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Published in: Archives of Virology 8/2017

01-08-2017 | Original Article

Characterization of cross-clade monoclonal antibodies against H5N1 highly pathogenic avian influenza virus and their application to the antigenic analysis of diverse H5 subtype viruses

Authors: Dulyatad Gronsang, Anh N. Bui, Dai Q. Trinh, Vuong N. Bui, Khong V. Nguyen, Minh X. Can, Tsutomu Omatsu, Tetsuya Mizutani, Makoto Nagai, Yukie Katayama, Rapeewan Thampaisarn, Haruko Ogawa, Kunitoshi Imai

Published in: Archives of Virology | Issue 8/2017

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Abstract

H5N1 highly pathogenic avian influenza viruses (HPAIVs) are a threat to both animal and public health and require specific and rapid detection for prompt disease control. We produced three neutralizing anti-hemagglutinin (HA) monoclonal antibodies (mAbs) using two clades (2.2 and 2.5) of the H5N1 HPAIV isolated in Japan. Blocking immunofluorescence tests showed that each mAb recognized different epitopes; 3B5.1 and 3B5.2 mAbs against the clade 2.5 virus showed cross-clade reactivity to all 26 strains from clades 1, 2.2, 2.3.2.1, 2.3.2.1a, b, c and 2.3.4, suggesting that the epitope(s) recognized are conserved. Conversely, the 1G5 mAb against the clade 2.2 virus showed reactivity to only clades 1, 2.3.4 and 2.5 strains. An analysis of escape mutants, and some clades of the H5N1 viruses recognized by 3B5.1 and 3B5.2 mAbs, suggested that the mAbs bind to an epitope, including amino acid residues at position 162 in the HA1 protein (R162 and K162). Unexpectedly, however, when five Eurasian-origin H5 low-pathogenic AIV (LPAIV) strains with R162 were examined (EA-nonGsGD clade) as well as two American-origin strains (Am-nonGsGD clade), the mAb recognized only EA-nonGsGD clade strains. The R162 and K162 residues in the HA1 protein were highly conserved among 36 of the 43 H5N1 clades reported, including clades 2.3.2.1a and 2.3.2.1c that are currently circulating in Asia, Africa and Europe. The amino acid residues (158-PTIKRSYNNTNQE-170) in the HA1 protein are probably an epitope responsible for the cross-clade reactivity of the mAbs, considering the epitopes reported elsewhere. The 3B5.1 and 3B5.2 mAbs may be useful for the specific detection of H5N1 HPAIVs circulating in the field.
Literature
1.
go back to reference Chan PK (2002) Outbreak of avian influenza A(H5N1) virus infection in Hong Kong in 1997. Clin Infect Dis 34(Suppl 2):S58–S64CrossRefPubMed Chan PK (2002) Outbreak of avian influenza A(H5N1) virus infection in Hong Kong in 1997. Clin Infect Dis 34(Suppl 2):S58–S64CrossRefPubMed
2.
go back to reference Brown IH (2010) Summary of avian influenza activity in Europe, Asia, and Africa, 2006–2009. Avian Dis 54:187–193CrossRefPubMed Brown IH (2010) Summary of avian influenza activity in Europe, Asia, and Africa, 2006–2009. Avian Dis 54:187–193CrossRefPubMed
3.
go back to reference Amendola A, Ranghiero A, Zanetti A, Pariani E (2011) Is avian influenza virus A(H5N1) a real threat to human health? J Prev Med Hyg 52:107–110PubMed Amendola A, Ranghiero A, Zanetti A, Pariani E (2011) Is avian influenza virus A(H5N1) a real threat to human health? J Prev Med Hyg 52:107–110PubMed
5.
go back to reference WHO/OIE/FAO, H5N1 Evolution Working Group (2008) Toward a unified nomenclature system for highly pathogenic avian influenza virus (H5N1). Emerg Infect Dis 14:e1CrossRef WHO/OIE/FAO, H5N1 Evolution Working Group (2008) Toward a unified nomenclature system for highly pathogenic avian influenza virus (H5N1). Emerg Infect Dis 14:e1CrossRef
6.
go back to reference WHO/OIE/FAO, H5N1 Evolution Working Group (2014) Revised and updated nomenclature for highly pathogenic avian influenza A (H5N1) viruses. Influenza Other Respir Viruses 8:384–388CrossRef WHO/OIE/FAO, H5N1 Evolution Working Group (2014) Revised and updated nomenclature for highly pathogenic avian influenza A (H5N1) viruses. Influenza Other Respir Viruses 8:384–388CrossRef
7.
go back to reference WHO/OIE/FAO, H5N1 Evolution Working Group (2012) Continued evolution of highly pathogenic avian influenza A (H5N1): updated nomenclature. Influenza Other Respir Viruses 6:1–5CrossRef WHO/OIE/FAO, H5N1 Evolution Working Group (2012) Continued evolution of highly pathogenic avian influenza A (H5N1): updated nomenclature. Influenza Other Respir Viruses 6:1–5CrossRef
8.
go back to reference Smith GJ, Donis RO, WHO/OIE/FAO, H5 Evolution Working Group (2015) Nomenclature updates resulting from the evolution of avian influenza A (H5) virus clades 2.1.3.2a, 2.2.1, and 2.3.4 during 2013-2014. Influenza Other Respir Viruses 9:271–276CrossRef Smith GJ, Donis RO, WHO/OIE/FAO, H5 Evolution Working Group (2015) Nomenclature updates resulting from the evolution of avian influenza A (H5) virus clades 2.1.3.2a, 2.2.1, and 2.3.4 during 2013-2014. Influenza Other Respir Viruses 9:271–276CrossRef
12.
go back to reference Swayne DE (2007) Understanding the complex pathobiology of high pathogenicity avian influenza viruses in birds. Avian Dis 51(1 Suppl):242–249CrossRefPubMed Swayne DE (2007) Understanding the complex pathobiology of high pathogenicity avian influenza viruses in birds. Avian Dis 51(1 Suppl):242–249CrossRefPubMed
13.
go back to reference Spackman E, Swayne DE, Suarez DL, Senne DA, Pedersen JC, Killian ML, Pasick JK, Handel K, Lee CW, Stallknecht D, Slemons R, Ip HS, Deliberto T (2007) Characterization of low-pathogenicity H5N1 avian influenza viruses from North America. J Virol 81(21):11612–11619CrossRefPubMedPubMedCentral Spackman E, Swayne DE, Suarez DL, Senne DA, Pedersen JC, Killian ML, Pasick JK, Handel K, Lee CW, Stallknecht D, Slemons R, Ip HS, Deliberto T (2007) Characterization of low-pathogenicity H5N1 avian influenza viruses from North America. J Virol 81(21):11612–11619CrossRefPubMedPubMedCentral
14.
go back to reference Ohnishi K, Takahashi Y, Kono N, Nakajima N, Mizukoshi F, Misawa S, Yamamoto T, Mitsuki YY, Fu S, Hirayama N, Ohshima M, Ato M, Kageyama T, Odagiri T, Tashiro M, Kobayashi K, Itamura S, Tsunetsugu-Yokota Y (2012) Newly established monoclonal antibodies for immunological detection of H5N1 influenza virus. Jpn J Infect Dis 65:19–27CrossRefPubMed Ohnishi K, Takahashi Y, Kono N, Nakajima N, Mizukoshi F, Misawa S, Yamamoto T, Mitsuki YY, Fu S, Hirayama N, Ohshima M, Ato M, Kageyama T, Odagiri T, Tashiro M, Kobayashi K, Itamura S, Tsunetsugu-Yokota Y (2012) Newly established monoclonal antibodies for immunological detection of H5N1 influenza virus. Jpn J Infect Dis 65:19–27CrossRefPubMed
15.
go back to reference Du A, Daidoji T, Koma T, Ibrahim MS, Nakamura S, de Silva UC, Ueda M, Yang CS, Yasunaga T, Ikuta K, Nakaya T (2009) Detection of circulating Asian H5N1 viruses by a newly established monoclonal antibody. Biochem Biophys Res Commun 378:197–202CrossRefPubMed Du A, Daidoji T, Koma T, Ibrahim MS, Nakamura S, de Silva UC, Ueda M, Yang CS, Yasunaga T, Ikuta K, Nakaya T (2009) Detection of circulating Asian H5N1 viruses by a newly established monoclonal antibody. Biochem Biophys Res Commun 378:197–202CrossRefPubMed
16.
go back to reference Wada A, Sakoda Y, Oyamada T, Kida H (2011) Development of a highly sensitive immunochromatographic detection kit for H5 influenza virus hemagglutinin using silver amplification. J Virol Methods 178:82–86CrossRefPubMed Wada A, Sakoda Y, Oyamada T, Kida H (2011) Development of a highly sensitive immunochromatographic detection kit for H5 influenza virus hemagglutinin using silver amplification. J Virol Methods 178:82–86CrossRefPubMed
17.
go back to reference Kobayashi-Ishihara M, Takahashi H, Ohnishi K, Nishimura K, Terahara K, Ato M, Itamura S, Kageyama T, Tsunetsugu-Yokota Y (2014) Broad cross-reactive epitopes of the H5N1 influenza virus identified by murine antibodies against the A/Vietnam/1194/2004 hemagglutinin. PLoS One 9:e99201CrossRefPubMedPubMedCentral Kobayashi-Ishihara M, Takahashi H, Ohnishi K, Nishimura K, Terahara K, Ato M, Itamura S, Kageyama T, Tsunetsugu-Yokota Y (2014) Broad cross-reactive epitopes of the H5N1 influenza virus identified by murine antibodies against the A/Vietnam/1194/2004 hemagglutinin. PLoS One 9:e99201CrossRefPubMedPubMedCentral
18.
go back to reference Wu R, Li X, Leung HC, Cao Z, Qiu Z, Zhou Y, Zheng BJ, He Y (2014) A novel neutralizing antibody against diverse clades of H5N1 influenza virus and its mutants capable of airborne transmission. Antiviral Res 106:13–23CrossRefPubMed Wu R, Li X, Leung HC, Cao Z, Qiu Z, Zhou Y, Zheng BJ, He Y (2014) A novel neutralizing antibody against diverse clades of H5N1 influenza virus and its mutants capable of airborne transmission. Antiviral Res 106:13–23CrossRefPubMed
19.
go back to reference Hu H, Voss J, Zhang G, Buchy P, Zuo T, Wang L, Wang F, Zhou F, Wang G, Tsai C, Calder L, Gamblin SJ, Zhang L, Deubel V, Zhou B, Skehel JJ, Zhou P (2012) A human antibody recognizing a conserved epitope of H5 hemagglutinin broadly neutralizes highly pathogenic avian influenza H5N1 viruses. J Virol 86:2978–2989CrossRefPubMedPubMedCentral Hu H, Voss J, Zhang G, Buchy P, Zuo T, Wang L, Wang F, Zhou F, Wang G, Tsai C, Calder L, Gamblin SJ, Zhang L, Deubel V, Zhou B, Skehel JJ, Zhou P (2012) A human antibody recognizing a conserved epitope of H5 hemagglutinin broadly neutralizes highly pathogenic avian influenza H5N1 viruses. J Virol 86:2978–2989CrossRefPubMedPubMedCentral
20.
go back to reference Xiong X, Corti D, Liu J, Pinna D, Foglierini M, Calder LJ, Martin SR, Lin YP, Walker PA, Collins PJ, Monne I, Suguitan AL Jr, Santos C, Temperton NJ, Subbarao K, Lanzavecchia A, Gamblin SJ, Skehel JJ (2015) Structures of complexes formed by H5 influenza hemagglutinin with a potent broadly neutralizing human monoclonal antibody. Proc Natl Acad Sci U S A 112:9430–9435CrossRefPubMedPubMedCentral Xiong X, Corti D, Liu J, Pinna D, Foglierini M, Calder LJ, Martin SR, Lin YP, Walker PA, Collins PJ, Monne I, Suguitan AL Jr, Santos C, Temperton NJ, Subbarao K, Lanzavecchia A, Gamblin SJ, Skehel JJ (2015) Structures of complexes formed by H5 influenza hemagglutinin with a potent broadly neutralizing human monoclonal antibody. Proc Natl Acad Sci U S A 112:9430–9435CrossRefPubMedPubMedCentral
21.
go back to reference Imai K, Ogawa H, Bui VN, Inoue H, Fukuda J, Ohba M, Yamamoto Y, Nakamura K (2012) Inactivation of high and low pathogenic avian influenza virus H5 subtypes by copper ions incorporated in zeolite-textile materials. Antiviral Res 93:225–233CrossRefPubMed Imai K, Ogawa H, Bui VN, Inoue H, Fukuda J, Ohba M, Yamamoto Y, Nakamura K (2012) Inactivation of high and low pathogenic avian influenza virus H5 subtypes by copper ions incorporated in zeolite-textile materials. Antiviral Res 93:225–233CrossRefPubMed
22.
go back to reference Trinh DQ, Ogawa H, Bui VN, Baatartsogt T, Kizito MK, Yamaguchi S, Imai K (2015) Characterization of mAbs to chicken anemia virus and epitope mapping on its viral protein, VP1. J Gen Virol 96:1086–1097CrossRefPubMed Trinh DQ, Ogawa H, Bui VN, Baatartsogt T, Kizito MK, Yamaguchi S, Imai K (2015) Characterization of mAbs to chicken anemia virus and epitope mapping on its viral protein, VP1. J Gen Virol 96:1086–1097CrossRefPubMed
23.
go back to reference Harlow E, Lane D (1988) Antibodies A Laboratory Manual. Cold Spring Harbor Laboratory, New York Harlow E, Lane D (1988) Antibodies A Laboratory Manual. Cold Spring Harbor Laboratory, New York
24.
go back to reference Nishikawa K, Isomura S, Suzuki S, Watanabe E, Hamaguchi M, Yoshida T, Nagai Y (1983) Monoclonal antibodies to the HN glycoprotein of Newcastle disease virus. Biological characterization and use for strain comparisons. Virology 130:318–330CrossRefPubMed Nishikawa K, Isomura S, Suzuki S, Watanabe E, Hamaguchi M, Yoshida T, Nagai Y (1983) Monoclonal antibodies to the HN glycoprotein of Newcastle disease virus. Biological characterization and use for strain comparisons. Virology 130:318–330CrossRefPubMed
26.
go back to reference Behrens B, Kärber G (1934) Wie sind Reihenversuche für biologishe Auswertungen am zweckmäßigsten anzuordnen [in German]? Naunyn Schmiedebergs. Arch Exp Pathol Pharmakol 18:379–388CrossRef Behrens B, Kärber G (1934) Wie sind Reihenversuche für biologishe Auswertungen am zweckmäßigsten anzuordnen [in German]? Naunyn Schmiedebergs. Arch Exp Pathol Pharmakol 18:379–388CrossRef
27.
go back to reference Masuda T, Nagai M, Yamasato H, Tsuchiaka S, Okazaki S, Katayama Y, Oba M, Nishiura N, Sassa Y, Omatsu T, Furuya T, Koyama S, Shirai J, Taniguchi K, Fujii Y, Todaka R, Katayama K, Mizutani T (2014) Identification of novel bovine group A rotavirus G15P[14] strain from epizootic diarrhea of adult cows by de novo sequencing using a next-generation sequencer. Vet Microbiol 171:66–73CrossRefPubMed Masuda T, Nagai M, Yamasato H, Tsuchiaka S, Okazaki S, Katayama Y, Oba M, Nishiura N, Sassa Y, Omatsu T, Furuya T, Koyama S, Shirai J, Taniguchi K, Fujii Y, Todaka R, Katayama K, Mizutani T (2014) Identification of novel bovine group A rotavirus G15P[14] strain from epizootic diarrhea of adult cows by de novo sequencing using a next-generation sequencer. Vet Microbiol 171:66–73CrossRefPubMed
28.
go back to reference Kelley LA, Mezulis S, Yates CM, Wass MN, Sternberg MJE (2015) The Phyre2 web portal for protein modeling, prediction and analysis. Nat Protocols 10:845–858CrossRefPubMed Kelley LA, Mezulis S, Yates CM, Wass MN, Sternberg MJE (2015) The Phyre2 web portal for protein modeling, prediction and analysis. Nat Protocols 10:845–858CrossRefPubMed
30.
go back to reference Mase M, Eto M, Tanimura N, Imai K, Tsukamoto K, Horimoto T, Kawaoka Y, Yamaguchi S (2005) Isolation of a genotypically unique H5N1 influenza virus from duck meat imported into Japan from China. Virology 339:101–109CrossRefPubMed Mase M, Eto M, Tanimura N, Imai K, Tsukamoto K, Horimoto T, Kawaoka Y, Yamaguchi S (2005) Isolation of a genotypically unique H5N1 influenza virus from duck meat imported into Japan from China. Virology 339:101–109CrossRefPubMed
31.
go back to reference Suzuki K, Okada H, Itoh T, Tada T, Tsukamoto K (2010) Phenotypes influencing the transmissibility of highly pathogenic avian influenza viruses in chickens. J Gen Virol 91:2302–2306CrossRefPubMed Suzuki K, Okada H, Itoh T, Tada T, Tsukamoto K (2010) Phenotypes influencing the transmissibility of highly pathogenic avian influenza viruses in chickens. J Gen Virol 91:2302–2306CrossRefPubMed
32.
go back to reference Bui VN, Ogawa H, Ngo LH, Baatartsogt T, Abao LN, Tamaki S, Saito K, Watanabe Y, Runstadler J, Imai K (2013) H5N1 highly pathogenic avian influenza virus isolated from conjunctiva of a whooper swan with neurological signs. Arch Virol 158:451–455CrossRefPubMed Bui VN, Ogawa H, Ngo LH, Baatartsogt T, Abao LN, Tamaki S, Saito K, Watanabe Y, Runstadler J, Imai K (2013) H5N1 highly pathogenic avian influenza virus isolated from conjunctiva of a whooper swan with neurological signs. Arch Virol 158:451–455CrossRefPubMed
33.
go back to reference Okamatsu M, Tanaka T, Yamamoto N, Sakoda Y, Sasaki T, Tsuda Y, Isoda N, Kokumai N, Takada A, Umemura T, Kida H (2010) Antigenic, genetic, and pathogenic characterization of H5N1 highly pathogenic avian influenza viruses isolated from dead whooper swans (Cygnus cygnus) found in northern Japan in 2008. Virus Genes 41:351–357CrossRefPubMed Okamatsu M, Tanaka T, Yamamoto N, Sakoda Y, Sasaki T, Tsuda Y, Isoda N, Kokumai N, Takada A, Umemura T, Kida H (2010) Antigenic, genetic, and pathogenic characterization of H5N1 highly pathogenic avian influenza viruses isolated from dead whooper swans (Cygnus cygnus) found in northern Japan in 2008. Virus Genes 41:351–357CrossRefPubMed
34.
go back to reference Yamamoto N, Sakoda Y, Motoshima M, Yoshino F, Soda K, Okamatsu M, Kida H (2011) Characterization of a non-pathogenic H5N1 influenza virus isolated from a migratory duck flying from Siberia in Hokkaido, Japan, in October 2009. Virol J 8:65CrossRefPubMedPubMedCentral Yamamoto N, Sakoda Y, Motoshima M, Yoshino F, Soda K, Okamatsu M, Kida H (2011) Characterization of a non-pathogenic H5N1 influenza virus isolated from a migratory duck flying from Siberia in Hokkaido, Japan, in October 2009. Virol J 8:65CrossRefPubMedPubMedCentral
35.
go back to reference Okamatsu M, Saito T, Yamamoto Y, Mase M, Tsuduku S, Nakamura K, Tsukamoto K, Yamaguchi S (2007) Low pathogenicity H5N2 avian influenza outbreak in Japan during the 2005-2006. Vet Microbiol 124:35–46CrossRefPubMed Okamatsu M, Saito T, Yamamoto Y, Mase M, Tsuduku S, Nakamura K, Tsukamoto K, Yamaguchi S (2007) Low pathogenicity H5N2 avian influenza outbreak in Japan during the 2005-2006. Vet Microbiol 124:35–46CrossRefPubMed
36.
go back to reference Eto M, Mase M (2003) Isolation of the newcastle disease virus and the H9N2 influenza A virus from chicken imported from China. J Japan Vet Med Assoc 56:333–339CrossRef Eto M, Mase M (2003) Isolation of the newcastle disease virus and the H9N2 influenza A virus from chicken imported from China. J Japan Vet Med Assoc 56:333–339CrossRef
37.
go back to reference Rudneva IA, Kushch AA, Masalova OV, Timofeeva TA, Klimova RR, Shilov AA, Ignatieva AV, Krylov PS, Kaverin NV (2010) Antigenic epitopes in the hemagglutinin of Qinghai-type influenza H5N1 virus. Viral Immunol 23:181–187CrossRefPubMed Rudneva IA, Kushch AA, Masalova OV, Timofeeva TA, Klimova RR, Shilov AA, Ignatieva AV, Krylov PS, Kaverin NV (2010) Antigenic epitopes in the hemagglutinin of Qinghai-type influenza H5N1 virus. Viral Immunol 23:181–187CrossRefPubMed
38.
go back to reference Shore DA, Yang H, Balish AL, Shepard SS, Carney PJ, Chang JC, Davis CT, Donis RO, Villanueva JM, Klimov AI, Stevens J (2013) Structural and antigenic variation among diverse clade 2 H5N1 viruses. PLoS One 8:e75209CrossRefPubMedPubMedCentral Shore DA, Yang H, Balish AL, Shepard SS, Carney PJ, Chang JC, Davis CT, Donis RO, Villanueva JM, Klimov AI, Stevens J (2013) Structural and antigenic variation among diverse clade 2 H5N1 viruses. PLoS One 8:e75209CrossRefPubMedPubMedCentral
39.
go back to reference Yang H, Carney PJ, Mishin VP, Guo Z, Chang JC, Wentworth DE, Gubareva LV, Stevens J (2016) Molecular characterizations of surface proteins hemagglutinin and neuraminidase from recent H5Nx avian influenza viruses. J Virol 90:5770–5784CrossRefPubMedPubMedCentral Yang H, Carney PJ, Mishin VP, Guo Z, Chang JC, Wentworth DE, Gubareva LV, Stevens J (2016) Molecular characterizations of surface proteins hemagglutinin and neuraminidase from recent H5Nx avian influenza viruses. J Virol 90:5770–5784CrossRefPubMedPubMedCentral
40.
go back to reference Kaverin NV, Rudneva IA, Govorkova EA, Timofeeva TA, Shilov AA, Kochergin-Nikitsky KS, Krylov PS, Webster RG (2007) Epitope mapping of the hemagglutinin molecule of a highly pathogenic H5N1 influenza virus by using monoclonal antibodies. J Virol 81:12911–12917CrossRefPubMedPubMedCentral Kaverin NV, Rudneva IA, Govorkova EA, Timofeeva TA, Shilov AA, Kochergin-Nikitsky KS, Krylov PS, Webster RG (2007) Epitope mapping of the hemagglutinin molecule of a highly pathogenic H5N1 influenza virus by using monoclonal antibodies. J Virol 81:12911–12917CrossRefPubMedPubMedCentral
41.
go back to reference Masalova OV, Klimova RR, Chichev EV, Fediakina IT, Loginova SY, Borisevich SV, Bondarev VP, Deryabin PG, Lvov DK, Kushch AA (2011) Development of monoclonal antibodies to highly pathogenic avian influenza H5N1 virus and their application to diagnostics, prophylaxis, and therapy. Acta Virol 55:3–14CrossRefPubMed Masalova OV, Klimova RR, Chichev EV, Fediakina IT, Loginova SY, Borisevich SV, Bondarev VP, Deryabin PG, Lvov DK, Kushch AA (2011) Development of monoclonal antibodies to highly pathogenic avian influenza H5N1 virus and their application to diagnostics, prophylaxis, and therapy. Acta Virol 55:3–14CrossRefPubMed
42.
go back to reference Rudneva IA, Kushch AA, Masalova OV, Timofeeva TA, Klimova RR, Shilov AA, Ignatieva AV, Krylov PS, Kaverin NV (2010) Antigenic epitopes in the hemagglutinin of Qinghai-type influenza H5N1 virus. Viral Immunol 23:181–187CrossRefPubMed Rudneva IA, Kushch AA, Masalova OV, Timofeeva TA, Klimova RR, Shilov AA, Ignatieva AV, Krylov PS, Kaverin NV (2010) Antigenic epitopes in the hemagglutinin of Qinghai-type influenza H5N1 virus. Viral Immunol 23:181–187CrossRefPubMed
43.
go back to reference Zuo T, Sun J, Wang G, Jiang L, Zuo Y, Li D, Shi X, Liu X, Fan S, Ren H, Hu H, Sun L, Zhou B, Liang M, Zhou P, Wang X, Zhang L (2015) Comprehensive analysis of antibody recognition in convalescent humans from highly pathogenic avian influenza H5N1 infection. Nat Commun 6:8855CrossRefPubMedPubMedCentral Zuo T, Sun J, Wang G, Jiang L, Zuo Y, Li D, Shi X, Liu X, Fan S, Ren H, Hu H, Sun L, Zhou B, Liang M, Zhou P, Wang X, Zhang L (2015) Comprehensive analysis of antibody recognition in convalescent humans from highly pathogenic avian influenza H5N1 infection. Nat Commun 6:8855CrossRefPubMedPubMedCentral
44.
go back to reference He F, Soejoedono RD, Murtini S, Goutama M, Kwang J (2010) Complementary monoclonal antibody-based dot ELISA for universal detection of H5 avian influenza virus. BMC Microbiol 10:330CrossRefPubMedPubMedCentral He F, Soejoedono RD, Murtini S, Goutama M, Kwang J (2010) Complementary monoclonal antibody-based dot ELISA for universal detection of H5 avian influenza virus. BMC Microbiol 10:330CrossRefPubMedPubMedCentral
Metadata
Title
Characterization of cross-clade monoclonal antibodies against H5N1 highly pathogenic avian influenza virus and their application to the antigenic analysis of diverse H5 subtype viruses
Authors
Dulyatad Gronsang
Anh N. Bui
Dai Q. Trinh
Vuong N. Bui
Khong V. Nguyen
Minh X. Can
Tsutomu Omatsu
Tetsuya Mizutani
Makoto Nagai
Yukie Katayama
Rapeewan Thampaisarn
Haruko Ogawa
Kunitoshi Imai
Publication date
01-08-2017
Publisher
Springer Vienna
Published in
Archives of Virology / Issue 8/2017
Print ISSN: 0304-8608
Electronic ISSN: 1432-8798
DOI
https://doi.org/10.1007/s00705-017-3350-0

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