Mast cell and eosinophil activation during allergic airway inflammation has been linked to several aspects of pulmonary disease. Although IgE- mediated pathways are initially responsible for mast cell degranulation during allergic response. C-kit ligand or stem cell factor (SCF), has been identified as a key molecular component of mast cell activation. SCF is not only an important hematopoietic factor which drives terminal differentiation of mast cells, but it also been shown to have mother important roles in regulating mast cell biology, such as survival, activation and degranulation of mature mast cells. In addition, SCF has also been shown to have an activating effect on eosinophils. These observations identify SCF as a central molecule in allergic inflammation. In the present proposal, we will examine the role of SCF as an activating cytokine, capable of augmenting allergic airway inflammation airway inflammation via mast cell activation and eosinophil survival. In addition, because SCF is found in two different forms, soluble and transmembrane, we will specifically examine whether differential activation in two different forms, soluble and transmembrane, we will specifically examine whether differential activation mechanisms exist between these two forms. We hypothesize that SCF expression during an allergen-specific pulmonary response augments mast cell-dependent inflammation that leads to increased peribronchial eosinophil accumulation and airway hyper-reactivity. To test this postulate, we will focus on mechanisms of antigen-specific, SCF-induced mast cell activation leading to airway inflammation. Our studies will include the following: 1) To characterize the level of Stem Cell Factor (SCF) mRNA and protein expression, and identify its specific role during allergic airway responses; 2) To characterize the ability of soluble versus transmembrane SCF to augment mast cell and eosinophil activation; 3) To identify the expression of soluble and/or transmembrane (cell- associated) SCF in specific pulmonary cell populations; 4) To determine the role of soluble versus transmembrane SCF in mediating pulmonary mast cell activation, degranulation, and production of chemokines; 5) To elucidate the contribution of SCF-induced responses to airway hyper- reactivity. The allergic eosinophilic airway inflammation will be generated using an established model of a TH2-type hyper-eosinophilic response. This response is characterized by high levels of allergen- specific serum IgE and airway histamine release after challenge and is an appropriate model for the investigation of mast cell mediated events in allergic airway inflammatory responses. To assess the mechanisms of SCF-induced mast cell activation leading to eosinophilic airway infiltration, we will address a number of previously unexplored mechanisms, especially those pertaining to soluble versus transmembrane SCF leading to mast cell/eosinophil activation and specific chemokine production. In addition, we will assess changes in airway physiology in normal and deficient allergic mice and elucidate the mechanism of SCF- induced mast cell activation.

Agency
National Institute of Health (NIH)
Institute
National Heart, Lung, and Blood Institute (NHLBI)
Type
Research Project (R01)
Project #
5R01HL059178-04
Application #
6527130
Study Section
Lung Biology and Pathology Study Section (LBPA)
Program Officer
Noel, Patricia
Project Start
1999-09-01
Project End
2003-08-31
Budget Start
2002-09-01
Budget End
2003-08-31
Support Year
4
Fiscal Year
2002
Total Cost
$245,604
Indirect Cost
Name
University of Michigan Ann Arbor
Department
Pathology
Type
Schools of Medicine
DUNS #
791277940
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
Li, Lin; Lukacs, Nicholas W; Schaller, Matthew A et al. (2016) IL-17RB+ granulocytes are associated with airflow obstruction in asthma. Ann Allergy Asthma Immunol 117:674-679
Petersen, Bryan C; Dolgachev, Vladislav; Rasky, Andrew et al. (2014) IL-17E (IL-25) and IL-17RB promote respiratory syncytial virus-induced pulmonary disease. J Leukoc Biol 95:809-815
Jang, Sihyug; Morris, Susan; Lukacs, Nicholas W (2013) TSLP promotes induction of Th2 differentiation but is not necessary during established allergen-induced pulmonary disease. PLoS One 8:e56433
Ding, Lin; Dolgachev, Vladilsav; Wu, Zhuang et al. (2013) Essential role of stem cell factor-c-Kit signalling pathway in bleomycin-induced pulmonary fibrosis. J Pathol 230:205-14
Demoor, Tine; Petersen, Bryan C; Morris, Susan et al. (2012) IPS-1 signaling has a nonredundant role in mediating antiviral responses and the clearance of respiratory syncytial virus. J Immunol 189:5942-53
Lee, Hai-Chon; Headley, Mark B; Loo, Yueh-Ming et al. (2012) Thymic stromal lymphopoietin is induced by respiratory syncytial virus-infected airway epithelial cells and promotes a type 2 response to infection. J Allergy Clin Immunol 130:1187-1196.e5
Petersen, Bryan C; Budelsky, Alison L; Baptist, Alan P et al. (2012) Interleukin-25 induces type 2 cytokine production in a steroid-resistant interleukin-17RB+ myeloid population that exacerbates asthmatic pathology. Nat Med 18:751-8
Dolgachev, Vladislav; Petersen, Bryan C; Budelsky, Alison L et al. (2009) Pulmonary IL-17E (IL-25) production and IL-17RB+ myeloid cell-derived Th2 cytokine production are dependent upon stem cell factor-induced responses during chronic allergic pulmonary disease. J Immunol 183:5705-15
Dolgachev, Vladislav A; Ullenbruch, Matthew R; Lukacs, Nicholas W et al. (2009) Role of stem cell factor and bone marrow-derived fibroblasts in airway remodeling. Am J Pathol 174:390-400
Lindell, Dennis M; Berlin, Aaron A; Schaller, Matthew A et al. (2008) B cell antigen presentation promotes Th2 responses and immunopathology during chronic allergic lung disease. PLoS One 3:e3129

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