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Single Domain Antibody Multimers Confer Protection against Rabies Infection

Post-exposure prophylactic (PEP) neutralizing antibodies against Rabies are the most effective way to prevent infection-related fatality. The outer envelope glycoprotein of the Rabies virus (RABV) is the most significant surface antigen for generating virus-neutralizing antibodies. The small size an...

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Autores principales: Boruah, Bhargavi M., Liu, Dawei, Ye, Duan, Gu, Tie-jun, Jiang, Chun-lai, Qu, Mingsheng, Wright, Edward, Wang, Wei, He, Wen, Liu, Changzhen, Gao, Bin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3748109/
https://www.ncbi.nlm.nih.gov/pubmed/23977032
http://dx.doi.org/10.1371/journal.pone.0071383
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author Boruah, Bhargavi M.
Liu, Dawei
Ye, Duan
Gu, Tie-jun
Jiang, Chun-lai
Qu, Mingsheng
Wright, Edward
Wang, Wei
He, Wen
Liu, Changzhen
Gao, Bin
author_facet Boruah, Bhargavi M.
Liu, Dawei
Ye, Duan
Gu, Tie-jun
Jiang, Chun-lai
Qu, Mingsheng
Wright, Edward
Wang, Wei
He, Wen
Liu, Changzhen
Gao, Bin
author_sort Boruah, Bhargavi M.
collection PubMed
description Post-exposure prophylactic (PEP) neutralizing antibodies against Rabies are the most effective way to prevent infection-related fatality. The outer envelope glycoprotein of the Rabies virus (RABV) is the most significant surface antigen for generating virus-neutralizing antibodies. The small size and uncompromised functional specificity of single domain antibodies (sdAbs) can be exploited in the fields of experimental therapeutic applications for infectious diseases through formatting flexibilities to increase their avidity towards target antigens. In this study, we used phage display technique to select and identify sdAbs that were specific for the RABV glycoprotein from a naïve llama-derived antibody library. To increase their neutralizing potencies, the sdAbs were fused with a coiled-coil peptide derived from the human cartilage oligomeric matrix protein (COMP48) to form homogenous pentavalent multimers, known as combodies. Compared to monovalent sdAbs, the combodies, namely 26424 and 26434, exhibited high avidity and were able to neutralize 85-fold higher input of RABV (CVS-11 strain) pseudotypes in vitro, as a result of multimerization, while retaining their specificities for target antigen. 26424 and 26434 were capable of neutralizing CVS-11 pseudotypes in vitro by 90–95% as compared to human rabies immunoglobulin (HRIG), currently used for PEP in Rabies. The multimeric sdAbs were also demonstrated to be partially protective for mice that were infected with lethal doses of rabies virus in vivo. The results demonstrate that the combodies could be valuable tools in understanding viral mechanisms, diagnosis and possible anti-viral candidate for RABV infection.
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spelling pubmed-37481092013-08-23 Single Domain Antibody Multimers Confer Protection against Rabies Infection Boruah, Bhargavi M. Liu, Dawei Ye, Duan Gu, Tie-jun Jiang, Chun-lai Qu, Mingsheng Wright, Edward Wang, Wei He, Wen Liu, Changzhen Gao, Bin PLoS One Research Article Post-exposure prophylactic (PEP) neutralizing antibodies against Rabies are the most effective way to prevent infection-related fatality. The outer envelope glycoprotein of the Rabies virus (RABV) is the most significant surface antigen for generating virus-neutralizing antibodies. The small size and uncompromised functional specificity of single domain antibodies (sdAbs) can be exploited in the fields of experimental therapeutic applications for infectious diseases through formatting flexibilities to increase their avidity towards target antigens. In this study, we used phage display technique to select and identify sdAbs that were specific for the RABV glycoprotein from a naïve llama-derived antibody library. To increase their neutralizing potencies, the sdAbs were fused with a coiled-coil peptide derived from the human cartilage oligomeric matrix protein (COMP48) to form homogenous pentavalent multimers, known as combodies. Compared to monovalent sdAbs, the combodies, namely 26424 and 26434, exhibited high avidity and were able to neutralize 85-fold higher input of RABV (CVS-11 strain) pseudotypes in vitro, as a result of multimerization, while retaining their specificities for target antigen. 26424 and 26434 were capable of neutralizing CVS-11 pseudotypes in vitro by 90–95% as compared to human rabies immunoglobulin (HRIG), currently used for PEP in Rabies. The multimeric sdAbs were also demonstrated to be partially protective for mice that were infected with lethal doses of rabies virus in vivo. The results demonstrate that the combodies could be valuable tools in understanding viral mechanisms, diagnosis and possible anti-viral candidate for RABV infection. Public Library of Science 2013-08-20 /pmc/articles/PMC3748109/ /pubmed/23977032 http://dx.doi.org/10.1371/journal.pone.0071383 Text en © 2013 Boruah et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Boruah, Bhargavi M.
Liu, Dawei
Ye, Duan
Gu, Tie-jun
Jiang, Chun-lai
Qu, Mingsheng
Wright, Edward
Wang, Wei
He, Wen
Liu, Changzhen
Gao, Bin
Single Domain Antibody Multimers Confer Protection against Rabies Infection
title Single Domain Antibody Multimers Confer Protection against Rabies Infection
title_full Single Domain Antibody Multimers Confer Protection against Rabies Infection
title_fullStr Single Domain Antibody Multimers Confer Protection against Rabies Infection
title_full_unstemmed Single Domain Antibody Multimers Confer Protection against Rabies Infection
title_short Single Domain Antibody Multimers Confer Protection against Rabies Infection
title_sort single domain antibody multimers confer protection against rabies infection
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3748109/
https://www.ncbi.nlm.nih.gov/pubmed/23977032
http://dx.doi.org/10.1371/journal.pone.0071383
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