Related Experiment Video
Updated: Aug 20, 2026

Particle Agglutination Method for Poliovirus Identification
Published on: April 20, 2011
Long-term excretion of vaccine-derived poliovirus by a healthy child
Javier Martín1, Kofi Odoom, Gráinne Tuite
1Division of Virology, National Institute for Biological Standards and Control, Blanche Lane, Potters Bar, Hertfordshire EN6 3QG, United Kingdom. jmartin@nibsc.ac.uk.
Insights
A child shed vaccine-derived poliovirus (VDPV) for months post-vaccination. This VDPV showed faster evolution and reversion to wild-like properties, despite the child having normal immunity.
Area of Science:
- Virology
- Immunology
- Molecular Evolution
Background:
- Oral live polio vaccine can rarely lead to vaccine-derived poliovirus (VDPV) shedding.
- Understanding VDPV evolution and reversion is crucial for polio eradication efforts.
Purpose of the Study:
- To characterize VDPV isolates from a child with prolonged shedding.
- To investigate the genetic, antigenic, and virulence properties of these VDPV strains.
- To analyze the evolutionary rate and mutation patterns of the VDPV.
Main Methods:
- Isolation and characterization of poliovirus from child's stool samples.
- Antigenic profiling, virulence assessment in transgenic mice, and high-temperature growth assays.
- Nucleotide sequencing of the VP1 coding region and comparative evolutionary analysis.
Main Results:
- Type 1 VDPV with 1.1% VP1 sequence drift was shed for 10 months.
- Isolates exhibited reversion to wild-like poliovirus properties, including antigenic changes and increased virulence.
- An accelerated molecular clock (2.05% per year) and a high nonsynonymous/synonymous substitution ratio were observed.
Conclusions:
- The VDPV evolved rapidly with mutations affecting antigenic sites and virulence.
- The observed high rate of genetic change may explain prolonged gut replication.
- These findings highlight the complex evolutionary dynamics of VDPV in immunocompetent individuals.
Abstract:
A child was found to be excreting type 1 vaccine-derived poliovirus (VDPV) with a 1.1% sequence drift from Sabin type 1 vaccine strain in the VP1 coding region 6 months after he was immunized with oral live polio vaccine. Seventeen type 1 poliovirus isolates were recovered from stools taken from this child during the following 4 months. Contrary to expectation, the child was not deficient in humoral immunity and showed high levels of serum neutralization against poliovirus. Selected virus isolates were characterized in terms of their antigenic properties, virulence in transgenic mice, sensitivity for growth at high temperatures, and differences in nucleotide sequence from the Sabin type 1 strain. The VDPV isolates showed mutations at key nucleotide positions that correlated with the observed reversion to biological properties typical of wild polioviruses. A number of capsid mutations mapped at known antigenic sites leading to changes in the viral antigenic structure. Estimates of sequence evolution based on the accumulation of nucleotide changes in the VP1 coding region detected a "defective" molecular clock running at an apparent faster speed of 2.05% nucleotide changes per year versus 1% shown in previous studies. Remarkably, when compared to several type 1 VDPV strains of different origins, isolates from this child showed a much higher proportion of nonsynonymous versus synonymous nucleotide changes in the capsid coding region. This anomaly could explain the high VP1 sequence drift found and the ability of these virus strains to replicate in the gut for a longer period than expected.
More Related Videos
11:09EPA Method 1615. Measurement of Enterovirus and Norovirus Occurrence in Water by Culture and RT-qPCR. II. Total Culturable Virus Assay
Published on: September 11, 2016
08:04Development of an IFN-γ ELISpot Assay to Assess Varicella-Zoster Virus-specific Cell-mediated Immunity Following Umbilical Cord Blood Transplantation
Published on: July 9, 2014
Related Concept Videos
Poliomyelitis
Vaccinations
Vaccines
Chickenpox
Vaccine Production
Immunological Memory
What is Immunological Memory?
Immunological memory is an integral function of the immune system that allows it to recognize and react more rapidly and effectively to pathogens previously encountered. This feature is...