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Articles 241 - 270 of 399
Full-Text Articles in Cell and Developmental Biology
The Effect Of Cellular Glucose Levels On Inotersen-Mediated Target Reduction In In Vitro Cell Models, Andrea Durwin
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 …
Mcf-7 Dense Breast Cancer Cells Modulate Stress Through Senescence, Lara Donadio, Moses Alfonso, Josiah Philip, Tyler Zatarain
Mcf-7 Dense Breast Cancer Cells Modulate Stress Through Senescence, Lara Donadio, Moses Alfonso, Josiah Philip, Tyler Zatarain
Molloy Multidisciplinary Undergraduate Research Conference
Breast cancer remains a leading cause of cancer-related mortality among women worldwide, with dense breast tissue being recognized as a significant risk factor for its development. This dense breast tissue, characterized by a higher concentration of mammary glandular tissue, represents additional sites for tumor development. The following study explores how the MCF-7 immortal cell line, representing dense breast cancer, modulates stress responses through cellular senescence. Cellular senescence is a defense mechanism that halts the cell cycle and acts as a tumor suppression mechanism, preventing out-of-control cell proliferation triggered by cytological stress. To simulate these stress conditions, we applied two agents: …
Enhancing Skin Cancer Literacy Amongst Young Adults: A Digital Design, Katherine Stoll
Enhancing Skin Cancer Literacy Amongst Young Adults: A Digital Design, Katherine Stoll
Honors Projects
The skin plays a vital role in protection, regulation, and homeostasis of the human body. Skin cancer, despite being mostly preventable, is one of the most common cancers. Young adults, ages 18 to 25, are vulnerable targets due to risky behaviors and misinformation regarding skin cancer. This project was designed by using digital media and website design to enhance skin cancer health literacy among young adults. Using a systematic literature review and research methods, an interactive website was designed to improve skin cancer health literacy and eliminate common misconceptions. The topics addressed throughout the website were the biological factors of …
Embryonic Stem Cell Research, Huda Abu-Suwa, Lisa K. Lashley, Charles J. Golden
Embryonic Stem Cell Research, Huda Abu-Suwa, Lisa K. Lashley, Charles J. Golden
Essays in Developmental Psychology
Stem cell research is a controversial issue that has received considerable attention over the last three decades. Stem cell research began in the early 1980’s, when stem cells were obtained from mice embryos and utilized to understand the functioning of stem cells (Grivennikov, 2008). In 1998, researchers discovered techniques for obtaining embryonic stem cells from human and growing them in laboratories. Since them, substantial research has been conducted on stem cells and their potential uses, which includes increasing our understanding of diseases and how they occur, treating various diseases, and testing new medications for safety and efficacy (Taylor, 2005).
Investigating Genetic Regulators Of Crystal Cell Development In Drosophila Melanogaster, Andrea Feria, Nyla Walbrook, Anisa Turaeva, Rebecca Spokony
Investigating Genetic Regulators Of Crystal Cell Development In Drosophila Melanogaster, Andrea Feria, Nyla Walbrook, Anisa Turaeva, Rebecca Spokony
Publications and Research
Crystal cells, a subset of Drosophila melanogaster hemocytes, are important for melanization, a crucial immune response. While the genetic regulation of crystal cell develop remains incompletely understood, this study investigates the functions of five candidate genes: ACXB, ACXA, Gp210, CG4390, and Cyp4s3; identidied through previous genome-wide association studies. Using the Gal4/UAS system along with RNA interference (RNAi), we exclusively knocked down each gene in third instar larvae and quantified crystal cell populations following heat shock-induced melanization. Our results imply that the knockdown of ACXB and ACXA significantly increased crystal cell counts in both sexes, suggesting these genes either act as …
The Employment Of Apoptosis In Embryonic Development, Hannah R. Fioramonti
The Employment Of Apoptosis In Embryonic Development, Hannah R. Fioramonti
Senior Honors Theses
Programmed cell death is necessary for the elimination of excess or damaged cells in all stages of life, but this is especially true during embryonic and fetal development of mammals. Beginning before implantation and continuing until birth, both intrinsic and extrinsic apoptosis are employed within mammalian embryos to ensure the viability of the organism, proper organ morphogenesis, integrity of the genetic material, and the high quality of the germ line. The formation of both transient and permanent ectodermal, mesodermal, and endodermal structures often involves apoptosis. In this review, a selection of apoptotic events within each germ layer and occurrences of …
A Natural Short Sleep Mutation Promotes Longevity Through Mitochondrial Respiration In Drosophila, Pritika Pandey
A Natural Short Sleep Mutation Promotes Longevity Through Mitochondrial Respiration In Drosophila, Pritika Pandey
LSU Doctoral Dissertations
Aging is an irreversible process characterized by progressive physiological decline and an increased risk of metabolic disorders, cognitive impairment, cardiovascular diseases, and neurodegeneration. Disruptions to the circadian clock—whether due to genetic mutations or behavioral factors—accelerate aging and age-related pathologies, highlighting a strong link between circadian regulation and longevity. However, certain individuals harbor a dec2P384R mutation, which enables natural short sleep without the detrimental effects of chronic sleep deprivation. This suggests that these individuals have evolved adaptations that activate pro-health pathways, allowing them to function optimally with reduced sleep. To investigate the genetic mechanisms underlying these changes, we developed a …
Neuronal Cftr: A Study Of Subcellular Localization And Interactions With Implications For A Role In Synaptic Transmission, Brandon J. Leviskas
Neuronal Cftr: A Study Of Subcellular Localization And Interactions With Implications For A Role In Synaptic Transmission, Brandon J. Leviskas
LSU Doctoral Dissertations
Protein-protein interactions vary among cell types and the localization of these interactions help to define protein function. The function of cystic fibrosis transmembrane conductance regulator (CFTR) is well established in the context of epithelial tissue due to the debilitating effects of its mutations that cause the disease cystic fibrosis. While in neurons a role has been established in our lab for CFTR in the regulation of cytosolic Cl- in retinal amacrine cells (ACs). This research sets out to learn if CFTR has a synaptic role. Exploring this potential role, localization of CFTR was examined using fluorescent and immunogold labeled transmission …
Robust Sex Determination In The Caenorhabditis Nigoni Germ Line, Jonathan P Harbin, Yongquan Shen, Shin-Yi Lin, Kevin Kemper, Eric S Haag, Erich M Schwarz, Ronald E Ellis
Robust Sex Determination In The Caenorhabditis Nigoni Germ Line, Jonathan P Harbin, Yongquan Shen, Shin-Yi Lin, Kevin Kemper, Eric S Haag, Erich M Schwarz, Ronald E Ellis
Rowan-Virtua School of Osteopathic Medicine Departmental Research
Sexual characteristics and reproductive systems are dynamic traits in many taxa, but the developmental modifications that allow change and innovation are largely unknown. A leading model for this process is the evolution of self-fertile hermaphrodites from male/female ancestors. However, these studies require direct analysis of sex-determination in male/female species, as well as in the hermaphroditic species that are related to them. In Caenorhabditis nematodes this has only become possible recently, with the discovery of new species. Here, we use gene editing to characterize major sex-determination genes in C. nigoni, a sister to the widely studied hermaphroditic species C. briggsae. These …
Leveraging Attention Mechanism To Unlock Gene And Protein Attributes, Ala Jararweh
Leveraging Attention Mechanism To Unlock Gene And Protein Attributes, Ala Jararweh
Computer Science ETDs
Advancing personalized medicine depends on effectively integrating and interpreting the vast, heterogeneous landscape of biological data, from genomic sequences and transcriptomics to the insights embedded in scientific literature. Current machine learning models often focus on single data modalities, limiting their capacity to capture the multifaceted nature of biological systems. We address this gap by developing three attention-based machine-learning models integrating diverse data modalities. Firstly, DeepVul is a multi-task model that leverages cancer transcriptome data to predict genes critical for cancer survival and their corresponding drugs. Subsequently, LitGene refines gene representations by integrating textual information from the scientific literature. Finally, Protein2Text …
Biology Department Publications: 2024, Sam Lindgren
Biology Department Publications: 2024, Sam Lindgren
Biology Department Bibliographies
This document is a non-comprehensive list of publications made by graduate students, post-doctoral researchers, and faculty members in the Biology Department in 2024. It indexes those publications available through PubMed, and serves as an archival record of the Department's robust scholarly contributions.
The Impact Of Paternal Obesity On Placental Development And Function During Pregnancy, Delaney G. Wolfe, Delaney G. Wiolfe
The Impact Of Paternal Obesity On Placental Development And Function During Pregnancy, Delaney G. Wolfe, Delaney G. Wiolfe
Department of Nutrition Student Projects
Paternal obesity is a rising concern in conception and reproductive health, with increasing evidence suggesting its impact on pregnancy outcomes. While maternal obesity's effects on fetal development and placental function are well-documented, the role of paternal obesity remains less understood. The placenta, crucial for nutrient exchange and fetal development, can be disrupted by inflammation, oxidative stress, and epigenetic modifications, potentially leading to long-term health implications for both maternal and fetal health. Understanding the paternal influence on placental development is essential for improving pregnancy outcomes and offspring
health. This study aims to investigate the relationship between paternal obesity on placental function …
Solving The Structure Of An Ancestral Protein Tyrosine Phosphatase, Natalie Turcsanski, Edna Armah
Solving The Structure Of An Ancestral Protein Tyrosine Phosphatase, Natalie Turcsanski, Edna Armah
Student Research Symposium
Protein tyrosine phosphatases (PTPs) regulate cell signaling by removing phosphate groups from tyrosine residues. Malfunction of these enzymes can lead to diseases such as diabetes and cancer. A conserved feature among PTPs is the catalytic acid loop, essential for phosphate removal. Computational analysis of PTP structures revealed that ancestral PTPs have considerable variation in conformations of this loop, sparking interest in their further study. The Asgard group, identified as ancestral to eukaryotic PTPs, was successfully expressed and purified under optimized conditions. Current efforts focus on optimizing crystallization to obtain larger crystals for structural analysis. This project will investigate the allosteric …
Understanding Challenges To Breast Cancer Screening For African American Women In Detroit: A Study Of Social And Healthcare Inequities, Miranda Goodson, Whitney Bowyer, Erika Lopez, Anna Lundh
Understanding Challenges To Breast Cancer Screening For African American Women In Detroit: A Study Of Social And Healthcare Inequities, Miranda Goodson, Whitney Bowyer, Erika Lopez, Anna Lundh
Medical Student Research Symposium
African American (AA) women have lower adherence to breast cancer screening guidelines, which may contribute to delayed diagnoses and reduced survival rates. These disparities are often influenced by limited access to quality healthcare and persistent inequities faced within Michigan. With Detroit's population being 77% AA, examining studies focused on the experiences of Black women within urban healthcare networks is essential to understanding the connections between demographic, socioeconomic factors, and breast cancer outcomes. To assess these studies, a literature search was conducted using Ovid Medline yielding 24 associated articles.
Mammogram rates among AA women in Detroit remain low, reflecting a complex …
Characterizing Kmt2d In Endometrial Cancer, Katherine R. Davanzo
Characterizing Kmt2d In Endometrial Cancer, Katherine R. Davanzo
Medical Student Research Symposium
Endometrial cancer is rising in incidence in the United States, notably among premenopausal women. This increase and the trend of delayed childbearing warrant the need for further advancement in fertility-sparing treatment for endometrial cancer. A gene left widely unexplored in its possible clinical utility as a target for fertility-sparing treatment is KMT2D, a lysine-specific methyltransferase and tumor suppressor. Preliminary gene set enrichment analysis on a 12Z endometriotic epithelial cell line identified TIMP3 as a gene that is possibly regulated by KMT2D expression. TIMP3 encodes an irreversible inhibitor of matrix metalloproteinases (MMPs), a well-recognized class of proteins as contributing to the …
Cytokinesis & Dbf2, Katharine Gray, Katie Shannon
Cytokinesis & Dbf2, Katharine Gray, Katie Shannon
Miners Solving for Tomorrow Research Conference
No abstract provided.
Discovering Localization Of Fun19 Orf In Yeast, Megan Percy, Galayna Baur, Katie Shannon
Discovering Localization Of Fun19 Orf In Yeast, Megan Percy, Galayna Baur, Katie Shannon
Miners Solving for Tomorrow Research Conference
No abstract provided.
The Effects Of Preventing Dephosphorylation Of Iqg1 On Cytokinesis, Jenna L. Mueller, Katie Shannon
The Effects Of Preventing Dephosphorylation Of Iqg1 On Cytokinesis, Jenna L. Mueller, Katie Shannon
Miners Solving for Tomorrow Research Conference
No abstract provided.
Characterization Of An Iqg1 Phosphorylation Mutant, Lindsay Scheider, Alexis Ham, Katie Shannon
Characterization Of An Iqg1 Phosphorylation Mutant, Lindsay Scheider, Alexis Ham, Katie Shannon
Miners Solving for Tomorrow Research Conference
No abstract provided.
Metabolic Transitions In Embryos Of Artemia Franciscana: Regulation And Consequences For Oxidative Stress, Daniel Anthony Arabie
Metabolic Transitions In Embryos Of Artemia Franciscana: Regulation And Consequences For Oxidative Stress, Daniel Anthony Arabie
LSU Doctoral Dissertations
Embryos of Artemia franciscana survive harsh conditions in diapause and anoxia-induced quiescence for years by undergoing deep metabolic transitions. I investigated the relationship between phosphorylation of pyruvate dehydrogenase (PDH) and carbon flux to the tricarboxylic acid (TCA) cycle during metabolic depression. The difference in catalytic activity of the PDH complex (PDC) in maximally phosphorylated and dephosphorylated samples was 16.5-fold. Western blot analysis confirmed the changes in phosphorylation of PDH. Analysis of PDH expression in diapause and post-diapause embryos via phospho-PDH showed no significant differences. Investigation of post-diapause embryos under anoxia showed that phosphorylation of PDH decreased and activated the enzyme. …
Adipocyte-Derived Cchamide-1, Eiger, Growth-Blocking Peptide 3, And Unpaired 2 Regulate Drosophila Melanogaster Oogenesis, Chad Simmons, Isaiah Williams, Tancia Bradshaw, Alissa R. Armstrong
Adipocyte-Derived Cchamide-1, Eiger, Growth-Blocking Peptide 3, And Unpaired 2 Regulate Drosophila Melanogaster Oogenesis, Chad Simmons, Isaiah Williams, Tancia Bradshaw, Alissa R. Armstrong
Faculty Publications
In addition to energy storage, adipose tissue communication to other organs plays a key role in regulating organismal physiology. While the link between adipose tissue dysfunction and pathophysiology, including diabetes, chronic inflammation, and infertility, is clear, the molecular mechanisms that underlie these associations have not been fully described. We use Drosophila melanogaster as a model to better understand how adipose tissue communicates to the ovary. In this study, we utilized D. melanogaster’s robust genetic toolkit to examine the role of five adipokines known to control larval growth during development, CCHamide-1, CCHamide-2, eiger, Growth-blocking peptide 3, and unpaired 2 in regulating …
Investigation Of The Effects Of The Peptidylarginine Deiminase Inhibitor Cl-Amidine On Apoptosis And Gene Expression In Ovarian Cancer, Victoria Walden
Investigation Of The Effects Of The Peptidylarginine Deiminase Inhibitor Cl-Amidine On Apoptosis And Gene Expression In Ovarian Cancer, Victoria Walden
Longwood Senior Thesis Proposal
Peptidylarginine deiminases (PADs) are a family of enzymatic proteins responsible for the conversion of arginine and methylarginine residues to citrulline. This conversion is important for several key cellular processes including transcriptional gene regulation. Recently, a link has been established between overexpression of a particular PAD, PAD4, and the accelerated progression of both autoimmune diseases and cancers. Ovarian cancer exhibits heightened levels of PAD4 in affected cells. High levels of PAD4 are associated with the formation of neutrophil extracellular traps (NETs) that promote cancer metastasis, and downregulation of the p53 apoptotic pathway. Thus, it is important to explore inhibitors of PAD4. …
College Of Natural Sciences Newsletter, Spring 2025, College Of Natural Sciences
College Of Natural Sciences Newsletter, Spring 2025, College Of Natural Sciences
College of Natural Sciences Newsletters and Reports
Page 1 Dean's Message from Dr. Sen Subramanian
Page 2 Student Spotlights
Page 3 Kaushik honored, Three-Minute Thesis, & Ice Cores revealed
Page 4 Alumni Spotlight
Page 5 Day of Scholars
Page 6 Cyanide research, Record Research Expenditures, Adhikari awarded Miller Research Award
Page 8 Hanson Receives NSF Grant
Page 9 Snow Lab Research Team
Page 10 Faculty Awards
Page 11 Drone Day
Page 13 Khalaf Awarded Presidential Award
Ccr7 Regulated Mechanisms That Limit The Adaptive Immune Response, Jaisel Amilcar Cervantes
Ccr7 Regulated Mechanisms That Limit The Adaptive Immune Response, Jaisel Amilcar Cervantes
Open Access Theses & Dissertations
C-C chemokine receptor 7 (CCR7) is critical in guiding T cell migration within the thymus and peripheral lymphoid tissues, shaping the adaptive immune response by promoting central tolerance and regulating immune homeostasis. Although its role in lymphocyte trafficking is well established, the molecular mechanisms by which CCR7 influences thymocyte development and T cell receptor (TCR) repertoire formation remain less understood. This study examines how CCR7 deficiency impacts thymic selection, TCR diversity, and the signaling events that shape repertoire restriction. Using a homozygously deleted CCR7 murine model, we found that the absence of CCR7 results in a less restricted TCR repertoire …
Steroid Receptors And Coregulators: Dissemination Of Sex Differences And Emerging Technologies, Sally Pauss, Evelyn A. Bates, Genesee J. Martinez, Zane T. Bates, Zachary A. Kipp, Cassandra D. Gipson, Terry D. Hinds Jr.
Steroid Receptors And Coregulators: Dissemination Of Sex Differences And Emerging Technologies, Sally Pauss, Evelyn A. Bates, Genesee J. Martinez, Zane T. Bates, Zachary A. Kipp, Cassandra D. Gipson, Terry D. Hinds Jr.
Markey Cancer Center Faculty Publications
Steroid receptors are ligand-induced transcription factors that have broad functions among all living animal species, ranging from control of sex differences, body weight, stress responses, and many others. Their binding to coregulator proteins is regulated by corepressors and coactivators that interchange upon stimulation with a ligand. Coregulator proteins are an imperative and understudied aspect of steroid receptor signaling. Here, we discuss steroid receptor basics from protein domain structures that allow them to interact with coregulators and other proteins, their essential functions as transcription factors, and other elemental protein–protein interactions. We deliberate about the mechanisms that coregulators control in steroid receptor …
Focal Adhesion Genes And Proteins Are Differentially Expressed Across Cell Types In Down Syndrome, Brian Yoon
Focal Adhesion Genes And Proteins Are Differentially Expressed Across Cell Types In Down Syndrome, Brian Yoon
Senior Theses
Down syndrome (DS), caused by an extra copy of chromosome 21, leads to widespread gene expression changes through mechanisms such as transcriptional dysregulation and altered protein interactions. These disruptions contribute to a range of clinical features, including impaired wound healing, immune dysfunction, and neurodevelopmental abnormalities. This study focused on how DS affects fibroblast morphology and motility—processes critical for tissue repair and brain development. Using quantitative immunocytochemistry and image analysis, we found that DS fibroblasts displayed a broader, less polarized shape, with increased cell perimeter and reduced aspect ratio. However, levels of key adhesion proteins like vinculin, FAK, and β-actin were …
Therapeutic Role Of Bioactive Peptides Derived From Hemoglobin, Priya Antony Pereppadan
Therapeutic Role Of Bioactive Peptides Derived From Hemoglobin, Priya Antony Pereppadan
Dissertations
Bioactive peptides are peptide fragments derived from the proteolytic cleavage or maturation of functional proteins that have shown promising therapeutic potential in addressing major health challenges, including type 2 diabetes, hypertension, and pain management. Diabetes is characterized by high blood glucose levels due to insufficient insulin production or utilization. There are several therapeutic targets for managing diabetes, and one key target is dipeptidyl peptidase IV (DPP IV) due to its role in glucose metabolism. In hypertension, angiotensin-converting enzyme 1 (ACE1) is critical for regulating blood pressure by forming angiotensin II, and its inhibition represents an established treatment strategy. Additionally, the …
Crispr-Induced Mutagenesis Of Arabidopsis Thaliana Gene Apetala3, Hazel Frans, Tara Phelps-Durr
Crispr-Induced Mutagenesis Of Arabidopsis Thaliana Gene Apetala3, Hazel Frans, Tara Phelps-Durr
SACAD: Scholarly Activities
This project aims to create CRISPR-CAS9 mutations in the APETELA3 (AP3) gene of the model plant Arabidopsis thaliana. AP3 is a class B gene critical to the petal and stamen development of Arabidopsis flowers. AP3 is defined in a MADS domain, which binds directly to DNA and may be responsible for the expression of the CaRG-box genes. AP3 works in conjunction with PISTILLATA (PI), AGAMOUS (AG), APETALA1 (AP1), and SEPALLATA (SEP) genes to specify the development in the second and third whorls of the flower. While several alleles of AP3 already exist, these alleles are strong alleles that knockout gene …
Painting Rich Six-Dimensional Pictures Using Polarized Fluorescence Microscopy, Matthew D. Lew
Painting Rich Six-Dimensional Pictures Using Polarized Fluorescence Microscopy, Matthew D. Lew
Electrical & Systems Engineering Publications and Presentations
No abstract provided.
Dnajb6: A Potent Dnajb Chaperone In Regulating Tau Proteostasis, Abigail R. Esquivel
Dnajb6: A Potent Dnajb Chaperone In Regulating Tau Proteostasis, Abigail R. Esquivel
USF Tampa Graduate Theses and Dissertations
Neurodegenerative diseases often feature the pathological buildup of misfolded proteins, and tau is a principal culprit in multiple tauopathies. One chaperone of emerging interest is DnaJB6b, a member of the Hsp40/DnaJ family, which exhibits potent anti-aggregation activity against several disease-related proteins. Recent investigations highlight its unique capacity to recognize and neutralize aggregation-prone forms of tau. DnaJB6b appears potent against multiple variants of tau and may be acting against tau, in part, by directing misfolded tau toward proteasomal clearance. The first lines of evidence come from systematic chaperone screens, where DnaJB6b repeatedly emerged as a strong suppressor of tau seeding. Further …