Ragweed plants grown under elevated CO2 levels produce pollen which elicit stronger allergic lung inflammation

被引:44
作者
Rauer, Denise [1 ,2 ]
Gilles, Stefanie [1 ,2 ]
Wimmer, Maria [2 ,3 ,4 ]
Frank, Ulrike [5 ]
Mueller, Constanze [6 ]
Musiol, Stephanie [2 ,3 ,4 ]
Vafadari, Behnam [1 ,2 ]
Aglas, Lorenz [7 ]
Ferreira, Fatima [7 ]
Schmitt-Kopplin, Philippe [6 ]
Durner, Jorg [5 ]
Winkler, Jana Barbro [8 ]
Ernst, Dieter [5 ]
Behrendt, Heidrun [2 ,3 ]
Schmidt-Weber, Carsten B. [2 ,3 ,4 ]
Traidl-Hoffmann, Claudia [1 ,2 ,9 ,10 ]
Alessandrini, Francesca [2 ,3 ,4 ]
机构
[1] Tech Univ Munich, UNIKA T, Chair & Inst Environm Med, Augsburg, Germany
[2] Helmholtz Zentrum Munchen, Augsburg, Germany
[3] Tech Univ Munich TUM, Ctr Allergy & Environm ZAUM, Munich, Germany
[4] German Ctr Lung Res DZL, Munich, Germany
[5] Helmholtz Zentrum Munchen, Inst Biochem Plant Pathol BIOP, Neuherberg, Germany
[6] Helmholtz Zentrum Munchen, Res Unit Analyt BioGeoChem, BGC, Neuherberg, Germany
[7] Univ Salzburg, Dept Biosci, Salzburg, Austria
[8] Helmholtz Zentrum Munchen, Inst Biochem Plant Pathol, Res Unit Environm Simulat, Neuherberg, Germany
[9] Univ Clin Augsburg, Outpatient Clin Environm Med, Augsburg, Germany
[10] Christine Kuhne Ctr Allergy Res & Educ CK Care, Davos, Switzerland
关键词
allergic lung inflammation; carbon dioxide; climate change; pollen metabolome; ragweed; AMBROSIA-ARTEMISIIFOLIA L; TNF-ALPHA; DENDRITIC CELLS; ATMOSPHERIC CO2; BIRCH POLLEN; T-CELLS; ACTIVATION; IL-1; TH2; EXPRESSION;
D O I
10.1111/all.14618
中图分类号
R392 [医学免疫学];
学科分类号
100102 ;
摘要
Background Common ragweed has been spreading as a neophyte in Europe. Elevated CO2 levels, a hallmark of global climate change, have been shown to increase ragweed pollen production, but their effects on pollen allergenicity remain to be elucidated. Methods Ragweed was grown in climate-controlled chambers under normal (380 ppm, control) or elevated (700 ppm, based on RCP4.5 scenario) CO2 levels. Aqueous pollen extracts (RWE) from control- or CO2-pollen were administered in vivo in a mouse model for allergic disease (daily for 3-11 days, n = 5) and employed in human in vitro systems of nasal epithelial cells (HNECs), monocyte-derived dendritic cells (DCs), and HNEC-DC co-cultures. Additionally, adjuvant factors and metabolites in control- and CO2-RWE were investigated using ELISA and untargeted metabolomics. Results In vivo, CO2-RWE induced stronger allergic lung inflammation compared to control-RWE, as indicated by lung inflammatory cell infiltrate and mediators, mucus hypersecretion, and serum total IgE. In vitro, HNECs stimulated with RWE increased indistinctively the production of pro-inflammatory cytokines (IL-8, IL-1 beta, and IL-6). In contrast, supernatants from CO2-RWE-stimulated HNECs, compared to control-RWE-stimulated HNECS, significantly increased TNF and decreased IL-10 production in DCs. Comparable results were obtained by stimulating DCs directly with RWEs. The metabolome analysis revealed differential expression of secondary plant metabolites in control- vs CO2-RWE. Mixes of these metabolites elicited similar responses in DCs as compared to respective RWEs. Conclusion Our results indicate that elevated ambient CO2 levels elicit a stronger RWE-induced allergic response in vivo and in vitro and that RWE increased allergenicity depends on the interplay of multiple metabolites.
引用
收藏
页码:1718 / 1730
页数:13
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