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Macromolecular Crowding On The Formation Of Amyloid Fiber Hydrogel, Rachael Marie Crews 2023 Florida Institute of Technology

Macromolecular Crowding On The Formation Of Amyloid Fiber Hydrogel, Rachael Marie Crews

Theses and Dissertations

The aggregation of proteins to form fibrillar deposits is a hallmark of numerous medical conditions, including Alzheimer’s Disease (AD). Protein monomers aggregate to form amyloid fibers, followed by these fibers further aggregating to form larger structures such as fiber bundles and hydrogels. Previous studies into protein aggregation were mostly done under dilute solutions that poorly reflect the crowded nature of the tissue environment. Can a liquid solution truthfully represent what is going on in a solid tissue? Utilizing lysozyme as a model protein and two different polysaccharides as crowding agents, dextran and hyaluronic acid (HA), the effects of macromolecular crowding …


Investigating The Phenotypic Effects Of Ring1- And Yy1-Binding Protein (Rybp) In Glioblastoma Multiforme, Ronald W. Bucher 2023 Winthrop University

Investigating The Phenotypic Effects Of Ring1- And Yy1-Binding Protein (Rybp) In Glioblastoma Multiforme, Ronald W. Bucher

Graduate Theses

Glioblastoma multiforme (GBM) is an aggressive form of brain cancer that has horrendous survival outcomes with the use of current therapies. Further study into its molecular mechanisms will inform development of new, more effective treatments. The Polycomb protein RING1- and YY1- Binding Protein (RYBP) has emerged as an important gene in multiple cancers. In complex with other Polycomb proteins, RYBP acts to repress regions of chromatin, though it also performs other functions independent of these complexes. RYBP has a tumor suppressive role in various cancers, but may act as an oncogene in others, demonstrating its context-specific effects. The role of …


Crispr-Based Genome Editing Of Caenorhabditis Elegans And Cultured Human Cells, Katie Marie Toperzer 2023 Florida Institute of Technology

Crispr-Based Genome Editing Of Caenorhabditis Elegans And Cultured Human Cells, Katie Marie Toperzer

Theses and Dissertations

The fields of genetics and molecular biology have grown exponentially in the knowledge and ability to edit DNA sequences. The discovery of DNA structure in the 1950s and enzymes that are able to make site-specific cuts in the 1970s allowed scientists to harness growth in the field of genetic engineering and develop realistic gene therapies for diseases. In my thesis, I will utilize cutting-edge technology to be the first person at Florida Tech to genetically engineer two different model systems. Using CRISPR, I will study the molecular mechanisms of fertilization by introducing a genetically encoded reporter in C. elegans. Additionally, …


A Review Of The Neural Basis Underlying The Acoustic Startle Response With A Focus On Recent Developments In Mammals, Alice Zheng, Susanne Schmid 2023 University of Western Ontario

A Review Of The Neural Basis Underlying The Acoustic Startle Response With A Focus On Recent Developments In Mammals, Alice Zheng, Susanne Schmid

Anatomy and Cell Biology Publications

The startle response consists of whole-body muscle contractions, eye-blink, accelerated heart rate, and freezing in response to a strong, sudden stimulus. It is evolutionarily preserved and can be observed in any animal that can perceive sensory signals, indicating the important protective function of startle. Startle response measurements and its alterations have become a valuable tool for exploring sensorimotor processes and sensory gating, especially in the context of pathologies of psychiatric disorders. The last reviews on the neural substrates underlying acoustic startle were published around 20 years ago. Advancements in methods and techniques have since allowed new insights into acoustic startle …


The Effects Of Salt And Temperature On Three Methanogen Species: Implications For Mars, Katy Dunlap 2023 University of Arkansas, Fayetteville

The Effects Of Salt And Temperature On Three Methanogen Species: Implications For Mars, Katy Dunlap

Biological Sciences Undergraduate Honors Theses

The question of whether life has ever existed on Mars – either in the past or currently – has been pursued for decades. This debate has been prompted by a variety of discoveries regarding similarities between Mars and Earth and more recently concerns over human extinction. Mars, like Earth, once had large amounts of water, a key ingredient for life. H2O exists on Mars in various forms now, and it is theorized that there is liquid water beneath the surface as well. Mars also contains salt and is very cold at its surface, pointing researchers towards the idea …


Investigating The Role Of The Sumo-Activating Enzyme, Uba2, In Infection-Related Morphogenesis Of Magnaporthe Oryzae, Rachel Taylor 2023 University of Arkansas, Fayetteville

Investigating The Role Of The Sumo-Activating Enzyme, Uba2, In Infection-Related Morphogenesis Of Magnaporthe Oryzae, Rachel Taylor

Biological Sciences Undergraduate Honors Theses

The plant pathogenic fungus Magnaporthe oryzae forms a specialized pressure-generating infection cell called an appressorium on the leaf surface, which it uses to mechanically rupture the otherwise impenetrable cuticle, enabling colonization of the underlying tissue and the establishment of blast disease. Appressorium differentiation by M. oryzae is cell cycle-regulated and requires programmed cell death of a three-celled propagative spore, as well as extensive remodeling of the microtubule, actin, and septin cytoskeletons. Recent studies have proposed the importance of sumoylation – the enzymatic conjugation of a small ubiquitin-like modifier to target proteins, for various aspects of infection-related development by M. oryzae, …


Measuring Energy Demands Of Dynamic Remodeling Events During Embryogenesis In Live Drosophila Embryos, Grayson Young 2023 University of Arkansas, Fayetteville

Measuring Energy Demands Of Dynamic Remodeling Events During Embryogenesis In Live Drosophila Embryos, Grayson Young

Biological Sciences Undergraduate Honors Theses

Embryonic development is a complex process requiring dynamic cell movements to create complex tissue structures. We assume that these embryonic dynamic remodeling events are highly energy intensive and that this energy expenditure is mediated by mitochondria. However, this has been difficult to demonstrate in live embryos. Convergent extension of the Drosophila neuroectoderm is a promising system to study the bioenergetics of tissue remodeling because it changes from a static to a dynamically remodeling tissue with temporal precision. We hypothesize that the switch from static to dynamic development at the onset of convergent extension will be accompanied by an increase in …


Effects Of Sow Vocalization And Scent On Complete Blood Cell Count During Early Weaning Period, Mason Paladino 2023 University of Arkansas, Fayetteville

Effects Of Sow Vocalization And Scent On Complete Blood Cell Count During Early Weaning Period, Mason Paladino

Biological Sciences Undergraduate Honors Theses

Piglets are deprived of their sows’ touch, sound, and smell after weaning which results in biological stress. The present study investigated continuing exposure of sow vocalization and scent during the early weaning period on complete blood cell count. A total of 12 litters, 8 piglets (4 male and 4 female) per litter were selected at weaning and assigned to 1 of 4 experimental treatments: control, O (olfactory group with scent and no vocal stimulation), V (non-olfactory with vocal stimulation), VO (vocal stimulation and olfactory stimulation) as a 2x2 factorial arrangement. Vocal stimulation was emulated by an audio recording of the …


Studying The Phosphorylation Of Isocitrate Dehydrogenase In Humans, Hannah Smith 2023 University of Arkansas, Fayetteville

Studying The Phosphorylation Of Isocitrate Dehydrogenase In Humans, Hannah Smith

Chemistry & Biochemistry Undergraduate Honors Theses

Isocitrate dehydrogenase is an important enzyme in the citric acid cycle where it catalyzes the oxidative decarboxylation of isocitrate to alpha-ketoglutarate. While there are three isoforms of isocitrate dehydrogenase (IDH1, IDH2, and IDH3), this research will focus on IDH1. The phosphorylation of isocitrate dehydrogenase is a process that has been linked to the formation of both luminal-like and basal-like breast cancer. Despite these correlations, the mechanisms that cause breast cancer development are unknown. To examine this, an enzyme activity assay for each phosphorylation variant and crystallization were conducted. The results of these indicate that phosphorylation at each site (IDH1-T77, IDH1-S188, …


Investigation Of The Role Of Dax-1 In The Hpa Axis In Human Adrenal Cells, Katerina N. Fargas 2023 University of San Francisco

Investigation Of The Role Of Dax-1 In The Hpa Axis In Human Adrenal Cells, Katerina N. Fargas

Undergraduate Honors Theses

DAX-1 is a nuclear hormone orphan receptor that plays a key role in the development of reproductive tissues and steroid hormone production. The hypothalamic-pituitary-adrenal axis is the pathway for steroid hormone production, primarily glucocorticoids, mineralocorticoids, and adrenal androgens, in the human body. The mechanisms of DAX-1 in hormone production in the adrenal cortex of the HPA axis are not completely understood and, therefore, were the focus of this honors thesis research project. Due to the high level of DAX-1 expression, SW13 adrenal carcinoma cells were conducted for these experiments. We investigated whether glucocorticoids, specifically the synthetic glucocorticoid dexamethasone, had any …


Review Of Biomedical Applications Of Cardiovascular Tissue Engineering, Natalie M. Howard 2023 Murray State University

Review Of Biomedical Applications Of Cardiovascular Tissue Engineering, Natalie M. Howard

Honors College Theses

Tissue engineering can be defined as processes that aim to generate three-dimensional functional tissues in vitrothat have been favorably altered according to the structural, biochemical, electrophysiological, and biomechanical properties of the desired tissue before implantation into the human body. In relation to cardiac tissues, these properties would include the ability to conduct action potentials, withstand systolic pressure, permit sufficient O2 and CO2penetration, sufficient vascularization to supply nutrients for cellular activity, surface topology that enables cellular communication, and more. As heart diseases and instances of myocardial infarction continue to rise worldwide, there is an increasing need for …


Mitochondrial Roles In Developmentally Programmed Heart Disease, Eli John Louwagie 2023 University of South Dakota

Mitochondrial Roles In Developmentally Programmed Heart Disease, Eli John Louwagie

Dissertations and Theses

Offspring of diabetic and obese mothers (ODOM) have greater risks of heart disease at birth and later in life. However, prevention is hindered because underlying mechanisms are poorly understood. Mounting studies in the Developmental Origins of Health and Disease field suggest that mitochondria play key roles in developmentally programmed heart disease similar to the roles they play in cardiomyopathy in adults with diabetes and obesity. However, whether mitochondria are responsible for the short[1]and long-term cardiac disease seen in ODOM remains unknown. Here, we sought to delineate the roles of mitochondria in the hearts of ODOM, determine whether mitochondria are playing …


E-Cadherin Force Transmission And Stiffness Sensing, Mazen Mezher 2023 Old Dominion University

E-Cadherin Force Transmission And Stiffness Sensing, Mazen Mezher

Mechanical & Aerospace Engineering Theses & Dissertations

E-cadherin is the chief mediator of cell-cell adhesion between epithelial cells and is a known mechanosensor. Force transmission and stiffness sensing are two crucial aspects of E-cadherin mechanobiology.

E-cadherin has an extracellular adhesive region, a transmembrane region and an intracellular region that binds to adhesion-associated proteins. Here, we assessed how different factors affect the level of force transmission (i) from inside the cell such as adhesion-associated proteins, (ii) on the cell membrane, such as growth factor receptors and (iii) outside the cell, such as different binding partners in adhesion. To study the level of force transmission inside the cell, we …


Cardiac Ablation And Stimulation With Nanosecond Pulsed Electric Fields (Nspefs), Federica Serra 2023 Old Dominion University

Cardiac Ablation And Stimulation With Nanosecond Pulsed Electric Fields (Nspefs), Federica Serra

Biomedical Engineering Theses & Dissertations

Surgical ablation of cardiac tissue is the definitive treatment for the most common arrhythmia, atrial fibrillation. In current medical practice, myocardial tissue is often ablated by the application of radiofrequency (RF) currents which are delivered through an electrode to create lesions that block the electrical pathways that sustain reentrant arrhythmias and restore the normal heart rhythm. An alternative to RF is cryoablation, during which the endocardial or epicardial tissue is brought in contact with a cryoprobe. Both RF ablation and cryoablation have significant limitations. In RF ablation, tissue is heated in order to ablate it, but it is an open …


Transcriptional Regulation Of Stem Cell Function In The Drosophila Central Nervous System, Amalia S. Parra 2023 Doctoral Student, Biology

Transcriptional Regulation Of Stem Cell Function In The Drosophila Central Nervous System, Amalia S. Parra

Biology ETDs

Development of multicellular organisms depends on coordination of various molecular mechanisms to ensure proper tissue size and structure. This is accomplished through intrinsic and extrinsic cues that regulate cell growth and proliferation both spatially and temporally. These well-coordinated signals are present from early developmental stages and remain active throughout development to ensure tissue structure is appropriate for function. This is particularly important in early cell types that form specialized lineages such as stem cells or those found throughout the body such as epithelia. While much progress has been made in understanding growth regulatory mechanisms, several fundamental aspects remain unknown. This …


Trace Dna Detection Using Diamond Dye: A Recovery Technique To Yield More Dna, Leah Davis 2023 University of New Haven

Trace Dna Detection Using Diamond Dye: A Recovery Technique To Yield More Dna, Leah Davis

Master's Theses

This study aspires to find a new screening approach to trace DNA recovery techniques to yield a higher quantity of trace DNA from larger items of evidence. It takes the path of visualizing trace DNA on items of evidence with potential DNA so analysts can swab a more localized area rather than attempting to recover trace DNA through the general swabbing technique currently used for trace DNA recovery. The first and second parts consisted of observing trace DNA interaction with Diamond Dye on porous and non-porous surfaces.

The third part involved applying the Diamond Dye solution by spraying it onto …


A Dna-Peptide Crosslink (Dpc) Increases Mutagenicity In Sos-Induced Escherichia Coli, Alessandra Bassani 2023 University of Connecticut

A Dna-Peptide Crosslink (Dpc) Increases Mutagenicity In Sos-Induced Escherichia Coli, Alessandra Bassani

Honors Scholar Theses

Bacteria, such as Escherichia coli, have an inducible system in response to DNA damage termed the SOS response. This system is activated when the replicative DNA polymerase (Pol) III encounters a lesion, uncouples from DNA helicase, and single-stranded DNA (ssDNA) accumulates at the replication fork. In this study, we investigated DNA-peptide crosslink (DpC), a common lesion that results from cross-linking of proteins or peptides, UV irradiation, and alkylating agents. To increase survival following formation of a lesion, the SOS response can utilize homologous recombination, translesion synthesis (TLS), or excision repair. With TLS, the levels of DNA Pol II, IV, …


Examining Transcriptional Regulators During Muscle Development In Drosophila Melanogaster, Chaamy Yapa 2023 CUNY Bernard M Baruch College

Examining Transcriptional Regulators During Muscle Development In Drosophila Melanogaster, Chaamy Yapa

Student Theses and Dissertations

In Drosophila melanogaster embryos, a distinct approach to study the transcriptional regulation is to examine the larval somatic muscle development. Transcription factors are essential regulatory proteins that help to control gene expression and respond to signaling pathways and various cues. Today, there are at least twenty transcription factors that have been discovered to contribute to the development of the 30 distinct larval somatic muscles in each abdominal hemisegment of Drosophila melanogaster. Several studies have already been conducted on muscle regulatory transcription factors including midline and apterous. These transcription factors were shown to control the development of muscles through mutant …


Validating A New In Vivo Model To Study Als, Izabela J. Cimachowska 2023 CUNY Bernard M Baruch College

Validating A New In Vivo Model To Study Als, Izabela J. Cimachowska

Student Theses and Dissertations

Buildup of oxidative stress and mitochondrial dysfunction are well known characteristics of both sporadic and hereditary amyotrophic lateral sclerosis (ALS). While both forms of the disease seem to arise from common cellular dysfunction, the genetic disease is studied to a much greater extent. Engineering novel animal models of the sporadic form of the disease is crucial for development of druggable targets to treat ALS and understand the underlying mechanisms. Interestingly, accumulation of oxidative stress by exacerbated emission of reactive oxygen species (ROS) from presynaptic mitochondria is a hallmark of both hereditary and sporadic ALS. Previous work by our laboratory showed …


The Effects Of Glycolytic Mutations In Drosophila Melanogaster Muscle Development, Coco Lim 2023 CUNY Bernard M Baruch College

The Effects Of Glycolytic Mutations In Drosophila Melanogaster Muscle Development, Coco Lim

Student Theses and Dissertations

Muscle atrophy, or muscle wasting, is caused due to lack of physical activity for an extended period of time, due to muscle diseases (such as muscle dystrophies), cancer chemotherapies, and aging. It is also extensively found on astronauts after spaceflight, particularly missions of long durations. Muscle cells are dependent on different metabolic pathways to optimize Adenosine triphosphate (ATP) production to compensate for muscle exertion. Glycolysis converts glucose into ATP producing pyruvate, which can be sent into the citric acid cycle or converted to lactate (lactic acid). Muscles preferentially use lactate production, despite the fact that fewer molecules of ATP are …


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