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400 related items for PubMed ID: 26141115
1. Preventing carbon nanoparticle-induced lung inflammation reduces antigen-specific sensitization and subsequent allergic reactions in a mouse model. Kroker M, Sydlik U, Autengruber A, Cavelius C, Weighardt H, Kraegeloh A, Unfried K. Part Fibre Toxicol; 2015 Jul 04; 12():20. PubMed ID: 26141115 [Abstract] [Full Text] [Related]
2. Ultrafine carbon black particles cause early airway inflammation and have adjuvant activity in a mouse allergic airway disease model. de Haar C, Hassing I, Bol M, Bleumink R, Pieters R. Toxicol Sci; 2005 Oct 04; 87(2):409-18. PubMed ID: 16014737 [Abstract] [Full Text] [Related]
3. Engineered silica nanoparticles act as adjuvants to enhance allergic airway disease in mice. Brandenberger C, Rowley NL, Jackson-Humbles DN, Zhang Q, Bramble LA, Lewandowski RP, Wagner JG, Chen W, Kaplan BL, Kaminski NE, Baker GL, Worden RM, Harkema JR. Part Fibre Toxicol; 2013 Jul 01; 10():26. PubMed ID: 23815813 [Abstract] [Full Text] [Related]
4. Facilitation of Allergic Sensitization and Allergic Airway Inflammation by Pollen-Induced Innate Neutrophil Recruitment. Hosoki K, Aguilera-Aguirre L, Brasier AR, Kurosky A, Boldogh I, Sur S. Am J Respir Cell Mol Biol; 2016 Jan 01; 54(1):81-90. PubMed ID: 26086549 [Abstract] [Full Text] [Related]
5. Endogenous ligands of the aryl hydrocarbon receptor regulate lung dendritic cell function. Thatcher TH, Williams MA, Pollock SJ, McCarthy CE, Lacy SH, Phipps RP, Sime PJ. Immunology; 2016 Jan 01; 147(1):41-54. PubMed ID: 26555456 [Abstract] [Full Text] [Related]
6. Differential cellular responses in healthy mice and in mice with established airway inflammation when exposed to hematite nanoparticles. Gustafsson Å, Bergström U, Ågren L, Österlund L, Sandström T, Bucht A. Toxicol Appl Pharmacol; 2015 Oct 01; 288(1):1-11. PubMed ID: 26163175 [Abstract] [Full Text] [Related]
7. Downregulation of key early events in the mobilization of antigen-bearing dendritic cells by leukocyte immunoglobulin-like Receptor B4 in a mouse model of allergic pulmonary inflammation. Fanning LB, Buckley CC, Xing W, Breslow RG, Katz HR. PLoS One; 2013 Oct 01; 8(2):e57007. PubMed ID: 23431396 [Abstract] [Full Text] [Related]
8. Exposure to low-dose bisphenol A during the juvenile period of development disrupts the immune system and aggravates allergic airway inflammation in mice. Koike E, Yanagisawa R, Win-Shwe TT, Takano H. Int J Immunopathol Pharmacol; 2018 Oct 01; 32():2058738418774897. PubMed ID: 29737898 [Abstract] [Full Text] [Related]
9. IL-23 secreted by bronchial epithelial cells contributes to allergic sensitization in asthma model: role of IL-23 secreted by bronchial epithelial cells. Lee HS, Park DE, Lee JW, Chang Y, Kim HY, Song WJ, Kang HR, Park HW, Chang YS, Cho SH. Am J Physiol Lung Cell Mol Physiol; 2017 Jan 01; 312(1):L13-L21. PubMed ID: 27864285 [Abstract] [Full Text] [Related]
10. Regulation of allergic airway inflammation by class I-restricted allergen presentation and CD8 T-cell infiltration. Wells JW, Cowled CJ, Giorgini A, Kemeny DM, Noble A. J Allergy Clin Immunol; 2007 Jan 01; 119(1):226-34. PubMed ID: 17208606 [Abstract] [Full Text] [Related]
11. Treatment with a sphingosine analog after the inception of house dust mite-induced airway inflammation alleviates key features of experimental asthma. Gendron D, Lemay AM, Tremblay C, Lai LJ, Langlois A, Bernatchez É, Flamand N, Blanchet MR, Don AS, Bossé Y, Bissonnette É, Marsolais D. Respir Res; 2015 Feb 03; 16(1):7. PubMed ID: 25645346 [Abstract] [Full Text] [Related]
12. Selective control of SIRP-alpha-positive airway dendritic cell trafficking through CD47 is critical for the development of T(H)2-mediated allergic inflammation. Raymond M, Rubio M, Fortin G, Shalaby KH, Hammad H, Lambrecht BN, Sarfati M. J Allergy Clin Immunol; 2009 Dec 03; 124(6):1333-42.e1. PubMed ID: 19748659 [Abstract] [Full Text] [Related]
13. Allergic sensitization is enhanced in early life through toll-like receptor 7 activation. Phipps S, Hansbro N, Lam CE, Foo SY, Matthaei KI, Foster PS. Clin Exp Allergy; 2009 Dec 03; 39(12):1920-8. PubMed ID: 19735273 [Abstract] [Full Text] [Related]
14. The compatible solute ectoine protects against nanoparticle-induced neutrophilic lung inflammation. Sydlik U, Gallitz I, Albrecht C, Abel J, Krutmann J, Unfried K. Am J Respir Crit Care Med; 2009 Jul 01; 180(1):29-35. PubMed ID: 19324973 [Abstract] [Full Text] [Related]
15. Immunomodulation of airway epithelium cell activation by mesenchymal stromal cells ameliorates house dust mite-induced airway inflammation in mice. Duong KM, Arikkatt J, Ullah MA, Lynch JP, Zhang V, Atkinson K, Sly PD, Phipps S. Am J Respir Cell Mol Biol; 2015 Nov 01; 53(5):615-24. PubMed ID: 25789608 [Abstract] [Full Text] [Related]
16. Ursolic acid, a potential PPARγ agonist, suppresses ovalbumin-induced airway inflammation and Penh by down-regulating IL-5, IL-13, and IL-17 in a mouse model of allergic asthma. Kim SH, Hong JH, Lee YC. Eur J Pharmacol; 2013 Feb 15; 701(1-3):131-43. PubMed ID: 23201068 [Abstract] [Full Text] [Related]
17. Th2 Cytokines in Skin Draining Lymph Nodes and Serum IgE Do Not Predict Airway Hypersensitivity to Intranasal Isocyanate Exposure in Mice. Farraj AK, Boykin E, Haykal-Coates N, Gavett SH, Doerfler D, Selgrade M. Toxicol Sci; 2007 Nov 15; 100(1):99-108. PubMed ID: 17693426 [Abstract] [Full Text] [Related]
18. Inhaled CD86 antisense oligonucleotide suppresses pulmonary inflammation and airway hyper-responsiveness in allergic mice. Crosby JR, Guha M, Tung D, Miller DA, Bender B, Condon TP, York-DeFalco C, Geary RS, Monia BP, Karras JG, Gregory SA. J Pharmacol Exp Ther; 2007 Jun 15; 321(3):938-46. PubMed ID: 17389243 [Abstract] [Full Text] [Related]
19. P2rx4 deficiency in mice alleviates allergen-induced airway inflammation. Zech A, Wiesler B, Ayata CK, Schlaich T, Dürk T, Hoßfeld M, Ehrat N, Cicko S, Idzko M. Oncotarget; 2016 Dec 06; 7(49):80288-80297. PubMed ID: 27863396 [Abstract] [Full Text] [Related]
20. The lung cytokine microenvironment influences molecular events in the lymph nodes during Th1 and Th2 respiratory mucosal sensitization to antigen in vivo. Ritz SA, Cundall MJ, Gajewska BU, Swirski FK, Wiley RE, Alvarez D, Coyle AJ, Stampfli MR, Jordana M. Clin Exp Immunol; 2004 Nov 06; 138(2):213-20. PubMed ID: 15498029 [Abstract] [Full Text] [Related] Page: [Next] [New Search]