Why the study?
The detection of a vaccine-derived poliovirus requires an epidemiological assessment and response.
Demonstrates extremely rapid evolution of Sabin-like poliovirus to vaccine-derived poliovirus in an immunocompetent child, highlighting the need for continued surveillance and genetically stable vaccines.
Rapid Sabin-like PV3 evolution post-vaccination signals need for vigilant surveillance; leaves open mechanisms and frequency in immunocompetent hosts.
OBJECTIVES: The detection of a vaccine-derived poliovirus (VDPV) requires an epidemiological assessment and response. Using repeated stool sampling from a child who is immunocompetent and was vaccinated against poliomyelitis with acute flaccid paralysis, a case of an extremely rapid evolution of Sabin-like poliovirus (PV) type 3 was traced in the child's body. METHODS: The case was independently identified in two countries-Tajikistan and Russia. Stool samples for the study were also independently collected in two countries on different days from the onset of paralysis. Virological, serological, and molecular methods; full genome Sanger; and high-throughput sequencing were performed to characterize isolates. RESULTS: PV isolates from samples collected on days 2, 3, and 14 contained eight, seven, and seven mutations in the VP1-coding region, respectively, and were classified as Sabin-like PV type 3. The isolates from samples collected on days 15 and 18 had 11 mutations and were classified as vaccine-derived PVs, which required an epidemiological response in the two countries. CONCLUSION: The results indicate the need to continue acute flaccid paralysis surveillance, maintain high vaccination coverage, and develop and introduce new effective, genetically stable PV vaccines.
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Ivanova et al. (2022) studied this question.
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