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Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation

Conjugation with poly(ethylene glycol) (PEG) or PEGylation is a widely used tool to overcome the shortcomings of native proteins, such as poor stability, inadequate pharmacokinetic (PK) profiles, and immunogenicity. However, PEGylation is often accompanied by an unwanted detrimental effect on bioact...

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Autores principales: Han, Yanjiao, Yuan, Zhefan, Zhang, Peng, Jiang, Shaoyi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Royal Society of Chemistry 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6253718/
https://www.ncbi.nlm.nih.gov/pubmed/30568780
http://dx.doi.org/10.1039/c8sc01777h
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author Han, Yanjiao
Yuan, Zhefan
Zhang, Peng
Jiang, Shaoyi
author_facet Han, Yanjiao
Yuan, Zhefan
Zhang, Peng
Jiang, Shaoyi
author_sort Han, Yanjiao
collection PubMed
description Conjugation with poly(ethylene glycol) (PEG) or PEGylation is a widely used tool to overcome the shortcomings of native proteins, such as poor stability, inadequate pharmacokinetic (PK) profiles, and immunogenicity. However, PEGylation is often accompanied by an unwanted detrimental effect on bioactivity, particularly, resulting from the amphiphilic nature of PEG. This is especially true for PEGylated proteins with large binding targets. Pegasys, a PEGylated interferon alpha-2a (IFN-α2a) bearing a 40 kDa branched PEG, is a typical example that displays only 7% in vitro activity of the unmodified IFN-α2a. In this work, by employing IFN-α2a as a model protein, we demonstrated that a protein conjugated with zwitterionic polymers (or zwitterlation) could significantly mitigate the antiproliferative bioactivity loss in vitro after polymer conjugation. The retained antiproliferative activity of zwitterlated IFN-α2a is 4.4-fold higher than that of the PEGylated IFN-α2a with the same polymer molecular weight, or 3-fold higher than that of the PEGylated IFN-α2a with a similar hydrodynamic size. It is hypothesized that nonspecific interactions between zwitterionic polymers and IFN-α2a/IFN-α2a receptors can be mitigated due to the super-hydrophilic nature of zwitterionic polymers. This, in turn, reduces the ‘nonspecific blocking’ between IFN-α2a and IFN-α2a receptors. In addition, we demonstrated that zwitterlated IFN-α2a showed a prolonged circulation time and a mitigated accelerated blood clearance after repeated injections in rats.
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spelling pubmed-62537182018-12-19 Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation Han, Yanjiao Yuan, Zhefan Zhang, Peng Jiang, Shaoyi Chem Sci Chemistry Conjugation with poly(ethylene glycol) (PEG) or PEGylation is a widely used tool to overcome the shortcomings of native proteins, such as poor stability, inadequate pharmacokinetic (PK) profiles, and immunogenicity. However, PEGylation is often accompanied by an unwanted detrimental effect on bioactivity, particularly, resulting from the amphiphilic nature of PEG. This is especially true for PEGylated proteins with large binding targets. Pegasys, a PEGylated interferon alpha-2a (IFN-α2a) bearing a 40 kDa branched PEG, is a typical example that displays only 7% in vitro activity of the unmodified IFN-α2a. In this work, by employing IFN-α2a as a model protein, we demonstrated that a protein conjugated with zwitterionic polymers (or zwitterlation) could significantly mitigate the antiproliferative bioactivity loss in vitro after polymer conjugation. The retained antiproliferative activity of zwitterlated IFN-α2a is 4.4-fold higher than that of the PEGylated IFN-α2a with the same polymer molecular weight, or 3-fold higher than that of the PEGylated IFN-α2a with a similar hydrodynamic size. It is hypothesized that nonspecific interactions between zwitterionic polymers and IFN-α2a/IFN-α2a receptors can be mitigated due to the super-hydrophilic nature of zwitterionic polymers. This, in turn, reduces the ‘nonspecific blocking’ between IFN-α2a and IFN-α2a receptors. In addition, we demonstrated that zwitterlated IFN-α2a showed a prolonged circulation time and a mitigated accelerated blood clearance after repeated injections in rats. Royal Society of Chemistry 2018-09-14 /pmc/articles/PMC6253718/ /pubmed/30568780 http://dx.doi.org/10.1039/c8sc01777h Text en This journal is © The Royal Society of Chemistry 2018 http://creativecommons.org/licenses/by-nc/3.0/ This article is freely available. This article is licensed under a Creative Commons Attribution Non Commercial 3.0 Unported Licence (CC BY-NC 3.0)
spellingShingle Chemistry
Han, Yanjiao
Yuan, Zhefan
Zhang, Peng
Jiang, Shaoyi
Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation
title Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation
title_full Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation
title_fullStr Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation
title_full_unstemmed Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation
title_short Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation
title_sort zwitterlation mitigates protein bioactivity loss in vitro over pegylation
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6253718/
https://www.ncbi.nlm.nih.gov/pubmed/30568780
http://dx.doi.org/10.1039/c8sc01777h
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AT yuanzhefan zwitterlationmitigatesproteinbioactivitylossinvitrooverpegylation
AT zhangpeng zwitterlationmitigatesproteinbioactivitylossinvitrooverpegylation
AT jiangshaoyi zwitterlationmitigatesproteinbioactivitylossinvitrooverpegylation