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Updated: Jul 17, 2025

Basophil Activation Test for Allergy Diagnosis
Published on: May 31, 2021
Basophil activation test as predictor of severity and threshold of allergic reactions to egg
Suzana Radulovic1,2, Ru-Xin Foong1,2,3, Irene Bartha1,2
1Department of Women and Children's Health (Pediatric Allergy), School of Life Course Sciences, Faculty of Life Sciences and Medicine, King's College London, London, UK.
Insights
Basophil activation test (BAT) effectively predicts severe allergic reactions and low reactivity thresholds in children with egg allergy. This biomarker aids in clinical decisions for managing egg allergy.
Area of Science:
- Allergy and Immunology
- Pediatric Allergy
- Food Allergy Research
Background:
- Accurate identification of patients at risk for severe allergic reactions is crucial, especially for common foods like eggs.
- Understanding reactivity thresholds helps in managing food allergies and preventing severe reactions.
Purpose of the Study:
- To evaluate the effectiveness of the basophil activation test (BAT) in predicting the severity and reactivity threshold of allergic reactions to egg.
- To compare BAT with other immunological markers like specific IgE (sIgE) for predicting egg allergy severity.
Main Methods:
- 150 children underwent double-blind placebo-controlled food challenges (DBPCFC) for baked egg (BE) and loosely cooked egg (LCE).
- Skin prick tests, serology for specific IgE, and basophil activation tests (BAT) were performed.
- Reactions were classified by severity, and threshold doses were determined during DBPCFC.
Main Results:
- 40% of children reacted to BE and 21% to LCE during DBPCFC.
- Among BE reactors, 38% experienced severe reactions, and 55% had a low reactivity threshold (≤0.13g egg protein).
- Severe BE reactors showed higher ovomucoid-sIgE and BAT results. Low threshold patients had higher specific IgE activity and BAT results.
Conclusions:
- Basophil activation test (BAT) demonstrated superior accuracy in predicting both the severity and reactivity threshold of egg allergy compared to sIgE.
- BAT is a valuable biomarker for clinical decision-making in the management of egg allergy.
Background:
Identifying patients at risk of severe allergic reactions and/or low threshold of reactivity is very important, particularly for staple foods like egg.
Methods:
One hundred and fifty children underwent double-blind placebo-controlled food challenge (DBPCFC) to baked egg (BE), skin prick testing and blood collection for serology and basophil activation test (BAT). Patients who passed BE DBPCFC underwent loosely cooked egg (LCE) DBPCFC. Severity of allergic reactions was classified following Practall guidelines and threshold dose was determined during DBPCFC.
Results:
Sixty out of 150 (40%) children reacted to BE and 16 out of 77 (21%) to LCE on DBPCFC. Considering DBPCFC to BE, 23 children (38%) had severe reactions and 33 (55%) reacted to 0.13 g or less of egg protein (low threshold group). Two children (2 out of 16 = 12%) had severe reactions to LCE. Demographic, clinical and most immunological features were not significantly different between severe/non-severe BE reactors or low/high threshold groups. Severe BE reactors had higher ovomucoid-sIgE (p = .009) and higher BAT to BE (p = .001). Patients with lower threshold to BE had higher IgE-specific activity (p = .027) and BAT to egg (p = .007) but lower severity score (p = .008). Optimal cut-offs for ovomucoid-sIgE had 100% sensitivity, 35% specificity and 60% accuracy and for BAT 76% sensitivity, 74% specificity and 75% accuracy to identify BE severe reactors. Optimal cut-offs for specific activity had 70% sensitivity, 68% specificity and 69% accuracy and for BAT 70% sensitivity, 72% specificity and 71% accuracy to identify low threshold patients.
Conclusions:
BAT was the best biomarker to predict severity and threshold of allergic reactions to BE and can be useful when making decisions about management of egg allergy.
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