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1.
J. investig. allergol. clin. immunol ; 34(1): 38-48, 2024. tab, graf
Artículo en Inglés | IBECS | ID: ibc-230813

RESUMEN

Background: Cashew nuts often cause strong allergic reactions, which are even more severe than those of peanuts. Ana o 1 (vicilin), Ana o 2 (legumin), and Ana o 3 (2S albumin) are major cashew allergens. Cosensitization to all 3 nonhomologous cashew nut allergens has been observed. We hypothesize that this might be due to IgE cross-reactivity. Methods: IgE cross-inhibitions were performed with Ana o 1-3 using serum samples from cashew nut–allergic patients. The related hazelnut allergens Cor a 11, 9, and 14 were used as controls. For comparison, IgE cross-reactivity between the hazelnut allergens was investigated using serum samples from hazelnut-allergic patients. Results: The median percentages of cross-inhibition between Ana o 1, 2, and 3 were 84%-99%. In comparison, the median cross- inhibition values between hazelnut allergens were 33%-62%. The IC50 values revealed the highest IgE affinity to be to Ana o 3 and Cor a 14. Hazelnut legumin Cor a 9 inhibited IgE binding to Ana o 1, 2, and 3, with median percentages of 75%, 56%, and 48%, respectively. No cross-reactivity was observed between allergenic vicilins or between 2S albumins from cashew and hazelnut. Potentially cross-reactive peptides of Ana o 3 identified in silico overlapped with previously reported IgE epitopes of all 3 allergens. Conclusion: IgE with high affinity to Ana o 3 that cross-reacts with the other 2 major nonhomologous cashew nut allergens might be responsible for the high allergenic potency of cashew nut. These cross-reactive IgE types comprise the major fraction of specific IgE in cashew-allergic patients and might be responsible for cross-reactivity between unrelated tree nuts (AU)


Antecedentes: Los anacardos suelen provocar fuertes reacciones alérgicas, que son incluso más graves que las del maní. Ana o 1 (vicilina), Ana o 2 (legumina) y Ana o 3 (albúmina 2S) son los principales alérgenos del anacardo. Se ha observado cosensibilización a los 3 alérgenos no homólogos del anacardo. Nuestra hipótesis es que esto podría deberse a la reactividad cruzada de la IgE. Métodos : Se realizaron inhibiciones cruzadas de IgE con Ana o 1-3 utilizando muestras de suero de pacientes alérgicos al anacardo. Como controles se utilizaron los alérgenos de avellana relacionados Cor a 11, 9 y 14. A modo de comparación, se investigó la reactividad cruzada de IgE entre los alérgenos de la avellana utilizando muestras de suero de pacientes alérgicos a la avellana. Resultados : Los porcentajes medios de inhibición cruzada entre Ana o 1, 2 y 3 fueron del 84% al 99%. En comparación, los valores medios de inhibición cruzada entre alérgenos de avellana fueron del 33% al 62%. Los valores de IC50 revelaron que la mayor afinidad de IgE era Ana o 3 y Cor a 14. La legumina de avellana Cor a 9 inhibió la unión de IgE a Ana o 1, 2 y 3, con porcentajes medios de 75%, 56% y 48%. , respectivamente. No se observó reactividad cruzada entre vicilinas alergénicas ni entre albúminas 2S de anacardo y avellana. Los péptidos potencialmente de reacción cruzada de Ana o 3 identificados in silico se superpusieron con epítopos de IgE previamente informados de los 3 alérgenos. Conclusión : La IgE con alta afinidad por Ana o 3 que reacciona de forma cruzada con los otros 2 alérgenos principales no homólogos del anacardo podría ser responsable de la alta potencia alergénica del anacardo. Estos tipos de IgE de reacción cruzada comprenden la fracción principal de IgE específica en pacientes alérgicos al anacardo y podrían ser responsables de la reactividad cruzada entre frutos secos no relacionados (AU)


Asunto(s)
Humanos , Masculino , Femenino , Preescolar , Niño , Hipersensibilidad a los Alimentos , Reacciones Cruzadas , Reactividad Cruzada , Alérgenos
2.
Artículo en Inglés | MEDLINE | ID: mdl-36331131

RESUMEN

BACKGROUND: Cashew nuts often cause strong allergic reactions, even exceeding those of peanuts. Ana o 1 (vicilin), Ana o 2 (legumin) and Ana o 3 (2S albumin) are major cashew allergens. Co-sensitization to all three non-homologous cashew nut allergens has been observed. We hypothesize that this might be due to IgE cross-reactivity. METHODS: IgE cross-inhibitions were performed with Ana o 1-3 using sera from cashew nut allergic patients. Related hazelnut allergens Cor a 11, 9 and 14 were used as controls. For comparison, IgE cross-reactivity between the hazelnut allergens was investigated using sera from hazelnut allergic patients. RESULTS: Median percentages of cross-inhibitions between Ana o 1-3 were 84-99%. In comparison, medians of cross-inhibitions between hazelnut allergens were 33-62%. The IC50 values revealed the highest IgE affinity to Ana o 3 and Cor a 14. Hazelnut legumin Cor a 9 inhibited IgE-binding to Ana o 1, 2, and 3 with median percentages of 75%, 56%, and 48%, respectively. No cross-reactivity was observed between allergenic vicilins or between 2S albumins from cashew and hazelnut. In silico identified potentially cross-reactive peptides of Ana o 3 overlapped with previously reported IgE epitopes of all three allergens. CONCLUSIONS: IgE with high affinity to Ana o 3 that cross-reacts with the other two major non-homologous cashew nut allergens might be responsible for the high allergenic potency of cashew nut. These cross-reactive IgE comprises the major fraction of specific IgE in cashew allergic patients, and might be responsible for cross-reactivity between unrelated tree nuts.

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