Literature DB >> 2172292

Homotypic serum antibody responses to rotavirus proteins following primary infection of young children with serotype 1 rotavirus.

S C Richardson1, R F Bishop.   

Abstract

The class-specific antibody responses to serotype 1 rotavirus structural proteins were examined by immunoblotting with sera obtained from young children hospitalized with acute rotavirus diarrhea caused by serotype 1. All were believed to be primary infections. Three consecutive samples were obtained from 16 patients during the acute and convalescent phases of the disease and then approximately 4 months later. Immunoglobulin G (IgG)-class antibody responses to two inner capsid proteins (VP2 and VP6) and to the major homologous outer capsid protein (VP7) were detected in all patients. Antibody responses to VP6 were rapid, increased in intensity during 20 to 40 days after the onset of symptoms, and persisted for more than 4 months. Responses to VP2 and VP7 were more delayed, were maximal in convalescent-phase sera, and decreased markedly in intensity 4 months after the onset of symptoms in the majority of children. Two patients with evidence of mixed infection showed persisting high levels of antibody to VP7. Responses to the outer capsid protein VP4 were detected in 67% of patients, peaked at 20 to 40 days after the onset of symptoms, and were no longer detected at 4 months in the majority of patients. It is likely that the immunoblotting technique underestimated responses to VP4. Acute- and convalescent-phase sera (known to contain antirotavirus IgM or IgA measured by enzyme immunoassay) were also examined by immunoblotting. IgM- and IgA-class antibody responses to viral proteins VP2, VP4, and VP7 appeared to be qualitatively identical to those observed for IgG in the same serum samples.

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Year:  1990        PMID: 2172292      PMCID: PMC268073          DOI: 10.1128/jcm.28.9.1891-1897.1990

Source DB:  PubMed          Journal:  J Clin Microbiol        ISSN: 0095-1137            Impact factor:   5.948


  26 in total

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Authors:  A Z Kapikian; W L Cline; H B Greenberg; R G Wyatt; A R Kalica; C E Banks; H D James; J Flores; R M Chanock
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5.  Activation of rotavirus RNA polymerase by calcium chelation.

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6.  Protection of infants against rotavirus diarrhoea by RIT 4237 attenuated bovine rotavirus strain vaccine.

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Authors:  M K Estes; D Y Graham
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Authors:  P Hanlon; L Hanlon; V Marsh; P Byass; F Shenton; M Hassan-King; O Jobe; H Sillah; R Hayes; B H M'Boge
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9.  Serological analysis of the subgroup protein of rotavirus, using monoclonal antibodies.

Authors:  H Greenberg; V McAuliffe; J Valdesuso; R Wyatt; J Flores; A Kalica; Y Hoshino; N Singh
Journal:  Infect Immun       Date:  1983-01       Impact factor: 3.441

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  11 in total

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7.  Humoral immune responses to VP4 and its cleavage products VP5* and VP8* in infants vaccinated with rhesus rotavirus.

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8.  Analysis of homotypic and heterotypic serum immune responses to rotavirus proteins following primary rotavirus infection by using the radioimmunoprecipitation technique.

Authors:  S C Richardson; K Grimwood; R F Bishop
Journal:  J Clin Microbiol       Date:  1993-02       Impact factor: 5.948

9.  A time-resolved immunoassay to measure serum antibodies to the rotavirus VP6 capsid protein.

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