Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside

Electrospinning is widely used because it can produce the three-dimensional (3D) structures that mimic the extracellular matrix. One of the problems limiting the use of electrospun fibrous scaffolds is that the small pores prevent the infiltration of cells and the fusion between scaffolds and the ho...

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Main Author: Liu, Zhen
Other Authors: Zhang Yilei
Format: Theses and Dissertations
Language:English
Published: 2018
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Online Access:http://hdl.handle.net/10356/75930
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-759302023-03-11T17:29:50Z Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside Liu, Zhen Zhang Yilei School of Mechanical and Aerospace Engineering DRNTU::Engineering::Manufacturing::Product design Electrospinning is widely used because it can produce the three-dimensional (3D) structures that mimic the extracellular matrix. One of the problems limiting the use of electrospun fibrous scaffolds is that the small pores prevent the infiltration of cells and the fusion between scaffolds and the host cells. In order to improve this phenomenon, using a new coaxial electrospinning method, this dissertation first explores the influence of humidity on pore size for uniaxial fiber and then explodes the process parameter (voltage and PCL concentration) on the coaxial nanofibers with PCL as shell and PVA as core during the process. By optimizing the conditions, uniform microfibers with an average diameter of 86.650 μm were obtained using a flow rate of 30 ml/h for PCL and 10ml/h for PVA with a voltage of 9 kV. Then, the effect of ambient humidity on the voids of the coaxial PCL fibers was explored emphatically. The results showed that the morphology and porosity of fibers depend on the polymer PCL concentration and relative humidity. The highest porosity and good pore size were obtained at the relative humidity of 90% and PCL concentration of 20 %. Finally, the coaxial microfibers with PCL as sheath and PVA with PC12 cells as core were prepared. After dissolving the PVA, PC12 cells were successfully cultured inside the hollow PCL fiber scaffolds with high porosity. We experimentally confirmed that the cells in the 3D hollow scaffolds can grow, proliferate well. Master of Science (Smart Product Design) 2018-08-07T02:04:20Z 2018-08-07T02:04:20Z 2018 Thesis http://hdl.handle.net/10356/75930 en 81 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::Manufacturing::Product design
spellingShingle DRNTU::Engineering::Manufacturing::Product design
Liu, Zhen
Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
description Electrospinning is widely used because it can produce the three-dimensional (3D) structures that mimic the extracellular matrix. One of the problems limiting the use of electrospun fibrous scaffolds is that the small pores prevent the infiltration of cells and the fusion between scaffolds and the host cells. In order to improve this phenomenon, using a new coaxial electrospinning method, this dissertation first explores the influence of humidity on pore size for uniaxial fiber and then explodes the process parameter (voltage and PCL concentration) on the coaxial nanofibers with PCL as shell and PVA as core during the process. By optimizing the conditions, uniform microfibers with an average diameter of 86.650 μm were obtained using a flow rate of 30 ml/h for PCL and 10ml/h for PVA with a voltage of 9 kV. Then, the effect of ambient humidity on the voids of the coaxial PCL fibers was explored emphatically. The results showed that the morphology and porosity of fibers depend on the polymer PCL concentration and relative humidity. The highest porosity and good pore size were obtained at the relative humidity of 90% and PCL concentration of 20 %. Finally, the coaxial microfibers with PCL as sheath and PVA with PC12 cells as core were prepared. After dissolving the PVA, PC12 cells were successfully cultured inside the hollow PCL fiber scaffolds with high porosity. We experimentally confirmed that the cells in the 3D hollow scaffolds can grow, proliferate well.
author2 Zhang Yilei
author_facet Zhang Yilei
Liu, Zhen
format Theses and Dissertations
author Liu, Zhen
author_sort Liu, Zhen
title Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
title_short Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
title_full Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
title_fullStr Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
title_full_unstemmed Preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
title_sort preparation the porous hollow fibers based on parameter optimization of coaxial electrospinning techniques for cell growth inside
publishDate 2018
url http://hdl.handle.net/10356/75930
_version_ 1761781728891895808