Full metadata
Title
Optimization of design factors for electrospun scaffolds for regenerative medicine
Description
The objective of this research is to investigate the relationship among key process design variables associated with the development of nanoscale electrospun polymeric scaffolds capable of tissue regeneration. To date, there has been no systematic approach toward understanding electrospinning process parameters responsible for the production of 3-D nanoscaffold architectures with desired levels quality assurance envisioned to satisfy emerging regenerative medicine market needs. , As such, this study encompassed a more systematic, rational design of experiment (DOE) approach toward the identification of electrospinning process conditions responsible for the production of dextran-polyacrylic acid (DEX-PAA) nanoscaffolds with desired architectures and tissue engineering properties. The latter includes scaffold fiber diameter, pore size, porosity, and degree of crosslinking that together can provide a range of scaffold nanomechanical properties that closely mimics the cell microenvironment. The results obtained from this preliminary DOE study indicate that there exist electrospinning operation conditions capable of producing Dex-PAA nanoarchitecture having potential utility for regenerative medicine applications.
Date Created
2013
Contributors
- Espinoza, Roberta (Author)
- Pizziconi, Vincent (Thesis advisor)
- Massia, Stephen (Committee member)
- Garcia, Antonio (Committee member)
- Arizona State University (Publisher)
Topical Subject
Resource Type
Extent
vii, 62 p. : ill. (chiefly col.)
Language
eng
Copyright Statement
In Copyright
Primary Member of
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.18796
Statement of Responsibility
by Robert Espinoza
Description Source
Viewed on Feb. 14, 2014
Level of coding
full
Note
thesis
Partial requirement for: M.S., Arizona State University, 2013
bibliography
Includes bibliographical references (p. 55-58)
Field of study: Bioengineering
System Created
- 2013-10-08 04:25:15
System Modified
- 2021-08-30 01:38:05
- 3 years 2 months ago
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