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Water-Fat Magnetic Resonance Imaging For The Assessment Of Human Fetal Adipose Tissue, Stephanie A. Giza Jul 2023

Water-Fat Magnetic Resonance Imaging For The Assessment Of Human Fetal Adipose Tissue, Stephanie A. Giza

Electronic Thesis and Dissertation Repository

Adipose tissue is crucial for providing heat and energy to infants, especially at transitions such as birth and therefore must begin developing in utero. This development may be altered due to an adverse uterine environment, increasing the risk of developing later-life metabolic diseases such as obesity. An early assessment of fetal adipose tissue development through lipid accumulation could be key to understanding metabolic programming and minimizing this risk.

Water-fat magnetic resonance imaging (MRI) can non-invasively measure the lipid concentration of tissues and can therefore monitor the development of adipose tissue via tissue lipid concentration. This work demonstrated the feasibility …


Pancreatic Beta Cell Plasticity And Involvement Of Insulin-Expressing Progenitor Cells, Christine A. Beamish Nov 2014

Pancreatic Beta Cell Plasticity And Involvement Of Insulin-Expressing Progenitor Cells, Christine A. Beamish

Electronic Thesis and Dissertation Repository

Islet transplants have been successfully used as treatment for diabetes, but are limited by shortages of cadaveric insulin-producing β-cells. An alternate source may be the dedifferentiation, expansion, and subsequent redifferentiation of pancreatic islets or β-cells using in vitro techniques prior to transplant. Based on protocols which described the dedifferentiation of human islets to ductal-like cells, we hypothesized that neonatal mouse islets could be similarly dedifferentiated in vitro. Dedifferentiation techniques produced significant duct-like cells, but redifferentiation to insulin-expressing cells was limited. RIPCre;Z/AP+/+ mice were consequently utilized to lineage trace β-cell fate during culture by a human placental alkaline phosphatase (HPAP) reporter. …


Investigation Of Histone Lysine Methylation In Stem Cell Differentiation Using Inhibitor Peptide, Wendy Zhu Apr 2012

Investigation Of Histone Lysine Methylation In Stem Cell Differentiation Using Inhibitor Peptide, Wendy Zhu

Electronic Thesis and Dissertation Repository

In an effort to expand the histone code, we examine a novel site of methylation on lysine 43 of histone H2B. In mouse embryonic stem cells (ESCs), KDM5b acts as the lysine demethylase for H2BK43me2, diminishing this histone mark as cells differentiate. We utilize a synthetic peptide mimetic corresponding to amino acids 37-49 of histone H2B in order to sterically inactivate KDM5b enzyme. The addition of inhibitor peptide into culture enhanced stem cell differentiation, upregulating cell cycle and neural-specific markers while downregulating the expression of pluripotency genes. Global gene analysis patterns of peptide-treated ESCs were representative of differentiated cell populations. …


The Effects Of Low Protein During Gestation On Mouse Pancreas Development And Beta Cell Regeneration, Aaron R. Cox Jun 2011

The Effects Of Low Protein During Gestation On Mouse Pancreas Development And Beta Cell Regeneration, Aaron R. Cox

Electronic Thesis and Dissertation Repository

Effects of a low protein (LP) diet during gestation on the metabolism of rat offspring have been well characterized and leads to glucose intolerance in adulthood. It is unknown how LP impacts endocrine pancreas development in the mouse, or whether this affects future β-cell plasticity. Streptozotocin (STZ) – induced β-cell injury has been demonstrated to be followed by β-cell regeneration in young animals, but the mechanism(s) of regeneration are not clear. Our objective was to characterize a mouse model of maternal LP, in addition to identifying factors that contribute to the long term development of glucose intolerance and the mechanism …