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Related Experiment Video

Updated: Jun 19, 2026

Humanized Mediator Release Assay as a Read-Out for Allergen Potency
10:22

Humanized Mediator Release Assay as a Read-Out for Allergen Potency

Published on: June 29, 2021

AN HETEROPHILE FACTOR IN RAGWEED POLLEN.

F E Sammis1

  • 1Laboratories of The Mount Sinai Hospital, the New York Hospital, and the Department of Medicine, Cornell University Medical College, New York.

The Journal of Experimental Medicine
|October 30, 2009
PubMed
Summary

Ragweed pollen antigen increases hemolysin levels in rabbits, suggesting an immune response. However, this effect was not observed in human hay fever patients, indicating species-specific reactions to ragweed antigens.

Area of Science:

  • Immunology
  • Allergy Research
  • Serology

Background:

  • Ragweed pollen is a common allergen associated with hay fever.
  • Hemolysins are antibodies that cause hemolysis (red blood cell rupture).
  • The interaction between ragweed antigen and hemolysins requires further investigation.

Purpose of the Study:

  • To investigate the serological evidence of ragweed pollen antigen's effect on hemolysin titres in rabbits.
  • To determine if ragweed antigen absorbs normal or specific hemolysins.
  • To explore the presence and behavior of hemolysins in human hay fever patients.

Main Methods:

  • Injection of ragweed pollen antigen into rabbits and measurement of hemolysin titres against sheep cells.
  • Hemolysis inhibition tests to assess antigen-antibody interactions.

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  • Dilution and lyophilization techniques to quantify antigen-antibody binding.
  • Absorption studies using sheep cells, Forssman antigen, and human blood cells.
  • Analysis of heat-labile and heat-stable hemolysin titres in human sera from hay fever patients before and after treatment.
  • Main Results:

    • Ragweed pollen antigen administration in rabbits led to increased hemolysin titres for sheep cells.
    • Ragweed antigen absorbed specific anti-ragweed hemolysins but not normal rabbit hemolysins.
    • Quantification showed that 0.00007 mg of ragweed nitrogen combined with one hemolytic unit of anti-ragweed rabbit serum.
    • Immune hemolysins were absorbed by sheep cells and Forssman antigen, but not by human A or B cells.
    • Forssman antigen absorbed anti-ragweed hemolysin, but ragweed antigen did not absorb Forssman antibody.
    • Human hay fever sera (22 cases) showed no increased hemolysin titres (heat-labile or stable) before or after treatment.
    • Heat-labile hemolysins for sheep cells were present in 19 of 22 human sera, irrespective of blood group (A, B, O).

    Conclusions:

    • Ragweed pollen antigen can induce an immune response characterized by increased hemolysin titres in rabbits.
    • The observed hemolysin activity in rabbits is specific to ragweed antigen and Forssman antigen interactions.
    • The absence of elevated hemolysin titres in human hay fever patients suggests a lack of similar immune response or different mechanisms involved in human ragweed allergy.