Reactivity of IgE antibodies with crustacea and oyster allergens: Evidence for common antigenic structures
IgE-antibody reactivity to oysters and crustacea of sera from six oyster-sensitive, seven oyster- and crustacea-sensitive, and 12 crustacea-sensitive subjects was investigated. All six subjects with a history of only oyster sensitivity had minimal RAST reactivity (ratios 2 to 5) to extracts of raw o...
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Published in | Journal of allergy and clinical immunology Vol. 80; no. 2; pp. 133 - 139 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
New York, NY
Mosby, Inc
01.08.1987
Elsevier |
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Abstract | IgE-antibody reactivity to oysters and crustacea of sera from six oyster-sensitive, seven oyster- and crustacea-sensitive, and 12 crustacea-sensitive subjects was investigated. All six subjects with a history of only oyster sensitivity had minimal RAST reactivity (ratios 2 to 5) to extracts of raw or boiled oysters. Three of the seven oyster- and crustacea-sensitive subjects and six of the 12 crustacea-sensitive, oyster-tolerant or unexposed subjects had elevated RAST ratios to oyster (14 to 41). Generally, elevated oyster RAST correlated with skin prick test reactivity to oyster but not with total serum IgE levels. The oyster RAST values of the 19 crustacea-sensitive subjects (with or without oyster sensitivity) correlated with crustacea RAST reactivity (crab RAST, most significant; shrimp RAST, least significant). Rabbit antisera to crustacea extracts detected precipitating antigens present in extracts of raw or boiled oysters. Significant inhibition of the oyster RAST was obtained with oyster or crustacea extracts. These studies suggest that in the diagnosis of oyster sensitivity the RAST may not be useful and that oyster and crustacea contain common antigenic structures. |
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AbstractList | IgE-antibody reactivity to oysters and crustacea of sera from six oyster-sensitive, seven oyster- and crustacea-sensitive, and 12 crustacea-sensitive subjects was investigated. All six subjects with a history of only oyster sensitivity had minimal RAST reactivity (ratios 2 to 5) to extracts of raw or boiled oysters. Three of the seven oyster- and crustacea-sensitive subjects and six of the 12 crustacea-sensitive, oyster-tolerant or unexposed subjects had elevated RAST ratios to oyster (14 to 41). Generally, elevated oyster RAST correlated with skin prick test reactivity to oyster but not with total serum IgE levels. The oyster RAST values of the 19 crustacea-sensitive subjects (with or without oyster sensitivity) correlated with crustacea RAST reactivity (crab RAST, most significant; shrimp RAST, least significant). Rabbit antisera to crustacea extracts detected precipitating antigens present in extracts of raw or boiled oysters. Significant inhibition of the oyster RAST was obtained with oyster or crustacea extracts. These studies suggest that in the diagnosis of oyster sensitivity the RAST may not be useful and that oyster and crustacea contain common antigenic structures. IgE-antibody reactivity to oysters and crustacea of sera from six oyster-sensitive, seven oyster- and crustacea-sensitive, and 12 crustacea-sensitive subjects was investigated. All six subjects with a history of only oyster sensitivity had minimal RAST reactivity (ratios 2 to 5) to extracts of raw or boiled oysters. Three of the seven oyster- and crustacea-sensitive subjects and six of the 12 crustacea-sensitive, oyster-tolerant or unexposed subjects had elevated RAST ratios to oyster (14 to 41). Generally, elevated oyster RAST correlated with skin prick test reactivity to oyster but not with total serum IgE levels. The oyster RAST values of the 19 crustacea-sensitive subjects (with or without oyster sensitivity) correlated with crustacea RAST reactivity (crab RAST, most significant; shrimp RAST, least significant). Rabbit antisera to crustacea extracts detected precipitating antigens present in extracts of raw or boiled oysters. Significant inhibition of the oyster RAST was obtained with oyster or crustacea extracts. These studies suggest that in the diagnosis of oyster sensitivity the RAST may not be useful and that oyster and crustacea contain common antigenic structures.IgE-antibody reactivity to oysters and crustacea of sera from six oyster-sensitive, seven oyster- and crustacea-sensitive, and 12 crustacea-sensitive subjects was investigated. All six subjects with a history of only oyster sensitivity had minimal RAST reactivity (ratios 2 to 5) to extracts of raw or boiled oysters. Three of the seven oyster- and crustacea-sensitive subjects and six of the 12 crustacea-sensitive, oyster-tolerant or unexposed subjects had elevated RAST ratios to oyster (14 to 41). Generally, elevated oyster RAST correlated with skin prick test reactivity to oyster but not with total serum IgE levels. The oyster RAST values of the 19 crustacea-sensitive subjects (with or without oyster sensitivity) correlated with crustacea RAST reactivity (crab RAST, most significant; shrimp RAST, least significant). Rabbit antisera to crustacea extracts detected precipitating antigens present in extracts of raw or boiled oysters. Significant inhibition of the oyster RAST was obtained with oyster or crustacea extracts. These studies suggest that in the diagnosis of oyster sensitivity the RAST may not be useful and that oyster and crustacea contain common antigenic structures. 6 subjects with a history of only oyster sensitivity had minimal RAST reactivity to extracts of raw or boiled oysters. 3 of the 7 oyster- and crustacea-sensitive subjects and 6 of the 12 crustacea-sensitive, oyster-tolerant or unexposed subjects had elevated RAST ratios to oyster. Generally, elevated oyster RAST correlated with skin prick test reactivity to oyster but not with total serum IgE levels. The oyster RAST values of the 19 crustacea-sensitive subjects correlated with crustacea RAST reactivity. Significant inhibition of the oyster RAST was obtained with oyster or crustacea extracts. These studies suggest that in the diagnosis of oyster sensitivity the RAST may not be useful and that oyster and crustacea contain common antigenic structures. |
Author | McCants, Marjorie L. Lehrer, Samuel B. |
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Keywords | PBS HSA Human Allergy Immunopathology Edible crustacean Oil Antibody Digestive system IgE Digestive diseases Food Allergen |
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References | Lehrer, McCants (BIB8) 1985; 75 Haddad, Korotzer (BIB1) 1972; 49 Lehrer (BIB5) 1986; 57 Daul CB, Morgan J, McCants MC, Waring NP, Lehrer SB. Crustacea allergy: immunological evaluation of shrimpsensitive individuals [submitted]. Waring, deShazo, Daul, McCants, Lehrer (BIB4) 1985; 76 Ceska, Lundkvist (BIB12) 1972; 9 Nakashima (BIB11) 1969; 18 Hoffman, Haddad (BIB2) 1974; 54 Halmepuro L, Nintirooj K, Salvaggio JE, Lehrer SB. Identification of crawfish and lobster allergens [in press]. Int Arch Allergy Appl Immunol May, Bock (BIB3) 1978 Lehrer, Waring, McCants (BIB7) 1984; 73 Wada, Nishimoto, Nakashima, Shigenobu, Onari, Awaya (BIB10) 1967; 16 |
References_xml | – start-page: 1159 year: 1978 ident: BIB3 article-title: Adverse reactions to food due to hypersensitivity publication-title: Allergy: principles and practice – reference: Daul CB, Morgan J, McCants MC, Waring NP, Lehrer SB. Crustacea allergy: immunological evaluation of shrimpsensitive individuals [submitted]. – volume: 9 start-page: 1021 year: 1972 ident: BIB12 article-title: A new and simple radioimmunoassay method for the determination of IgE publication-title: Immunochemistry – volume: 54 start-page: 165 year: 1974 ident: BIB2 article-title: Diagnosis of IgE-mediated reactions to food antigens by radioimmunoassay publication-title: J Allergy Clin Immunol – volume: 75 start-page: 147 year: 1985 ident: BIB8 article-title: Identification of shrimp allergens by immunoelectrophoretic methods [Abstract] publication-title: J Allergy Clin Immunol – volume: 73 start-page: 114 year: 1984 ident: BIB7 article-title: Immunological cross reactivity of shrimp, crab, crawfish, and lobster allergens [Abstract] publication-title: J Allergy Clin Immunol – reference: Halmepuro L, Nintirooj K, Salvaggio JE, Lehrer SB. Identification of crawfish and lobster allergens [in press]. Int Arch Allergy Appl Immunol – volume: 49 start-page: 210 year: 1972 ident: BIB1 article-title: Immediate hypersensitive reactions to food antigens: detection of human IgE antibodies in vitro and exploration of immunologic mechanisms using the rat mast cell system publication-title: J Allergy Clin Immunol – volume: 18 start-page: 141 year: 1969 end-page: 184 ident: BIB11 article-title: Studies on bronchial asthma observed in cultured oyster workers publication-title: Hiroshima J Med Sci – volume: 16 start-page: 255 year: 1967 end-page: 266 ident: BIB10 article-title: Clinical observation of bronchial asthma in workers who culture oysters publication-title: Hiroshima J Med Sci – volume: 76 start-page: 440 year: 1985 end-page: 445 ident: BIB4 article-title: Hypersensitivity reactions to ingested crustacea: clinical evaluation and diagnostic studies in shrimp-sensitive individuals publication-title: J Allergy Clin Immunol – volume: 57 start-page: 267 year: 1986 end-page: 272 ident: BIB5 article-title: The complex nature of food antigens: studies of crustacea allergens publication-title: Ann Allergy |
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Snippet | IgE-antibody reactivity to oysters and crustacea of sera from six oyster-sensitive, seven oyster- and crustacea-sensitive, and 12 crustacea-sensitive subjects... 6 subjects with a history of only oyster sensitivity had minimal RAST reactivity to extracts of raw or boiled oysters. 3 of the 7 oyster- and... |
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SubjectTerms | Adolescent Adult Allergens - immunology Allergic diseases Animals Biological and medical sciences Crassostrea Cross Reactions Crustacea - immunology Digestive allergic diseases Epitopes - immunology Female Food Hypersensitivity - etiology Food Hypersensitivity - immunology Humans Immunoglobulin E - immunology Immunopathology Intradermal Tests Male Marine Medical sciences Middle Aged Ostreidae - immunology Radioallergosorbent Test Shellfish - adverse effects Species Specificity |
Title | Reactivity of IgE antibodies with crustacea and oyster allergens: Evidence for common antigenic structures |
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