol. 2007;37:14–16. PubMed

Mercer PF, Johns RH, Scotton CJ, Krupiczojc MA, Konigshoff M, Howell DC, McAnulty RJ, Das A, Thorley AJ, Tetley TD, et al. Pulmonary epithelium is a prominent source of proteinase-activated receptor-1-inducible CCL2 in pulmonary fibrosis. Am. J. Respir. Crit. Care Med. 2009;179:414–425. PubMed PMC

Regamey N, Obregon C, Ferrari-Lacraz S, van Leer C, Chanson M, Nicod LP, Geiser T. Airway epithelial IL-15 transforms monocytes into dendritic cells. Am. J. Respir. Cell Mol. Biol. 2007;37:75–84. PubMed

Rubovitch V, Gershnabel S, Kalina M. Lung epithelial cells modulate the inflammatory response of alveolar macrophages. Inflammation. 2007;30:236–243. PubMed

Sachse F, von Eiff C, Stoll W, Becker K, Rudack C. Induction of CXC chemokines in A549 airway epithelial cells by trypsin and staphylococcal proteases – a possible route for neutrophilic inflammation in chronic rhinosinusitis. Clin. Exp. Immunol. 2006;144:534–542. PubMed PMC

Striz I, Slavcev A, Kalanin J, Jaresova M, Rennard SI. Cell–cell contacts with epithelial cells modulate the phenotype of human macrophages. Inflammation. 2001;25:241–246. PubMed

Striz I, Wang YM, Svarcova I, Trnka L, Sorg C, Costabel U. The phenotype of alveolar macrophages and its correlation with immune cells in bronchoalveolar lavage. Eur. Respir. J. 1993;6:1287–1294. PubMed

Sun SC, Ley SC. New insights into NF-kappaB regulation and function. Trends Immunol. 2008;29:469–478. PubMed PMC

Vroling AB, Duinsbergen D, Fokkens WJ, van Drunen CM. Allergen induced gene expression of airway epithelial cells shows a possible role for TNF-alpha. Allergy. 2007;62:1310–1319. PubMed

Wan F, Lenardo MJ. The nuclear signaling of NF-kappaB: current knowledge, new insights, and future perspectives. Cell Res. 2010;20:24–33. PubMed PMC

Wang J, Wang X, Hussain S, Zheng Y, Sanjabi S, Ouaaz F, Beg AA. Distinct roles of different NF-kappa B subunits in regulating inflammatory and T cell stimulatory gene expression in dendritic cells. J. Immunol. 2007;178:6777–6788. PubMed

Najít záznam

Citační ukazatele

Nahrávání dat ...

Možnosti archivace

Nahrávání dat ...