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.

Journal of Virology
|November 27, 2004
PubMed

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.

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