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Published on: May 21, 2012
Antigen dose-dependent regulation of B epsilon-memory cell expression
Insights
Antigen dose dictates phospholipase A2 (PLA2)-specific IgE antibody response. Minute doses (MD) induce high IgE, while large doses (LD) induce low IgE, revealing distinct immune regulation pathways.
Area of Science:
- Immunology
- Allergy research
- Antibody response dynamics
Background:
- Phospholipase A2 (PLA2)-specific IgE antibody production is crucial in allergic responses.
- Understanding the factors influencing IgE antibody titers is essential for developing effective desensitization protocols.
Purpose of the Study:
- To investigate the impact of antigen dose on phospholipase A2 (PLA2)-specific IgE antibody production in CBA/J mice.
- To elucidate the mechanisms underlying high and low IgE immune status induction and regulation.
Main Methods:
- Immunization of CBA/J mice with varying doses of PLA2 antigen (minute doses [MD] vs. large doses [LD]).
- Measurement of specific IgE and IgG antibody titers.
- Assessment of immune memory and suppression through cell transfer experiments.
Main Results:
- Repeated MD of antigen induced high, persistent IgE titers, while repeated LD induced low, persistent IgE titers, with similar IgG titers.
- Low IgE status induced by LD was irreversible and resistant to MD boosting.
- A single LD primed for a secondary IgE response recallable by MD.
- MD-induced high IgE was downregulated by a single intervening LD.
- Spleen cells from LD-immunized mice transferred a low IgE immune status, impairing subsequent high IgE responses.
Conclusions:
- Antigen dose is the sole determinant of PLA2-specific IgE antibody response magnitude.
- Two opposing mechanisms operate: induction of B epsilon-memory cells by single LD and activation of IgE-specific cellular suppression by repeated LD.
- This system provides a model for studying cellular interactions and desensitization strategies in IgE-mediated allergies.
Abstract:
The data presented in this study document that the phospholipase A2 (PLA2)-specific IgE antibody response in high responder CBA/J mice is solely dependent on the antigen dose used for immunization. Repeated injections of minute doses (MD) of antigen (0.1 microgram/mouse) induce a persisting high level of PLA2-specific IgE antibody titer, whereas large doses (LD) (10 micrograms/mouse) induce a persisting low level of IgE. The IgG antibody titers are the same under both conditions. The low level IgE immune status induced by repeated LD is irreversible and cannot be boosted by MD. In contrast a single LD primes for a secondary IgE response which can be recalled by MD. A high level of PLA2-specific IgE antibodies induced by MD can be downregulated by a single intervening LD of antigen. A low level IgE immune status can be transferred with spleen cells of mice immunized with LD into naive syngeneic recipients, which then fail to mount a high level IgE response upon injection of MD of antigen. The experiments reveal two countercurrent processes, induction of B epsilon-memory cells after a single LD and additional activation of a persisting IgE-specific cellular suppression mechanism after repeated LD of antigen. These properties make the system suitable for the analysis of cellular interactions and of potential desensitization protocols.
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