Development of hollow out-of-plane polymer microneedles using solvent casting
In recent years, extensive research has been done to find innovative ways of drug delivery to replace traditional injection using hypodermic needles. Although microneedles are proposed to provide one of the most effective and convenient transdermal drug delivery methods, their expensive fabrication...
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University of British Columbia
2010
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ndltd-LACETR-oai-collectionscanada.gc.ca-BVAU.-244542013-06-05T04:18:11ZDevelopment of hollow out-of-plane polymer microneedles using solvent castingMansoor, ImanIn recent years, extensive research has been done to find innovative ways of drug delivery to replace traditional injection using hypodermic needles. Although microneedles are proposed to provide one of the most effective and convenient transdermal drug delivery methods, their expensive fabrication techniques have created a barrier for their mass fabrication and as a result, their entry to the commercial market. A novel method, based on solvent casting, is presented for inexpensive fabrication of hollow out-of-plane polymer microneedles. Microneedles are formed during a solvent evaporation process which leaves a thick polymer layer around pillars in a pre-fabricated mold. This process is fast and allows fabrication of microneedles in variety of shapes and dimensions. The effectiveness of the microneedle arrays fabricated using this process has been demonstrated through in vivo and in vitro experiments. In order to further optimize the microneedle design, a novel experimental method based on confocal microscopy and particle image velocimetry (PIV) is presented for characterizing the flow in a thin film during solvent casting. Using this method, the impact of temperature on polymer film formation, on a vertical profile in a mold, is investigated and discussed. This method also allowed observing some important phenomena during solvent casting such as a surface counter flow. The PIV measurements show significant differences in the flow velocity fields at different temperatures that correlate with different final polymer thicknesses on the vertical wall of the mold.University of British Columbia2010-05-05T14:10:21Z2010-11-3020092010-05-05T14:10:21Z2009-11Electronic Thesis or Dissertationhttp://hdl.handle.net/2429/24454eng |
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English |
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description |
In recent years, extensive research has been done to find innovative ways of drug delivery to replace traditional injection using hypodermic needles. Although microneedles are proposed to provide one of the most effective and convenient transdermal drug delivery methods, their expensive fabrication techniques have created a barrier for their mass fabrication and as a result, their entry to the commercial market. A novel method, based on solvent casting, is presented for inexpensive fabrication of hollow out-of-plane polymer microneedles. Microneedles are formed during a solvent evaporation process which leaves a thick polymer layer around pillars in a pre-fabricated mold. This process is fast and allows fabrication of microneedles in variety of shapes and dimensions. The effectiveness of the microneedle arrays fabricated using this process has been demonstrated through in vivo and in vitro experiments.
In order to further optimize the microneedle design, a novel experimental method based on confocal microscopy and particle image velocimetry (PIV) is presented for characterizing the flow in a thin film during solvent casting. Using this method, the impact of temperature on polymer film formation, on a vertical profile in a mold, is investigated and discussed. This method also allowed observing some important phenomena during solvent casting such as a surface counter flow. The PIV measurements show significant differences in the flow velocity fields at different temperatures that correlate with different final polymer thicknesses on the vertical wall of the mold. |
author |
Mansoor, Iman |
spellingShingle |
Mansoor, Iman Development of hollow out-of-plane polymer microneedles using solvent casting |
author_facet |
Mansoor, Iman |
author_sort |
Mansoor, Iman |
title |
Development of hollow out-of-plane polymer microneedles using solvent casting |
title_short |
Development of hollow out-of-plane polymer microneedles using solvent casting |
title_full |
Development of hollow out-of-plane polymer microneedles using solvent casting |
title_fullStr |
Development of hollow out-of-plane polymer microneedles using solvent casting |
title_full_unstemmed |
Development of hollow out-of-plane polymer microneedles using solvent casting |
title_sort |
development of hollow out-of-plane polymer microneedles using solvent casting |
publisher |
University of British Columbia |
publishDate |
2010 |
url |
http://hdl.handle.net/2429/24454 |
work_keys_str_mv |
AT mansooriman developmentofhollowoutofplanepolymermicroneedlesusingsolventcasting |
_version_ |
1716587359379652608 |