Immediate hypersensitivity reactions result from the activation of mast cells at the interface between the? outside environment and tissues such as airways, gastrointestinal tract and skin. IgE antibody binds to? mast cells and basophils and upon aggregation of the receptor for IgE antibody, FceRI, the cell is activated? to secrete a variety of mediators that cause the local and systemic response characteristic of allergies. It? is well accepted that IgE mediates this kind of reaction but translation of this knowledge to the expression? of allergic disease is poor. The question addressed in this project is how much IgE is necessary and what? parameters adequately predict a response in an individual patient. Indirectly, this project asks whether? these parameters alone are sufficient to account for responsiveness in vivo.
The first aim directly? addresses the issue and posits three critical parameters, IgE density on basophils or mast cells (which is? itself regulated by IgE and other factors to be explored), the antigen-specific to total IgE ratio and the? basophil (mast cell) sensitivity - a new parameter that is defined as the number of antigen-specific IgE? molecules required for a 50% maximum response. A test of the importance of these three parameters is? proposed which uses the drug omalizumab in cat allergic patients to manipulate IgE levels into each? patients critical response region while measuring basophil and mast cell responses.
The second aim ? focuses on the role of the beta subunit of FceRI on controlling basophil sensitivity to antigen stimulation and? FceRI expression.
This aim will also propose a manipulation of IgE levels in vivo to optimize changes? induced by an experimental allergen challenge in vivo that is expected to alter cytokine levels that control? FceRI beta expression. The primary goal is to assess the quantitative rates of receptor expression in vivo.? The final two aims are related to aims 1 and 2; they examine the changes in signaling molecule? expression during modulation of IgE in vivo and assess the rate of FceRI a synthesis in vivo using a? unique method of analysis based on omalizumab-induced decay of FceRI expression.

Agency
National Institute of Health (NIH)
Institute
National Institute of Allergy and Infectious Diseases (NIAID)
Type
Research Program--Cooperative Agreements (U19)
Project #
5U19AI070345-03
Application #
7666135
Study Section
Special Emphasis Panel (ZAI1)
Project Start
Project End
Budget Start
2008-08-01
Budget End
2009-07-31
Support Year
3
Fiscal Year
2008
Total Cost
$297,323
Indirect Cost
Name
Johns Hopkins University
Department
Type
DUNS #
001910777
City
Baltimore
State
MD
Country
United States
Zip Code
21218
MacGlashan Jr, Donald (2016) Stability of Syk protein and mRNA in human peripheral blood basophils. J Leukoc Biol 100:535-43
Sterba, Patricia M; Hamilton, Robert G; Saini, Sarbjit S (2015) Suppression of basophil Fc?RI activation by serum from active chronic idiopathic/spontaneous urticaria (CIU/CSU) subjects. J Invest Dermatol 135:1454-1456
Narisety, Satya D; Frischmeyer-Guerrerio, Pamela A; Keet, Corinne A et al. (2015) A randomized, double-blind, placebo-controlled pilot study of sublingual versus oral immunotherapy for the treatment of peanut allergy. J Allergy Clin Immunol 135:1275-82.e1-6
Gorelik, Mark; Narisety, Satya D; Guerrerio, Anthony L et al. (2015) Suppression of the immunologic response to peanut during immunotherapy is often transient. J Allergy Clin Immunol 135:1283-92
McGowan, Emily C; Savage, Jessica H; Courneya, Jean-Paul et al. (2014) Relationship of IgE to basophil phenotypes in peanut-sensitized adults. J Allergy Clin Immunol 134:746-749.e6
Macglashan Jr, Donald W; Saini, Sarbjit S (2013) Omalizumab increases the intrinsic sensitivity of human basophils to IgE-mediated stimulation. J Allergy Clin Immunol 132:906-11.e1-4
Saini, Sarbjit S; MacGlashan Jr, Donald W (2012) Assessing basophil functional measures during monoclonal anti-IgE therapy. J Immunol Methods 383:60-4
MacGlashan Jr, D (2012) Subthreshold desensitization of human basophils re-capitulates the loss of Syk and Fc?RI expression characterized by other methods of desensitization. Clin Exp Allergy 42:1060-70
MacGlashan Jr, Donald W (2012) IgE-dependent signaling as a therapeutic target for allergies. Trends Pharmacol Sci 33:502-9
Savage, Jessica H; Courneya, Jean-Paul; Sterba, Patricia M et al. (2012) Kinetics of mast cell, basophil, and oral food challenge responses in omalizumab-treated adults with peanut allergy. J Allergy Clin Immunol 130:1123-1129.e2

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