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1. Longitudinal peanut and Ara h 2 specific‐IgE, ‐IgG4, and ‐IgG4/‐IgE ratios are associated with the natural resolution of peanut allergy in childhood.

2. Defining the cross-reactivity between peanut allergens Ara h 2 and Ara h 6 using monoclonal antibodies.

3. Multiplexed silencing of 2S albumin genes in peanut.

4. Effect of critical amino acids’ properties on potential allergenicity of Ara h 2 epitopes

5. Optimising the management of peanut allergy by targeting immune plasticity.

6. Design of an Ara h 2 hypoallergen from conformational epitopes.

7. Biological activity of human IgE monoclonal antibodies targeting Der p 2, Fel d 1, Ara h 2 in basophil mediator release assays.

8. A novel IgE epitope-specific antibodies-based sandwich ELISA for sensitive measurement of immunoreactivity changes of peanut allergen Ara h 2 in processed foods

9. Soy Gly m 8 sIgE Has Limited Value in the Diagnosis of Soy Allergy in Peanut Ara h 2-Sensitized Adults.

10. Corrigendum: Biological activity of human IgE monoclonal antibodies targeting Der p 2, Fel d 1, Ara h 2 in basophil mediator release assays

11. Ara h 2‐specific IgE epitope‐like peptides inhibit the binding of IgE to Ara h 2 and suppress lgE‐dependent effector cell activation.

12. Strain matters in mouse models of peanut‐allergic anaphylaxis: Systemic IgE‐dependent and Ara h 2‐dominant sensitization in C3H mice.

13. Are peanut oral food challenges still useful? An evaluation of children with suspected peanut allergy, sensitization to Ara h 2 and controlled asthma

14. IgE binding epitope mapping with TL1A tagged peptides.

15. Biological activity of human IgE monoclonal antibodies targeting Der p 2, Fel d 1, Ara h 2 in basophil mediator release assays

16. Are peanut oral food challenges still useful? An evaluation of children with suspected peanut allergy, sensitization to Ara h 2 and controlled asthma.

18. Preclinical efficacy of peanut-specific IgG4 antibody therapeutic IGNX001.

19. Longitudinal peanut and Ara h 2 specific-IgE, -IgG 4 , and -IgG 4 /-IgE ratios are associated with the natural resolution of peanut allergy in childhood.

20. Peanut components measured by ISAC: comparison with ImmunoCap and clinical relevance in peanut allergic children

21. Determination of Allergen Levels, Isoforms, and Their Hydroxyproline Modifications Among Peanut Genotypes by Mass Spectrometry

22. Neutralizing IgG4 antibodies are a biomarker of sustained efficacy after peanut oral immunotherapy.

23. The Major Peanut Allergen Ara h 2 Produced in Nicotiana benthamiana Contains Hydroxyprolines and Is a Viable Alternative to the E. Coli Product in Allergy Diagnosis.

24. The Major Peanut Allergen Ara h 2 Produced in Nicotiana benthamiana Contains Hydroxyprolines and Is a Viable Alternative to the E. Coli Product in Allergy Diagnosis

25. Neutralizing IgG 4 antibodies are a biomarker of sustained efficacy after peanut oral immunotherapy.

26. High Degree of Desensitization After 1 Year of Early-Life Peanut Oral Immunotherapy: Small Children Oral Immunotherapy (SmaChO) Randomized Controlled Trial.

28. Peanut components measured by ISAC: comparison with ImmunoCap and clinical relevance in peanut allergic children.

29. Major peanut allergens are quickly released from peanuts when seeds are hydrated under specific conditions.

30. Investigation of peanut allergen-procyanidin non-covalent interactions: Impact on protein structure and in vitro allergenicity.

31. The decrease of Ara h 2 allergenicity by glycation is determined by reducing sugar chain length and isomers.

32. Widespread monoclonal IgE antibody convergence to an immunodominant, proanaphylactic Ara h 2 epitope in peanut allergy.

33. Soy Gly m 8 sIgE Has Limited Value in the Diagnosis of Soy Allergy in Peanut Ara h 2-Sensitized Adults

34. Optimization of Protoplast Isolation and Transformation for a Pilot Study of Genome Editing in Peanut by Targeting the Allergen Gene Ara h 2

35. Peanut allergy diagnosis: A 2020 practice parameter update, systematic review, and GRADE analysis.

36. Early epitope-specific IgE antibodies are predictive of childhood peanut allergy.

37. Ara h 2-specific IgE epitope-like peptides inhibit the binding of IgE to Ara h 2 and suppress lgE-dependent effector cell activation

38. Hypoallergen Peanut Lines Identified Through Large-Scale Phenotyping of Global Diversity Panel: Providing Hope Toward Addressing One of the Major Global Food Safety Concerns

39. Analysis on MTGase catalysed cross-linked products of Ara h 2: structure and immunoreactivity

40. IgE to epitopes of Ara h 2 enhance the diagnostic accuracy of Ara h 2‐specific IgE.

41. The quest for ingested peanut protein in human serum.

42. Mass spectrometry confirmation that clinically important peanut protein allergens are present in household dust.

43. Polyphenol‐oxidase‐catalyzed cross‐linking of Ara h 2: reaction sites and effect on structure and allergenicity.

44. Development of a novel Ara h 2 hypoallergen with no IgE binding or anaphylactogenic activity.

45. Hypoallergen Peanut Lines Identified Through Large-Scale Phenotyping of Global Diversity Panel: Providing Hope Toward Addressing One of the Major Global Food Safety Concerns.

46. Evidence for a Role of TGF-β-Activated Kinase 1 and MAP3K7 Binding Protein 3 in Peanut-Specific T-Cell Responses.

47. Peanut Allergy in Spanish Children: Comparative Profile of Peanut Allergy versus Tolerance.

48. IgE cross-inhibition between Ara h 1 and Ara h 2 is explained by complex formation of both major peanut allergens

49. An Improved Enzyme-Linked Immunosorbent Assay (ELISA) Based Protocol Using Seeds for Detection of Five Major Peanut Allergens Ara h 1, Ara h 2, Ara h 3, Ara h 6, and Ara h 8

50. Alanine Scanning of the Unstructured Region of Ara h 2 and of a Related Mimotope Reveals Critical Amino Acids for IgE Binding.

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