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Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test

The detection and identification of botulinum neurotoxins (BoNT) is complex due to the existence of seven serotypes, derived mosaic toxins and more than 40 subtypes. Expert laboratories currently use different technical approaches to detect, identify and quantify BoNT, but due to the lack of (certif...

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Autores principales: Weisemann, Jasmin, Krez, Nadja, Fiebig, Uwe, Worbs, Sylvia, Skiba, Martin, Endermann, Tanja, Dorner, Martin B., Bergström, Tomas, Muñoz, Amalia, Zegers, Ingrid, Müller, Christian, Jenkinson, Stephen P., Avondet, Marc-Andre, Delbrassinne, Laurence, Denayer, Sarah, Zeleny, Reinhard, Schimmel, Heinz, Åstot, Crister, Dorner, Brigitte G., Rummel, Andreas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4690111/
https://www.ncbi.nlm.nih.gov/pubmed/26703728
http://dx.doi.org/10.3390/toxins7124861
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author Weisemann, Jasmin
Krez, Nadja
Fiebig, Uwe
Worbs, Sylvia
Skiba, Martin
Endermann, Tanja
Dorner, Martin B.
Bergström, Tomas
Muñoz, Amalia
Zegers, Ingrid
Müller, Christian
Jenkinson, Stephen P.
Avondet, Marc-Andre
Delbrassinne, Laurence
Denayer, Sarah
Zeleny, Reinhard
Schimmel, Heinz
Åstot, Crister
Dorner, Brigitte G.
Rummel, Andreas
author_facet Weisemann, Jasmin
Krez, Nadja
Fiebig, Uwe
Worbs, Sylvia
Skiba, Martin
Endermann, Tanja
Dorner, Martin B.
Bergström, Tomas
Muñoz, Amalia
Zegers, Ingrid
Müller, Christian
Jenkinson, Stephen P.
Avondet, Marc-Andre
Delbrassinne, Laurence
Denayer, Sarah
Zeleny, Reinhard
Schimmel, Heinz
Åstot, Crister
Dorner, Brigitte G.
Rummel, Andreas
author_sort Weisemann, Jasmin
collection PubMed
description The detection and identification of botulinum neurotoxins (BoNT) is complex due to the existence of seven serotypes, derived mosaic toxins and more than 40 subtypes. Expert laboratories currently use different technical approaches to detect, identify and quantify BoNT, but due to the lack of (certified) reference materials, analytical results can hardly be compared. In this study, the six BoNT/A1–F1 prototypes were successfully produced by recombinant techniques, facilitating handling, as well as improving purity, yield, reproducibility and biosafety. All six BoNTs were quantitatively nicked into active di-chain toxins linked by a disulfide bridge. The materials were thoroughly characterized with respect to purity, identity, protein concentration, catalytic and biological activities. For BoNT/A(1), B(1) and E(1), serotypes pathogenic to humans, the catalytic activity and the precise protein concentration were determined by Endopep-mass spectrometry and validated amino acid analysis, respectively. In addition, BoNT/A(1), B(1), E(1) and F(1) were successfully detected by immunological assays, unambiguously identified by mass spectrometric-based methods, and their specific activities were assigned by the mouse LD(50) bioassay. The potencies of all six BoNT/A1–F1 were quantified by the ex vivo mouse phrenic nerve hemidiaphragm assay, allowing a direct comparison. In conclusion, highly pure recombinant BoNT reference materials were produced, thoroughly characterized and employed as spiking material in a worldwide BoNT proficiency test organized by the EQuATox consortium.
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spelling pubmed-46901112015-12-30 Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test Weisemann, Jasmin Krez, Nadja Fiebig, Uwe Worbs, Sylvia Skiba, Martin Endermann, Tanja Dorner, Martin B. Bergström, Tomas Muñoz, Amalia Zegers, Ingrid Müller, Christian Jenkinson, Stephen P. Avondet, Marc-Andre Delbrassinne, Laurence Denayer, Sarah Zeleny, Reinhard Schimmel, Heinz Åstot, Crister Dorner, Brigitte G. Rummel, Andreas Toxins (Basel) Article The detection and identification of botulinum neurotoxins (BoNT) is complex due to the existence of seven serotypes, derived mosaic toxins and more than 40 subtypes. Expert laboratories currently use different technical approaches to detect, identify and quantify BoNT, but due to the lack of (certified) reference materials, analytical results can hardly be compared. In this study, the six BoNT/A1–F1 prototypes were successfully produced by recombinant techniques, facilitating handling, as well as improving purity, yield, reproducibility and biosafety. All six BoNTs were quantitatively nicked into active di-chain toxins linked by a disulfide bridge. The materials were thoroughly characterized with respect to purity, identity, protein concentration, catalytic and biological activities. For BoNT/A(1), B(1) and E(1), serotypes pathogenic to humans, the catalytic activity and the precise protein concentration were determined by Endopep-mass spectrometry and validated amino acid analysis, respectively. In addition, BoNT/A(1), B(1), E(1) and F(1) were successfully detected by immunological assays, unambiguously identified by mass spectrometric-based methods, and their specific activities were assigned by the mouse LD(50) bioassay. The potencies of all six BoNT/A1–F1 were quantified by the ex vivo mouse phrenic nerve hemidiaphragm assay, allowing a direct comparison. In conclusion, highly pure recombinant BoNT reference materials were produced, thoroughly characterized and employed as spiking material in a worldwide BoNT proficiency test organized by the EQuATox consortium. MDPI 2015-11-26 /pmc/articles/PMC4690111/ /pubmed/26703728 http://dx.doi.org/10.3390/toxins7124861 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Weisemann, Jasmin
Krez, Nadja
Fiebig, Uwe
Worbs, Sylvia
Skiba, Martin
Endermann, Tanja
Dorner, Martin B.
Bergström, Tomas
Muñoz, Amalia
Zegers, Ingrid
Müller, Christian
Jenkinson, Stephen P.
Avondet, Marc-Andre
Delbrassinne, Laurence
Denayer, Sarah
Zeleny, Reinhard
Schimmel, Heinz
Åstot, Crister
Dorner, Brigitte G.
Rummel, Andreas
Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test
title Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test
title_full Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test
title_fullStr Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test
title_full_unstemmed Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test
title_short Generation and Characterization of Six Recombinant Botulinum Neurotoxins as Reference Material to Serve in an International Proficiency Test
title_sort generation and characterization of six recombinant botulinum neurotoxins as reference material to serve in an international proficiency test
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4690111/
https://www.ncbi.nlm.nih.gov/pubmed/26703728
http://dx.doi.org/10.3390/toxins7124861
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