学位论文详细信息
Engineering stem cell responses using oxidative stress and notch ligand containing hydrogels
Adult stem cells;Notch;Hydrogel;Oxidative stress;Myocardial infarction
Boopathy, Archana Vidya ; Davis, Michael E. Biomedical Engineering (Joint GT/Emory Department) García, Andrés Jo, Hanjoong Platt, Manu O. Salaita, Khalid ; Davis, Michael E.
University:Georgia Institute of Technology
Department:Biomedical Engineering (Joint GT/Emory Department)
关键词: Adult stem cells;    Notch;    Hydrogel;    Oxidative stress;    Myocardial infarction;   
Others  :  https://smartech.gatech.edu/bitstream/1853/51837/1/BOOPATHY-DISSERTATION-2014.pdf
美国|英语
来源: SMARTech Repository
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【 摘 要 】

Heart failure is the leading cause of death worldwide. In 2013, the American Heart Association estimated that one American will die of cardiovascular disease every 39 seconds. While heart transplantation is the most viable treatment option, the limited availability of donor hearts has necessitated the search for treatment alternatives such as the use of adult stem cells for cardiac repair and regeneration. Following myocardial infarction (MI), the inflammatory cardiac microenvironment, limited survival of stem/progenitor cells, myocardial scarring and fibrosis affect cardiac regeneration.This dissertation examines adult stem cell based approaches for cardiac regeneration by studying the effect of i) H₂O₂- mediated oxidative stress on mesenchymal stem cells, ii) Notch1 activation in cardiac progenitor cells using a self-assembling peptide hydrogel containing the Notch1 ligand mimic RJ in vitro and functional consequences in a rat model of MI. Through these approaches, the central hypothesis that modulation of stem cell response using cues such as oxidative stress and activation of Notch1 signaling can improve functional outcome following myocardial infarction has been studied.

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