Fabrication and characterization of hydrogel microparticulate drug delivery system

In this project, the stretched cavity-assisted molding of particles (SCAMP) method was applied to fabricate microparticulate drug delivery system (DDS) aiming at growth factors delivery. SCAMP is a top-down technique involving the usage of patterned mold and ultraviolet (UV) curable precursor hydrog...

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Main Author: Ma, Liding
Other Authors: Chan Bee Eng, Mary
Format: Theses and Dissertations
Language:English
Published: 2009
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Online Access:http://hdl.handle.net/10356/18820
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Institution: Nanyang Technological University
Language: English
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spelling sg-ntu-dr.10356-188202023-03-11T17:00:19Z Fabrication and characterization of hydrogel microparticulate drug delivery system Ma, Liding Chan Bee Eng, Mary School of Mechanical and Aerospace Engineering DRNTU::Engineering::Bioengineering In this project, the stretched cavity-assisted molding of particles (SCAMP) method was applied to fabricate microparticulate drug delivery system (DDS) aiming at growth factors delivery. SCAMP is a top-down technique involving the usage of patterned mold and ultraviolet (UV) curable precursor hydrogel solution, a special stretched cavity-assisted particle demodeling mechanism and a freeze-peel harvest method. Optimization of the fabrication procedures to increase the particle yield was also an important effort in this project. Cavity filling efficiency and harvest efficiency were the two issues studied to realize this target. To evaluate the inertness of SCAMP fabrication procedures to fragile protein drugs, the bioactivity test experiment was also carried out, by first culturing smooth muscle cells in three kinds of media with two containing either release or stock-prepared growth factors and the third containing growth factor, and the applying dimenthylthiazol diphenylterazolium bromide (MTT) assay to quantify the cell viability as indication to bioactivity status of the drugs. The results showed that the growth factors released from SCAMP fabricated particles highly retained their bioactivity. Finally, a set of experiment was conducted to evaluated the SCAMP fabricated DDS’s ability to provide sustained and variable drug release. The results showed that this DDS can release the model basic fibroblast growth factor (BFGF) in a sustain manner as long as four weeks without serious burst release in the first 24 hours. Longer UV exposed particles did not significantly change the release dose level compared to the normally fabricated particle, while particles encapsulated by biodegradable polymer film significantly reduced the released dose level for about 14 days, indicating its potential to delay the drug release for a certain period. Master of Science (Biomedical Engineering) 2009-07-20T03:18:59Z 2009-07-20T03:18:59Z 2008 2008 Thesis http://hdl.handle.net/10356/18820 en 125 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::Bioengineering
spellingShingle DRNTU::Engineering::Bioengineering
Ma, Liding
Fabrication and characterization of hydrogel microparticulate drug delivery system
description In this project, the stretched cavity-assisted molding of particles (SCAMP) method was applied to fabricate microparticulate drug delivery system (DDS) aiming at growth factors delivery. SCAMP is a top-down technique involving the usage of patterned mold and ultraviolet (UV) curable precursor hydrogel solution, a special stretched cavity-assisted particle demodeling mechanism and a freeze-peel harvest method. Optimization of the fabrication procedures to increase the particle yield was also an important effort in this project. Cavity filling efficiency and harvest efficiency were the two issues studied to realize this target. To evaluate the inertness of SCAMP fabrication procedures to fragile protein drugs, the bioactivity test experiment was also carried out, by first culturing smooth muscle cells in three kinds of media with two containing either release or stock-prepared growth factors and the third containing growth factor, and the applying dimenthylthiazol diphenylterazolium bromide (MTT) assay to quantify the cell viability as indication to bioactivity status of the drugs. The results showed that the growth factors released from SCAMP fabricated particles highly retained their bioactivity. Finally, a set of experiment was conducted to evaluated the SCAMP fabricated DDS’s ability to provide sustained and variable drug release. The results showed that this DDS can release the model basic fibroblast growth factor (BFGF) in a sustain manner as long as four weeks without serious burst release in the first 24 hours. Longer UV exposed particles did not significantly change the release dose level compared to the normally fabricated particle, while particles encapsulated by biodegradable polymer film significantly reduced the released dose level for about 14 days, indicating its potential to delay the drug release for a certain period.
author2 Chan Bee Eng, Mary
author_facet Chan Bee Eng, Mary
Ma, Liding
format Theses and Dissertations
author Ma, Liding
author_sort Ma, Liding
title Fabrication and characterization of hydrogel microparticulate drug delivery system
title_short Fabrication and characterization of hydrogel microparticulate drug delivery system
title_full Fabrication and characterization of hydrogel microparticulate drug delivery system
title_fullStr Fabrication and characterization of hydrogel microparticulate drug delivery system
title_full_unstemmed Fabrication and characterization of hydrogel microparticulate drug delivery system
title_sort fabrication and characterization of hydrogel microparticulate drug delivery system
publishDate 2009
url http://hdl.handle.net/10356/18820
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