Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression

abstract: Gene delivery is a broadly applicable tool that has applications in gene therapy, production of therapeutic proteins, and as a study tool to understand biological pathways. However, for successful gene delivery, the gene and its carrier must bypass or traverse a number of formidable obstac...

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Other Authors: Christensen, Matthew David (Author)
Format: Doctoral Thesis
Language:English
Published: 2016
Subjects:
Online Access:http://hdl.handle.net/2286/R.I.40277
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spelling ndltd-asu.edu-item-402772018-06-22T03:07:45Z Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression abstract: Gene delivery is a broadly applicable tool that has applications in gene therapy, production of therapeutic proteins, and as a study tool to understand biological pathways. However, for successful gene delivery, the gene and its carrier must bypass or traverse a number of formidable obstacles before successfully entering the cell’s nucleus where the host cell’s machinery can be utilized to express a protein encoded by the gene of interest. The vast majority of work in the gene delivery field focuses on overcoming these barriers by creative synthesis of nanoparticle delivery vehicles or conjugation of targeting moieties to the nucleic acid or delivery vehicle, but little work focuses on modifying the target cell’s behavior to make it more amenable to transfection. In this work, a number of kinase enzymes have been identified by inhibition to be targets for enhancing polymer-mediated transgene expression (chapter 2), including the lead target which appears to affect intracellular trafficking of delivered nucleic acid cargo. The subsequent sections (chapters 3 and 4) of this work focus on targeting epigenetic modifying enzymes to enhance polymer-mediated transgene expression, and a number of candidate enzymes have been identified. Some mechanistic evaluation of these targets have been carried out and discussion of ongoing experiments and future directions to better understand the mechanistic descriptions behind the phenomena are discussed. The overall goal is to enhance non-viral (polymer-mediated) transgene expression by modulating cellular behavior for general gene delivery applications. Dissertation/Thesis Christensen, Matthew David (Author) Rege, Kaushal (Advisor) Nielsen, David (Committee member) Green, Matthew (Committee member) Haynes, Karmella (Committee member) Muthuswamy, Jitendran (Committee member) Arizona State University (Publisher) Chemical engineering Epigenetics Gene Delivery Kinase Inhibitors Non-viral Gene Delivery Polymer-mediated Gene Delivery Transient Expression eng 166 pages Doctoral Dissertation Chemical Engineering 2016 Doctoral Dissertation http://hdl.handle.net/2286/R.I.40277 http://rightsstatements.org/vocab/InC/1.0/ All Rights Reserved 2016
collection NDLTD
language English
format Doctoral Thesis
sources NDLTD
topic Chemical engineering
Epigenetics
Gene Delivery
Kinase Inhibitors
Non-viral Gene Delivery
Polymer-mediated Gene Delivery
Transient Expression
spellingShingle Chemical engineering
Epigenetics
Gene Delivery
Kinase Inhibitors
Non-viral Gene Delivery
Polymer-mediated Gene Delivery
Transient Expression
Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression
description abstract: Gene delivery is a broadly applicable tool that has applications in gene therapy, production of therapeutic proteins, and as a study tool to understand biological pathways. However, for successful gene delivery, the gene and its carrier must bypass or traverse a number of formidable obstacles before successfully entering the cell’s nucleus where the host cell’s machinery can be utilized to express a protein encoded by the gene of interest. The vast majority of work in the gene delivery field focuses on overcoming these barriers by creative synthesis of nanoparticle delivery vehicles or conjugation of targeting moieties to the nucleic acid or delivery vehicle, but little work focuses on modifying the target cell’s behavior to make it more amenable to transfection. In this work, a number of kinase enzymes have been identified by inhibition to be targets for enhancing polymer-mediated transgene expression (chapter 2), including the lead target which appears to affect intracellular trafficking of delivered nucleic acid cargo. The subsequent sections (chapters 3 and 4) of this work focus on targeting epigenetic modifying enzymes to enhance polymer-mediated transgene expression, and a number of candidate enzymes have been identified. Some mechanistic evaluation of these targets have been carried out and discussion of ongoing experiments and future directions to better understand the mechanistic descriptions behind the phenomena are discussed. The overall goal is to enhance non-viral (polymer-mediated) transgene expression by modulating cellular behavior for general gene delivery applications. === Dissertation/Thesis === Doctoral Dissertation Chemical Engineering 2016
author2 Christensen, Matthew David (Author)
author_facet Christensen, Matthew David (Author)
title Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression
title_short Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression
title_full Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression
title_fullStr Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression
title_full_unstemmed Modulation of Mammalian Cell Behavior for Enhancing Polymer-mediated Transgene Expression
title_sort modulation of mammalian cell behavior for enhancing polymer-mediated transgene expression
publishDate 2016
url http://hdl.handle.net/2286/R.I.40277
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