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Full-Text Articles in Cell and Developmental Biology

Investigating The Role Of Gαf In Sperm Storage In The Spermathecae Of Female Drosophila Melanogaster, Aileen Liu Oct 2026

Investigating The Role Of Gαf In Sperm Storage In The Spermathecae Of Female Drosophila Melanogaster, Aileen Liu

Holster Scholar Projects

Reproductive secretory cells are essential for fertility and have been implicated in diseases such as high-grade serous cancer, yet the molecular mechanisms governing their function remain poorly understood. Using genetic tools available in Drosophila melanogaster, we investigated whether Gαf contributes to reproductive secretory-cell function by examining its role in sperm storage. Gαf is highly expressed in these cells, suggesting a potential role in secretory cell function. Tissue-specific RNAi, trans-heterozygous mutants, and tissue-specific rescue were utilized to examine the role of Gαf in sperm storage. Gαf knockdown consistently reduced sperm storage, supporting a role for Gαf in maintaining normal sperm …


Bridging The Gap In Science Research: Preparing Students For College- Level Research In The Sciences, Victoria Helwig, Yaoguang Li Jul 2026

Bridging The Gap In Science Research: Preparing Students For College- Level Research In The Sciences, Victoria Helwig, Yaoguang Li

UConn Library Presentations

Many first-year students enter college unprepared to fully engage with scientific literature and academic library resources. Drawing on experiences from academic librarians working with STEM students, this session explores common gaps in science research skills, including navigating databases, identifying scholarly sources, and understanding the structure of scientific literature. Participants will be introduced to practical strategies and classroom-ready activities to better prepare students for college-level research. Discussion questions: What science research skills do students struggle with most when entering college? How can high school instruction better support these skills? Where can librarians and educators collaborate to support student success?


Inosine Accelerates Cancer Cell Killing By The Experimental Antifolate Ucp1162: Implications For Novel Combination Treatments, Reshma Ramesh, Charles Giardina, Alan Kuo May 2026

Inosine Accelerates Cancer Cell Killing By The Experimental Antifolate Ucp1162: Implications For Novel Combination Treatments, Reshma Ramesh, Charles Giardina, Alan Kuo

Honors Scholar Theses

Antifolates disrupt one-carbon metabolism (OCM), which stops nucleotide synthesis and therefore slows down cell proliferation. Our experimental antifolate, UCP1162, stops de novo purine synthesis and thymidine synthesis by targeting the OCM pathway. We investigated whether the downstream metabolites of OCM pathway: methionine, thymidine, and inosine, affect the cell death caused by UCP1162 using MV4-11 leukemia cells. Thymidine was found to partially rescue MV4-11 cells from UCP1162, in contrast, inosine was found to accelerate the cell death caused by UCP1162. These cytotoxic effects of UCP1162 alone and in combination with inosine were irreversible, as removal of treatment did not restore cell …


The Development Of A Crispr-Based Calibrated Functional Assay For Classifying Pathogenicity Of Msh2 And Msh6 Variants In Lynch Syndrome, Olivia N. Amodeo May 2026

The Development Of A Crispr-Based Calibrated Functional Assay For Classifying Pathogenicity Of Msh2 And Msh6 Variants In Lynch Syndrome, Olivia N. Amodeo

Honors Scholar Theses

Lynch syndrome is a hereditary disease caused by the inheritance of a mismatch repair gene variant. Individuals with this condition are predisposed to cancer development, most commonly colorectal cancer. Current guidelines for variant classification are based on numerous evidence categories, including functional evidence. However, many novel clinical variants are not well characterized, and evidence is difficult to obtain if functional assays are not calibrated.

To address this, our lab created a calibrated functional assay that calculates an odds of pathogenicity score for MSH2 and MSH6 gene variants that can be used as evidence for classifying variants of uncertain significance. This …


Reversible, Light-Controlled Inhibition Of Stim1-Mediated Calcium Signaling Using Photoswitchable Ml-9 Derivatives In Jurkat-Lucia Nfat Reporter T Cells, José L. Matute Gálvez May 2026

Reversible, Light-Controlled Inhibition Of Stim1-Mediated Calcium Signaling Using Photoswitchable Ml-9 Derivatives In Jurkat-Lucia Nfat Reporter T Cells, José L. Matute Gálvez

Honors Scholar Theses

Store-operated calcium entry (SOCE) through calcium release-activated

calcium (CRAC) channels is the dominant pathway for sustained Ca2+ influx in

non-excitable cells and is essential for T cell activation, driving downstream

signaling through the calcineurin-NFAT transcriptional axis. Dysregulation of

SOCE produces multi-systemic disease phenotypes, establishing that precise,

spatiotemporally controlled modulation of this pathway is a fundamental

therapeutic requirement. ML-9 is one of the only characterized small molecules

capable of targeting SOCE upstream at the level of STIM1 localization, but lacks

the selectivity, pharmacokinetic properties, and spatiotemporal control necessary

for therapeutic development.

This work describes the design, synthesis, and biological evaluation of …


Examining The Molecular Mechanisms Of Glucagon-Like Peptide-1 Receptor Agonists In Cancer Cell Biology, Oliver G. Sabet May 2025

Examining The Molecular Mechanisms Of Glucagon-Like Peptide-1 Receptor Agonists In Cancer Cell Biology, Oliver G. Sabet

Honors Scholar Theses

Glucagon-like peptide-1 receptor agonists (GLP-1RAs) are synthetic analogs of glucagon-like peptide-1 (GLP-1) used to treat obesity and diabetes by reducing blood glucose levels and appetite. While early rodent studies suggested a link between GLP-1RAs and thyroid cancer pathogenesis, evidence in humans remains inconclusive, with randomized controlled trials not supporting that link. Due to the rapid, widespread use of these drugs, concerns have expanded to other obesity-associated cancers, with conflicting findings on their role in cancer progression. With this contradictory evidence in a novel intersection of obesity medicine and oncology, this literature review aims to summarize current understandings between GLP-1-RAs and …


The Role Of Myosin L In The Survival Of Toxoplasma Gondii And The Importance Of Mlc1 For In Vitro And In Vivo Myosin F Motility, Victoria K. Yi May 2025

The Role Of Myosin L In The Survival Of Toxoplasma Gondii And The Importance Of Mlc1 For In Vitro And In Vivo Myosin F Motility, Victoria K. Yi

Honors Scholar Theses

My thesis discusses the work that I have conducted on two myosins in Toxoplasma gondii, which is an obligate intracellular parasite that has chronically infected around 10% of the American population. It causes toxoplasmosis and severe health consequences for individuals with compromised immune systems or when infections occur in utero. However, immunocompetent individuals are asymptomatic or present with subclinical symptoms. In the Heaslip lab, I investigated two myosins in the parasite: Myosin L and Myosin F. MyoL is an uncharacterized motor that localizes at the apical end of the parasite. It was shown to be important for parasite …


The Effect Of Cellular Glucose Levels On Inotersen-Mediated Target Reduction In In Vitro Cell Models, Andrea Durwin Apr 2025

The Effect Of Cellular Glucose Levels On Inotersen-Mediated Target Reduction In In Vitro Cell Models, Andrea Durwin

Honors Scholar Theses

Antisense oligonucleotide (ASO) drugs are a new therapeutic modality to treat rare as well as common diseases. These drugs work to reduce disease by targeting the mRNA of the gene that causes the disease, therefore limiting the proteins that further propagate the signs and symptoms of the disorder. Many people who suffer from more severe diseases, such as Alzheimer’s, Parkinson’s, Duchenne Muscular Dystrophy (DMD), and a wide array of cancers, utilize ASO drugs for treatment, but the drug is also used with those suffering from more common diseases such as diabetes. The efficacy of ASO drugs to silence their mRNA …


Investigating Tumor Growth And Regulation In Supratentorial Ependymomas; The Impact Of Dlk1 And Egr1 Knockout, Om Sinojia Dec 2024

Investigating Tumor Growth And Regulation In Supratentorial Ependymomas; The Impact Of Dlk1 And Egr1 Knockout, Om Sinojia

Honors Scholar Theses

Ependymomas (EPNs) are primary brain tumors that often arise from radial glial cells lining the ventricular system. Supratentorial ependymomas (ST-EPNs) are particularly aggressive, and understanding the molecular factors driving their growth is critical for developing targeted therapies. This study investigates the roles of DLK1 and EGR1, key regulators in cellular differentiation and tumorigenesis, in the development of ST-EPNs. We utilized genetically engineered mouse models to induce postnatal knockouts of DLK1 and EGR1 and evaluated tumor growth using histological and imaging techniques. Tumor area was quantified across multiple brain sections from both male and female mice. DLK1 knockout brains exhibited consistent …


Testing Vivo-Morpholino Mediated Gene Knockdown Of Stat6, Spi1b, And Hnf4Α In Adult Threespine Stickleback, Stella Dipippo Dec 2024

Testing Vivo-Morpholino Mediated Gene Knockdown Of Stat6, Spi1b, And Hnf4Α In Adult Threespine Stickleback, Stella Dipippo

Honors Scholar Theses

The fibrotic immune response to the cestode parasite, Schistocephalus solidus, varies among threespine stickleback populations. Fibrosis suppresses parasite growth but has costly effects on the fish. Previous genomic studies in stickleback have suggested potential roles of Spi1b, STAT6, and HNF4α in modulating fibrosis severity, but there is presently no evidence for this in-vivo. We used antisense vivo-morpholino oligonucleotides (MOs) to attempt to knockdown the expression of each gene in the liver, spleen, and intestine of adult stickleback. Vivo-MOs have been proven effective in other species of teleost fish, as well as in mice and humans, but …


Understanding The Influence Of Bone Marrow Endothelial Cells On Primary Human Megakaryocytic-Erythroid Progenitor Cell Fate, Vedaamrutha Reddy Oct 2024

Understanding The Influence Of Bone Marrow Endothelial Cells On Primary Human Megakaryocytic-Erythroid Progenitor Cell Fate, Vedaamrutha Reddy

Holster Scholar Projects

The human bone marrow is a complex microenvironment comprised of hematopoietic, stromal, and bone marrow endothelial cells (BMECs). This study builds on previous findings to explore the regulatory role of BMECs in influencing the expansion and lineage choice of megakaryocytic-erythroid progenitors (MEPs). Understanding these interactions has the potential to advance transfusion medicine and improve treatments for conditions like thrombocytopenia and anemia. Due to complications with isolating human BMEC, we transitioned to a murine model. Murine BMECs were isolated and magnetic cell separation was employed to enrich for endothelial cells (ECs), which were then cultured over a 20-day period using standard …


Characterization Of Developmentally Downregulated Nfe2l3 In Retinal Ganglion Cell Survival And Axon Regeneration, Lucy Homer Oct 2024

Characterization Of Developmentally Downregulated Nfe2l3 In Retinal Ganglion Cell Survival And Axon Regeneration, Lucy Homer

Holster Scholar Projects

Retinal ganglion cells (RGCs) are central nervous system projection neurons essential for transmitting visual information from the eye to the brain. Damage to RGCs, caused by conditions such as glaucoma and traumatic optic neuropathy (TON), may lead to vision loss or blindness, as adult RGCs lack regenerative capacity. This study focuses on Nfe2l3 (Nrf3), a developmentally downregulated transcription factor known to mediate cellular responses to oxidative stress, a key pathological event following optic nerve injury. We hypothesized that overexpressing Nfe2l3 in RGCs would enhance their survival and promote axon regeneration after optic nerve crush (ONC) injury. To test this, we …


Identification Of Inflammatory Factors Contributing To Foaming In Atherosclerosis, Kavya Podila Oct 2024

Identification Of Inflammatory Factors Contributing To Foaming In Atherosclerosis, Kavya Podila

Holster Scholar Projects

According to the National Institute of Health (NIH), atherosclerosis is attributed to the majority of cardiovascular disease (CVD) cases and is the leading cause of mortality in the US and worldwide. Despite significant medical advancements, the risk of cardiovascular events remains, warranting further mechanistic and pathogenic investigation. Advances in high-resolution omics profiling and the development of novel data-analytic bioinformatic tools previously enabled the novel discovery of two distinct programs in foaming, the central process in atherogenesis. The programs are pathogenic and homeostatic foaming, with the pathogenic foaming program being positively associated with disease. Using single-cell RNA sequencing (scRNA-seq) data from …


Identifying Novel Upstream Regulators Of The Hippo Pathway: Forward Genetic Screen In Drosophila Melanogaster, Akshara Iyer May 2024

Identifying Novel Upstream Regulators Of The Hippo Pathway: Forward Genetic Screen In Drosophila Melanogaster, Akshara Iyer

Honors Scholar Theses

The Hippo pathway is an evolutionarily conserved developmental pathway that controls organ size and tissue homeostasis in all metazoan animals. Dysregulated Hippo pathway has been implicated in a wide range of human disorders, including cancer. The physiological function of the Hippo pathway is best understood in Drosophila, where inactivation of the Hippo pathway tumor suppressors, or overexpression of the Yorkie (Yki) oncoprotein, results in tissue overgrowth characterized by excessive cell proliferation and diminished apoptosis, and increased transcription of Hippo pathway target genes such as diap1 and expanded (ex). Despite the well-established Hippo pathway core signaling cascade, the upstream regulation of …


Immunopathogenesis Of Post-Infectious Hydrocephalus, Sascha Powers Bernier May 2024

Immunopathogenesis Of Post-Infectious Hydrocephalus, Sascha Powers Bernier

Honors Scholar Theses

Hydrocephalus is characterized by the abnormal accumulation of cerebrospinal fluid (CSF) within the brain ventricles. In post-infectious hydrocephalus (PIH) cases, the condition presents challenges in understanding the immune response. PIH is a complex condition, often persisting after the initial infection is treated and thus requiring a deeper understanding of the immune mechanisms involved in its development. This thesis will explore the immunopathogenesis of PIH, elucidating the relationship between the immune response and neurological complications that would succeed infection. The immune response of PIH includes a series of events, beginning with the activation of immune cells and finishing with the release …


Understanding The Role Of Minor Intron Splicing In Spermatogenesis, Jade Rosado, Kazumasa Takemoto, Rahul Kanadia May 2024

Understanding The Role Of Minor Intron Splicing In Spermatogenesis, Jade Rosado, Kazumasa Takemoto, Rahul Kanadia

Honors Scholar Theses

The minor spliceosome is composed of the unique small nuclear RNAs (snRNA), U11, U12, U4atac, and U6atac, and is necessary for the splicing of less than 0.5% of introns, termed minor introns. Minor intron containing genes (MIGs) regulate diverse processes, one of which is spermatogenesis. Specifically, 111 testis-specific MIGs have been identified, suggesting that minor splicing is necessary for spermatogenesis. To interrogate the role of minor splicing in spermatogenesis, we conditionally ablated the Rnu11 gene, which encodes for the U11 snRNA, in the developing testes via Stra8-iCre, creating a Rnu11Flx/Flx::Stra8-Cre+ mutant. We found, at postnatal …


Advancements In Crispr-Cas9 Gene Editing: Applications And Future Implications For Sickle Cell Disease And Β-Thalassemia Treatment, Swetha Battini May 2024

Advancements In Crispr-Cas9 Gene Editing: Applications And Future Implications For Sickle Cell Disease And Β-Thalassemia Treatment, Swetha Battini

Honors Scholar Theses

This literature review explores the utilization of CRISPR-Cas9 gene editing technology in addressing Sickle Cell Disease (SCD) and Beta-Thalassemia. CRISPR, leveraging the Cas-9 enzyme inspired by bacterial defense mechanisms, serves as a precise molecular tool for targeted genetic modifications. The process involves guide RNA directing Cas-9 to specific DNA sites, allowing for meticulous gene editing. Focusing on the specific applications of CRISPR in SCD and Beta-Thalassemia, the review critically analyzes recent methods, including CRISPR-Cas9 editing targeting the BCL11A enhancer for SCD and the HBG1/HBG2 promoters for both SCD and Beta-Thalassemia. The synthesis of findings highlights the potential and challenges of …


Development Of Vasculature Patterns In A Mouse Model Of Supratentorial Ependymoma, Jackson Ayers Apr 2024

Development Of Vasculature Patterns In A Mouse Model Of Supratentorial Ependymoma, Jackson Ayers

Honors Scholar Theses

Supratentorial Ependymoma (ST-EPN) is a subtype of ependymoma, a primary solid tumor found throughout the nervous system. ST-EPN are most commonly caused by an oncogenic fusion between the zinc finger gene ZFTA and the RELA, and this distinct ependymoma subtype is readily modeled in mice by conditional expression of ZFTA-RELA in radial glial cells. ST-EPN are known to have a distinctive arrangement of tumor cells and vasculature forming pseudo-rosettes in which polarized tumor cells surround blood vessels within the tumors. It is not known how these pseudo-rosettes or the tumor vasculature form and develop in ST-EPN, so in this study …


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

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, …


Oncolytic Virus Immunotherapy: Development And Potential For Cancer Treatment, Olivia Guinness May 2023

Oncolytic Virus Immunotherapy: Development And Potential For Cancer Treatment, Olivia Guinness

Honors Scholar Theses

The American Cancer Society estimates that in 2023, 1,958,310 new cancer cases and 609,820 cancer deaths will occur in the United States [16]. A promising therapeutic option that has been supported by recent clinical trials is the use of oncolytic viruses to treat malignant tumors. The mechanism of action of existing treatments, such as chemotherapy, radiotherapy, and surgery, differs from that of oncolytic virus therapy because oncolytic viruses are able to affect cancer cells with specificity, minimizing side effects. When infecting a normal, non-cancerous cell, oncolytic viruses do not replicate, leaving healthy cells unaffected. In tumor cells, oncolytic viruses will …


Creating An In-Vitro Co-Culture Model Of Human Megakaryocytic-Erythroid Progenitors And Endothelial Cells, Clerin John Jan 2023

Creating An In-Vitro Co-Culture Model Of Human Megakaryocytic-Erythroid Progenitors And Endothelial Cells, Clerin John

Holster Scholar Projects

Previous studies have suggested that endothelial cells promote red blood cell (RBC) production in human bone marrow, which has implications for improved treatments for anemia, cancer, and reproduction. However, investigation of this phenomenon is hindered by a dearth of studies that have successfully isolated primary endothelial cells from human bone marrow. Using flow cytometry, magnetic cell separation, and primary cell culture techniques we tested the hypothesis that adult bone marrow-derived endothelial cells can be isolated from previously frozen bone marrow samples by selecting for CD144+ expressing cells and culturing them in vitro. Magnetic cell separation utilizing the marker CD144 to …


Investigating The Effects Of Cell Signaling Mutants And Inhibitors On Chemokinesis In Dictyostelium Discoideum., James Rybczyk Aug 2022

Investigating The Effects Of Cell Signaling Mutants And Inhibitors On Chemokinesis In Dictyostelium Discoideum., James Rybczyk

Honors Scholar Theses

Chemokinesis is the augmentation of cellular motility in response to chemical stimuli. While it is known that chemical factors induce changes in the behavior of a cell with regards to motility, the mechanism by which this process occurs is poorly understood. The aim of this project is to identify potential proteins within the signaling pathways that integrate the message brought on by chemical ligands and consequently lead to changes in cellular motility. In order to accomplish this goal, various gene knockout mutants of the amoeboid species Dictyostelium discoideum are compared to an axenic wild-type strain (AX2) based on their relative …


The Effect Of Fibrodysplasia Ossificans Progressiva On The Tongue, Amy Backal, Amanda Harrop, David J. Goldhamer Dr. Jun 2022

The Effect Of Fibrodysplasia Ossificans Progressiva On The Tongue, Amy Backal, Amanda Harrop, David J. Goldhamer Dr.

University Scholar Projects

FOP is a rare genetic disorder in which skeletal muscle and associated connective tissue progressively turn to bone through a process called heterotopic ossification (HO). The extra skeletal bone growth is cumulative, eventually trapping patients in a second skeleton that eventually leads to death by asphyxiation. The FOP mutation is autosomal dominant that can be inherited or acquired sporadically. Unfortunately, FOP is currently incurable with no therapeutic options to inhibit bone growth or reduce existing bone nodules. My project intends to further our understanding of the cellular mechanisms of the disease within the tongue muscle. A population of cells known …


The Effect Of Fibrodysplasia Ossificans Progressiva On The Tongue, Amy Backal, Amanda Harrop, David J. Goldhamer Dr. Jun 2022

The Effect Of Fibrodysplasia Ossificans Progressiva On The Tongue, Amy Backal, Amanda Harrop, David J. Goldhamer Dr.

Honors Scholar Theses

FOP is a rare genetic disorder in which skeletal muscle and associated connective tissue progressively turn to bone through a process called heterotopic ossification (HO). The extra skeletal bone growth is cumulative, eventually trapping patients in a second skeleton that eventually leads to death by asphyxiation. The FOP mutation is autosomal dominant that can be inherited or acquired sporadically. Unfortunately, FOP is currently incurable with no therapeutic options to inhibit bone growth or reduce existing bone nodules. My project intends to further our understanding of the cellular mechanisms of the disease within the tongue muscle. A population of cells known …


When Problems Become Solutions: Harnessing The Osteogenic Capacity Of Disease-Causing Stem Cells To Repair Bone Fractures, Mehreen Pasha May 2022

When Problems Become Solutions: Harnessing The Osteogenic Capacity Of Disease-Causing Stem Cells To Repair Bone Fractures, Mehreen Pasha

University Scholar Projects

While we often perceive disease as negative, there is potential to engineer seemingly negative biological phenomena into therapeutics to treat a variety of human illnesses. Fibrodysplasia ossificans progressiva (FOP) is a genetic disorder involving uncontrolled, widespread, extraskeletal bone growth, or heterotopic ossification (HO). In FOP patients, stem cells called fibro/adipogenic progenitors (FAPs) follow an abnormal, osteogenic pathway. In the present study, we investigate whether we can adapt these Acvr1 mutant FAPs, which are exceptional at producing bone, to repair bone fractures in otherwise normal patients. The primary aims of this study are (1) to devise and optimize a novel method …


Headcase Regulates Growth In Response To Nutritional Status Downstream Of Insulin Signaling, Thomas George May 2022

Headcase Regulates Growth In Response To Nutritional Status Downstream Of Insulin Signaling, Thomas George

Honors Scholar Theses

Cancer cells are notorious for growing in an unrestricted manner without regard for environmental cues. Recently, Li et al. (2019) discovered headcase (hdc) functions by binding to the mTORC1 complex in the mTOR signaling pathway and preventing further signaling. Interestingly, under nutrient restricted (NR) conditions, cells with mutated hdc proteins proliferated more than cells with normal functioning hdc. It is well known that insulin signaling is downregulated under NR conditions, so a potential signaling pathway with insulin, PI3K, PDK1, Akt, PTEN, and hdc was created as a way to explain the link between hdc function and nutritional status. A Drosophila …


When Problems Become Solutions: Harnessing The Osteogenic Capacity Of Disease-Causing Stem Cells To Repair Bone Fractures, Mehreen Pasha May 2022

When Problems Become Solutions: Harnessing The Osteogenic Capacity Of Disease-Causing Stem Cells To Repair Bone Fractures, Mehreen Pasha

Honors Scholar Theses

While we often perceive disease as negative, there is potential to engineer seemingly negative biological phenomena into therapeutics to treat a variety of human illnesses. Fibrodysplasia ossificans progressiva (FOP) is a genetic disorder involving uncontrolled, widespread, extraskeletal bone growth, or heterotopic ossification (HO). In FOP patients, stem cells called fibro/adipogenic progenitors (FAPs) follow an abnormal, osteogenic pathway. In the present study, we investigate whether we can adapt these Acvr1 mutant FAPs, which are exceptional at producing bone, to repair bone fractures in otherwise normal patients. The primary aims of this study are (1) to devise and optimize a novel method …


Analysis Of Tri-Lineage Collagen Reporter Mice Growth Plates Through Light Sheet Microscopy, Olivia Ferrigno Oct 2021

Analysis Of Tri-Lineage Collagen Reporter Mice Growth Plates Through Light Sheet Microscopy, Olivia Ferrigno

Holster Scholar Projects

The growth plate is an active area of cartilage in the long bones of children. Its main function is to enable limb lengthening, but is a relatively weak structure that is prone to fractures and injuries. These injuries can have severe long term ramifications, as they can create premature bone fusion, also known as a bony bridge, that causes stunted or crooked growth. Dr. Liisa Kuhn’s Lab has developed an accurate, reproducible animal model that mimics this same growth plate behavior and can be used to further analyze the growth plate structure, healing process, and new treatments. This animal model …


Determining The Primary Dna Substrates Of Shld2'S Ob-Fold Domains, Hari Patchigolla Oct 2021

Determining The Primary Dna Substrates Of Shld2'S Ob-Fold Domains, Hari Patchigolla

Holster Scholar Projects

Failure to repair DNA double-stranded breaks leads to cell death. Radiation therapy is commonly used to kill cancer cells by inducing these breaks. However resistance to radiation therapy, due to a hyperactive DNA double-stranded break repair pathway, is a common occurrence that makes cancer patients more prone to relapse. The Shieldin complex is shown to promote DNA-double stranded break repair by binding to DNA at sites of damage. Thus, the objective of this project is to understand the affinity and type of DNA that Shieldin binds to, through gel-shift assays, for the eventual creation of an inhibitor for this protein …


The Regulation Of Chemokinesis By The Soil Amoeba, Dictyostelium Discoideum, Julia Horan May 2021

The Regulation Of Chemokinesis By The Soil Amoeba, Dictyostelium Discoideum, Julia Horan

Honors Scholar Theses

Many types of cells crawl on solid surfaces by amoeboid locomotion. Membrane protrusions, such as pseudopods, are generated by outward directed forces and the cell body retracts to allow the cell to migrate on the surface. The movement can be random, or can be directional in response to diffusible (chemotaxis) or surface associated signals (haptotaxis). It has been known for some time that chemotactic signals also lead to an increase in overall cell speed (chemokinesis), however the mechanism of this speed increase is unknown. This project investigates the cellular signaling pathways involved in the regulation of cell speed by ligands …