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High throughput AS LNA qPCR method for the detection of a specific mutation in poliovirus vaccine strains.
Opmeer, Lizet; Gazzoli, Isabella; Ballmann, Mónika; Willemsen, Marieke; Voshol, Gerben P; Grudniewska-Lawton, Magda; Havenga, Menzo; Yallop, Christopher; Hamidi, Ahd; Gillissen, Gert; Bakker, Wilfried A M.
Afiliação
  • Opmeer L; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Gazzoli I; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Ballmann M; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Willemsen M; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Voshol GP; GenomeScan B.V., Plesmanlaan 1d, 2333 BZ Leiden, The Netherlands.
  • Grudniewska-Lawton M; GenomeScan B.V., Plesmanlaan 1d, 2333 BZ Leiden, The Netherlands.
  • Havenga M; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Yallop C; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Hamidi A; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Gillissen G; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands.
  • Bakker WAM; Batavia Biosciences B.V., Bioscience Park Leiden, Zernikedreef 16, 2333CL Leiden, The Netherlands. Electronic address: w.bakker@bataviabiosciences.com.
Vaccine ; 42(9): 2475-2484, 2024 Apr 02.
Article em En | MEDLINE | ID: mdl-38503660
ABSTRACT
Sabin Inactivated Poliovirus Vaccine (sIPV) has become one of the preferred vaccination options for the last step in the Poliovirus eradication program. Sequencing of poliovirus samples is needed during the manufacturing of poliovirus vaccines to assure the safety and immunogenicity of these vaccines. Next-generation sequencing analysis is the current costly and time-consuming gold standard for monitoring the manufacturing processes. We developed a low-cost and quick, highly sensitive, and allele-specific locked nucleic acid-probe-based reverse transcription quantitative PCR alternative that can accurately detect mutations in poliovirus vaccine samples during process development, scaling up, and release. Using the frequently in vitro occurring and viral replication-impacting VP1-E295K mutation as a showcase, we show that this technology can accurately detect E295K mutations in poliovirus 2 samples to similar levels as NGS. The qPCR technology was developed employing a synthetic dsDNA fragment-based standard curve containing mixes of E295K-WT (wildtype) and Mut (mutant) synthetic dsDNA fragments ranging from 1 × 107 copies/µL to 1 × 102 copies/µL to achieve a linear correlation with R2 > 0.999, and PCR efficiencies of 95-105 %. Individual standard concentration levels achieved accuracies of ≥92 % (average 96 %) and precisions of ≤17 % (average 3.3 %) RSD. Specificity of locked nucleic acid (LNA)-probes was confirmed in the presence and absence of co-mutations in the probe-binding region. Application of the developed assay to Sabin Poliovirus type 2 production run samples, illustrated a linear relationship with an R2 of 0.994, and an average accuracy of 97.2 % of the variant (allele)-specific AS LNA qPCR result, compared to NGS. The assay showed good sensitivity for poliovirus samples, containing E295K mutation levels between 0 % and 95 % (quantification range). In conclusion, the developed AS LNA qPCR presents a valuable low-cost, and fast tool, suitable for the process development and quality control of polio vaccines.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oligonucleotídeos / Poliomielite / Poliovirus Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Oligonucleotídeos / Poliomielite / Poliovirus Limite: Humans Idioma: En Ano de publicação: 2024 Tipo de documento: Article