Differentiation Of Ipscs Into Cardiomyocytes Utilizing Extracellular Matrix,
2017
Brigham Young University
Differentiation Of Ipscs Into Cardiomyocytes Utilizing Extracellular Matrix, Arthur Castleton, Alonzo Cook
Journal of Undergraduate Research
According to the American Heart Association, Ischemic heart disease is the principal cause of death. Many potential therapies are being simultaneously explored and among the most promising is tissue engineering of cardiac scaffolds. In vitro culturing of mature cardiomyocytes has the potential to lay the foundation for products such as cardiac patches for treatment of early stages of Ischemic heart disease or atrial septal defects, and developing entire replacement hearts. However, cardiomyocyte cell culture and experimentation has encountered various difficulties; the inability to proliferate, incomplete maturation, and having a small window of functional contraction. Conversely, iPSCs can partially differentiate into …
Pluripotent Stem Cell (Ipsc) Differentiation To Kidney Phenotype With Conditioned Media Of Rctes,
2017
Brigham Young University
Pluripotent Stem Cell (Ipsc) Differentiation To Kidney Phenotype With Conditioned Media Of Rctes, Angela Nakalembe, Dr. Alonzo Cook
Journal of Undergraduate Research
According to the latest U.S. Renal Data System Annual Data Report, more than 660,000 Americans are currently being treated for kidney failure, also called end stage renal disease (ESRD). The current treatment options, dialysis and kidney transplants, work well in some instances but have disadvantages, such as the inability to perform hormone regulation and potential organ rejection respectively.
The overall aim of our work is to create bioengineered kidneys that will provide alternative solutions to the current treatment methods without any of the drawbacks. New breakthroughs in the biomedical world support the theory that organs can be grown from cultured …
Biosensor System For The Detection Of Endocrine Disrupting Chemicals,
2017
Brigham Young University
Biosensor System For The Detection Of Endocrine Disrupting Chemicals, Conner Earl, Bradley Bundy
Journal of Undergraduate Research
Endocrine Disrupting Chemicals (EDCs) present problems worldwide and have been linked to cancer, developmental disorders, and other epigenetic complications. Many of these complications could be mitigated if not eradicated if these chemicals were better characterized and detectable, however an inexpensive, reliable and field deployable sensor for EDCs has yet to be developed. The purpose of this project was to explore the idea of an engineered Cell Free biosensor system that is an economic, viable method for the rapid detection of EDCs.
Portable Food & Water Sanitation By Means Of Energetic Photons,
2017
Brigham Young University
Portable Food & Water Sanitation By Means Of Energetic Photons, Jordan Argyle, Matthew Memmott
Journal of Undergraduate Research
At least 1 in 10 people across the globe do not have access to clean water.1 The World Health Organization considers food and drink contamination to be “the most widespread health problem in the contemporary world.”2 An estimated 600 million people fall ill from eating contaminated food or drinking contaminated water every year, of which nearly half a million die. Most of those illnesses are caused by pathogens rather than chemical contamination.3
Analysis Of Magnetic Resonance Imaging Of Peripheral Nerve Regeneration,
2017
Brigham Young University
Analysis Of Magnetic Resonance Imaging Of Peripheral Nerve Regeneration, Jaron Lundwall, Alonzo Cook
Journal of Undergraduate Research
Due to accident-related neural damage, many people’s lives are impaired or limited in what they can do. Current medical practices are limited at helping distal and proximal nerve stubs regenerate. Many recent research studies have focused on trying to improve this problem by understanding how cut or crushed nerves heal. This study focused on helping these efforts by improving non-invasive analysis techniques of nerve growth. Magnetic Resonance Imaging (MRI) is one possible solution to creating a reliable analysis technique that in the future could be used on humans. We have shown that Magnetic Resonance Imaging can be used without invasive …
Characterization Of Polyester Polymer Concrete Material Properties,
2017
Brigham Young University
Characterization Of Polyester Polymer Concrete Material Properties, Robert Stevens, Dr. W. Spencer Guthrie
Journal of Undergraduate Research
The purpose of this project was to investigate selected material properties of polyester polymer concrete (PPC) using laboratory testing. PPC is a synthetic concrete that combines sand and coarse aggregate with a polyester resin binder that takes the place of conventional portland cement. PPC is commonly used as an overlay material on bridge decks. There is some ambiguity about several important mechanical properties of PPC, including coefficient of thermal expansion (CTE), degree of hardening, and modulus of elasticity. The objective of this research was to investigate the effect of temperature on these properties. The results of this research will help …
Methanol Steam Reforming: Na Doping Of Pt/Ysz Provides Fine Tuning Of Selectivity,
2017
University of Kentucky
Methanol Steam Reforming: Na Doping Of Pt/Ysz Provides Fine Tuning Of Selectivity, Michela Martinelli, Gary Jacobs, Uschi M. Graham, Burtron H. Davis
Center for Applied Energy Research Faculty and Staff Publications
In this work, we found that sodium doping can be used to improve CO2 selectivity for supported Pt catalyst during methanol steam reforming. These materials are usually very active in the low temperature range; however, they are characterized by high selectivity of CO, which is a poison in downstream polymer electrolyte membrane fuel cells (PEM-FC) application. With Na doping, we found that CO2 selectivity was higher than 90% when 2.5 wt.% of sodium was added to Pt/YSZ. We have speculated that the different product distribution is due to a different reaction pathway being opened for CH3OH …
Biomaterials For Local, Controlled Drug Delivery To The Injured Spinal Cord,
2017
Missouri University of Science and Technology
Biomaterials For Local, Controlled Drug Delivery To The Injured Spinal Cord, Alexis M. Ziemba, Ryan J. Gilbert
Chemical and Biochemical Engineering Faculty Research & Creative Works
Affecting approximately 17,000 new people each year, spinal cord injury (SCI) is a devastating injury that leads to permanent paraplegia or tetraplegia. Current pharmacological approaches are limited in their ability to ameliorate this injury pathophysiology, as many are not delivered locally, for a sustained duration, or at the correct injury time point. With this review, we aim to communicate the importance of combinatorial biomaterial and pharmacological approaches that target certain aspects of the dynamically changing pathophysiology of SCI. After reviewing the pathophysiology timeline, we present experimental biomaterial approaches to provide local sustained doses of drug. In this review, we present …
Integration Host Factor Stabilized Pcr- Amplified Dna For High-Throughput Protein Synthesis Subtitle,
2017
Brigham Young University
Integration Host Factor Stabilized Pcr- Amplified Dna For High-Throughput Protein Synthesis Subtitle, William Bradley, Bradley Bundy
Journal of Undergraduate Research
As the search continues for novel proteins with market-incentivized properties, the demand for tools to accelerate the identification of these proteins increases. This has led to investigating methods for screening proteins that yield faster results (high-throughput) with greater titers of protein stable enough for analysis (high yield).
Tissue Engineering: Cell-Seeded 3d Printed Vascular Graft,
2017
Brigham Young University
Tissue Engineering: Cell-Seeded 3d Printed Vascular Graft, Tomonori Baba, Alonzo Cook
Journal of Undergraduate Research
The purpose of this project was to create and test a biocompatible modified alginate gel for 3D printing blood vessels to be used in vascular networks for tissue engineering and as vascular grafts. Vascular disease is the leading cause of death in the United States, and more than $100 billion are spent annually for its treatment. Treatments for cardiovascular disease, such as synthetic blood vessels still have some problems with thrombosis and immune rejection. We propose to use the patient’s own cells to form replacement blood vessels, to reduce the risk of immune rejection and the endothelial cells will be …
The Use Of A Passive Endothermic Reactor Cooling System For Lwr Emergency Cooling,
2017
Brigham Young University
The Use Of A Passive Endothermic Reactor Cooling System For Lwr Emergency Cooling, Joel Johnson, Dr. Matthew Memmott
Journal of Undergraduate Research
The purpose of the project was to test the viability and begin design on a passive endothermic reaction cooling system (PERCS). The idea behind PERCS is to improve the safety of and to avoid potential disasters resulting from accident conditions in nuclear reactors. To do this, a PERCS will be designed that can be simply integrated into current nuclear power plant systems. The PERCS concepts to date are completely passive; rather than requiring valve or operator actuation, the system initiates due to natural conditions in the reactor system.
Cytosolic Delivery Of Doxorubicin From Liposomes To Multidrug-Resistant Cancer Cells Via Vaporization Of Perfluorocarbon Droplets,
2017
Brigham Young University
Cytosolic Delivery Of Doxorubicin From Liposomes To Multidrug-Resistant Cancer Cells Via Vaporization Of Perfluorocarbon Droplets, Jacob B. Williams, Clara M. Buchanan, Ghaleb Husseini, William G. Pitt
Faculty Publications
A common mechanism of multidrug resistance is the upregulation of efflux pumps in the cancer cells that can more rapidly export unwanted materials (e.g. cancer drugs) out of the cell, compared to sensitive cancer cells. This research seeks to overcome this mechanism by vaporizing a perfluoropentane emulsion droplet inside of a drug-containing liposome (eLiposome) that was endocytosed into a cancer cell. Folate attached to the eLiposome facilitates uptake into the cell as observed by confocal microscopy. Ultrasound was examined as a trigger to initiate the vaporization of the perfluoropentane droplet and release doxorubicin from folated eLipsosomes (feLD). Two seconds of …
Cytosolic Delivery Of Doxorubicin From Liposomes To Multidrug-Resistant Cancer Cells Via Vaporization Of Perfluorocarbon Droplets,
2017
Brigham Young University - Provo
Cytosolic Delivery Of Doxorubicin From Liposomes To Multidrug-Resistant Cancer Cells Via Vaporization Of Perfluorocarbon Droplets, Jacob B. Williams, Clara M. Buchanan, Ghaleb A. Husseini, William G. Pitt
Faculty Publications
A common mechanism of multidrug resistance is the upregulation of efflux pumps in the cancer cells that can more rapidly export unwanted materials (e.g. cancer drugs) out of the cell, compared to sensitive cancer cells. This research seeks to overcome this mechanism by vaporizing a perfluoropentane emulsion droplet inside of a drug-containing liposome (eLiposome) that was endocytosed into a cancer cell. Folate attached to the eLiposome facilitates uptake into the cell as observed by confocal microscopy. Ultrasound was examined as a trigger to initiate the vaporization of the perfluoropentane droplet and release doxorubicin from folated eLiposomes (feLD). Two seconds of …
Experimental Analysis Of R134a, R22, And R404 For An Edibon Taab: Air Conditioning Lab Unit,
2017
James Madison University
Experimental Analysis Of R134a, R22, And R404 For An Edibon Taab: Air Conditioning Lab Unit, Kyle T. Heesen
Senior Honors Projects, 2010-2019
This paper presents an experimental analysis of an Ebidon® TAABTM: Air Conditioning Lab unit running on R-134a being compared with R22 and R404 refrigerants, a $24,449 piece of equipment purchased by the JMU ISAT Department. In this paper we will compare the performance of the R-134a refrigerant under a range of working conditions and compare them to how the system would run on R22 or R404. The experimental tests use varying fan speeds and the R-134a data collected is compared to simulated data collected for R22 and R404. Analysis of the collected data and simulated data will be compared on …
Potential Benefits Of Combining Anomaly Detection With View Planning For Uav Infrastructure Modeling,
2017
Brigham Young University
Potential Benefits Of Combining Anomaly Detection With View Planning For Uav Infrastructure Modeling, R. Abraham Martin, Landen Blackburn, Joshua Pulsipher, Kevin W. Franke, John Hedengren
Faculty Publications
This paper presents a novel method for UAV-based 3D modeling of large infrastructure objects, such as pipelines, canals and levees, that combines anomaly detection with automatic on-board 3D view planning. The study begins by assuming that anomaly detections are possible and focuses on quantifying the potential benefits of the combined method and the view planning algorithm. A simulated canal environment is constructed, and several simulated anomalies are created and marked. The algorithm is used to plan inspection flights for the anomaly locations, and simulated images from the flights are rendered and processed to construct 3D models of the locations of …
Analyzing Potential Benefits Of Heat Integration Designs For A Dtbp Production Plant,
2017
University of South Carolina
Analyzing Potential Benefits Of Heat Integration Designs For A Dtbp Production Plant, Paul Stanzione
Senior Theses
This thesis looks at the implementation of various heat integration designs for a ditertiary butyl peroxide (DTBP) production plant. Heat integration, also known as process integration, is a common industrial practice in the chemical process industry to reduce utility costs. Heat integration is commonly analyzed using pinch technology, which focuses producing a heat exchanger design that pairs hot streams with excess energy with cold streams that need to be heated. These designs usually cut utility costs, but they also require the building of more heat exchangers to place within the process.
Determination Of Fatty Acid Methyl Esters Derived From Algae Scenedesmus Dimorphus Biomass By Gc-Ms With One-Step Esterification Of Free Fatty Acids And Transesterification Of Glycerolipids,
2017
Cleveland State University
Determination Of Fatty Acid Methyl Esters Derived From Algae Scenedesmus Dimorphus Biomass By Gc-Ms With One-Step Esterification Of Free Fatty Acids And Transesterification Of Glycerolipids, Satya Girish Chandra Avula, Joanne M. Belovich, Yan Xu
Chemical & Biomedical Engineering Faculty Publications
Algae can synthesize, accumulate and store large amounts of lipids in its cells, which holds immense potential as a renewable source of biodiesel. In this work, we have developed and validated a GC–MS method for quantitation of fatty acids and glycerolipids in forms of fatty acid methyl esters derived from algae biomass. Algae Scenedesmus dimorphus drymass was pulverized by mortar and pestle, then extracted by the modified Folch method and fractionated into free fatty acids and glycerolipids on aminopropyl solid-phase extraction cartridges. Fatty acid methyl esters were produced by an optimized one-step esterification of fatty acids and transesterification of glycerolipids …
An Industrial Process For The Production Of Nylon 6 6 Through The Step-Growth Reaction Of Adipic Acid And Hexamethylenediamine,
2017
University of Arkansas, Fayetteville
An Industrial Process For The Production Of Nylon 6 6 Through The Step-Growth Reaction Of Adipic Acid And Hexamethylenediamine, David Wallace Jacobson
Chemical Engineering Undergraduate Honors Theses
A continuous, two stage, four reactor system process is presented here for the proposed purpose of nylon 6 6 manufacture at the rate of 85 million lbs per year. Report components include: process descriptions, simulation methods and results, economic analysis, EH&S considerations, process control descriptions, and a general recommendation for how to proceed with plans enclosed. The general design of the plant is a two stage system composed of one PFR used for the formation of nylon salt and low molecular weight nylon chains, followed by three CSTR’s used for increasing nylon molecular weight. The overall process has been found …
Synthesis Of Graphene Oxide Membranes And Their Behavior In Water And Isopropanol,
2017
University of Kentucky
Synthesis Of Graphene Oxide Membranes And Their Behavior In Water And Isopropanol, Ashish Aher, Yuguang Cai, Mainak Majumder, Dibakar Bhattacharyya
Chemical and Materials Engineering Faculty Publications
Graphene oxide (GO) membrane has been synthesized on commercial polysulfone ultrafiltration membranes (Pore size: 17 nm) using the drop casting method followed by baking at 90 C for 24 h. Baking resulted in the reduction of GO and removal of bulk water intercalated in the GO sheets. Deposited GO film showed high stability under shear stress variation. This work shows that water adsorption on the GO membrane determines its permeation performance. Despite the higher viscosity of isopropyl alcohol (IPA), its permeability was 7 times higher than water through the baked (“dry”) GO membranes, which were never contacted with water. However, …
Novel Iii-V Alloys For Unassisted Water Splitting.,
2017
University of Louisville
Novel Iii-V Alloys For Unassisted Water Splitting., Alejandro Martinez-Garcia
Electronic Theses and Dissertations
Direct conversion of solar energy to fuels by photoelectrochemical (PEC) water splitting has been identified as a promising route for sustainable power generation and storage. However, semiconductor materials with suitable opto-electronic properties have yet to be identified. In this dissertation, band gap engineering of III-V alloys, tuning the light sensitivity of GaP and GaN nitride through alloying Sb, is investigated for developing new semiconductor alloys with appropriate opto-electronic properties and their performance with overall water photoelectrolysis. In addition to III-V materials, copper oxide (Cu2O) electrode was investigated for p-type semiconductor material. The new III-V alloy anodes were studied …
