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Updated: Dec 30, 2025

Early Viral Entry Assays for the Identification and Evaluation of Antiviral Compounds
Published on: October 29, 2015
Molecular identification and typing of enteroviruses isolated from clinical specimens
Stefania Manzara1, Michele Muscillo, Giuseppina La Rosa
1Institute of Microbiology, Università Cattolica del Sacro Cuore, Rome, Italy.
Abstract:
Enterovirus characterization and typing require an integrated technological approach, using both immunological and molecular methods. The seventy-nine enteroviruses included in this study were isolated from cell cultures and classified as enteroviruses on the basis of an indirect immunofluorescence assay (IFA) against common enterovirus antigens and a neutralization test based on the Lim Benyesh-Melnick (LBM) pool. The final identification was carried out using a number of different molecular approaches, including reverse transcription (RT)-PCR, restriction fragment length polymorphism (RFLP) analysis, and nucleotide sequence analysis of amplicons from various regions of the genome. Twenty-seven poliovirus strains (set A) were identified using LBM pool analysis, RFLP analysis, and IFA. Use of the LBM pool method showed that 35 out of 79 strains were nonpoliovirus (set B), while 17 specimens tested negative (set C). Sets B and C were further investigated. Twenty-five specimens from set B and 8 from set C were identified by IFA. Six specimens from set B and five from set C were identified by RFLP analysis. Specimens in sets B and C were treated using RT-PCR; the resulting amplicons were subjected to nucleotide sequence analysis. The VP1 region was analyzed using two sets of deoxyinosine degenerate primers. Where the VP1 test gave no signal, the VP4-VP2 region was analyzed. Where both tests were negative, a 5' noncoding region analysis was performed. Interestingly, analysis of the VP1 region showed that two specimens from set C were strains of enterovirus 71, whose presence was unexpected in Italy. As in other European epidemiological studies, the strain found most frequently was echovirus 30.
Insights
This study combined immunological and molecular methods to characterize 79 enteroviruses. Echovirus 30 was most common, and unexpected Enterovirus 71 strains were identified.
Area of Science:
- Virology
- Molecular Biology
- Immunology
Background:
- Enterovirus characterization requires integrated immunological and molecular techniques.
- Accurate typing is crucial for epidemiological studies and public health.
- Previous methods may lack the sensitivity or specificity for comprehensive enterovirus identification.
Purpose of the Study:
- To characterize and type 79 enterovirus isolates using a combination of methods.
- To evaluate the effectiveness of integrated immunological and molecular approaches for enterovirus identification.
- To identify the prevalence of different enterovirus types, including poliovirus and non-poliovirus strains.
Main Methods:
- Isolates were initially classified using indirect immunofluorescence assay (IFA) and Lim Benyesh-Melnick (LBM) pool neutralization tests.
- Molecular methods included reverse transcription-polymerase chain reaction (RT-PCR), restriction fragment length polymorphism (RFLP), and nucleotide sequence analysis.
- Sequencing focused on VP1, VP4-VP2, and 5' noncoding regions to ensure comprehensive typing.
Main Results:
- Of 79 isolates, 27 were poliovirus (Set A), 35 were non-poliovirus (Set B), and 17 were initially negative (Set C).
- Further analysis identified Enterovirus 71 in two Set C specimens, an unexpected finding in Italy.
- Echovirus 30 was the most frequently detected non-poliovirus strain, consistent with other European studies.
Conclusions:
- An integrated approach combining immunological and molecular methods is effective for enterovirus characterization and typing.
- The study identified key enterovirus strains, including the unexpected presence of Enterovirus 71.
- Findings contribute to understanding enterovirus epidemiology in Italy and Europe.
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