Projector-based 3D printing for pcMSC cell sheets
碩士 === 國立臺灣大學 === 生醫電子與資訊學研究所 === 107 === In this article described a method which basing on 3D printing to producing stem cell sheets by using projector. This method included the 3D printing machine, the manufacture for printing gel and the stem cell culture. The printing gel is exposed and solidif...
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ndltd-TW-107NTU051140252019-11-16T05:27:58Z http://ndltd.ncl.edu.tw/handle/nardgz Projector-based 3D printing for pcMSC cell sheets 以3D列印方式利用投影機製造胎盤蛻膜間質幹細胞之細胞片 Hung-Hao Chang 張紘豪 碩士 國立臺灣大學 生醫電子與資訊學研究所 107 In this article described a method which basing on 3D printing to producing stem cell sheets by using projector. This method included the 3D printing machine, the manufacture for printing gel and the stem cell culture. The printing gel is exposed and solidified by light projector system. The light projector system was remodeled from the commercial projector. Moreover, the outlook of the gel can be designed by the exposed pattern from projector. The printing gel is comprised by Gelatin Methacryloyl(GelMa), Lithium Phenyl(2,4,6-trimethylbenzoyl)phosphinate (LAP). In the cell culture, I choose the human placenta chorionic decidual-derived MSCs(pcMSCs). It can adhere and culture on the gel. In future work, because of the features of 3D printing, the gel can be designed with porous structure. This structure can allow the medium flowing faster in the gel. The final product, pcMSC cell sheets, completed by this method, can be used in clinical research and severe burn wound treatment. Po-Ling Kuo 郭柏齡 2019 學位論文 ; thesis 40 en_US |
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碩士 === 國立臺灣大學 === 生醫電子與資訊學研究所 === 107 === In this article described a method which basing on 3D printing to producing stem cell sheets by using projector. This method included the 3D printing machine, the manufacture for printing gel and the stem cell culture. The printing gel is exposed and solidified by light projector system. The light projector system was remodeled from the commercial projector. Moreover, the outlook of the gel can be designed by the exposed pattern from projector. The printing gel is comprised by Gelatin Methacryloyl(GelMa), Lithium Phenyl(2,4,6-trimethylbenzoyl)phosphinate (LAP). In the cell culture, I choose the human placenta chorionic decidual-derived MSCs(pcMSCs). It can adhere and culture on the gel. In future work, because of the features of 3D printing, the gel can be designed with porous structure. This structure can allow the medium flowing faster in the gel. The final product, pcMSC cell sheets, completed by this method, can be used in clinical research and severe burn wound treatment.
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author2 |
Po-Ling Kuo |
author_facet |
Po-Ling Kuo Hung-Hao Chang 張紘豪 |
author |
Hung-Hao Chang 張紘豪 |
spellingShingle |
Hung-Hao Chang 張紘豪 Projector-based 3D printing for pcMSC cell sheets |
author_sort |
Hung-Hao Chang |
title |
Projector-based 3D printing for pcMSC cell sheets |
title_short |
Projector-based 3D printing for pcMSC cell sheets |
title_full |
Projector-based 3D printing for pcMSC cell sheets |
title_fullStr |
Projector-based 3D printing for pcMSC cell sheets |
title_full_unstemmed |
Projector-based 3D printing for pcMSC cell sheets |
title_sort |
projector-based 3d printing for pcmsc cell sheets |
publishDate |
2019 |
url |
http://ndltd.ncl.edu.tw/handle/nardgz |
work_keys_str_mv |
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