Date of Award
1-1-2015
Language
English
Document Type
Dissertation
Degree Name
Doctor of Philosophy (PhD)
College/School/Department
Department of Nanoscale Science and Engineering
Program
Nanoscale Sciences
Content Description
1 online resource (x, 153 pages) : color illustrations
Dissertation/Thesis Chair
Yubing Xie
Committee Members
Juan Andres Melendez, Janet Paluh, James Castracane, David Corr
Keywords
Adipogenesis, Brown fat, Hydrogel, Microstrand, Stem cell, Tissue engineering, Brown adipose tissue, Fat cells, Embryonic stem cells, Mice, Obesity
Subject Categories
Biomedical Engineering and Bioengineering | Cell Biology | Nanoscience and Nanotechnology
Abstract
The ability of brown adipocytes (fat cells) to dissipate energy as heat shows great promise for the treatment of obesity and other metabolic disorders. Employing pluripotent stem cells, with an emphasis on directed differentiation, may overcome many issues currently associated with primary fat cell cultures. However, brown adipocytes are difficult to transplant in vivo due to the instability of fat, in terms of necrosis and neovascularization, once injected. Thus, 3D cell culture systems that have the potential to mimic adipogenic microenvironments are needed, not only to advance brown fat implantation, but also to better understand the role of brown adipocytes in treating obesity. To address this need, we created 3D "Brown-Fat-in-Microstrands" by microfluidic synthesis of alginate hydrogel microstrands that encapsulated cells and directly induced cell differentiation into brown adipocytes, using mouse embryonic stem cells (ESCs) as a model of pluripotent stem cells and brown preadipocytes as a positive control. The effect of hydrogel formation parameters on brown adipogenesis was studied, leading to the establishment of "Brown-Fat-in-Microstrands". Brown adipocyte differentiation within microstrands was confirmed by lipid droplet accumulation, immunocytochemistry and qPCR analysis of gene expression of brown adipocyte marker uncoupling protein 1 (UCP1) in addition to adipocyte marker expression. Compared to a 2D approach, 3D differentiated "Brown-Fat-in-Microstrands" exhibited higher level of brown adipocyte marker expression. The functional analysis of "Brown-Fat-in-Microstrands" was attempted by measuring the mitochondrial activity of ESC-differentiated brown adipocytes in 3D using Seahorse XF243 Extracellular Flux Analyzer. The ability to create "Brown-Fat-in-Microstrands" from pluripotent stem cells opens up a new arena to understanding brown adipogenesis and its implications in obesity and metabolic disorders.
Recommended Citation
Unser, Andrea Mannarino, "Brown adipogenesis of mouse embryonic stem cells in alginate microstrands" (2015). Legacy Theses & Dissertations (2009 - 2024). 1529.
https://scholarsarchive.library.albany.edu/legacy-etd/1529
Included in
Biomedical Engineering and Bioengineering Commons, Cell Biology Commons, Nanoscience and Nanotechnology Commons