Display of chikungunya epitope on ferritin for potential application as vaccine

The idea of this project is to develop a new way to deliver vaccine by displaying the Chikungunya epitope on ferritin protein cage. Chikungunya virus is a human pathogen and one of the leading causes of mosquito-borne arthralgia in parts of Africa, India and Southeast Asia. Due to lack of specific t...

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Main Author: Su, Chengxun
Other Authors: Lim, Sierin
Format: Final Year Project
Language:English
Published: 2014
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Online Access:http://hdl.handle.net/10356/61553
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-615532023-03-03T15:40:12Z Display of chikungunya epitope on ferritin for potential application as vaccine Su, Chengxun Lim, Sierin School of Chemical and Biomedical Engineering A*STAR DRNTU::Engineering The idea of this project is to develop a new way to deliver vaccine by displaying the Chikungunya epitope on ferritin protein cage. Chikungunya virus is a human pathogen and one of the leading causes of mosquito-borne arthralgia in parts of Africa, India and Southeast Asia. Due to lack of specific treatment and licensed vaccine for this disease, there is a critical need for scientists to develop an effective vaccine. In comparison with the existing widely-used technology of vaccine production where the epitope and carrier protein are separately produced and subsequently coupled together, the novelty of this approach is the one-step production of the whole piece of vaccine by integrating the epitope with protein cage at DNA level. Ferritin is a ubiquitous protein produced by almost all living organisms. It has the property of self-assembling into a 24-mer in the presence of iron. Archaeoglobus fulgidus ferritin is chosen as the particular type of ferritin to use in this project due to its hyperthermostability and high structural similarity to human ferritin. In this project, the approach used for vaccine protein production is through gene overexpression in E.coli transformed with the recombinant plasmid. With SDS-PAGE characterization, we showed that the protein is successfully produced and purified by hydrophobic interaction chromatography. Characterization of the protein cage using dynamic light scattering technique showed that protein cage is potentially formed for one of the constructs. Bachelor of Engineering (Chemical and Biomolecular Engineering) 2014-06-11T07:30:11Z 2014-06-11T07:30:11Z 2014 2014 Final Year Project (FYP) http://hdl.handle.net/10356/61553 en Nanyang Technological University 58 p. application/pdf
institution Nanyang Technological University
building NTU Library
continent Asia
country Singapore
Singapore
content_provider NTU Library
collection DR-NTU
language English
topic DRNTU::Engineering
spellingShingle DRNTU::Engineering
Su, Chengxun
Display of chikungunya epitope on ferritin for potential application as vaccine
description The idea of this project is to develop a new way to deliver vaccine by displaying the Chikungunya epitope on ferritin protein cage. Chikungunya virus is a human pathogen and one of the leading causes of mosquito-borne arthralgia in parts of Africa, India and Southeast Asia. Due to lack of specific treatment and licensed vaccine for this disease, there is a critical need for scientists to develop an effective vaccine. In comparison with the existing widely-used technology of vaccine production where the epitope and carrier protein are separately produced and subsequently coupled together, the novelty of this approach is the one-step production of the whole piece of vaccine by integrating the epitope with protein cage at DNA level. Ferritin is a ubiquitous protein produced by almost all living organisms. It has the property of self-assembling into a 24-mer in the presence of iron. Archaeoglobus fulgidus ferritin is chosen as the particular type of ferritin to use in this project due to its hyperthermostability and high structural similarity to human ferritin. In this project, the approach used for vaccine protein production is through gene overexpression in E.coli transformed with the recombinant plasmid. With SDS-PAGE characterization, we showed that the protein is successfully produced and purified by hydrophobic interaction chromatography. Characterization of the protein cage using dynamic light scattering technique showed that protein cage is potentially formed for one of the constructs.
author2 Lim, Sierin
author_facet Lim, Sierin
Su, Chengxun
format Final Year Project
author Su, Chengxun
author_sort Su, Chengxun
title Display of chikungunya epitope on ferritin for potential application as vaccine
title_short Display of chikungunya epitope on ferritin for potential application as vaccine
title_full Display of chikungunya epitope on ferritin for potential application as vaccine
title_fullStr Display of chikungunya epitope on ferritin for potential application as vaccine
title_full_unstemmed Display of chikungunya epitope on ferritin for potential application as vaccine
title_sort display of chikungunya epitope on ferritin for potential application as vaccine
publishDate 2014
url http://hdl.handle.net/10356/61553
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