Investigation of rhabdomyosarcoma cell-cell electrofusion

Cell-cell fusion is an important natural and engineered process for in-depth studies into hybridomas, developmental biology, immunology and various cellular therapies. It is also a powerful tool for analysis of gene expression, chromosomal mapping, antibody production, cloning mammals and cancer imm...

Full description

Saved in:
Bibliographic Details
Main Author: Yeo, Felix Chong Xian
Other Authors: Lim Chu-Sing, Daniel
Format: Theses and Dissertations
Language:English
Published: 2012
Subjects:
Online Access:https://hdl.handle.net/10356/50582
Tags: Add Tag
No Tags, Be the first to tag this record!
Institution: Nanyang Technological University
Language: English
id sg-ntu-dr.10356-50582
record_format dspace
spelling sg-ntu-dr.10356-505822023-03-11T17:51:02Z Investigation of rhabdomyosarcoma cell-cell electrofusion Yeo, Felix Chong Xian Lim Chu-Sing, Daniel School of Mechanical and Aerospace Engineering Singapore Polytechnic BioMedical Engineering Research Centre DRNTU::Engineering::Mechanical engineering::Bio-mechatronics Cell-cell fusion is an important natural and engineered process for in-depth studies into hybridomas, developmental biology, immunology and various cellular therapies. It is also a powerful tool for analysis of gene expression, chromosomal mapping, antibody production, cloning mammals and cancer immunotherapy. However, research so far has primarily focused on cell models such as C.elegans, drosophila, myoblasts, spleen-myeloma cell hybrids and various plant protoplasts. Rhabdomyosarcoma cells are a rare form of musculoskeletal cancer cells found in the head/neck, and other less skeletal areas of the human cancer patient’s body. These cells do not normally undergo fusion naturally. Therefore, if these cells can be engineered to fuse, the technique is expected to be effective for other cell types. Among all the techniques of cell fusion, electroporation was chosen due to its high versatility, yield and viability. By coupling the cells with this technique, the effects on cell proliferation, growth pattern and hybridoma count were investigated. Overall, the experimental results showed that an adequate electrical stimulation successfully helped to facilitate the fusion and proliferation of the cells, and the DC current produced the highest fusion yield and proliferation. Under DC current, a fusion yield of 27% and 38% was obtained, compared to 4% and 13% with no electrical current respectively. The work done proved that high yield and proliferation rate could be achieved using a design with two parallel thin gold electrodes sputtered onto the flask, making this an efficient and effective cellular engineering system. MASTER OF ENGINEERING (MAE) 2012-07-10T03:31:52Z 2012-07-10T03:31:52Z 2012 2012 Thesis Yeo, F. C. X. (2012). Investigation of rhabdomyosarcoma cell-cell electrofusion. Master’s thesis, Nanyang Technological University, Singapore. https://hdl.handle.net/10356/50582 10.32657/10356/50582 en 87 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::Mechanical engineering::Bio-mechatronics
spellingShingle DRNTU::Engineering::Mechanical engineering::Bio-mechatronics
Yeo, Felix Chong Xian
Investigation of rhabdomyosarcoma cell-cell electrofusion
description Cell-cell fusion is an important natural and engineered process for in-depth studies into hybridomas, developmental biology, immunology and various cellular therapies. It is also a powerful tool for analysis of gene expression, chromosomal mapping, antibody production, cloning mammals and cancer immunotherapy. However, research so far has primarily focused on cell models such as C.elegans, drosophila, myoblasts, spleen-myeloma cell hybrids and various plant protoplasts. Rhabdomyosarcoma cells are a rare form of musculoskeletal cancer cells found in the head/neck, and other less skeletal areas of the human cancer patient’s body. These cells do not normally undergo fusion naturally. Therefore, if these cells can be engineered to fuse, the technique is expected to be effective for other cell types. Among all the techniques of cell fusion, electroporation was chosen due to its high versatility, yield and viability. By coupling the cells with this technique, the effects on cell proliferation, growth pattern and hybridoma count were investigated. Overall, the experimental results showed that an adequate electrical stimulation successfully helped to facilitate the fusion and proliferation of the cells, and the DC current produced the highest fusion yield and proliferation. Under DC current, a fusion yield of 27% and 38% was obtained, compared to 4% and 13% with no electrical current respectively. The work done proved that high yield and proliferation rate could be achieved using a design with two parallel thin gold electrodes sputtered onto the flask, making this an efficient and effective cellular engineering system.
author2 Lim Chu-Sing, Daniel
author_facet Lim Chu-Sing, Daniel
Yeo, Felix Chong Xian
format Theses and Dissertations
author Yeo, Felix Chong Xian
author_sort Yeo, Felix Chong Xian
title Investigation of rhabdomyosarcoma cell-cell electrofusion
title_short Investigation of rhabdomyosarcoma cell-cell electrofusion
title_full Investigation of rhabdomyosarcoma cell-cell electrofusion
title_fullStr Investigation of rhabdomyosarcoma cell-cell electrofusion
title_full_unstemmed Investigation of rhabdomyosarcoma cell-cell electrofusion
title_sort investigation of rhabdomyosarcoma cell-cell electrofusion
publishDate 2012
url https://hdl.handle.net/10356/50582
_version_ 1761781532465299456