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Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR

Molecular methodologies providing data on viral concentration and infectivity have been successfully used in environmental virology, supporting quantitative risk assessment studies. The present study aimed to assess human mastadenovirus (HAdV) intact particles using a derivative of propidium monoazi...

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Autores principales: Pedrosa de Macena, Lorena da Graça, Pereira, Joseane Simone de Oliveira, da Silva, Jansen Couto, Ferreira, Fernando César, Maranhão, Adriana Gonçalves, Lanzarini, Natália Maria, Miagostovich, Marize Pereira
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9168632/
https://www.ncbi.nlm.nih.gov/pubmed/35666431
http://dx.doi.org/10.1007/s42770-022-00775-5
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author Pedrosa de Macena, Lorena da Graça
Pereira, Joseane Simone de Oliveira
da Silva, Jansen Couto
Ferreira, Fernando César
Maranhão, Adriana Gonçalves
Lanzarini, Natália Maria
Miagostovich, Marize Pereira
author_facet Pedrosa de Macena, Lorena da Graça
Pereira, Joseane Simone de Oliveira
da Silva, Jansen Couto
Ferreira, Fernando César
Maranhão, Adriana Gonçalves
Lanzarini, Natália Maria
Miagostovich, Marize Pereira
author_sort Pedrosa de Macena, Lorena da Graça
collection PubMed
description Molecular methodologies providing data on viral concentration and infectivity have been successfully used in environmental virology, supporting quantitative risk assessment studies. The present study aimed to assess human mastadenovirus (HAdV) intact particles using a derivative of propidium monoazide associated with qPCR (PMAxx-qPCR) in aquatic matrices. Initially, different concentrations of PMAxx were evaluated to establish an optimal protocol for treating different naturally contaminated matrices, using 10 min incubation in the dark at 200 rpm at room temperature and 15 min of photoactivation in the PMA-Lite™ LED photolysis device. There was no significant reduction in the quantification of infectious HAdV with increasing concentration of PMAxx used (20 μM, 50 μM, and 100 μM), except for sewage samples. In this matrix, a reduction of 5.01 log of genomic copies (GC)/L was observed from the concentration of 50 μM and revealed 100% HAdV particles with damaged capsids. On the other hand, the mean reduction of 0.51 log in stool samples using the same concentration mentioned above demonstrated 83% of damaged particles eliminated in the stool. Following, 50 μM PMAxx-qPCR protocol revealed a log reduction of 0.91, 0.67, and 1.05 in other samples of raw sewage, brackish, and seawater where HAdV concentration reached 1.47 × 10(4), 6.81 × 10(2), and 2.33 × 10(2) GC/L, respectively. Fifty micrometers of PMAxx protocol helped screen intact viruses from different matrices, including sea and brackish water.
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spelling pubmed-91686322022-06-07 Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR Pedrosa de Macena, Lorena da Graça Pereira, Joseane Simone de Oliveira da Silva, Jansen Couto Ferreira, Fernando César Maranhão, Adriana Gonçalves Lanzarini, Natália Maria Miagostovich, Marize Pereira Braz J Microbiol Environmental Microbiology - Research Paper Molecular methodologies providing data on viral concentration and infectivity have been successfully used in environmental virology, supporting quantitative risk assessment studies. The present study aimed to assess human mastadenovirus (HAdV) intact particles using a derivative of propidium monoazide associated with qPCR (PMAxx-qPCR) in aquatic matrices. Initially, different concentrations of PMAxx were evaluated to establish an optimal protocol for treating different naturally contaminated matrices, using 10 min incubation in the dark at 200 rpm at room temperature and 15 min of photoactivation in the PMA-Lite™ LED photolysis device. There was no significant reduction in the quantification of infectious HAdV with increasing concentration of PMAxx used (20 μM, 50 μM, and 100 μM), except for sewage samples. In this matrix, a reduction of 5.01 log of genomic copies (GC)/L was observed from the concentration of 50 μM and revealed 100% HAdV particles with damaged capsids. On the other hand, the mean reduction of 0.51 log in stool samples using the same concentration mentioned above demonstrated 83% of damaged particles eliminated in the stool. Following, 50 μM PMAxx-qPCR protocol revealed a log reduction of 0.91, 0.67, and 1.05 in other samples of raw sewage, brackish, and seawater where HAdV concentration reached 1.47 × 10(4), 6.81 × 10(2), and 2.33 × 10(2) GC/L, respectively. Fifty micrometers of PMAxx protocol helped screen intact viruses from different matrices, including sea and brackish water. Springer International Publishing 2022-06-06 /pmc/articles/PMC9168632/ /pubmed/35666431 http://dx.doi.org/10.1007/s42770-022-00775-5 Text en © The Author(s) under exclusive licence to Sociedade Brasileira de Microbiologia 2022
spellingShingle Environmental Microbiology - Research Paper
Pedrosa de Macena, Lorena da Graça
Pereira, Joseane Simone de Oliveira
da Silva, Jansen Couto
Ferreira, Fernando César
Maranhão, Adriana Gonçalves
Lanzarini, Natália Maria
Miagostovich, Marize Pereira
Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR
title Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR
title_full Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR
title_fullStr Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR
title_full_unstemmed Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR
title_short Quantification of infectious Human mastadenovirus in environmental matrices using PMAxx-qPCR
title_sort quantification of infectious human mastadenovirus in environmental matrices using pmaxx-qpcr
topic Environmental Microbiology - Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9168632/
https://www.ncbi.nlm.nih.gov/pubmed/35666431
http://dx.doi.org/10.1007/s42770-022-00775-5
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