Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method

The properties of polyurethane-Bioglass® (PU-BG) scaffolds have been optimized using solvent casting/particulate leaching (SC/PL) method. Processing parameters such as polymer solution concentration (15, 16, 17, 18 and 19 wt/vol%), leaching agent concentration with ratio between PU and NaCl (1:3, 1:...

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Main Author: Suhaimin, Intan Syazana
Format: Thesis
Language:English
Published: 2019
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Online Access:http://eprints.usm.my/55186/1/Properties%20Of%20Bioactive%20Glass%20Reinforced%20Polyurethane%20Scaffold%20By%20Solvent%20CastingParticulate%20Leaching%20Method_Intan%20Syazana%20Suhaimin_B1_2019_ESAR.pdf
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spelling my.usm.eprints.55186 http://eprints.usm.my/55186/ Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method Suhaimin, Intan Syazana T Technology TN Mining Engineering. Metallurgy The properties of polyurethane-Bioglass® (PU-BG) scaffolds have been optimized using solvent casting/particulate leaching (SC/PL) method. Processing parameters such as polymer solution concentration (15, 16, 17, 18 and 19 wt/vol%), leaching agent concentration with ratio between PU and NaCl (1:3, 1:4, 1:5, 1:6 and 1:7), leaching agent composition by percentage of NaCl/NaHCO3 (100/0, 85/15, 75/25, 65/35, 55/45 and 45/55) and percentage of Bioglass® (0, 10, 20, 30 40 and 50 wt%) were investigated to obtain the desired properties of PU-BG scaffolds. The scaffolds were characterized using field emission scanning electron microscopic (FESEM), porosity test, fourier transform infrared (FTIR), compression test, inductively coupled plasma (ICP) and degradation test. The optimum parameters to fabricate PU-BG scaffold were found to be 19 wt/vol % of polymer solution concentration, 1:6 ratio (PU: NaCl) of leaching agent concentration and leaching agent composition between 65% NaCl and 35% NaHCO3. The optimization process was able to fabricate the composite scaffold with the thickness more than 20 mm without the formation of undesirable dense layer. Besides, the PU-BG scaffolds were observed with well interconnected porous structure with the pore size spanning over a wide range and adequate porosity for the bone tissue application. The results demonstrated that, the increased in percentage of Bioglass® from 0 wt% to 50 wt% was found to improve the compressive strength as well as induced and accelerated an apatite formation during in-vitro test. 2019-08-01 Thesis NonPeerReviewed application/pdf en http://eprints.usm.my/55186/1/Properties%20Of%20Bioactive%20Glass%20Reinforced%20Polyurethane%20Scaffold%20By%20Solvent%20CastingParticulate%20Leaching%20Method_Intan%20Syazana%20Suhaimin_B1_2019_ESAR.pdf Suhaimin, Intan Syazana (2019) Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method. Masters thesis, Universiti Sains Malaysia.
institution Universiti Sains Malaysia
building Hamzah Sendut Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Sains Malaysia
content_source USM Institutional Repository
url_provider http://eprints.usm.my/
language English
topic T Technology
TN Mining Engineering. Metallurgy
spellingShingle T Technology
TN Mining Engineering. Metallurgy
Suhaimin, Intan Syazana
Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method
description The properties of polyurethane-Bioglass® (PU-BG) scaffolds have been optimized using solvent casting/particulate leaching (SC/PL) method. Processing parameters such as polymer solution concentration (15, 16, 17, 18 and 19 wt/vol%), leaching agent concentration with ratio between PU and NaCl (1:3, 1:4, 1:5, 1:6 and 1:7), leaching agent composition by percentage of NaCl/NaHCO3 (100/0, 85/15, 75/25, 65/35, 55/45 and 45/55) and percentage of Bioglass® (0, 10, 20, 30 40 and 50 wt%) were investigated to obtain the desired properties of PU-BG scaffolds. The scaffolds were characterized using field emission scanning electron microscopic (FESEM), porosity test, fourier transform infrared (FTIR), compression test, inductively coupled plasma (ICP) and degradation test. The optimum parameters to fabricate PU-BG scaffold were found to be 19 wt/vol % of polymer solution concentration, 1:6 ratio (PU: NaCl) of leaching agent concentration and leaching agent composition between 65% NaCl and 35% NaHCO3. The optimization process was able to fabricate the composite scaffold with the thickness more than 20 mm without the formation of undesirable dense layer. Besides, the PU-BG scaffolds were observed with well interconnected porous structure with the pore size spanning over a wide range and adequate porosity for the bone tissue application. The results demonstrated that, the increased in percentage of Bioglass® from 0 wt% to 50 wt% was found to improve the compressive strength as well as induced and accelerated an apatite formation during in-vitro test.
format Thesis
author Suhaimin, Intan Syazana
author_facet Suhaimin, Intan Syazana
author_sort Suhaimin, Intan Syazana
title Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method
title_short Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method
title_full Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method
title_fullStr Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method
title_full_unstemmed Properties Of Bioactive Glass Reinforced Polyurethane Scaffold By Solvent Casting/Particulate Leaching Method
title_sort properties of bioactive glass reinforced polyurethane scaffold by solvent casting/particulate leaching method
publishDate 2019
url http://eprints.usm.my/55186/1/Properties%20Of%20Bioactive%20Glass%20Reinforced%20Polyurethane%20Scaffold%20By%20Solvent%20CastingParticulate%20Leaching%20Method_Intan%20Syazana%20Suhaimin_B1_2019_ESAR.pdf
http://eprints.usm.my/55186/
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score 13.160551