PubMed HealthSearch

PubMed · 1180441

Controlling rubella: problems and perspectives.

Abstract

Long-term effectiveness of rubella vaccination in childhood is of particular importance because the ultimate goal of immunization is the prevention of infection during pregnancy. To determine how well vaccine-induced immunity persists in comparison to that acquired naturally, several hundred susceptible children who seroconverted after receiving HPV77DE5 vaccine were followed serologically over a 3-to-5-year period. The results indicate that vaccine-induced antibodies are less stable than those acquired through natural infection, and their persistence is closely related to the original response to immunization. Thus children who responded with a broad range of antibody types and who had brisk postvaccinal hemagglutination-inhibiting antibody titers of greater than or equal to 1:64, maintained such levels without significant decline. In contrast, among the children who had feeble hemagglutination-inhibiting antibody responses initially and failed to develop complement-fixing or precipitating antibodies, a significant proportion lost detectable hemagglutination-inhibiting antibody levels after 3 to 5 years. The current and future immunity of such children is therefore in doubt, unless natural reinfection with wild rubella virus or revaccination with a more effective vaccine corrects their antibody deficiencies.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

D M Horstmann. 1975. Controlling rubella: problems and perspectives.. https://doi.org/10.7326/0003-4819-83-3-412

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

How can peptide vaccines work?

Peptide antigens frequently induce antibodies which recognise the denatured form of a protein from which their sequences are derived. However, the ability to induce antibodies which crossreact with the native, fully folded form of the protein is less commonly observed. Although there is a growing number of examples in which this is the case, the ability to predict peptides having this property is extremely limited. Given the large surface areas involved in antibody/antigen interaction it is surprising that peptides could ever induce antibodies which would recognise the native protein well enough to have biological activity, such as the neutralization of infectivity. A mechanism is proposed to explain such observations which is compatible with many of the properties of antipeptide antibodies.

Antibodies, Viral

The conformational specificity of viral epitopes.

Four types of antigenic sites found in viruses are discussed: cryptotopes, neotopes, metatopes and neutralization epitopes. The role played by conformation on the specificity of viral epitopes is illustrated in the case of tobacco mosaic virus and influenza virus. It appears that mechanisms reminiscent of induced fit contribute to the recognition of viral epitopes by antibodies.

Antibodies, Viral