Antigen dose-dependent regulation of B epsilon-memory cell expression

L Kolbe1, C Heusser, E Kölsch

  • 1Institut für Immunologie, Universität Münster, BRD.

International Archives of Allergy and Applied Immunology
|January 1, 1991
PubMed

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.

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