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Biochemical and Biomolecular Engineering Commons™
Open Access. Powered by Scholars. Published by Universities.®
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Articles 31 - 34 of 34
Full-Text Articles in Biochemical and Biomolecular Engineering
Biodegradable Hydrogels And Nanocomposite Polymers: Synthesis And Characterization For Biomedical Applications, Ashley Marie Hawkins
Biodegradable Hydrogels And Nanocomposite Polymers: Synthesis And Characterization For Biomedical Applications, Ashley Marie Hawkins
Theses and Dissertations--Chemical and Materials Engineering
Hydrogels are popular materials for biological applications since they exhibit properties like that of natural soft tissue and have tunable properties. Biodegradable hydrogels provide an added advantage in that they degrade in an aqueous environment thereby avoiding the need for removal after the useful lifetime. In this work, we investigated poly(β-amino ester) (PBAE) biodegradable hydrogel systems. To begin, the factors affecting the macromer synthesis procedure were studied to optimize the reproducibility of the resulting hydrogels made and create new methods of tuning the properties. Hydrogel behavior was then tuned by altering the hydrophilic/hydrophobic balance of the chemicals used in the …
Stability Of Affinity Based Layer-By-Layer Polymeric Self-Assemblies For Oral Wound Applications, Sundar Prasanth Authimoolam
Stability Of Affinity Based Layer-By-Layer Polymeric Self-Assemblies For Oral Wound Applications, Sundar Prasanth Authimoolam
Theses and Dissertations--Chemical and Materials Engineering
Oral mucositis is a painful and debilitating chronic inflammatory condition that can result from chemo and/or radiotherapy. While current treatment strategies which provide temporary relief exist, there is still an unmet clinical need for a robust long active barrier strategy which can simultaneously provide protection and release drug to enhance the wound healing response. It is proposed that an affinity based layer-by-layer self-assembled barrier administered as a series of mouth rinses can allow for wound specific drug delivery, providing an effective regenerative therapy.
In this work, biotinylated poly(acrylic acid) is used to develop LBL assemblies based upon biotin-streptavidin affinity interactions. …
Targeted Polymeric Biomaterials For The Prevention Of Post Surgical Adhesions, John M. Medley
Targeted Polymeric Biomaterials For The Prevention Of Post Surgical Adhesions, John M. Medley
University of Kentucky Doctoral Dissertations
Despite recent advances in surgical technique and the development of numerous therapeutic agents, the formation post surgical adhesions (PSA) continues to cause complications for many patients. In this research, we have employed a rational system to develop a novel treatment to address this clinical need. Based on an understanding of the biochemical events that lead to PSA formation, a series of targeted polymeric biomaterials was designed to interrupt the fibrin gel matrix propagation and suppress PSA formation.
Using group transfer polymerization, a series of well controlled block copolymers of polyacrylic acid and poly(ethylene glycol-methacrylate) based materials was synthesized. Subsequent functionalization …
Effects Of Growth Media Ph And Reaction Water Activity On The Conversion Of Acetophenone To (S)-1-Phenylethanol By Saccharomyces Cerevisiae Immobilized On Celite 635 And In Calcium Alginate, Nicholas P. Coleman, Czarena Crofcheck, Sue E. Nokes, Barbara L. Knutson
Effects Of Growth Media Ph And Reaction Water Activity On The Conversion Of Acetophenone To (S)-1-Phenylethanol By Saccharomyces Cerevisiae Immobilized On Celite 635 And In Calcium Alginate, Nicholas P. Coleman, Czarena Crofcheck, Sue E. Nokes, Barbara L. Knutson
Biosystems and Agricultural Engineering Faculty Publications
Biologically catalyzed reactions often produce enantiomers of the product; however, only one configuration is desired. Reaction conditions are known to affect enantiomer ratios and reaction kinetics, but little is known regarding the effect of processing conditions on whole-cell biocatalysis. Saccharomyces cerevisiae cells were grown in batch on glucose at pH = 4, 5, and 7, and then immobilized on Celite beads or in calcium alginate beads and used as the biocatalyst for the conversion of acetophenone in hexane to (S)-1-phenylethanol at water activities of 0.37, 0.61, and 0.80. S. cerevisiae was used as a model microorganism for the whole-cell catalyzed …