Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.

The tissue engineering of Mesenchymal stem cells (MSC) are promising in treatment of cartilage defects and the repairmen of damaged cartilage. But the highly expression of type I collagen in the cells, which will result in fibrocartilage, is still a big problem to be overcome. Basing on RNA interfer...

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Main Author: Liu, Chengzheng.
Other Authors: Wang Dongan
Format: Final Year Project
Language:English
Published: 2009
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Online Access:http://hdl.handle.net/10356/16558
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-165582023-03-03T15:33:37Z Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene. Liu, Chengzheng. Wang Dongan School of Chemical and Biomedical Engineering DRNTU::Engineering::Chemical engineering::Biotechnology The tissue engineering of Mesenchymal stem cells (MSC) are promising in treatment of cartilage defects and the repairmen of damaged cartilage. But the highly expression of type I collagen in the cells, which will result in fibrocartilage, is still a big problem to be overcome. Basing on RNA interfering (RNAi) and the idea that the TGF-β3 can promote scar-free treatment in previous finding(1), this project was designed to construct an adenoviral vector and thus an adenovirus which can secret TGF-β3 while knocking down the type I collagen expression in target cells. Here the experiments are carried out in human fetal osteoblast (hFOB) cells and human fibroblast (hFB) cells to study the performance of the constructed virus and investigate its possible clinical application. In this project, it is found that the null adenovirus can promote type I collagen expression in both cells. Results showed that the constructed recombinant virus did have suppressive effects on type I collagen expression. In addition, the RNAi by shRNA in the cells had obvious suppression on type I collagen expression, even more effective than the recombinant virus. However, the effects of TGF-β3 on type I collagen production was diversified: inhibitive in hFOB cells but promotive in hFB cells. Later experiments found that the functioning of virus in hFOB cells was very short in terms of time, while for hFB cells, it is not achieved in this project. Bachelor of Engineering (Chemical and Biomolecular Engineering) 2009-05-27T03:22:12Z 2009-05-27T03:22:12Z 2009 2009 Final Year Project (FYP) http://hdl.handle.net/10356/16558 en Nanyang Technological University 75 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::Chemical engineering::Biotechnology
spellingShingle DRNTU::Engineering::Chemical engineering::Biotechnology
Liu, Chengzheng.
Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.
description The tissue engineering of Mesenchymal stem cells (MSC) are promising in treatment of cartilage defects and the repairmen of damaged cartilage. But the highly expression of type I collagen in the cells, which will result in fibrocartilage, is still a big problem to be overcome. Basing on RNA interfering (RNAi) and the idea that the TGF-β3 can promote scar-free treatment in previous finding(1), this project was designed to construct an adenoviral vector and thus an adenovirus which can secret TGF-β3 while knocking down the type I collagen expression in target cells. Here the experiments are carried out in human fetal osteoblast (hFOB) cells and human fibroblast (hFB) cells to study the performance of the constructed virus and investigate its possible clinical application. In this project, it is found that the null adenovirus can promote type I collagen expression in both cells. Results showed that the constructed recombinant virus did have suppressive effects on type I collagen expression. In addition, the RNAi by shRNA in the cells had obvious suppression on type I collagen expression, even more effective than the recombinant virus. However, the effects of TGF-β3 on type I collagen production was diversified: inhibitive in hFOB cells but promotive in hFB cells. Later experiments found that the functioning of virus in hFOB cells was very short in terms of time, while for hFB cells, it is not achieved in this project.
author2 Wang Dongan
author_facet Wang Dongan
Liu, Chengzheng.
format Final Year Project
author Liu, Chengzheng.
author_sort Liu, Chengzheng.
title Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.
title_short Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.
title_full Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.
title_fullStr Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.
title_full_unstemmed Construction of recombinant adenovirus encoding both TGF-beta 3 and ShRNA targeting type I collagen gene.
title_sort construction of recombinant adenovirus encoding both tgf-beta 3 and shrna targeting type i collagen gene.
publishDate 2009
url http://hdl.handle.net/10356/16558
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