Cargando…
A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification
Vaccination is the most effective prophylactic method for preventing influenza. Quantification of influenza vaccine antigens is critically important before the vaccine is used for human immunization. Currently the vaccine antigen quantification relies on hemagglutinin content quantification, the key...
Autores principales: | , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Public Library of Science
2013
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3570553/ https://www.ncbi.nlm.nih.gov/pubmed/23424631 http://dx.doi.org/10.1371/journal.pone.0055428 |
_version_ | 1782259098063994880 |
---|---|
author | Hashem, Anwar M. Gravel, Caroline Farnsworth, Aaron Zou, Wei Lemieux, Michelle Xu, Kangwei Li, Changgui Wang, Junzhi Goneau, Marie-France Merziotis, Maria He, Runtao Gilbert, Michel Li, Xuguang |
author_facet | Hashem, Anwar M. Gravel, Caroline Farnsworth, Aaron Zou, Wei Lemieux, Michelle Xu, Kangwei Li, Changgui Wang, Junzhi Goneau, Marie-France Merziotis, Maria He, Runtao Gilbert, Michel Li, Xuguang |
author_sort | Hashem, Anwar M. |
collection | PubMed |
description | Vaccination is the most effective prophylactic method for preventing influenza. Quantification of influenza vaccine antigens is critically important before the vaccine is used for human immunization. Currently the vaccine antigen quantification relies on hemagglutinin content quantification, the key antigenic component, by single radial immunodiffusion (SRID) assay. Due to the inherent disadvantages associated with the traditional SRID; i.e. low sensitivity, low throughput and need for annual reagents, several approaches have been proposed and investigated as alternatives. Yet, most alternative methods cannot distinguish native hemagglutinin from denatured form, making them less relevant to antigenic analyses. Here, we developed a quantitative immunoassay based on the sialic acid binding property of influenza vaccine antigens. Specifically, we chemically synthesized human and avian influenza virus receptors analogues, N-acetylneuraminic acid-2,6-lactose and N-acetylneuraminic acid-2,3-lactose derivatives with an azidopropyl aglycon, using α-2,6- and α-2,3-sialyltransferases, respectively. The azido group of the two sialyllactose-derivatives was reduced and conjugated to mouse serum albumin through a squarate linkage. We showed that the synthetic α-2,6- and α-2,3-receptors selectively bound to human and avian-derived hemagglutinins, respectively, forming the basis of a new, and robust assay for hemagglutinin quantification. Hemagglutinin treated at high temperature or low pH was measured differentially to untreated samples suggesting native conformation is dependent for optimal binding. Importantly, this receptor-based immunoassay showed excellent specificity and reproducibility, high precision, less turnaround time and significantly higher sensitivity and throughput compared with SRID in analyzing multiple influenza vaccines. |
format | Online Article Text |
id | pubmed-3570553 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2013 |
publisher | Public Library of Science |
record_format | MEDLINE/PubMed |
spelling | pubmed-35705532013-02-19 A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification Hashem, Anwar M. Gravel, Caroline Farnsworth, Aaron Zou, Wei Lemieux, Michelle Xu, Kangwei Li, Changgui Wang, Junzhi Goneau, Marie-France Merziotis, Maria He, Runtao Gilbert, Michel Li, Xuguang PLoS One Research Article Vaccination is the most effective prophylactic method for preventing influenza. Quantification of influenza vaccine antigens is critically important before the vaccine is used for human immunization. Currently the vaccine antigen quantification relies on hemagglutinin content quantification, the key antigenic component, by single radial immunodiffusion (SRID) assay. Due to the inherent disadvantages associated with the traditional SRID; i.e. low sensitivity, low throughput and need for annual reagents, several approaches have been proposed and investigated as alternatives. Yet, most alternative methods cannot distinguish native hemagglutinin from denatured form, making them less relevant to antigenic analyses. Here, we developed a quantitative immunoassay based on the sialic acid binding property of influenza vaccine antigens. Specifically, we chemically synthesized human and avian influenza virus receptors analogues, N-acetylneuraminic acid-2,6-lactose and N-acetylneuraminic acid-2,3-lactose derivatives with an azidopropyl aglycon, using α-2,6- and α-2,3-sialyltransferases, respectively. The azido group of the two sialyllactose-derivatives was reduced and conjugated to mouse serum albumin through a squarate linkage. We showed that the synthetic α-2,6- and α-2,3-receptors selectively bound to human and avian-derived hemagglutinins, respectively, forming the basis of a new, and robust assay for hemagglutinin quantification. Hemagglutinin treated at high temperature or low pH was measured differentially to untreated samples suggesting native conformation is dependent for optimal binding. Importantly, this receptor-based immunoassay showed excellent specificity and reproducibility, high precision, less turnaround time and significantly higher sensitivity and throughput compared with SRID in analyzing multiple influenza vaccines. Public Library of Science 2013-02-12 /pmc/articles/PMC3570553/ /pubmed/23424631 http://dx.doi.org/10.1371/journal.pone.0055428 Text en © 2013 Hashem et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited. |
spellingShingle | Research Article Hashem, Anwar M. Gravel, Caroline Farnsworth, Aaron Zou, Wei Lemieux, Michelle Xu, Kangwei Li, Changgui Wang, Junzhi Goneau, Marie-France Merziotis, Maria He, Runtao Gilbert, Michel Li, Xuguang A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification |
title | A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification |
title_full | A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification |
title_fullStr | A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification |
title_full_unstemmed | A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification |
title_short | A Novel Synthetic Receptor-Based Immunoassay for Influenza Vaccine Quantification |
title_sort | novel synthetic receptor-based immunoassay for influenza vaccine quantification |
topic | Research Article |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3570553/ https://www.ncbi.nlm.nih.gov/pubmed/23424631 http://dx.doi.org/10.1371/journal.pone.0055428 |
work_keys_str_mv | AT hashemanwarm anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT gravelcaroline anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT farnsworthaaron anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT zouwei anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT lemieuxmichelle anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT xukangwei anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT lichanggui anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT wangjunzhi anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT goneaumariefrance anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT merziotismaria anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT heruntao anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT gilbertmichel anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT lixuguang anovelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT hashemanwarm novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT gravelcaroline novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT farnsworthaaron novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT zouwei novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT lemieuxmichelle novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT xukangwei novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT lichanggui novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT wangjunzhi novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT goneaumariefrance novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT merziotismaria novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT heruntao novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT gilbertmichel novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification AT lixuguang novelsyntheticreceptorbasedimmunoassayforinfluenzavaccinequantification |