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Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots

Outbreak of classical swine fever (CSF) results in high mortality and thus causes severe economic losses in the swine industry. Single-domain antibody (sdAb) is the smallest antigen-binding molecule derived from camelid heavy-chain antibodies and has the potential to be used as a molecular probe for...

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Autores principales: Yang, Shunli, Yuan, Li, Shang, Youjun, Wu, Jinyan, Liu, Xiangtao, Zhang, Jie, Pejsak, Zygmunt, Podgórska, Katarzyna, Stepniewska, Katarzyna, Zafar Khan, Muhammad Umar, Cai, Jianping, Yin, Shuanghui
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7013354/
https://www.ncbi.nlm.nih.gov/pubmed/32090077
http://dx.doi.org/10.1155/2020/3201630
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author Yang, Shunli
Yuan, Li
Shang, Youjun
Wu, Jinyan
Liu, Xiangtao
Zhang, Jie
Pejsak, Zygmunt
Podgórska, Katarzyna
Stepniewska, Katarzyna
Zafar Khan, Muhammad Umar
Cai, Jianping
Yin, Shuanghui
author_facet Yang, Shunli
Yuan, Li
Shang, Youjun
Wu, Jinyan
Liu, Xiangtao
Zhang, Jie
Pejsak, Zygmunt
Podgórska, Katarzyna
Stepniewska, Katarzyna
Zafar Khan, Muhammad Umar
Cai, Jianping
Yin, Shuanghui
author_sort Yang, Shunli
collection PubMed
description Outbreak of classical swine fever (CSF) results in high mortality and thus causes severe economic losses in the swine industry. Single-domain antibody (sdAb) is the smallest antigen-binding molecule derived from camelid heavy-chain antibodies and has the potential to be used as a molecular probe for detection of CSF virus (CSFV). In this study, two sdAb fragments against the E2 antigen of CSFV were obtained, expressed in vitro. The functional characteristics analysis indicated that the recombinant sdAbE2-1 and sdAbE2-2 have excellent binding activity, specificity, and high affinity with equilibrium constant value of 3.34 × 10(−7) and 1.35 × 10(−8) M to E2 protein. Then, sdAbE2s were conjugated with quantum dots (QD)/AF488 to synthesize two molecular probes for imaging CSFV distribution in cells. The sdAbE2-1 was also labeled with carboxyl-magnetic beads to construct immunomagnetic nanobeads (IMNBs) able to capture CSFV virions and recombinant E2 protein. QD/AF455-sdAbE2s probes colocalised with CSFV virions in swine testis cells, and IMNBs were used as a detection template and proved to bind specifically with CSFV virions and E2 protein. The selected sdAb fragments and sdAb-based molecular probes may be used for the rapid identification of CSFV during field outbreaks and for research on CSFV and host interactions.
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spelling pubmed-70133542020-02-23 Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots Yang, Shunli Yuan, Li Shang, Youjun Wu, Jinyan Liu, Xiangtao Zhang, Jie Pejsak, Zygmunt Podgórska, Katarzyna Stepniewska, Katarzyna Zafar Khan, Muhammad Umar Cai, Jianping Yin, Shuanghui Biomed Res Int Research Article Outbreak of classical swine fever (CSF) results in high mortality and thus causes severe economic losses in the swine industry. Single-domain antibody (sdAb) is the smallest antigen-binding molecule derived from camelid heavy-chain antibodies and has the potential to be used as a molecular probe for detection of CSF virus (CSFV). In this study, two sdAb fragments against the E2 antigen of CSFV were obtained, expressed in vitro. The functional characteristics analysis indicated that the recombinant sdAbE2-1 and sdAbE2-2 have excellent binding activity, specificity, and high affinity with equilibrium constant value of 3.34 × 10(−7) and 1.35 × 10(−8) M to E2 protein. Then, sdAbE2s were conjugated with quantum dots (QD)/AF488 to synthesize two molecular probes for imaging CSFV distribution in cells. The sdAbE2-1 was also labeled with carboxyl-magnetic beads to construct immunomagnetic nanobeads (IMNBs) able to capture CSFV virions and recombinant E2 protein. QD/AF455-sdAbE2s probes colocalised with CSFV virions in swine testis cells, and IMNBs were used as a detection template and proved to bind specifically with CSFV virions and E2 protein. The selected sdAb fragments and sdAb-based molecular probes may be used for the rapid identification of CSFV during field outbreaks and for research on CSFV and host interactions. Hindawi 2020-01-30 /pmc/articles/PMC7013354/ /pubmed/32090077 http://dx.doi.org/10.1155/2020/3201630 Text en Copyright © 2020 Shunli Yang et al. http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Yang, Shunli
Yuan, Li
Shang, Youjun
Wu, Jinyan
Liu, Xiangtao
Zhang, Jie
Pejsak, Zygmunt
Podgórska, Katarzyna
Stepniewska, Katarzyna
Zafar Khan, Muhammad Umar
Cai, Jianping
Yin, Shuanghui
Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots
title Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots
title_full Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots
title_fullStr Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots
title_full_unstemmed Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots
title_short Selection and Characterization of CSFV-Specific Single-Domain Antibodies and Their Application along with Immunomagnetic Nanobeads and Quantum Dots
title_sort selection and characterization of csfv-specific single-domain antibodies and their application along with immunomagnetic nanobeads and quantum dots
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7013354/
https://www.ncbi.nlm.nih.gov/pubmed/32090077
http://dx.doi.org/10.1155/2020/3201630
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