Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection
Artículo digital
- Autores:
-
Lakshmanane, Premkumar
Collins, Matthew
Graham, Stephen
Liou, Guei-Jiun Alice
Camacho, Erwin
- Tipo de recurso:
- Article of journal
- Fecha de publicación:
- 2019
- Institución:
- Universidad de Sucre
- Repositorio:
- Repositorio Unisucre
- Idioma:
- eng
- OAI Identifier:
- oai:repositorio.unisucre.edu.co:001/776
- Acceso en línea:
- https://repositorio.unisucre.edu.co/handle/001/776
- Palabra clave:
- Comparative epitope mapping
Computational prediction
ELISA
Zika virus
Antibody-binding region
Cross-reactivity
Dengue virus
Flavivirus
Serological diagnosis
Surveillance
- Rights
- openAccess
- License
- Derechos Reservados - Universidad de Sucre, 2019
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dc.title.spa.fl_str_mv |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
title |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
spellingShingle |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection Comparative epitope mapping Computational prediction ELISA Zika virus Antibody-binding region Cross-reactivity Dengue virus Flavivirus Serological diagnosis Surveillance |
title_short |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
title_full |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
title_fullStr |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
title_full_unstemmed |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
title_sort |
Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection |
dc.creator.fl_str_mv |
Lakshmanane, Premkumar Collins, Matthew Graham, Stephen Liou, Guei-Jiun Alice Camacho, Erwin |
dc.contributor.author.spa.fl_str_mv |
Lakshmanane, Premkumar Collins, Matthew Graham, Stephen Liou, Guei-Jiun Alice Camacho, Erwin |
dc.subject.proposal.spa.fl_str_mv |
Comparative epitope mapping Computational prediction ELISA Zika virus Antibody-binding region Cross-reactivity Dengue virus Flavivirus Serological diagnosis Surveillance |
topic |
Comparative epitope mapping Computational prediction ELISA Zika virus Antibody-binding region Cross-reactivity Dengue virus Flavivirus Serological diagnosis Surveillance |
description |
Artículo digital |
publishDate |
2019 |
dc.date.accessioned.spa.fl_str_mv |
2019-09-19T20:22:06Z |
dc.date.available.spa.fl_str_mv |
2019-09-19T20:22:06Z |
dc.date.issued.spa.fl_str_mv |
2019-09-19 |
dc.type.spa.fl_str_mv |
Artículo de revista |
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http://purl.org/coar/version/c_970fb48d4fbd8a85 |
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Premkumar, Lakshmanane., Collins, Matthew., Graham, Stephen., Guei-Jiun, A. L., Lopez, C. A., Ramesh, J., Balmaseda, A., Brackbill, J. A., Dietze, R.., Camacho, E., De Silva, A. D., Giuberti, C., Dos Reis, H.L., Singh, T., Heimsath, H., Weiskopf, D., Sette, A., Osorio, J.E., Permar, S.R., Miley, M.J., Lazear, H. M., Harris, E. & De Silva, A. M. ( 2018). Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection. Journal of Clinical Microbiology. 56 (3),1-13. |
dc.identifier.issn.spa.fl_str_mv |
0095-1137 |
dc.identifier.uri.spa.fl_str_mv |
https://repositorio.unisucre.edu.co/handle/001/776 |
dc.identifier.doi.spa.fl_str_mv |
10.1128/JCM.01504-17 |
identifier_str_mv |
Premkumar, Lakshmanane., Collins, Matthew., Graham, Stephen., Guei-Jiun, A. L., Lopez, C. A., Ramesh, J., Balmaseda, A., Brackbill, J. A., Dietze, R.., Camacho, E., De Silva, A. D., Giuberti, C., Dos Reis, H.L., Singh, T., Heimsath, H., Weiskopf, D., Sette, A., Osorio, J.E., Permar, S.R., Miley, M.J., Lazear, H. M., Harris, E. & De Silva, A. M. ( 2018). Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection. Journal of Clinical Microbiology. 56 (3),1-13. 0095-1137 10.1128/JCM.01504-17 |
url |
https://repositorio.unisucre.edu.co/handle/001/776 |
dc.language.iso.spa.fl_str_mv |
eng |
language |
eng |
dc.relation.ispartof.spa.fl_str_mv |
Revista |
dc.relation.references.spa.fl_str_mv |
Musso D, Baud D, Gubler DJ. 2016. Zika virus: what do we know? Clin Microbiol Infect 22:494–496. https://doi.org/10.1016/j.cmi.2016.03.032. Lazear HM, Diamond MS. 2016. Zika virus: new clinical syndromes and its emergence in the Western Hemisphere. J Virol 90:4864–4875. https:// doi.org/10.1128/JVI.00252-16. Lazear HM, Stringer EM, de Silva AM. 2016. The emerging Zika virus epidemic in the Americas: research priorities. JAMA 315:1945–1946. https://doi.org/10.1001/jama.2016.2899 Cugola FR, Fernandes IR, Russo FB, Freitas BC, Dias JL, Guimaraes KP, Benazzato C, Almeida N, Pignatari GC, Romero S, Polonio CM, Cunha I, Freitas CL, Brandao WN, Rossato C, Andrade DG, Faria DP, Garcez AT, Buchpigel CA, Braconi CT, Mendes E, Sall AA, Zanotto PM, Peron JP, Muotri AR, Beltrao-Braga PC. 2016. The Brazilian Zika virus strain causes birth defects in experimental models. Nature 534:267–271. https://doi .org/10.1038/nature18296. Garcez PP, Loiola EC, Madeiro da Costa R, Higa LM, Trindade P, Delvecchio R, Nascimento JM, Brindeiro R, Tanuri A, Rehen SK. 2016. Zika virus impairs growth in human neurospheres and brain organoids. Science 352:816–818. https://doi.org/10.1126/science.aaf6116. |
dc.rights.spa.fl_str_mv |
Derechos Reservados - Universidad de Sucre, 2019 |
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Atribución-NoComercial 4.0 Internacional (CC BY-NC 4.0) |
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Derechos Reservados - Universidad de Sucre, 2019 https://creativecommons.org/licenses/by-nc/4.0/ Atribución-NoComercial 4.0 Internacional (CC BY-NC 4.0) http://purl.org/coar/access_right/c_abf2 |
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openAccess |
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Colombia |
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Estados Unidos: Journal of Clinical Microbiology,2018. |
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https://jcm.asm.org/ |
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Universidad de Sucre |
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Lakshmanane, Premkumar980a9bd4b99b57e32a8a8f8a1d3aad90-1Collins, Matthew672e2065631a2ef85699df3b0c29beea-1Graham, Stephen509e4ece7d49b32906a6098b82709877-1Liou, Guei-Jiun Alice225cb2f73e9d0d1315ff293c33ac0b54-1Camacho, Erwin4ebd6b0fa590af42f93f6010be385a88-1Colombia2019-09-19T20:22:06Z2019-09-19T20:22:06Z2019-09-19Premkumar, Lakshmanane., Collins, Matthew., Graham, Stephen., Guei-Jiun, A. L., Lopez, C. A., Ramesh, J., Balmaseda, A., Brackbill, J. A., Dietze, R.., Camacho, E., De Silva, A. D., Giuberti, C., Dos Reis, H.L., Singh, T., Heimsath, H., Weiskopf, D., Sette, A., Osorio, J.E., Permar, S.R., Miley, M.J., Lazear, H. M., Harris, E. & De Silva, A. M. ( 2018). Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus Infection. Journal of Clinical Microbiology. 56 (3),1-13.0095-1137https://repositorio.unisucre.edu.co/handle/001/77610.1128/JCM.01504-17Artículo digitalZika virus (ZIKV) is an emerging flavivirus that can cause birth defects and neurologic complications. Molecular tests are effective for diagnosing acute ZIKV infection, although the majority of infections produce no symptoms at all or present after the narrow window in which molecular diagnostics are dependable. Serology is a reliable method for detecting infections after the viremic period; however, most serological assays have limited specificity due to cross-reactive antibodies elicited by flavivirus infections. Since ZIKV and dengue virus (DENV) widely cocirculate, distinguishing ZIKV infection from DENV infection is particularly important for diagnosing individual cases or for surveillance to coordinate public health responses.application/pdfengEstados Unidos: Journal of Clinical Microbiology,2018.RevistaMusso D, Baud D, Gubler DJ. 2016. Zika virus: what do we know? Clin Microbiol Infect 22:494–496. https://doi.org/10.1016/j.cmi.2016.03.032.Lazear HM, Diamond MS. 2016. Zika virus: new clinical syndromes and its emergence in the Western Hemisphere. J Virol 90:4864–4875. https:// doi.org/10.1128/JVI.00252-16.Lazear HM, Stringer EM, de Silva AM. 2016. The emerging Zika virus epidemic in the Americas: research priorities. JAMA 315:1945–1946. https://doi.org/10.1001/jama.2016.2899Cugola FR, Fernandes IR, Russo FB, Freitas BC, Dias JL, Guimaraes KP, Benazzato C, Almeida N, Pignatari GC, Romero S, Polonio CM, Cunha I, Freitas CL, Brandao WN, Rossato C, Andrade DG, Faria DP, Garcez AT, Buchpigel CA, Braconi CT, Mendes E, Sall AA, Zanotto PM, Peron JP, Muotri AR, Beltrao-Braga PC. 2016. The Brazilian Zika virus strain causes birth defects in experimental models. Nature 534:267–271. https://doi .org/10.1038/nature18296.Garcez PP, Loiola EC, Madeiro da Costa R, Higa LM, Trindade P, Delvecchio R, Nascimento JM, Brindeiro R, Tanuri A, Rehen SK. 2016. Zika virus impairs growth in human neurospheres and brain organoids. Science 352:816–818. https://doi.org/10.1126/science.aaf6116.Derechos Reservados - Universidad de Sucre, 2019https://creativecommons.org/licenses/by-nc/4.0/info:eu-repo/semantics/openAccessAtribución-NoComercial 4.0 Internacional (CC BY-NC 4.0)http://purl.org/coar/access_right/c_abf2https://jcm.asm.org/Development of Envelope Protein Antigens To Serologically Differentiate Zika Virus Infection from Dengue Virus InfectionArtículo de revistainfo:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionhttp://purl.org/coar/resource_type/c_6501Texthttp://purl.org/coar/resource_type/c_2df8fbb1http://purl.org/coar/version/c_970fb48d4fbd8a85Comparative epitope mappingComputational predictionELISAZika virusAntibody-binding regionCross-reactivityDengue virusFlavivirusSerological diagnosisSurveillancePublicationORIGINALJournal of Clinical Microbiology-2018-Premkumar-e01504-17.full.pdfJournal of Clinical Microbiology-2018-Premkumar-e01504-17.full.pdfapplication/pdf1217099https://repositorio.unisucre.edu.co/bitstreams/f7e217a3-2789-4be2-ba75-d1292377a9b5/download83344c91ec827c28d8d8f1bae65fe605MD51LICENSElicense.txtlicense.txttext/plain; charset=utf-81366https://repositorio.unisucre.edu.co/bitstreams/069835ca-7cbc-4590-acd6-e66df74eacd8/download5f839364c91422e4b2a78812717048fbMD52TEXTJournal of Clinical Microbiology-2018-Premkumar-e01504-17.full.pdf.txtJournal of Clinical Microbiology-2018-Premkumar-e01504-17.full.pdf.txtExtracted texttext/plain62877https://repositorio.unisucre.edu.co/bitstreams/f1c924df-e73a-4bbc-bbf4-88fa22937faf/downloadd8403d036e96f3139b06ec6d80bb5e07MD55THUMBNAILJournal of Clinical Microbiology-2018-Premkumar-e01504-17.full.pdf.jpgJournal of Clinical Microbiology-2018-Premkumar-e01504-17.full.pdf.jpgGenerated Thumbnailimage/jpeg15061https://repositorio.unisucre.edu.co/bitstreams/6479e144-ada5-425c-89b6-fceef27c1797/download45debfb666755df5dda01f544e490e1bMD56001/776oai:repositorio.unisucre.edu.co:001/7762024-04-17 16:30:08.717https://creativecommons.org/licenses/by-nc/4.0/Derechos Reservados - Universidad de Sucre, 2019open.accesshttps://repositorio.unisucre.edu.coRepositorio Institucional Universidad de Sucrebdigital@metabiblioteca.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 |