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4. Picariello G, Mamone G, Addeo F et al (2011)
The frontiers of mass spectrometry-based tech-
niques in food allergenomics. J Chromatogr A
1218:7386-7398
5. Vallier P, DeChamp C, Valenta R et al (1992)
Purifi cation and characterization of an allergen
from celery immunochemically related to an
allergen present in several other plant species.
Identifi cation as a profi lin. Clin Exp Allergy
22:774-782
6. Beyer K, Grishina G, Bardina L et al (2002)
Identifi cation of an 11S globulin as a major
hazelnut food allergen in hazelnut-induced sys-
temic reactions. J Allergy Clin Immunol 110:
517-523
7. Beyer K, Bardina L, Grishina G et al (2002)
Identifi cation of sesame seed allergens by
2-dimensional proteomics and Edman sequenc-
ing: seed storage proteins as common food aller-
gens. J Allergy Clin Immunol 110:154-159
8. Magni C, Herndl A, Sironi E et al (2005) One-
and two-dimensional electrophoretic identifi -
cation of IgE-binding polypeptides of Lupinus
albus and other legume seeds. J Agric Food
Chem 53:4567-4571
9. Boldt A, Fortunato D, Conti A et al (2005)
Analysis of the composition of an immuno-
globulin E reactive high molecular weight pro-
tein complex of peanut extract containing Ara
h 1 and Ara h 3/4. Proteomics 5:675-686
10. Restani P, Ballabio C, Corsini E et al (2005)
Identifi cation of the basic subunit of Ara h 3 as
the major allergen in a group of children aller-
gic to peanuts. Ann Allergy Asthma Immunol
94:262-266
11. Herndl A, Marzban G, Kolarich D et al
(2007) Mapping of Malus domestica aller-
gens by 2-D electrophoresis and IgE-
reactivity. Electrophoresis 28:437-448
12. Batista R, Martins I, Jeno P et al (2007) A pro-
teomic study to identify soya allergens—the
human response to transgenic versus non-
transgenic soya samples. Int Arch Allergy
Immunol 144:29-38
13. Akagawa M, Handoyo T, Ishii T et al (2007)
Proteomic analysis of wheat fl our allergens. J
Agric Food Chem 55:6863-6870
14. Sotkovský P, Hubálek M, Hernychová L et al
(2008) Proteomic analysis of wheat proteins
recognized by IgE antibodies of allergic
patients. Proteomics 8:1677-1691
15. Fasoli E, Pastorello EA, Farioli L et al (2009)
Searching for allergens in maize kernels via pro-
teomic tools. J Proteomics 72:501-510
16. Postigo I, Guisantes JA, Negro JM et al (2009)
Identifi cation of 2 new allergens of Phoenix
dactylifera using an immunoproteomics
approach. J Investig Allergol Clin Immunol
19:504-7
17. Pignataro V, Canton C, Spadafora A et al
(2010) Proteome from lemon fruit fl avedo
reveals that this tissue produces high amounts
of the Cit s 1 germin-like isoforms. J Agric
Food Chem 58:7239-7244
18. Nakamura R, Satoh R, Nakamura R et al
(2010) Immunoproteomic and two-
dimensional difference gel electrophoresis anal-
ysis of Arabidopsis dehydration response
element-binding protein 1A (DREB1A)-
transgenic potato. Biol Pharm Bull 33:
1418-1425
19. Palacín A, Tordesillas L, Gamboa P et al (2010)
Characterization of peach thaumatin-like pro-
teins and their identifi cation as major peach
allergens. Clin Exp Allergy 40:1422-1430
20. Satoh R, Nakamura R, Komatsu A et al (2011)
Proteomic analysis of known and candidate rice
allergens between non-transgenic and trans-
genic plants. Regul Toxicol Pharmacol
59:437-444
21. Satoh R, Nakamura R, Teshima R (2011)
Proteomic identifi cation of IgE-binding pro-
teins in buckwheat. Japn J Food Chem Safety
18:103-109
22. Luengo O, Mollá R, Gámez C et al (2008)
Allergenicity and cross-reactivity of Senecio
pollen: identifi cation of novel allergens using
the immunoproteomics approach. Clin Exp
Allergy 38:1048-1060
23. Nakamura R, Satoh R, Nakajima Y et al (2009)
Comparative study of GH-transgenic and non-
transgenic amago salmon (Oncorhynchus
masou ishikawae) allergenicity and proteomic
analysis of amago salmon allergens. Regul
Toxicol Pharmacol 55:300-308
24. Nakamura R, Nakamura R, Nakano M et al
(2010) Allergenicity study of EGFP-transgenic
chicken meat by serological and 2D-DIGE
analysis. Food Chem Toxicol 48:1302-1310
25. Magni C, Ballabio C, Restani P et al (2005)
Two-dimensional electrophoresis and western-
blotting analyses with anti Ara h 3 basic subunit
IgG evidence the cross-reacting polypeptides
of Arachis hypogaea, Glycine max, and Lupinus
albus seed proteomes. J Agric Food Chem
53:2275-2281
26. Chassaigne H, Trégoat V, Nørgaard JV et al
(2009) Resolution and identifi cation of major
peanut allergens using a combination of fl uo-
rescence two-dimensional differential gel elec-
trophoresis, Western blotting and Q-TOF mass
spectrometry. J Proteomics 72:511-526
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