Cargando…

Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal

Thimerosal has been widely used as a preservative in drug and vaccine products for decades. Due to the strong propensity to modify thiols in proteins, conformational changes could occur due to covalent bond formation between ethylmercury (a degradant of thimerosal) and thiols. Such a conformational...

Descripción completa

Detalles Bibliográficos
Autores principales: Huang, Xiaofen, Li, Yike, Nie, Meifeng, Yue, Mingxi, Li, Yufang, Lin, Zhijie, Pan, Huirong, Fang, Mujin, Wu, Ting, Li, Shaowei, Zhang, Jun, Xia, Ningshao, Zhao, Qinjian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Xi'an Jiaotong University 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8572666/
https://www.ncbi.nlm.nih.gov/pubmed/34765275
http://dx.doi.org/10.1016/j.jpha.2020.08.007
_version_ 1784595262272962560
author Huang, Xiaofen
Li, Yike
Nie, Meifeng
Yue, Mingxi
Li, Yufang
Lin, Zhijie
Pan, Huirong
Fang, Mujin
Wu, Ting
Li, Shaowei
Zhang, Jun
Xia, Ningshao
Zhao, Qinjian
author_facet Huang, Xiaofen
Li, Yike
Nie, Meifeng
Yue, Mingxi
Li, Yufang
Lin, Zhijie
Pan, Huirong
Fang, Mujin
Wu, Ting
Li, Shaowei
Zhang, Jun
Xia, Ningshao
Zhao, Qinjian
author_sort Huang, Xiaofen
collection PubMed
description Thimerosal has been widely used as a preservative in drug and vaccine products for decades. Due to the strong propensity to modify thiols in proteins, conformational changes could occur due to covalent bond formation between ethylmercury (a degradant of thimerosal) and thiols. Such a conformational change could lead to partial or even complete loss of desirable protein function. This study aims to investigate the effects of thimerosal on the capsid stability and antigenicity of recombinant human papillomavirus (HPV) 18 virus-like particles (VLPs). Dramatic destabilization of the recombinant viral capsid upon thimerosal treatment was observed. Such a negative effect on the thermal stability of VLPs preserved with thimerosal was shown to be dependent on the thimerosal concentration. Two highly neutralizing antibodies, 13H12 and 3C3, were found to be the most sensitive to thimerosal treatment. The kinetics of antigenicity loss, when monitored with 13H12 or 3C3 as probes, yielded two distinctly different sets of kinetic parameters, while the data from both monoclonal antibodies (mAbs) followed a biphasic exponential decay model. The potential effect of thimerosal on protein function, particularly for thiol-containing proteinaceous active components, needs to be comprehensively characterized during formulation development when a preservative is necessary.
format Online
Article
Text
id pubmed-8572666
institution National Center for Biotechnology Information
language English
publishDate 2021
publisher Xi'an Jiaotong University
record_format MEDLINE/PubMed
spelling pubmed-85726662021-11-10 Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal Huang, Xiaofen Li, Yike Nie, Meifeng Yue, Mingxi Li, Yufang Lin, Zhijie Pan, Huirong Fang, Mujin Wu, Ting Li, Shaowei Zhang, Jun Xia, Ningshao Zhao, Qinjian J Pharm Anal Original Article Thimerosal has been widely used as a preservative in drug and vaccine products for decades. Due to the strong propensity to modify thiols in proteins, conformational changes could occur due to covalent bond formation between ethylmercury (a degradant of thimerosal) and thiols. Such a conformational change could lead to partial or even complete loss of desirable protein function. This study aims to investigate the effects of thimerosal on the capsid stability and antigenicity of recombinant human papillomavirus (HPV) 18 virus-like particles (VLPs). Dramatic destabilization of the recombinant viral capsid upon thimerosal treatment was observed. Such a negative effect on the thermal stability of VLPs preserved with thimerosal was shown to be dependent on the thimerosal concentration. Two highly neutralizing antibodies, 13H12 and 3C3, were found to be the most sensitive to thimerosal treatment. The kinetics of antigenicity loss, when monitored with 13H12 or 3C3 as probes, yielded two distinctly different sets of kinetic parameters, while the data from both monoclonal antibodies (mAbs) followed a biphasic exponential decay model. The potential effect of thimerosal on protein function, particularly for thiol-containing proteinaceous active components, needs to be comprehensively characterized during formulation development when a preservative is necessary. Xi'an Jiaotong University 2021-10 2020-08-28 /pmc/articles/PMC8572666/ /pubmed/34765275 http://dx.doi.org/10.1016/j.jpha.2020.08.007 Text en © 2020 Xi'an Jiaotong University. Production and hosting by Elsevier B.V. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Huang, Xiaofen
Li, Yike
Nie, Meifeng
Yue, Mingxi
Li, Yufang
Lin, Zhijie
Pan, Huirong
Fang, Mujin
Wu, Ting
Li, Shaowei
Zhang, Jun
Xia, Ningshao
Zhao, Qinjian
Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
title Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
title_full Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
title_fullStr Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
title_full_unstemmed Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
title_short Capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
title_sort capsid destabilization and epitope alterations of human papillomavirus 18 in the presence of thimerosal
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8572666/
https://www.ncbi.nlm.nih.gov/pubmed/34765275
http://dx.doi.org/10.1016/j.jpha.2020.08.007
work_keys_str_mv AT huangxiaofen capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT liyike capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT niemeifeng capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT yuemingxi capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT liyufang capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT linzhijie capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT panhuirong capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT fangmujin capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT wuting capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT lishaowei capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT zhangjun capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT xianingshao capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal
AT zhaoqinjian capsiddestabilizationandepitopealterationsofhumanpapillomavirus18inthepresenceofthimerosal