Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.

BACKGROUND: The purpose of this study is to modulate the transfection efficiency of adenovirus (Ad) on the cornea by the covalent attachment of chitosan on adenoviral capsids via a thioether linkage between chitosan modified with 2-iminothiolane and Ad cross-linked with N-[gamma-maleimidobutyryloxy]...

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Main Authors: I-Jong Wang, Min-Chao Jhuang, Yu-Hsin Chen, Lung-Kun Yeh, Chia-Yang Liu, Tai-Horng Young
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2919409?pdf=render
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spelling doaj-3e030a07879342d8b9caf9bb580f238a2020-11-24T21:53:32ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0158e1208510.1371/journal.pone.0012085Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.I-Jong WangMin-Chao JhuangYu-Hsin ChenLung-Kun YehChia-Yang LiuTai-Horng YoungBACKGROUND: The purpose of this study is to modulate the transfection efficiency of adenovirus (Ad) on the cornea by the covalent attachment of chitosan on adenoviral capsids via a thioether linkage between chitosan modified with 2-iminothiolane and Ad cross-linked with N-[gamma-maleimidobutyryloxy]succinimide ester (GMBS). METHODOLOGY/PRINCIPAL FINDINGS: Modified Ad was obtained by reaction with the heterobifunctional crosslinking reagent, GMBS, producing maleimide-modified Ad (Ad-GMBS). Then, the chitosan-SH was conjugated to Ad-GMBS via a thioether bond at different ratios of Ad to GMBS to chitosan-SH. The sizes and zeta potentials of unmodified Ad and chitosan-modified Ads were measured, and the morphologies of the virus particles were observed under transmission electron microscope. Primary cultures of bovine corneal epithelial cells were transfected with Ads and chitosan-modified Ads in the absence or presence of anti-adenovirus antibodies. Chitosan modification did not significantly change the particle size of Ad, but the surface charge of Ad increased significantly from -24.3 mV to nearly neutral. Furthermore, primary cultures of bovine corneal epithelial cells were transfected with Ad or chitosan-modified Ad in the absence or presence of anti-Ad antibodies. The transfection efficiency was attenuated gradually with increasing amounts of GMBS. However, incorporation of chitosan partly restored transfection activity and rendered the modified antibody resistant to antibody neutralization. CONCLUSIONS/SIGNIFICANCE: Chitosan can provide a platform for chemical modification of Ad, which offers potential for further in vivo applications.http://europepmc.org/articles/PMC2919409?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author I-Jong Wang
Min-Chao Jhuang
Yu-Hsin Chen
Lung-Kun Yeh
Chia-Yang Liu
Tai-Horng Young
spellingShingle I-Jong Wang
Min-Chao Jhuang
Yu-Hsin Chen
Lung-Kun Yeh
Chia-Yang Liu
Tai-Horng Young
Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
PLoS ONE
author_facet I-Jong Wang
Min-Chao Jhuang
Yu-Hsin Chen
Lung-Kun Yeh
Chia-Yang Liu
Tai-Horng Young
author_sort I-Jong Wang
title Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
title_short Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
title_full Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
title_fullStr Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
title_full_unstemmed Chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
title_sort chitosan modification of adenovirus to modify transfection efficiency in bovine corneal epithelial cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-01-01
description BACKGROUND: The purpose of this study is to modulate the transfection efficiency of adenovirus (Ad) on the cornea by the covalent attachment of chitosan on adenoviral capsids via a thioether linkage between chitosan modified with 2-iminothiolane and Ad cross-linked with N-[gamma-maleimidobutyryloxy]succinimide ester (GMBS). METHODOLOGY/PRINCIPAL FINDINGS: Modified Ad was obtained by reaction with the heterobifunctional crosslinking reagent, GMBS, producing maleimide-modified Ad (Ad-GMBS). Then, the chitosan-SH was conjugated to Ad-GMBS via a thioether bond at different ratios of Ad to GMBS to chitosan-SH. The sizes and zeta potentials of unmodified Ad and chitosan-modified Ads were measured, and the morphologies of the virus particles were observed under transmission electron microscope. Primary cultures of bovine corneal epithelial cells were transfected with Ads and chitosan-modified Ads in the absence or presence of anti-adenovirus antibodies. Chitosan modification did not significantly change the particle size of Ad, but the surface charge of Ad increased significantly from -24.3 mV to nearly neutral. Furthermore, primary cultures of bovine corneal epithelial cells were transfected with Ad or chitosan-modified Ad in the absence or presence of anti-Ad antibodies. The transfection efficiency was attenuated gradually with increasing amounts of GMBS. However, incorporation of chitosan partly restored transfection activity and rendered the modified antibody resistant to antibody neutralization. CONCLUSIONS/SIGNIFICANCE: Chitosan can provide a platform for chemical modification of Ad, which offers potential for further in vivo applications.
url http://europepmc.org/articles/PMC2919409?pdf=render
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