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In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody

Small recombinant antibody fragments (e.g. scFvs and V(H)Hs), which are highly tissue permeable, are being investigated for antivenom production as conventional antivenoms consisting of IgG or F(ab’)(2) antibody fragments do not effectively neutralize venom toxins located in deep tissues. However, a...

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Autores principales: Richard, Gabrielle, Meyers, Ashley J., McLean, Michael D., Arbabi-Ghahroudi, Mehdi, MacKenzie, Roger, Hall, J. Christopher
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3718736/
https://www.ncbi.nlm.nih.gov/pubmed/23894495
http://dx.doi.org/10.1371/journal.pone.0069495
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author Richard, Gabrielle
Meyers, Ashley J.
McLean, Michael D.
Arbabi-Ghahroudi, Mehdi
MacKenzie, Roger
Hall, J. Christopher
author_facet Richard, Gabrielle
Meyers, Ashley J.
McLean, Michael D.
Arbabi-Ghahroudi, Mehdi
MacKenzie, Roger
Hall, J. Christopher
author_sort Richard, Gabrielle
collection PubMed
description Small recombinant antibody fragments (e.g. scFvs and V(H)Hs), which are highly tissue permeable, are being investigated for antivenom production as conventional antivenoms consisting of IgG or F(ab’)(2) antibody fragments do not effectively neutralize venom toxins located in deep tissues. However, antivenoms composed entirely of small antibody fragments may have poor therapeutic efficacy due to their short serum half-lives. To increase serum persistence and maintain tissue penetration, we prepared low and high molecular mass antivenom antibodies. Four llama V(H)Hs were isolated from an immune V(H)H-displayed phage library and were shown to have high affinity, in the low nM range, for α-cobratoxin (α–Cbtx), the most lethal component of Naja kaouthia venom. Subsequently, our highest affinity V(H)H (C2) was fused to a human Fc fragment to create a V(H)H2-Fc antibody that would offer prolonged serum persistence. After in planta (Nicotiana benthamiana) expression and purification, we show that our V(H)H2-Fc antibody retained high affinity binding to α–Cbtx. Mouse α–Cbtx challenge studies showed that our highest affinity V(H)Hs (C2 and C20) and the V(H)H2-Fc antibody effectively neutralized lethality induced by α–Cbtx at an antibody:toxin molar ratio as low as ca. 0.75×:1. Further research towards the development of an antivenom therapeutic involving these anti-α-Cbtx V(H)Hs and V(H)H2-Fc antibody molecules should involve testing them as a combination, to determine whether they maintain tissue penetration capability and low immunogenicity, and whether they exhibit improved serum persistence and therapeutic efficacy.
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spelling pubmed-37187362013-07-26 In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody Richard, Gabrielle Meyers, Ashley J. McLean, Michael D. Arbabi-Ghahroudi, Mehdi MacKenzie, Roger Hall, J. Christopher PLoS One Research Article Small recombinant antibody fragments (e.g. scFvs and V(H)Hs), which are highly tissue permeable, are being investigated for antivenom production as conventional antivenoms consisting of IgG or F(ab’)(2) antibody fragments do not effectively neutralize venom toxins located in deep tissues. However, antivenoms composed entirely of small antibody fragments may have poor therapeutic efficacy due to their short serum half-lives. To increase serum persistence and maintain tissue penetration, we prepared low and high molecular mass antivenom antibodies. Four llama V(H)Hs were isolated from an immune V(H)H-displayed phage library and were shown to have high affinity, in the low nM range, for α-cobratoxin (α–Cbtx), the most lethal component of Naja kaouthia venom. Subsequently, our highest affinity V(H)H (C2) was fused to a human Fc fragment to create a V(H)H2-Fc antibody that would offer prolonged serum persistence. After in planta (Nicotiana benthamiana) expression and purification, we show that our V(H)H2-Fc antibody retained high affinity binding to α–Cbtx. Mouse α–Cbtx challenge studies showed that our highest affinity V(H)Hs (C2 and C20) and the V(H)H2-Fc antibody effectively neutralized lethality induced by α–Cbtx at an antibody:toxin molar ratio as low as ca. 0.75×:1. Further research towards the development of an antivenom therapeutic involving these anti-α-Cbtx V(H)Hs and V(H)H2-Fc antibody molecules should involve testing them as a combination, to determine whether they maintain tissue penetration capability and low immunogenicity, and whether they exhibit improved serum persistence and therapeutic efficacy. Public Library of Science 2013-07-22 /pmc/articles/PMC3718736/ /pubmed/23894495 http://dx.doi.org/10.1371/journal.pone.0069495 Text en © 2013 Richard 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
Richard, Gabrielle
Meyers, Ashley J.
McLean, Michael D.
Arbabi-Ghahroudi, Mehdi
MacKenzie, Roger
Hall, J. Christopher
In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody
title In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody
title_full In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody
title_fullStr In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody
title_full_unstemmed In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody
title_short In Vivo Neutralization of α-Cobratoxin with High-Affinity Llama Single-Domain Antibodies (V(H)Hs) and a V(H)H-Fc Antibody
title_sort in vivo neutralization of α-cobratoxin with high-affinity llama single-domain antibodies (v(h)hs) and a v(h)h-fc antibody
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3718736/
https://www.ncbi.nlm.nih.gov/pubmed/23894495
http://dx.doi.org/10.1371/journal.pone.0069495
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