Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src

碩士 === 國立臺灣大學 === 醫學工程學研究所 === 104 === Galvanotaxis is a phenomenon where cell migration directed by electric fields (EFs). Previous studies revealed that the redistribution of lipid raft guides cell directional motility by regulating integrin or caveolin-1, and cells has opposite directionality bet...

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Main Authors: Shun-Hao Tsao, 曹舜皓
Other Authors: Pen-Hsiu Chao
Format: Others
Language:en_US
Published: 2015
Online Access:http://ndltd.ncl.edu.tw/handle/95382621294161989233
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spelling ndltd-TW-104NTU055300122017-04-24T04:23:46Z http://ndltd.ncl.edu.tw/handle/95382621294161989233 Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src 脂膜筏及Caveolin藉由Src引導纖維母細胞於電場中之方向性移動 Shun-Hao Tsao 曹舜皓 碩士 國立臺灣大學 醫學工程學研究所 104 Galvanotaxis is a phenomenon where cell migration directed by electric fields (EFs). Previous studies revealed that the redistribution of lipid raft guides cell directional motility by regulating integrin or caveolin-1, and cells has opposite directionality between AC and DC. This study indicates that lipid raft can be polarized under in 50Hz of alternative current, and the redistribution of lipid raft can be different in different migration phenotype cells. Lipid raft and caveolin-1 polarization can guide cell directional migration in EF by redistribute Src polarization. PI3K also involved in the pathway by affecting Src polarization. These results clarified how lipid raft polarization change cell migration in EF in two aspects: the position lipid rafts distribute in different situations, and the downstream pathways. Pen-Hsiu Chao 趙本秀 2015 學位論文 ; thesis 40 en_US
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language en_US
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description 碩士 === 國立臺灣大學 === 醫學工程學研究所 === 104 === Galvanotaxis is a phenomenon where cell migration directed by electric fields (EFs). Previous studies revealed that the redistribution of lipid raft guides cell directional motility by regulating integrin or caveolin-1, and cells has opposite directionality between AC and DC. This study indicates that lipid raft can be polarized under in 50Hz of alternative current, and the redistribution of lipid raft can be different in different migration phenotype cells. Lipid raft and caveolin-1 polarization can guide cell directional migration in EF by redistribute Src polarization. PI3K also involved in the pathway by affecting Src polarization. These results clarified how lipid raft polarization change cell migration in EF in two aspects: the position lipid rafts distribute in different situations, and the downstream pathways.
author2 Pen-Hsiu Chao
author_facet Pen-Hsiu Chao
Shun-Hao Tsao
曹舜皓
author Shun-Hao Tsao
曹舜皓
spellingShingle Shun-Hao Tsao
曹舜皓
Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src
author_sort Shun-Hao Tsao
title Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src
title_short Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src
title_full Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src
title_fullStr Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src
title_full_unstemmed Lipid Raft and Caveolin Polarization Guide Fibroblast Directional Migration in Electric Fields via Src
title_sort lipid raft and caveolin polarization guide fibroblast directional migration in electric fields via src
publishDate 2015
url http://ndltd.ncl.edu.tw/handle/95382621294161989233
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