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Published in: Virology Journal 1/2020

Open Access 01-12-2020 | Dengue Virus | Research

Promising application of monoclonal antibody against chikungunya virus E1-antigen across genotypes in immunochromatographic rapid diagnostic tests

Authors: Keita Suzuki, Ralph Huits, Juthamas Phadungsombat, Aekkachai Tuekprakhon, Emi E. Nakayama, Riemsdijk van den Berg, Barbara Barbé, Lieselotte Cnops, Rummana Rahim, Abu Hasan, Hisahiko Iwamoto, Pornsawan Leaungwutiwong, Marjan van Esbroeck, Mizanur Rahman, Tatsuo Shioda

Published in: Virology Journal | Issue 1/2020

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Abstract

Background

Three different genotypes of chikungunya virus (CHIKV) have been classified: East/Central/South African (ECSA), West African (WA), and Asian. Previously, a rapid immunochromatographic (IC) test detecting CHIKV E1-antigen showed high sensitivity for certain ECSA-genotype viruses, but this test showed poor performance against the Asian-genotype virus that is spreading in the American continents. We found that the reactivity of one monoclonal antibody (MAb) used in the IC rapid diagnostic test (RDT) is affected by a single amino acid substitution in E1. Therefore, we developed new MAbs that exhibited specific recognition of all three genotypes of CHIKV.

Methods

Using a combination of the newly generated MAbs, we developed a novel version of the IC RDT with improved sensitivity to Asian-genotype CHIKV. To evaluate the sensitivity, specificity, and cross-reactivity of the new version of the IC RDT, we first used CHIKV isolates and E1-pseudotyped lentiviral vectors. We then used clinical specimens obtained in Aruba in 2015 and in Bangladesh in 2017 for further evaluation of RDT sensitivity and specificity. Another alphavirus, sindbis virus (SINV), was used to test RDT cross-reactivity.

Results

The new version of the RDT detected Asian-genotype CHIKV at titers as low as 10^4 plaque-forming units per mL, a concentration that was below the limit of detection of the old version. The new RDT had sensitivity to the ECSA genotype that was comparable with that of the old version, yielding 92% (92 out of 100) sensitivity (95% confidence interval 85.0–95.9) and 100% (100 out of 100) specificity against a panel of 100 CHIKV-positive and 100 CHIKV-negative patient sera obtained in the 2017 outbreak in Bangladesh.

Conclusions

Our newly developed CHIKV antigen-detecting RDT demonstrated high levels of sensitivity and lacked cross-reactivity against SINV. These results suggested that our new version of the CHIKV E1-antigen RDT is promising for use in areas in which the Asian and ECSA genotypes of CHIKV circulate. Further validation with large numbers of CHIKV-positive and -negative clinical samples is warranted. (323 words).
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Literature
1.
go back to reference Ross RW. The Newala epidemic. III. The virus: isolation, pathogenic properties and relationship to the epidemic. J Hyg (Lond). 1956;54:177–91.CrossRef Ross RW. The Newala epidemic. III. The virus: isolation, pathogenic properties and relationship to the epidemic. J Hyg (Lond). 1956;54:177–91.CrossRef
2.
go back to reference Lumsden WH. An epidemic of virus disease in Southern Province, Tanganyika territory, in 1952-53. II. General description and epidemiology. Trans R Soc Trop Med Hyg. 1955;49:33–57.CrossRef Lumsden WH. An epidemic of virus disease in Southern Province, Tanganyika territory, in 1952-53. II. General description and epidemiology. Trans R Soc Trop Med Hyg. 1955;49:33–57.CrossRef
3.
go back to reference Zeller H, Van Bortel W, Sudre B. Chikungunya: its history in Africa and Asia and its spread to new regions in 2013-2014. J Infect Dis. 2016;214:S436–s40.CrossRef Zeller H, Van Bortel W, Sudre B. Chikungunya: its history in Africa and Asia and its spread to new regions in 2013-2014. J Infect Dis. 2016;214:S436–s40.CrossRef
4.
go back to reference Powers AM, Brault AC, Tesh RB, Weaver SC. Re-emergence of Chikungunya and O'nyong-nyong viruses: evidence for distinct geographical lineages and distant evolutionary relationships. J Gen Virol. 2000;81:471–9.CrossRef Powers AM, Brault AC, Tesh RB, Weaver SC. Re-emergence of Chikungunya and O'nyong-nyong viruses: evidence for distinct geographical lineages and distant evolutionary relationships. J Gen Virol. 2000;81:471–9.CrossRef
5.
go back to reference Rougeron V, Sam IC, Caron M, Nkoghe D, Leroy E, Roques P. Chikungunya, a paradigm of neglected tropical disease that emerged to be a new health global risk. J Clin Virol. 2015;64:144–52.CrossRef Rougeron V, Sam IC, Caron M, Nkoghe D, Leroy E, Roques P. Chikungunya, a paradigm of neglected tropical disease that emerged to be a new health global risk. J Clin Virol. 2015;64:144–52.CrossRef
6.
go back to reference Schuffenecker I, Iteman I, Michault A, Murri S, Frangeul L, Vaney MC, Lavenir R, Pardigon N, Reynes JM, Pettinelli F, et al. Genome microevolution of chikungunya viruses causing the Indian Ocean outbreak. PLoS Med. 2006;3:e263.CrossRef Schuffenecker I, Iteman I, Michault A, Murri S, Frangeul L, Vaney MC, Lavenir R, Pardigon N, Reynes JM, Pettinelli F, et al. Genome microevolution of chikungunya viruses causing the Indian Ocean outbreak. PLoS Med. 2006;3:e263.CrossRef
7.
go back to reference Arankalle VA, Shrivastava S, Cherian S, Gunjikar RS, Walimbe AM, Jadhav SM, Sudeep AB, Mishra AC. Genetic divergence of Chikungunya viruses in India (1963-2006) with special reference to the 2005-2006 explosive epidemic. J Gen Virol. 2007;88:1967–76.CrossRef Arankalle VA, Shrivastava S, Cherian S, Gunjikar RS, Walimbe AM, Jadhav SM, Sudeep AB, Mishra AC. Genetic divergence of Chikungunya viruses in India (1963-2006) with special reference to the 2005-2006 explosive epidemic. J Gen Virol. 2007;88:1967–76.CrossRef
8.
go back to reference Mavalankar D, Shastri P, Raman P. Chikungunya epidemic in India: a major public-health disaster. Lancet Infect Dis. 2007;7:306–7.CrossRef Mavalankar D, Shastri P, Raman P. Chikungunya epidemic in India: a major public-health disaster. Lancet Infect Dis. 2007;7:306–7.CrossRef
9.
go back to reference Rianthavorn P, Prianantathavorn K, Wuttirattanakowit N, Theamboonlers A, Poovorawan Y. An outbreak of chikungunya in southern Thailand from 2008 to 2009 caused by African strains with A226V mutation. Int J Infect Dis. 2010;14(Suppl 3):e161–5.CrossRef Rianthavorn P, Prianantathavorn K, Wuttirattanakowit N, Theamboonlers A, Poovorawan Y. An outbreak of chikungunya in southern Thailand from 2008 to 2009 caused by African strains with A226V mutation. Int J Infect Dis. 2010;14(Suppl 3):e161–5.CrossRef
10.
go back to reference Duong V, Andries AC, Ngan C, Sok T, Richner B, Asgari-Jirhandeh N, Bjorge S, Huy R, Ly S, Laurent D, et al. Reemergence of Chikungunya virus in Cambodia. Emerg Infect Dis. 2012;18:2066–9.CrossRef Duong V, Andries AC, Ngan C, Sok T, Richner B, Asgari-Jirhandeh N, Bjorge S, Huy R, Ly S, Laurent D, et al. Reemergence of Chikungunya virus in Cambodia. Emerg Infect Dis. 2012;18:2066–9.CrossRef
11.
go back to reference Sam IC, Loong SK, Michael JC, Chua CL, Wan Sulaiman WY, Vythilingam I, Chan SY, Chiam CW, Yeong YS, AbuBakar S, Chan YF. Genotypic and phenotypic characterization of Chikungunya virus of different genotypes from Malaysia. PLoS One. 2012;7:e50476.CrossRef Sam IC, Loong SK, Michael JC, Chua CL, Wan Sulaiman WY, Vythilingam I, Chan SY, Chiam CW, Yeong YS, AbuBakar S, Chan YF. Genotypic and phenotypic characterization of Chikungunya virus of different genotypes from Malaysia. PLoS One. 2012;7:e50476.CrossRef
12.
go back to reference Rezza G, Nicoletti L, Angelini R, Romi R, Finarelli AC, Panning M, Cordioli P, Fortuna C, Boros S, Magurano F, et al. Infection with chikungunya virus in Italy: an outbreak in a temperate region. Lancet. 2007;370:1840–6.CrossRef Rezza G, Nicoletti L, Angelini R, Romi R, Finarelli AC, Panning M, Cordioli P, Fortuna C, Boros S, Magurano F, et al. Infection with chikungunya virus in Italy: an outbreak in a temperate region. Lancet. 2007;370:1840–6.CrossRef
13.
go back to reference Grandadam M, Caro V, Plumet S, Thiberge JM, Souares Y, Failloux AB, Tolou HJ, Budelot M, Cosserat D, Leparc-Goffart I, Despres P. Chikungunya virus, southeastern France. Emerg Infect Dis. 2011;17:910–3.CrossRef Grandadam M, Caro V, Plumet S, Thiberge JM, Souares Y, Failloux AB, Tolou HJ, Budelot M, Cosserat D, Leparc-Goffart I, Despres P. Chikungunya virus, southeastern France. Emerg Infect Dis. 2011;17:910–3.CrossRef
14.
go back to reference Nunes MR, Faria NR, de Vasconcelos JM, Golding N, Kraemer MU, de Oliveira LF, Azevedo Rdo S, da Silva DE, da Silva EV, da Silva SP, et al. Emergence and potential for spread of Chikungunya virus in Brazil. BMC Med. 2015;13:102.CrossRef Nunes MR, Faria NR, de Vasconcelos JM, Golding N, Kraemer MU, de Oliveira LF, Azevedo Rdo S, da Silva DE, da Silva EV, da Silva SP, et al. Emergence and potential for spread of Chikungunya virus in Brazil. BMC Med. 2015;13:102.CrossRef
15.
go back to reference Charlys da Costa A, Theze J, SCV K, Sanz-Duro RL, MRL F, LCC M, IMO B, LEC S, MAL N, Moura AA, et al. Spread of Chikungunya Virus East/Central/South African Genotype in Northeast Brazil. Emerg Infect Dis. 2017;23:1742–4.CrossRef Charlys da Costa A, Theze J, SCV K, Sanz-Duro RL, MRL F, LCC M, IMO B, LEC S, MAL N, Moura AA, et al. Spread of Chikungunya Virus East/Central/South African Genotype in Northeast Brazil. Emerg Infect Dis. 2017;23:1742–4.CrossRef
16.
go back to reference Leparc-Goffart I, Nougairede A, Cassadou S, Prat C, de Lamballerie X. Chikungunya in the Americas. Lancet. 2014;383:514.CrossRef Leparc-Goffart I, Nougairede A, Cassadou S, Prat C, de Lamballerie X. Chikungunya in the Americas. Lancet. 2014;383:514.CrossRef
17.
go back to reference Sahadeo NSD, Allicock OM, De Salazar PM, Auguste AJ, Widen S, Olowokure B, Gutierrez C, Valadere AM, Polson-Edwards K, Weaver SC, Carrington CVF. Understanding the evolution and spread of chikungunya virus in the Americas using complete genome sequences. Virus Evol. 2017;3:vex010.CrossRef Sahadeo NSD, Allicock OM, De Salazar PM, Auguste AJ, Widen S, Olowokure B, Gutierrez C, Valadere AM, Polson-Edwards K, Weaver SC, Carrington CVF. Understanding the evolution and spread of chikungunya virus in the Americas using complete genome sequences. Virus Evol. 2017;3:vex010.CrossRef
18.
go back to reference Lanciotti RS, Valadere AM. Transcontinental movement of Asian genotype chikungunya virus. Emerg Infect Dis. 2014;20:1400–2.CrossRef Lanciotti RS, Valadere AM. Transcontinental movement of Asian genotype chikungunya virus. Emerg Infect Dis. 2014;20:1400–2.CrossRef
19.
go back to reference Khan K, Bogoch I, Brownstein JS, Miniota J, Nicolucci A, Hu W, Nsoesie EO, Cetron M, Creatore MI, German M, Wilder-Smith A. Assessing the origin of and potential for international spread of chikungunya virus from the Caribbean. PLoS Curr. 2014;6. Khan K, Bogoch I, Brownstein JS, Miniota J, Nicolucci A, Hu W, Nsoesie EO, Cetron M, Creatore MI, German M, Wilder-Smith A. Assessing the origin of and potential for international spread of chikungunya virus from the Caribbean. PLoS Curr. 2014;6.
20.
go back to reference Nsoesie EO, Kraemer MU, Golding N, Pigott DM, Brady OJ, Moyes CL, Johansson MA, Gething PW, Velayudhan R, Khan K, et al. Global distribution and environmental suitability for chikungunya virus, 1952 to 2015. Euro Surveill. 2016;21. Nsoesie EO, Kraemer MU, Golding N, Pigott DM, Brady OJ, Moyes CL, Johansson MA, Gething PW, Velayudhan R, Khan K, et al. Global distribution and environmental suitability for chikungunya virus, 1952 to 2015. Euro Surveill. 2016;21.
21.
go back to reference Thiberville SD, Moyen N, Dupuis-Maguiraga L, Nougairede A, Gould EA, Roques P, de Lamballerie X. Chikungunya fever: epidemiology, clinical syndrome, pathogenesis and therapy. Antivir Res. 2013;99:345–70.CrossRef Thiberville SD, Moyen N, Dupuis-Maguiraga L, Nougairede A, Gould EA, Roques P, de Lamballerie X. Chikungunya fever: epidemiology, clinical syndrome, pathogenesis and therapy. Antivir Res. 2013;99:345–70.CrossRef
22.
go back to reference Schwartz O, Albert ML. Biology and pathogenesis of chikungunya virus. Nat Rev Microbiol. 2010;8:491–500.CrossRef Schwartz O, Albert ML. Biology and pathogenesis of chikungunya virus. Nat Rev Microbiol. 2010;8:491–500.CrossRef
23.
24.
go back to reference Waggoner JJ, Ballesteros G, Gresh L, Mohamed-Hadley A, Tellez Y, Sahoo MK, Abeynayake J, Balmaseda A, Harris E, Pinsky BA. Clinical evaluation of a single-reaction real-time RT-PCR for pan-dengue and chikungunya virus detection. J Clin Virol. 2016;78:57–61.CrossRef Waggoner JJ, Ballesteros G, Gresh L, Mohamed-Hadley A, Tellez Y, Sahoo MK, Abeynayake J, Balmaseda A, Harris E, Pinsky BA. Clinical evaluation of a single-reaction real-time RT-PCR for pan-dengue and chikungunya virus detection. J Clin Virol. 2016;78:57–61.CrossRef
25.
go back to reference Okabayashi T, Sasaki T, Masrinoul P, Chantawat N, Yoksan S, Nitatpattana N, Chusri S, Morales Vargas RE, Grandadam M, Brey PT, et al. Detection of chikungunya virus antigen by a novel rapid immunochromatographic test. J Clin Microbiol. 2015;53:382–8.CrossRef Okabayashi T, Sasaki T, Masrinoul P, Chantawat N, Yoksan S, Nitatpattana N, Chusri S, Morales Vargas RE, Grandadam M, Brey PT, et al. Detection of chikungunya virus antigen by a novel rapid immunochromatographic test. J Clin Microbiol. 2015;53:382–8.CrossRef
26.
go back to reference Jain J, Okabayashi T, Kaur N, Nakayama E, Shioda T, Gaind R, Kurosu T, Sunil S. Evaluation of an immunochromatography rapid diagnosis kit for detection of chikungunya virus antigen in India, a dengue-endemic country. Virol J. 2018;15:84.CrossRef Jain J, Okabayashi T, Kaur N, Nakayama E, Shioda T, Gaind R, Kurosu T, Sunil S. Evaluation of an immunochromatography rapid diagnosis kit for detection of chikungunya virus antigen in India, a dengue-endemic country. Virol J. 2018;15:84.CrossRef
27.
go back to reference Huits R, Okabayashi T, Cnops L, Barbe B, Van Den Berg R, Bartholomeeusen K, Arien KK, Jacobs J, Bottieau E, Nakayama EE, et al. Diagnostic accuracy of a rapid E1-antigen test for chikungunya virus infection in a reference setting. Clin Microbiol Infect. 2018;24:78–81.CrossRef Huits R, Okabayashi T, Cnops L, Barbe B, Van Den Berg R, Bartholomeeusen K, Arien KK, Jacobs J, Bottieau E, Nakayama EE, et al. Diagnostic accuracy of a rapid E1-antigen test for chikungunya virus infection in a reference setting. Clin Microbiol Infect. 2018;24:78–81.CrossRef
28.
go back to reference Tuekprakhon A, Nakayama EE, Bartholomeeusen K, Puiprom O, Sasaki T, Huits R, Luplertlop N, Kosoltanapiwat N, Maneekan P, Arien KK, et al. Variation at position 350 in the Chikungunya virus 6K-E1 protein determines the sensitivity of detection in a rapid E1-antigen test. Sci Rep. 2018;8:1094.CrossRef Tuekprakhon A, Nakayama EE, Bartholomeeusen K, Puiprom O, Sasaki T, Huits R, Luplertlop N, Kosoltanapiwat N, Maneekan P, Arien KK, et al. Variation at position 350 in the Chikungunya virus 6K-E1 protein determines the sensitivity of detection in a rapid E1-antigen test. Sci Rep. 2018;8:1094.CrossRef
29.
go back to reference Tuekprakhon A, Puiprom O, Sasaki T, Michiels J, Bartholomeeusen K, Nakayama EE, Meno MK, Phadungsombat J, Huits R, Arien KK, et al. Broad-spectrum monoclonal antibodies against chikungunya virus structural proteins: promising candidates for antibody-based rapid diagnostic test development. PLoS One. 2018;13:e0208851.CrossRef Tuekprakhon A, Puiprom O, Sasaki T, Michiels J, Bartholomeeusen K, Nakayama EE, Meno MK, Phadungsombat J, Huits R, Arien KK, et al. Broad-spectrum monoclonal antibodies against chikungunya virus structural proteins: promising candidates for antibody-based rapid diagnostic test development. PLoS One. 2018;13:e0208851.CrossRef
30.
go back to reference Sasayama M, Benjathummarak S, Kawashita N, Rukmanee P, Sangmukdanun S, Masrinoul P, Pitaksajjakul P, Puiprom O, Wuthisen P, Kurosu T, et al. Chikungunya virus was isolated in Thailand, 2010. Virus Genes. 2014;49:485–9.CrossRef Sasayama M, Benjathummarak S, Kawashita N, Rukmanee P, Sangmukdanun S, Masrinoul P, Pitaksajjakul P, Puiprom O, Wuthisen P, Kurosu T, et al. Chikungunya virus was isolated in Thailand, 2010. Virus Genes. 2014;49:485–9.CrossRef
31.
go back to reference Puiprom O, Morales Vargas RE, Potiwat R, Chaichana P, Ikuta K, Ramasoota P, Okabayashi T. Characterization of chikungunya virus infection of a human keratinocyte cell line: role of mosquito salivary gland protein in suppressing the host immune response. Infect Genet Evol. 2013;17:210–5.CrossRef Puiprom O, Morales Vargas RE, Potiwat R, Chaichana P, Ikuta K, Ramasoota P, Okabayashi T. Characterization of chikungunya virus infection of a human keratinocyte cell line: role of mosquito salivary gland protein in suppressing the host immune response. Infect Genet Evol. 2013;17:210–5.CrossRef
32.
go back to reference Huits R, De Kort J, Van Den Berg R, Chong L, Tsoumanis A, Eggermont K, Bartholomeeusen K, Arien KK, Jacobs J, Van Esbroeck M, et al. Chikungunya virus infection in Aruba: diagnosis, clinical features and predictors of post-chikungunya chronic polyarthralgia. PLoS One. 2018;13:e0196630.CrossRef Huits R, De Kort J, Van Den Berg R, Chong L, Tsoumanis A, Eggermont K, Bartholomeeusen K, Arien KK, Jacobs J, Van Esbroeck M, et al. Chikungunya virus infection in Aruba: diagnosis, clinical features and predictors of post-chikungunya chronic polyarthralgia. PLoS One. 2018;13:e0196630.CrossRef
33.
go back to reference Phadungsombat J, Tuekprakhon A, Cnops L, Michiels J, Van Den Berg R, Nakayama EE, Shioda T, Arien KK, Huits R. Two distinct lineages of chikungunya virus cocirculated in Aruba during the 2014-2015 epidemic. Infect Genet Evol. 2019;104129. Phadungsombat J, Tuekprakhon A, Cnops L, Michiels J, Van Den Berg R, Nakayama EE, Shioda T, Arien KK, Huits R. Two distinct lineages of chikungunya virus cocirculated in Aruba during the 2014-2015 epidemic. Infect Genet Evol. 2019;104129.
34.
go back to reference Baer A, Kehn-Hall K. Viral Concentration Determination Through Plaque Assays: Using Traditional and Novel Overlay Systems. Jove J Vis Exp. 2014:e52065. Baer A, Kehn-Hall K. Viral Concentration Determination Through Plaque Assays: Using Traditional and Novel Overlay Systems. Jove J Vis Exp. 2014:e52065.
35.
go back to reference Kishishita N, Takeda N, Anuegoonpipat A, Anantapreecha S. Development of a Pseudotyped-Lentiviral-vector-based neutralization assay for Chikungunya virus infection. J Clin Microbiol. 2013;51:1389–95.CrossRef Kishishita N, Takeda N, Anuegoonpipat A, Anantapreecha S. Development of a Pseudotyped-Lentiviral-vector-based neutralization assay for Chikungunya virus infection. J Clin Microbiol. 2013;51:1389–95.CrossRef
36.
go back to reference Rahman M, Yamagishi J, Rahim R, Hasan A, Sobhan A. East/central/south African genotype in a Chikungunya outbreak, Dhaka, Bangladesh, 2017. Emerg Infect Dis. 2019;25:370–2.CrossRef Rahman M, Yamagishi J, Rahim R, Hasan A, Sobhan A. East/central/south African genotype in a Chikungunya outbreak, Dhaka, Bangladesh, 2017. Emerg Infect Dis. 2019;25:370–2.CrossRef
37.
go back to reference Weiss B, Levis R, Schlesinger S. Evolution of virus and defective-interfering RNAs in BHK cells persistently infected with Sindbis virus. J Virol. 1983;48:676–84.CrossRef Weiss B, Levis R, Schlesinger S. Evolution of virus and defective-interfering RNAs in BHK cells persistently infected with Sindbis virus. J Virol. 1983;48:676–84.CrossRef
38.
go back to reference Grivard P, Le Roux K, Laurent P, Fianu A, Perrau J, Gigan J, Hoarau G, Grondin N, Staikowsky F, Favier F, Michault A. Molecular and serological diagnosis of Chikungunya virus infection. Pathol Biol (Paris). 2007;55:490–4.CrossRef Grivard P, Le Roux K, Laurent P, Fianu A, Perrau J, Gigan J, Hoarau G, Grondin N, Staikowsky F, Favier F, Michault A. Molecular and serological diagnosis of Chikungunya virus infection. Pathol Biol (Paris). 2007;55:490–4.CrossRef
39.
go back to reference Malvy D, Ezzedine K, Mamani-Matsuda M, Autran B, Tolou H, Receveur MC, Pistone T, Rambert J, Moynet D, Mossalayi D. Destructive arthritis in a patient with chikungunya virus infection with persistent specific IgM antibodies. BMC Infect Dis. 2009;9:200.CrossRef Malvy D, Ezzedine K, Mamani-Matsuda M, Autran B, Tolou H, Receveur MC, Pistone T, Rambert J, Moynet D, Mossalayi D. Destructive arthritis in a patient with chikungunya virus infection with persistent specific IgM antibodies. BMC Infect Dis. 2009;9:200.CrossRef
40.
go back to reference Intayot P, Phumee A, Boonserm R, Sor-Suwan S, Buathong R, Wacharapluesadee S, Brownell N, Poovorawan Y, Siriyasatien P. Genetic Characterization of Chikungunya Virus in Field-Caught Aedes aegypti Mosquitoes Collected during the Recent Outbreaks in 2019, Thailand. Pathogens. 2019:8. Intayot P, Phumee A, Boonserm R, Sor-Suwan S, Buathong R, Wacharapluesadee S, Brownell N, Poovorawan Y, Siriyasatien P. Genetic Characterization of Chikungunya Virus in Field-Caught Aedes aegypti Mosquitoes Collected during the Recent Outbreaks in 2019, Thailand. Pathogens. 2019:8.
Metadata
Title
Promising application of monoclonal antibody against chikungunya virus E1-antigen across genotypes in immunochromatographic rapid diagnostic tests
Authors
Keita Suzuki
Ralph Huits
Juthamas Phadungsombat
Aekkachai Tuekprakhon
Emi E. Nakayama
Riemsdijk van den Berg
Barbara Barbé
Lieselotte Cnops
Rummana Rahim
Abu Hasan
Hisahiko Iwamoto
Pornsawan Leaungwutiwong
Marjan van Esbroeck
Mizanur Rahman
Tatsuo Shioda
Publication date
01-12-2020
Publisher
BioMed Central
Keyword
Dengue Virus
Published in
Virology Journal / Issue 1/2020
Electronic ISSN: 1743-422X
DOI
https://doi.org/10.1186/s12985-020-01364-4

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