Strategy on the production of bead free electrospun gelatin scaffolds

Electrospun scaffolds consist of micro-scale or nano-scale porous fibrous networks. These electrospun scaffolds had become increasingly popular in tissue engineering filed as it could provide nano-environment for cell culture and produced by using biodegrable polymer. One of the important key to pro...

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Main Authors: Chung, She Man, Weily, Khoo, Lim, Shing Chee, Zakaria, Mohd Faiz, Koh, Ching Theng
Format: Article
Language:English
Published: Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM 2018
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Online Access:http://eprints.uthm.edu.my/5888/1/AJ%202018%20%28642%29.pdf
http://eprints.uthm.edu.my/5888/
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spelling my.uthm.eprints.58882022-01-24T07:24:57Z http://eprints.uthm.edu.my/5888/ Strategy on the production of bead free electrospun gelatin scaffolds Chung, She Man Weily, Khoo Lim, Shing Chee Zakaria, Mohd Faiz Koh, Ching Theng TK301-399 Electric meters Electrospun scaffolds consist of micro-scale or nano-scale porous fibrous networks. These electrospun scaffolds had become increasingly popular in tissue engineering filed as it could provide nano-environment for cell culture and produced by using biodegrable polymer. One of the important key to provide such environment for cell culture is the porosity of the electrospun scaffolds as it is highly related with the cell-cell interaction. The porosity of the electrospun scaffolds could be affected by bead formation which is one of the common problems faced in electrospinning process. However, the formation of beads are difficult to be controlled as it depends on environmental factors such as humidity and operating temperature. Controlling these two environmental factors normally requires an expensive control system. This paper aims to solve the problem of bead formation by adjusting material concentration and process parameters without controlling the environmental factors. The parameters studied in this paper include polymer concentration, flow rate, distance between the syringe needle tip and collector and applied voltage. The microstructure of the electrospun scaffolds produced were visualised using scanning electron microscopy (SEM) and were analysed in terms of bead formation and fiber diameter. This study shows that polymer concentration is the best strategy to prevent bead formation in gelatin scaffolds while other process parameters such as applied voltage, distance between the syringe needle tip and the collector as well as flow rate can be used to control the fiber diameter. An understanding of the effects of each parameter provides a guideline to control microstructure morphology by producing bead-free electrospun gelatin scaffolds. Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM 2018 Article PeerReviewed text en http://eprints.uthm.edu.my/5888/1/AJ%202018%20%28642%29.pdf Chung, She Man and Weily, Khoo and Lim, Shing Chee and Zakaria, Mohd Faiz and Koh, Ching Theng (2018) Strategy on the production of bead free electrospun gelatin scaffolds. Journal of Mechanical Engineering, 5 (6). pp. 69-79. ISSN 2550-164X
institution Universiti Tun Hussein Onn Malaysia
building UTHM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Tun Hussein Onn Malaysia
content_source UTHM Institutional Repository
url_provider http://eprints.uthm.edu.my/
language English
topic TK301-399 Electric meters
spellingShingle TK301-399 Electric meters
Chung, She Man
Weily, Khoo
Lim, Shing Chee
Zakaria, Mohd Faiz
Koh, Ching Theng
Strategy on the production of bead free electrospun gelatin scaffolds
description Electrospun scaffolds consist of micro-scale or nano-scale porous fibrous networks. These electrospun scaffolds had become increasingly popular in tissue engineering filed as it could provide nano-environment for cell culture and produced by using biodegrable polymer. One of the important key to provide such environment for cell culture is the porosity of the electrospun scaffolds as it is highly related with the cell-cell interaction. The porosity of the electrospun scaffolds could be affected by bead formation which is one of the common problems faced in electrospinning process. However, the formation of beads are difficult to be controlled as it depends on environmental factors such as humidity and operating temperature. Controlling these two environmental factors normally requires an expensive control system. This paper aims to solve the problem of bead formation by adjusting material concentration and process parameters without controlling the environmental factors. The parameters studied in this paper include polymer concentration, flow rate, distance between the syringe needle tip and collector and applied voltage. The microstructure of the electrospun scaffolds produced were visualised using scanning electron microscopy (SEM) and were analysed in terms of bead formation and fiber diameter. This study shows that polymer concentration is the best strategy to prevent bead formation in gelatin scaffolds while other process parameters such as applied voltage, distance between the syringe needle tip and the collector as well as flow rate can be used to control the fiber diameter. An understanding of the effects of each parameter provides a guideline to control microstructure morphology by producing bead-free electrospun gelatin scaffolds.
format Article
author Chung, She Man
Weily, Khoo
Lim, Shing Chee
Zakaria, Mohd Faiz
Koh, Ching Theng
author_facet Chung, She Man
Weily, Khoo
Lim, Shing Chee
Zakaria, Mohd Faiz
Koh, Ching Theng
author_sort Chung, She Man
title Strategy on the production of bead free electrospun gelatin scaffolds
title_short Strategy on the production of bead free electrospun gelatin scaffolds
title_full Strategy on the production of bead free electrospun gelatin scaffolds
title_fullStr Strategy on the production of bead free electrospun gelatin scaffolds
title_full_unstemmed Strategy on the production of bead free electrospun gelatin scaffolds
title_sort strategy on the production of bead free electrospun gelatin scaffolds
publisher Faculty of Mechanical Engineering, Universiti Teknologi MARA (UiTM
publishDate 2018
url http://eprints.uthm.edu.my/5888/1/AJ%202018%20%28642%29.pdf
http://eprints.uthm.edu.my/5888/
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score 13.159267