tetano
Editor, Senior Moderator
Philos Trans R Soc Lond B Biol Sci. 2013 Feb 4;368(1614):20120200. doi: 10.1098/rstb.2012.0200. Print 2013.
The antigenic evolution of influenza: drift or thrift?
Wikramaratna PS, Sandeman M, Recker M, Gupta S.
Source
Department of Zoology, University of Oxford, , Oxford OX1 3PS, UK.
Abstract
It is commonly assumed that antibody responses against the influenza virus are polarized in the following manner: strong antibody responses are directed at highly variable antigenic epitopes, which consequently undergo 'antigenic drift', while weak antibody responses develop against conserved epitopes. As the highly variable epitopes are in a constant state of flux, current antibody-based vaccine strategies are focused on the conserved epitopes in the expectation that they will provide some level of clinical protection after appropriate boosting. Here, we use a theoretical model to suggest the existence of epitopes of low variability, which elicit a high degree of both clinical and transmission-blocking immunity. We show that several epidemiological features of influenza and its serological and molecular profiles are consistent with this model of 'antigenic thrift', and that identifying the protective epitopes of low variability predicted by this model could offer a more viable alternative to regularly update the influenza vaccine than exploiting responses to weakly immunogenic conserved regions.
PMID:
23382423
[PubMed - in process]
http://www.ncbi.nlm.nih.gov/pubmed/23382423
The antigenic evolution of influenza: drift or thrift?
Wikramaratna PS, Sandeman M, Recker M, Gupta S.
Source
Department of Zoology, University of Oxford, , Oxford OX1 3PS, UK.
Abstract
It is commonly assumed that antibody responses against the influenza virus are polarized in the following manner: strong antibody responses are directed at highly variable antigenic epitopes, which consequently undergo 'antigenic drift', while weak antibody responses develop against conserved epitopes. As the highly variable epitopes are in a constant state of flux, current antibody-based vaccine strategies are focused on the conserved epitopes in the expectation that they will provide some level of clinical protection after appropriate boosting. Here, we use a theoretical model to suggest the existence of epitopes of low variability, which elicit a high degree of both clinical and transmission-blocking immunity. We show that several epidemiological features of influenza and its serological and molecular profiles are consistent with this model of 'antigenic thrift', and that identifying the protective epitopes of low variability predicted by this model could offer a more viable alternative to regularly update the influenza vaccine than exploiting responses to weakly immunogenic conserved regions.
PMID:
23382423
[PubMed - in process]
http://www.ncbi.nlm.nih.gov/pubmed/23382423