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Administration of mycobacterial Ag85A and IL-17A fusion protein attenuates airway inflammation in a murine model of asthma
Institution:1. Department of Pediatrics, Affiliated 6th People''s Hospital, Shanghai Jiaotong University, Shanghai 200233, PR China;2. Shanghai Public Health Clinical Center affiliated to Fudan University, Shanghai 201508, PR China;1. Department of Pediatric & Adolescent Medicine, Western Michigan University, Homer Stryker M.D. School of Medicine, Kalamazoo, MI, United States;2. Western Michigan University, Homer Stryker M.D. School of Medicine, Kalamazoo, MI, United States;1. Amsterdam UMC location Vrije Universiteit Amsterdam, department of obstetrics and gynecology, Amsterdam, The Netherlands;2. Amsterdam Reproduction and Development research institute, Amsterdam, The Netherlands;3. Amsterdam UMC location University of Amsterdam, department of obstetrics and gynecology, Amsterdam, The Netherlands;4. Department of Medical Microbiology, Amsterdam UMC, University of Amsterdam, Amsterdam, The Netherlands;5. Amsterdam Institute for Infection and Immunity, Infectious diseases, Amsterdam, The Netherlands;6. Amsterdam UMC location Vrije Universiteit Amsterdam, Epidemiology and Data Science, Amsterdam, The Netherlands;7. Amsterdam UMC location Vrije Universiteit, University of Amsterdam, department of pediatrics, Emma Children''s Hospital, Amsterdam, The Netherlands
Abstract:Interleukin (IL)-17A contributes to the development of asthma, especially in severe asthma which has characteristic neutrophil infiltration in airways. However, IL-17A-blocking antibody could escalate T helper (Th) 2 cytokines, such as IL-13, IL-4 in murine models. We aimed at determining the effect of mycobacterial Ag85A and IL-17A fusion protein—Ag85A-IL-17A on airway inflammation in a murine model of asthma. IL-17A recombinant protein fused mycobacterial immunodominant antigen Ag85A was constructed, expressed and purified. The fusion protein was then administrated into BALB/c mice and its anti-inflammatory effects in the infiltration of inflammatory cells, Th2/Th17 cytokines in BALF, histopathological changes of lung tissues as well as chemokines in lung tissues were evaluated in the murine model of asthma. We found that administration of mycobacterial Ag85A and IL-17A fusion protein induced IL-17A specific immunoglobulin (Ig)G in sera and significantly decreased IL-17A and IL-6 levels in bronchoalveolar lavage fluid (BALF). Ag85A-IL-17A vaccinated mice also showed marked reduction in the infiltration of inflammatory cells in peribronchiolar region and significant decrease in total cells, eosinophil cells and neutrophil cells in BALF. The increased levels of IL-13 and IL-4 in BALF of ovalbumin-sensitized mice were significantly reduced by the administration of Ag85A-IL-17A. Furthermore, CD3+CD4+IL-13+ splenocytes stimulated with OVA and CXCL1 mRNA, CCL2 mRNA and GATA-3 mRNA expressed in lung tissues were decreased markedly in Ag85A-IL-17A vaccinated group. Our results demonstrate remarkable antiallergic effects of Ag85A-IL-17A in a murine model of asthma and it may have protective effects on allergic asthma.
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