Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.

http://scienti.colciencias.gov.co:8081/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0000153095

Autores:
Ruiz Sáenz, Julián
Martínez Gutiérrez, Marlen
Tipo de recurso:
Article of journal
Fecha de publicación:
2019
Institución:
Universidad Cooperativa de Colombia
Repositorio:
Repositorio UCC
Idioma:
OAI Identifier:
oai:repository.ucc.edu.co:20.500.12494/15172
Acceso en línea:
https://hdl.handle.net/20.500.12494/15172
Palabra clave:
distemper
evolution
measle
morbillivirus
Zoonotic disease
Rights
openAccess
License
Atribución
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dc.title.spa.fl_str_mv Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
title Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
spellingShingle Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
distemper
evolution
measle
morbillivirus
Zoonotic disease
title_short Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
title_full Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
title_fullStr Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
title_full_unstemmed Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
title_sort Origin of canine distemper virus: consolidating evidence to understand potential zoonoses.
dc.creator.fl_str_mv Ruiz Sáenz, Julián
Martínez Gutiérrez, Marlen
dc.contributor.author.none.fl_str_mv Ruiz Sáenz, Julián
Martínez Gutiérrez, Marlen
dc.subject.spa.fl_str_mv distemper
evolution
measle
morbillivirus
Zoonotic disease
topic distemper
evolution
measle
morbillivirus
Zoonotic disease
description http://scienti.colciencias.gov.co:8081/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0000153095
publishDate 2019
dc.date.accessioned.none.fl_str_mv 2019-11-20T20:57:36Z
dc.date.available.none.fl_str_mv 2019-11-20T20:57:36Z
dc.date.issued.none.fl_str_mv 2019-08-28
dc.type.none.fl_str_mv Artículo
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dc.identifier.uri.spa.fl_str_mv doi: 10.3389/fmicb.2019.01982
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dc.identifier.bibliographicCitation.spa.fl_str_mv Quintero-Gil D, Rendon-Marin S, Martinez-Gutierrez M, Ruiz-Saenz J. Origin of canine distemper virus: consolidating evidence to understand potential zoonoses. Front Microbiol. 2019 Aug 28;10:1982. doi: 10.3389/fmicb.2019.01982
identifier_str_mv 1664-302X
doi: 10.3389/fmicb.2019.01982
Quintero-Gil D, Rendon-Marin S, Martinez-Gutierrez M, Ruiz-Saenz J. Origin of canine distemper virus: consolidating evidence to understand potential zoonoses. Front Microbiol. 2019 Aug 28;10:1982. doi: 10.3389/fmicb.2019.01982
url https://hdl.handle.net/20.500.12494/15172
dc.relation.isversionof.spa.fl_str_mv https://www.frontiersin.org/articles/10.3389/fmicb.2019.01982/full
dc.relation.ispartofjournal.spa.fl_str_mv Front Microbiol.
dc.relation.references.spa.fl_str_mv Abdullah N., Kelly J. T., Graham S. C., Birch J., Goncalves-Carneiro D., Mitchell T., et al. . (2018). Structure-guided identification of a nonhuman morbillivirus with zoonotic potential. J. Virol. 92:e01248–18. 10.1128/JVI.01248-18
Baker J. A., Sheffy B. E., Robson D. S., Gilmartin J. (1966). Response to measles virus by puppies with maternally transferred distemper antibodies. Cornell Vet. 56:588. [PubMed] [Google Scholar] Behura S. K., Severson D. W. (2013). Codon usage bias: causative factors, quantification methods and genome-wide patterns: with emphasis on insect genomes. Biol. Rev. 88, 49–61. 10.1111/j.1469-185X.2012.00242.x
Bieringer M., Han J. W., Kendl S., Khosravi M., Plattet P., Schneider-Schaulies J. (2013). Experimental adaptation of wild-type canine distemper virus (CDV) to the human entry receptor CD150. PLoS ONE 8:e57488. 10.1371/journal.pone.0057488
Blancou J. (2004). Dog distemper: imported into Europe from South America? Hist. Med. Vet. 29, 35−41.
Brown A. L., Mccarthy R. E. (1974). Relationship between measles and canine distemper viruses determined by delayed type hypersensitivity reactions in dogs. Nature 248, 344–345. 10.1038/248344a0
Brown A. L., Vitamvas J. A., Merry D. L., Beckenhauer W. H. (1972). Immune response of pups to modified live-virus canine distemper-measles vaccine. Am. J. Vet. Res. 33, 1447–1456.
Christe K. L., Salyards G. W., Houghton S. D., Ardeshir A., Yee J. L. (2019). Modified dose efficacy trial of a canine distemper-measles vaccine for use in Rhesus Macaques (Macaca mulatta). J. Am. Assoc. Lab. Anim. Sci. 58, 397–405. 10.30802/AALAS-JAALAS-18-000091
Cosby S. L., Weir L. (2018). Measles vaccination: threat from related veterinary viruses and need for continued vaccination post measles eradication. Hum. Vaccin. Immunother. 14, 229–233. 10.1080/21645515.2017.1403677
De Vries R. D., Duprex W. P., De Swart R. L. (2015). Morbillivirus infections: an introduction. Viruses 7, 699–706. 10.3390/v7020699
De Vries R. D., Ludlow M., Verburgh R. J., Van Amerongen G., Yuksel S., Nguyen D. T., et al. . (2014). Measles vaccination of nonhuman primates provides partial protection against infection with canine distemper virus. J. Virol. 88, 4423–4433. 10.1128/JVI.03676-13
Di Paola N., De Melo Freire C. C., De Andrade Zanotto P. M. (2018). Does adaptation to vertebrate codon usage relate to flavivirus emergence potential? PLoS ONE 13:e0191652. 10.1371/journal.pone.0191652
Drexler J. F., Corman V. M., Muller M. A., Maganga G. D., Vallo P., Binger T., et al. . (2012). Bats host major mammalian paramyxoviruses. Nat. Commun. 3:796. 10.1038/ncomms1796
Duque-valencia J., Sarute N., Olarte-Castillo X. A., Ruíz-Sáenz J. (2019). Evolution and interspecies transmission of canine distemper virus-an outlook of the diverse evolutionary landscapes of a multi-host virus. Viruses 11:E582. 10.3390/v11070582
Emerman M., Malik H. S. (2010). Paleovirology–modern consequences of ancient viruses. PLoS Biol. 8:e1000301. 10.1371/journal.pbio.1000301
Freire C. C. M., Palmisano G., Braconi C. T., Cugola F. R., Russo F. B., Beltrão-Braga P. C., et al. . (2018). NS1 codon usage adaptation to humans in pandemic Zika virus. Mem. Inst. Oswaldo Cruz 113:e170385. 10.1590/0074-02760170385
Furuse Y., Suzuki A., Oshitani H. (2010). Origin of measles virus: divergence from rinderpest virus between the 11th and 12th centuries. Virol. J. 7:52. 10.1186/1743-422X-7-52
Goni N., Iriarte A., Comas V., Sonora M., Moreno P., Moratorio G., et al. . (2012). Pandemic influenza A virus codon usage revisited: biases, adaptation and implications for vaccine strain development. Virol. J. 9:263. 10.1186/1743-422X-9-263
Haralambieva I. H., Kennedy R. B., Ovsyannikova I. G., Whitaker J. A., Poland G. A. (2015). Variability in humoral immunity to measles vaccine: new developments. Trends Mol. Med. 21, 789–801. 10.1016/j.molmed.2015.10.005
Holzmann H., Hengel H., Tenbusch M., Doerr H. W. (2016). Eradication of measles: remaining challenges. Med. Microbiol. Immunol. 205, 201–208. 10.1007/s00430-016-0451-4
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dc.publisher.spa.fl_str_mv Frontiers Group
Universidad Cooperativa de Colombia, Facultad de Ciencias de la Salud, Medicina Veterinaría y Zootecnia, Bucaramanga
dc.publisher.program.spa.fl_str_mv Medicina veterinaria y zootecnia
dc.publisher.place.spa.fl_str_mv Bucaramanga
institution Universidad Cooperativa de Colombia
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spelling Ruiz Sáenz, JuliánMartínez Gutiérrez, Marlen102019-11-20T20:57:36Z2019-11-20T20:57:36Z2019-08-281664-302Xdoi: 10.3389/fmicb.2019.01982https://hdl.handle.net/20.500.12494/15172Quintero-Gil D, Rendon-Marin S, Martinez-Gutierrez M, Ruiz-Saenz J. Origin of canine distemper virus: consolidating evidence to understand potential zoonoses. Front Microbiol. 2019 Aug 28;10:1982. doi: 10.3389/fmicb.2019.01982Frontiers GroupUniversidad Cooperativa de Colombia, Facultad de Ciencias de la Salud, Medicina Veterinaría y Zootecnia, BucaramangaMedicina veterinaria y zootecniaBucaramangahttps://www.frontiersin.org/articles/10.3389/fmicb.2019.01982/fullFront Microbiol.Abdullah N., Kelly J. T., Graham S. C., Birch J., Goncalves-Carneiro D., Mitchell T., et al. . (2018). Structure-guided identification of a nonhuman morbillivirus with zoonotic potential. J. Virol. 92:e01248–18. 10.1128/JVI.01248-18Baker J. A., Sheffy B. E., Robson D. S., Gilmartin J. (1966). Response to measles virus by puppies with maternally transferred distemper antibodies. Cornell Vet. 56:588. [PubMed] [Google Scholar] Behura S. K., Severson D. W. (2013). Codon usage bias: causative factors, quantification methods and genome-wide patterns: with emphasis on insect genomes. Biol. Rev. 88, 49–61. 10.1111/j.1469-185X.2012.00242.xBieringer M., Han J. W., Kendl S., Khosravi M., Plattet P., Schneider-Schaulies J. (2013). Experimental adaptation of wild-type canine distemper virus (CDV) to the human entry receptor CD150. PLoS ONE 8:e57488. 10.1371/journal.pone.0057488Blancou J. (2004). Dog distemper: imported into Europe from South America? Hist. Med. Vet. 29, 35−41.Brown A. L., Mccarthy R. E. (1974). Relationship between measles and canine distemper viruses determined by delayed type hypersensitivity reactions in dogs. Nature 248, 344–345. 10.1038/248344a0Brown A. L., Vitamvas J. A., Merry D. L., Beckenhauer W. H. (1972). Immune response of pups to modified live-virus canine distemper-measles vaccine. Am. J. Vet. Res. 33, 1447–1456.Christe K. L., Salyards G. W., Houghton S. D., Ardeshir A., Yee J. L. (2019). Modified dose efficacy trial of a canine distemper-measles vaccine for use in Rhesus Macaques (Macaca mulatta). J. Am. Assoc. Lab. Anim. Sci. 58, 397–405. 10.30802/AALAS-JAALAS-18-000091Cosby S. L., Weir L. (2018). Measles vaccination: threat from related veterinary viruses and need for continued vaccination post measles eradication. Hum. Vaccin. Immunother. 14, 229–233. 10.1080/21645515.2017.1403677De Vries R. D., Duprex W. P., De Swart R. L. (2015). Morbillivirus infections: an introduction. Viruses 7, 699–706. 10.3390/v7020699De Vries R. D., Ludlow M., Verburgh R. J., Van Amerongen G., Yuksel S., Nguyen D. T., et al. . (2014). Measles vaccination of nonhuman primates provides partial protection against infection with canine distemper virus. J. Virol. 88, 4423–4433. 10.1128/JVI.03676-13Di Paola N., De Melo Freire C. C., De Andrade Zanotto P. M. (2018). Does adaptation to vertebrate codon usage relate to flavivirus emergence potential? PLoS ONE 13:e0191652. 10.1371/journal.pone.0191652Drexler J. F., Corman V. M., Muller M. A., Maganga G. D., Vallo P., Binger T., et al. . (2012). Bats host major mammalian paramyxoviruses. Nat. Commun. 3:796. 10.1038/ncomms1796Duque-valencia J., Sarute N., Olarte-Castillo X. A., Ruíz-Sáenz J. (2019). Evolution and interspecies transmission of canine distemper virus-an outlook of the diverse evolutionary landscapes of a multi-host virus. Viruses 11:E582. 10.3390/v11070582Emerman M., Malik H. S. (2010). Paleovirology–modern consequences of ancient viruses. PLoS Biol. 8:e1000301. 10.1371/journal.pbio.1000301Freire C. C. M., Palmisano G., Braconi C. T., Cugola F. R., Russo F. B., Beltrão-Braga P. C., et al. . (2018). NS1 codon usage adaptation to humans in pandemic Zika virus. Mem. Inst. Oswaldo Cruz 113:e170385. 10.1590/0074-02760170385Furuse Y., Suzuki A., Oshitani H. (2010). Origin of measles virus: divergence from rinderpest virus between the 11th and 12th centuries. Virol. J. 7:52. 10.1186/1743-422X-7-52Goni N., Iriarte A., Comas V., Sonora M., Moreno P., Moratorio G., et al. . (2012). Pandemic influenza A virus codon usage revisited: biases, adaptation and implications for vaccine strain development. Virol. J. 9:263. 10.1186/1743-422X-9-263Haralambieva I. H., Kennedy R. B., Ovsyannikova I. G., Whitaker J. A., Poland G. A. (2015). Variability in humoral immunity to measles vaccine: new developments. Trends Mol. Med. 21, 789–801. 10.1016/j.molmed.2015.10.005Holzmann H., Hengel H., Tenbusch M., Doerr H. W. (2016). Eradication of measles: remaining challenges. Med. Microbiol. Immunol. 205, 201–208. 10.1007/s00430-016-0451-4distemperevolutionmeaslemorbillivirusZoonotic diseaseOrigin of canine distemper virus: consolidating evidence to understand potential zoonoses.Artículohttp://purl.org/coar/resource_type/c_6501http://purl.org/coar/resource_type/c_2df8fbb1http://purl.org/coar/version/c_970fb48d4fbd8a85info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionAtribucióninfo:eu-repo/semantics/openAccesshttp://purl.org/coar/access_right/c_abf2http://scienti.colciencias.gov.co:8081/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0000153095https://scienti.colciencias.gov.co/cvlac/visualizador/generarCurriculoCv.do?cod_rh=0000213748https://orcid.org/0000-0002-1447-1458https://orcid.org/0000-0002-9429-0058julian.ruizs@campusucc.edu.coMarlen.martinezg@campucucc.edu.cohttps://scholar.google.com/citations?user=o3Y7mZwAAAAJ&hl=eshttps://scholar.google.es/citations?user=flSrsSIAAAAJ&hl=esPublicationORIGINALfmicb-10-01982.pdffmicb-10-01982.pdfTrabajo de 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