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Articles 61 - 90 of 3276
Full-Text Articles in Cell Biology
Analysis Of Mitochondrial Dna Haplotype Groups For South Texas Canids, Canis Rufus, After Past Hybridization Events, Isabella Lopez
Analysis Of Mitochondrial Dna Haplotype Groups For South Texas Canids, Canis Rufus, After Past Hybridization Events, Isabella Lopez
Presentations - 2026
mtDNA: mitochondrial DNA; passed from maternal parent to offspring (Haplotype)
Haplotype: a group of genes or genetic markers inherited together from a single parent (Haplotype)
Mitochondrial DNA haplotypes specific sequences of mtDNA that is passed exclusively from maternal parent to offspring (Giles et al. 1980)
Pro's:
It is passed unchanged from mother to offspring, meaning it is fairly stable (Giles et al. 1980)
Each cell has multiple mitochondria vs one nucleus , which means mtDNA it is more likely to be recoverable from degraded samples like scat (Templeton et al. 2013)
Untangling G-Quadruplexes In Dna: The Effects Of Nucleotide Excision Repair, Jaidelin Alvardo, Abiageal Riley, Erick Morales Orrante, Raynne Malik
Untangling G-Quadruplexes In Dna: The Effects Of Nucleotide Excision Repair, Jaidelin Alvardo, Abiageal Riley, Erick Morales Orrante, Raynne Malik
Posters - 2026
Nucleotide Excision Repair (NER) remo ves bulky DNA lesions that are attributed to UV irradiation, environmental mutagens, and chemo-therapeutic agents (Schärer, CSH Perspectives Biology, 2013). G4- quadruplexes are formed by four guanines hydrogen bonded together to form a planar ring, and stacking of the hydrophobic G quartets stabilizes the quadruplex structure Capra et al.,PLoS Computational Biology, 2010). A surplus of this structure is linked to genomic Instability and cancer development.
Prior studies indicate that because NER eliminates large lesions of DNA, there may be a link to the removal of G4-quadruplexes through Nucleotide Excision Repair (De Magis et al, Nature,2020). …
Analyzing The Effect Of Melatonin On B Cells' Expression Of Cd36, Caitlyn Pinaga, Gabriella Galdeano, Nayi Gonzalez, Emma Welsch
Analyzing The Effect Of Melatonin On B Cells' Expression Of Cd36, Caitlyn Pinaga, Gabriella Galdeano, Nayi Gonzalez, Emma Welsch
Posters - 2026
• B cells specifically target pathogens and proliferate to make a plasma cell and secrete antibodies when stimulated. They use glucose as a main energy source but can also use fatty acids. • CD36 is a glycoprotein involved in the transportation and metabolism of fatty acids. • B cells express CD36 in unusually high levels in autoimmune patients. It is unknown as to how this occurs. • Melatonin is a hormone produced in the pineal gland, commonly known for its function in regulating the circadian rhythm. • Melatonin is also known as a master cell regulator and is believed to …
"I Need Help!": Can Ashwagandha Reduce Inflammation-Driven Oxidative Stress Without Inducing Cytotoxicity In Macrophages?, Caitlyn Pinaga
"I Need Help!": Can Ashwagandha Reduce Inflammation-Driven Oxidative Stress Without Inducing Cytotoxicity In Macrophages?, Caitlyn Pinaga
Posters - 2026
Ashwagandha has been shown to reduce inflammation in humans by lowering pro-inflammatory cytokines and oxidative stress markers, helping regulate immune responses. It is commonly used to support conditions linked to chronic inflammation, such as stress-related disorders, arthritis, and metabolic imbalance. THP-1 macrophages are a part of the body's immune response to inflammation. While they produce a lot of different responses to inflammation, one of them is the production of Reactive Oxygen Species (ROS). N-acetylcysteine (NAC) is established to be a powerful antioxidant and is used as a positive control. My study aims to understand how ashwagandha, a popular supplement, affects …
Exploring Base Excision Repair Using Gene Knockout, Gregory Guantos, Cailyn Brock, Kamily Visser, Dylan Vargas
Exploring Base Excision Repair Using Gene Knockout, Gregory Guantos, Cailyn Brock, Kamily Visser, Dylan Vargas
Posters - 2026
• Base Excision Repair (BER) fixes damaged 3DNA bases throughout the cell cycle by removing damaged bases and replacing either one nucleotide in short-patch BER or a short stretch of nucleotides in long-patch BER. (Hindi, 2021, Cellular and Molecular Life Sciences:CMLS)
• 4G-quadruplexes (G4s) are 4 stranded secondary DNA structures formed in guanine rich areas of DNA and RNA. (Rhodes, 2015, Nucleic Acids Research)
The URA3 plasmid was used as a PCR template to make a gene deletion construct, then yeast were transformed so APN1 was replaced by URA3. 2APN1 encodes a major DNA repair enzyme in yeast, and strains …
Cell-Free Mitochondrial Dna (Mtdna) Triggers Vascular Dysfunction Via Toll-Like Receptor 9 (Tlr9)-Dependent Activation Of Inflammasomes, Mohin Amin
Senior Theses
Hypertension is the leading global risk factor for mortality and is closely associated with vascular inflammation and dysfunction. Damaged mitochondria release cell-free mitochondrial DNA (cf-mtDNA), which activates toll-like receptor 9 (TLR9). The binding of TLR9 to mtDNA activates the NLRP3 inflammasome pathway, promoting the release of pro-inflammatory cytokines via gasdermin D (GSDMD), therefore worsening inflammation. However, the mechanisms linking mitochondrial injury to inflammation-induced vascular dysfunction remain unclear. We hypothesize that cf-mtDNA triggers TLR9-dependent NLRP3 inflammasome activation contributing to vascular and endothelial dysfunction. To assess that, adult male C57BL/6 were exposed to 28 consecutive days of chronic unpredictable stress (CUS) or …
Effects Of Kiwifruit Extract On Apoptosis And Cytokine Production In Inflamed Thp-1-Derived Macrophages, Adrian Cruz, Isbella Brigman
Effects Of Kiwifruit Extract On Apoptosis And Cytokine Production In Inflamed Thp-1-Derived Macrophages, Adrian Cruz, Isbella Brigman
Posters - 2026
White blood cells are essential components of the immune system involved in helping defend the body against infections. Macrophages are a type of white blood cell that play a major role in stimulating and regulating the inflammatory response. Inflammation is a natural response of the immune system to infection, injury, or harmful stimuli. Scientific research commonly studies inflammation by exposing immune cells to lipopolysaccharide (LPS). Macrophages stimulated with LPS undergo changes in cell processes such as apoptosis which is programmed cell death. Apoptosis is crucial for the immune system that helps eliminate infected or damaged cells to prevent the spread …
The Effects Of Mycoplasma Pneumoniae Cards Toxin On M2 Macrophage Polarization And Formation, Ria Modi
The Effects Of Mycoplasma Pneumoniae Cards Toxin On M2 Macrophage Polarization And Formation, Ria Modi
Posters - 2026
Macrophages are key cells of the innate immune system, playing essential roles in host defense, tissue homeostasis, and inflammation. Depending on stimuli, macrophages can polarize into distinct functional phenotypes, characterized as classically activated (M1) or alternatively activated (M2) macrophages. M2 macrophages are associated specifically with anti-inflammatory responses, tissue repair, and immune regulation. They contribute to wound healing and can regulate host responses during infection. Community-acquired respiratory distress syndrome (CARDS) toxin, a key virulence factor of Mycoplasma pneumoniae, plays a role in altering host immune responses, but its impact on M2 macrophage function and polarization remains unclear.
Impact Of Liver-Secreted Small Extracellular Vesicles On Myotube Funcation, Tatiana Barrantes, Ioannis Tsialtas, Qing Zhang, Kevin Koronowski
Impact Of Liver-Secreted Small Extracellular Vesicles On Myotube Funcation, Tatiana Barrantes, Ioannis Tsialtas, Qing Zhang, Kevin Koronowski
Posters - 2026
Extracellular vesicles (EVs) mediate intercellular communication by transferring molecular signals between tissues. Liver-derived EVs contribute to metabolic regulation and have been implicated in tissue cross-talk during health and disease. Skeletal muscle is a highly metabolic tissue that depends on mitochondrial respiration for energy production. However, whether liver-secreted EVs influence myotube mitochondrial function remains unclear. Here, we investigate the impact of liver-derived EVs on myotube mitochondrial respiration.
Nucleotide Excision Repair In Yeast, Kinleigh Mines, Larry Ramirez, Jacob Rodriguez, Delynda Gonzalez
Nucleotide Excision Repair In Yeast, Kinleigh Mines, Larry Ramirez, Jacob Rodriguez, Delynda Gonzalez
Posters - 2026
DNA damage occurs constantly in cells due to environmental factors and normal cellular processes, making DNA repair pathways essential for maintaining genomic stability (Hindi et al., 2021). One major repair mechanism is Nucleotide Excision Repair (NER), which is responsible for recognizing and removing bulky DNA lesions that distort the double helix structure (Scharer, 2013). In Saccharomyces cerevisiae (yeast), the RAD14 gene plays a critical role in this pathway by helping identify and initiate repair of damaged DNA (Scharer, 2013). Another source of instability comes from the formation of G-quadruplex (G4) structures, which are secondary DNA configurations that can interfere with …
Mitochondria Dynamics In Microglia During Health, Inflammation, And Aging, Alicia Nicole Pietramale
Mitochondria Dynamics In Microglia During Health, Inflammation, And Aging, Alicia Nicole Pietramale
Dartmouth College Ph.D Dissertations
Microglia continually surveil the brain, allowing for rapid detection of tissue damage or infection. Microglial metabolism is linked to tissue homeostasis, yet how mitochondria are subcellularly partitioned in microglia and dynamically reorganize during surveillance, injury responses, and phagocytic engulfment in the intact brain has remained unclear. In this dissertation, I combine intravital imaging, ultrastructural analyses, and metabolic and cytoskeletal markers to investigate how mitochondrial organization relates to microglial function across health, inflammation, and aging.
I first show that microglial processes diverge in their mitochondrial content, with some containing multiple mitochondria while others are completely void. This heterogeneous partitioning is conserved …
Morphological Characteristics Of The Mediophyceae Diatom Lampriscus Cf. Shadboltianus Var. Crenulatus Collected From Gili Meno, Indonesia, Arief Rachman, Riani Widiarti, Setiarti Sukotjo, Mark Wells
Morphological Characteristics Of The Mediophyceae Diatom Lampriscus Cf. Shadboltianus Var. Crenulatus Collected From Gili Meno, Indonesia, Arief Rachman, Riani Widiarti, Setiarti Sukotjo, Mark Wells
Makara Journal of Science
Diatoms are the most common and abundant microalgae group in seawater, with an estimated 200 genera and 200,000 species categorized into three distinct taxonomic classes: Mediophyceae, Bacillariophyceae, and Coscinodiscophyceae. This study describes the morphological characteristics of Lampriscus GM052022, a diatom belonging to the Mediophyceae family, which was collected from Gili Matra, Lombok, Indonesia. Analysis using light microscopy (LM) and electron microscopy (EM) showed that the morphological characteristics of the Lampriscus GM052022 specimen are similar to those of Lampriscus shadboltianus var. crenulatus due to the distinct crenulation lines on the frustule, which differentiate this variation from Lampriscus shadboltianus. However, the …
Methods Of Inducing Cellular Senescence In Lung Fibroblasts, Sara Palega, Jennifer Q. Zhou, Shan Zhu, Yan Y. Sanders
Methods Of Inducing Cellular Senescence In Lung Fibroblasts, Sara Palega, Jennifer Q. Zhou, Shan Zhu, Yan Y. Sanders
Knowledge and Creativity Expo
Methods of Inducing Cellular Senescence in Lung Fibroblasts
Sara Palega1, Jennifer Q Zhou2, Shan Zhu2, Yan Y Sanders2
1VHS Biomedical Sciences PhD program, 2Department of Biomedical and Translational Sciences, Macon & Joan Brock Virginia Health Sciences at Old Dominion University (ODU)
Introduction: Idiopathic Pulmonary Fibrosis (IPF) is the most prevalent and severe of interstitial lung diseases. This chronic and progressive condition lacks treatment options and is ultimately fatal without a lung transplant. IPF arises from aberrant wound healing that leads to excessive collagen deposition, inflammation, and cystic alveolar growths which makes …
Contribution Of G4 Structure To Alzheimer’S Disease And Tau Pathology, Lena Michaela Kallweit
Contribution Of G4 Structure To Alzheimer’S Disease And Tau Pathology, Lena Michaela Kallweit
Electronic Theses and Dissertations
The occurrence of Alzheimer’s Disease (AD) is rapidly increasing as our global population ages. With the majority of therapeutic drugs in the last couple of decades failing clinical trials, new molecular targets are needed to combat the expected influx of new AD cases. AD pathogenesis is associated with abnormal protein aggregation, characterized in part by intracellular accumulation of hyperphosphorylated tau (p-tau) in neurofibrillary tangles (NFTs). RNA has been identified as a major non-proteinaceous component of NFTs and has been implicated as an active cofactor in tau aggregation and spread. Recent work has shown that aggregates from AD brains contain almost …
Egf Enhances Re-Epithelization In Our Ex-Vivo Pig Eye Model, Andrew D. Le, Lisandra Plana-Ramos, Kate Tarvestad, Brian Ceresa
Egf Enhances Re-Epithelization In Our Ex-Vivo Pig Eye Model, Andrew D. Le, Lisandra Plana-Ramos, Kate Tarvestad, Brian Ceresa
The Cardinal Edge
The cornea, the foremost anterior portion of the eye, plays a critical role in vision by refracting light and serving as a protective barrier. Its three distinct layers—the outermost epithelial layer, the thick stromal layer, and the innermost endothelial layer work together to maintain corneal transparency and function. The epithelial layer is particularly susceptible to damage, which can compromise the eye’s defense against foreign particles such as bacteria and viruses, potentially leading to infection and blindness. In this study, we established an ex vivo porcine corneal model to quantitatively and qualitatively investigate corneal re-epithelialization. Using adult pig eyes sourced from …
Disrupted Nuclear Function And Nucleocytoplasmic Transport In Parkinson’S Disease, Ichiro M. Matoba
Disrupted Nuclear Function And Nucleocytoplasmic Transport In Parkinson’S Disease, Ichiro M. Matoba
The Cardinal Edge
No abstract provided.
Glycative Stress Disrupts The Mitochondrial-Lysosome Axis And Promotes Geroconversion In Aging Cardiomyocytes, Diana Bou-Teen, Simonas Valiuska, Elisabet Miro-Casas, Chiara Rubeo, Elena Bonzon-Kulichenko, Zuzana Nichtova, Celia Fernandez-Sanz, Javier Inserte, Antonio Rodriguez-Sinovas, Begoña Benito, Eduard Ródenas-Alesina, Jesús Vázquez, Ignacio Ferreira-González, Marisol Ruiz-Meana
Glycative Stress Disrupts The Mitochondrial-Lysosome Axis And Promotes Geroconversion In Aging Cardiomyocytes, Diana Bou-Teen, Simonas Valiuska, Elisabet Miro-Casas, Chiara Rubeo, Elena Bonzon-Kulichenko, Zuzana Nichtova, Celia Fernandez-Sanz, Javier Inserte, Antonio Rodriguez-Sinovas, Begoña Benito, Eduard Ródenas-Alesina, Jesús Vázquez, Ignacio Ferreira-González, Marisol Ruiz-Meana
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Aging is a major risk factor for heart failure, yet the molecular mechanisms linking cardiac aging to the inflammatory pathophysiology of heart failure remain elusive. Mitochondrial dysfunction and defective organelle quality control are emerging hallmarks of the aging heart, but their biochemical underpinnings are poorly defined. Using comprehensive glycomics, we found that cardiac mitochondria from physiologically aged mice (≥ 20 months) are the major intracellular reservoirs of advanced glycation end products (AGEs), derived primarily from the chemical attack of some α-oxoaldehydes on proteins. This was associated with mild mitochondrial dysfunction and structural remodeling. Lysosomes in aged hearts were enlarged, more …
Characterization And Advancement Of Molluscan Venom Gland Cell Model Systems, James V. Parziale
Characterization And Advancement Of Molluscan Venom Gland Cell Model Systems, James V. Parziale
Dissertations, Theses, and Capstone Projects
Venomous mollusks, including cone snails and coleoid cephalopods, produce rich repertoires of bioactive peptides with profound effects on cellular physiology, yet there are few tractable experimental systems that exist to study their development, maintenance, and venom secretion. Although therapeutics such as the cone snail peptide Ziconotide demonstrate the biomedical potential of molluscan venoms, progress in understanding how venom glands form, function, and evolve has been hindered by the lack of reliable husbandry and the complete absence of in vitro cell models. Modern comparative genomics has revealed widespread convergent evolution across venomous lineages, but molluscan datasets remain underrepresented, limiting insights into …
Stat-Independent Functions Of Janus Kinases 1 And 2 Are Obligatory For The Postnatal Development Of Mammary Epithelial Ducts, Rayane Dennaoui, Madison N. Wicker, Carson Moen, Michaela Schlederer, Kerry Vistisen, Aleata A. Triplett, Thomas Rülicke, Hallgeir Rui, Lukas Kenner, Emilio Casanova, Kay-Uwe Wagner
Stat-Independent Functions Of Janus Kinases 1 And 2 Are Obligatory For The Postnatal Development Of Mammary Epithelial Ducts, Rayane Dennaoui, Madison N. Wicker, Carson Moen, Michaela Schlederer, Kerry Vistisen, Aleata A. Triplett, Thomas Rülicke, Hallgeir Rui, Lukas Kenner, Emilio Casanova, Kay-Uwe Wagner
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
Janus kinases 1 and 2 and STAT transcription factors are critical signaling nodes for numerous growth factors. In the mammary gland, JAK2 and STAT5a/b are essential for alveolar cell differentiation and lactation, but little is known about the cooperative roles of JAKs and STATs before pregnancy. We examined female mice conditionally deficient in JAK1/2 and discovered that both kinases jointly regulate epithelial cell proliferation and ductal morphogenesis. To assess the role of downstream STATs, we generated genetic models co-deficient in STAT3/5a/5b with or without STAT1 or JAK1. Although loss of STAT3/5a/5b leads to a JAK1-dependent upregulation of STAT1, the formation …
Reverse Micelles Produce Hydroxyapatite Nanoparticles As More Efficient Gene Delivery Carriers Than Regular Micelles, Vuk Uskoković
Reverse Micelles Produce Hydroxyapatite Nanoparticles As More Efficient Gene Delivery Carriers Than Regular Micelles, Vuk Uskoković
Administration and Staff Articles and Research
Hydroxyapatite (HAp) is an effective inorganic gene delivery carrier due to its ability to transport genetic cargo across cell membranes, protect it from proteolysis, and enable escape from late endosomes via pH-controlled dissolution. However, its transfection efficiency remains lower than that of viral agents, prompting studies of hybrids with cationic molecules or phases to enhance the gene delivery performance. This study reports on the synthesis of HAp in regular and reverse micellar regions of a ternary microemulsion system composed of cetyltrimethylammonium bromide (CTAB), 1-hexanol and water. Spectroscopic characterization revealed that CTAB headgroups adopted more ordered supramolecular conformations in reverse micelles …
Dapagliflozin Attenuates Cisplatin-Induced Nephrotoxicity In Rats Through Modulation Of Ros/Nf-Κb, Bcl2/Bax And Pink1/Parkin Signaling Pathways, Esraa K. Khallaf, Eman A. Ramadan, Mohey M. Elmazar, Marwa M. Safar
Dapagliflozin Attenuates Cisplatin-Induced Nephrotoxicity In Rats Through Modulation Of Ros/Nf-Κb, Bcl2/Bax And Pink1/Parkin Signaling Pathways, Esraa K. Khallaf, Eman A. Ramadan, Mohey M. Elmazar, Marwa M. Safar
Pharmacy
Dapagliflozin (DPG), an anti-diabetic drug, has gained attention for its renal protective effects through multiple molecular pathways, yet its impact on mitophagy in cisplatin (CIS) nephrotoxicity remains unclear. This study aimed to examine the impact of DPG against CIS-induced nephrotoxicity in rats, targeting mainly PINK1/Parkin-mediated mitophagy and inflammatory/apoptotic pathways. Male Sprague Dawley rats received DPG (10 mg/kg; p.o) daily for 14 consecutive days and AKI was induced by a single injection of CIS (7 mg/kg; i.p) on day 10. Blood glucose, serum levels of creatinine and urea nitrogen, oxidative stress, inflammatory, apoptotic, mitophagy markers, and histological changes were assessed. DPG …
Elevated Trna Halves In Olfactory Epithelial Cells Of Patients With Schizophrenia, Justin T. Gumas, Megumi Shigematsu, Karin E. Borgmann-Winter, C. G. Hahn, Yohei Kirino
Elevated Trna Halves In Olfactory Epithelial Cells Of Patients With Schizophrenia, Justin T. Gumas, Megumi Shigematsu, Karin E. Borgmann-Winter, C. G. Hahn, Yohei Kirino
Computational Medicine Center Faculty Papers
Schizophrenia patients' olfactory epithelial cells contain abundant immune-activating tRNA fragments, linking small RNA biology to inflammation and suggesting avenues for diagnostics.
Selective Deletion Of Slc2a1 From The Rpe Reveals That Rods But Not Cones Depend On Glucose Transport Across The Outer Blood-Retinal Barrier, Lauren L. Daniele, John Y.S. Han, Minzhong Yu, Ravi A. Sangani, Craig D. Beight, Cyrus Rostami, Philip D. Kiser, Neal S. Peachy, Nancy J. Philp
Selective Deletion Of Slc2a1 From The Rpe Reveals That Rods But Not Cones Depend On Glucose Transport Across The Outer Blood-Retinal Barrier, Lauren L. Daniele, John Y.S. Han, Minzhong Yu, Ravi A. Sangani, Craig D. Beight, Cyrus Rostami, Philip D. Kiser, Neal S. Peachy, Nancy J. Philp
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
GLUT1 facilitates a continuous flow of glucose across the inner and outer blood-retinal barriers (BRBs) to support vision. To understand the extent to which photoreceptors rely on glucose transport across the outer BRB, we generated a tamoxifen-inducible conditional knockout of Slc2a1 in the retinal pigment epithelium (RPE) (RPE-iΔGlut1). In the RPE-iΔGlut1 mice, rod photoreceptors exhibited impaired outer segment renewal and decreased the expression of proteins involved in phototransduction and ciliary transport. Proteins regulating the retinal stress response increased. Cone photoreceptors were functional and viable 15 months post-tamoxifen treatment in the RPE-iΔGlut1 mice, while 70% of the rods died. …
Decoupling Of Reproduction And Lifespan Trade-Off In Caenorhabditis Elegans Through Microbial Programming, Nora M. Villafuerte
Decoupling Of Reproduction And Lifespan Trade-Off In Caenorhabditis Elegans Through Microbial Programming, Nora M. Villafuerte
LSU Master's Theses
The microbiome is increasingly recognized as a major regulator of host physiology. Using the Caenorhabditis elegans model, we investigated how natural commensal bacteria modulate host reproduction and lifespan through internal egg hatching, a phenotype in which retained embryos hatch within the maternal body. Screening strains from the CeMbio collection identified four focal strains Ochrobactrum BH3, Lelliottia JUb66, Pantoea BIGb0393, and Enterobacter CEent1 that significantly increased internal egg hatching during the late reproductive period. This contrasts with pathogenic bacteria, which induce early-onset internal egg hatching. Across the focal strains, worms exhibited reduced total brood size but an expanded reproductive window relative …
Inhomogeneous Branching Random Walks: Incorporating Genealogy And Density Effects, Lauren Ajax, Beatrice Durham, Pratima Hebbar, Cade Johnston, Jiayi Zhang
Inhomogeneous Branching Random Walks: Incorporating Genealogy And Density Effects, Lauren Ajax, Beatrice Durham, Pratima Hebbar, Cade Johnston, Jiayi Zhang
Spora: A Journal of Biomathematics
We introduce a novel framework using inhomogeneous branching random walks (BRWs) to model biological processes, specifically by introducing genealogy-dependence in branching rates and displacement distributions to model bacterial colony growth. Current stochastic models often either assume independent and identical behavior of individual agents or incorporate only spatiotemporal inhomogeneity, ignoring the effect of genealogy-based inhomogeneity on the long-time behavior of these processes. Such asymptotics are of independent mathematical interest and are crucial in understanding the emergence of patterns. We propose several inhomogeneous BRW models in 2D space where displacement distributions and branching rates vary with time, space, and genealogy. A combined …
Investigating The Presence Of Amyloid In The C. Elegans Germline And Embryos, Sereen M. El Jamal
Investigating The Presence Of Amyloid In The C. Elegans Germline And Embryos, Sereen M. El Jamal
Biochemistry and Molecular Biology
Amyloids, insoluble protein aggregates of cross ß-sheet structure, are commonly associated with amyloidosis diseases. However, more recent studies support that some amyloids serve essential functions evolutionarily conserved across several taxa, particularly in reproduction. The nematode Caenorhabditis elegans serves as an excellent model organism in reproductive research. Prior to this study, no research has investigated the presence of functional amyloid in the C. elegans reproductive system. We hypothesize that similar to the presence of functional amyloid in the eggshells and epididymides of other organisms, functional amyloid will also be present in the germline and embryos of C. elegans. Using immunostaining, …
Cell Surface Expansion And Tension Regulation: How Cellular Forces Shape Embryonic Development, Samantha A. Pressman, Sophia M. Micale, Bing He
Cell Surface Expansion And Tension Regulation: How Cellular Forces Shape Embryonic Development, Samantha A. Pressman, Sophia M. Micale, Bing He
Wetterhahn Science Symposium Posters
Congenital birth deformities often arise during epithelial morphogenesis, displaying the need to understand the mechanisms underlying this process. Cell shape changes that mediate morphogenesis often require cell surface expansion to accommodate shifts in 3D tissue geometry. Our lab has identified Four Wheel Drive (Fwd), a Golgi-localized phosphatidylinositol 4-kinase (PI4K) IIIβ ortholog, as a regulator for cell surface expansion during Drosophila ventral furrow formation, a well-characterized model for epithelial folding. We hypothesize that Fwd and Rab11, a regulator of exocytosis and endocytic recycling, coordinate the trans-Golgi network and recycling endosomes to promote vesicle trafficking. Using live imaging of fluorescently tagged Fwd …
Mitochondria In Local Control Of Programmed Cell Killing & Resilience, Rashna Sharmin
Mitochondria In Local Control Of Programmed Cell Killing & Resilience, Rashna Sharmin
Biology Dissertations - Archive
Specialized cells are commonplace and defined by different compartments. Organelle transport across cell compartments is critical for cell function, as in morphologically complex neurons. Specialized cells can undergo programmed elimination, an essential facet of normal development. My central thesis question asks how intracellular transport of mitochondria, the cell’s energy producers, regulate fated elimination of complex cells. I explored this using the specialized tail-spike cell (TSC) of the roundworm C. elegans. The TSC dies embryonically through the novel ‘tripartite’ developmental killing program, Compartmentalized Cell Elimination (CCE). In my study, I defined and characterized events at the CCE initiation compartment of the …
Long Acting Beta2-Adrenergic Receptor Agonists Reverse Diabetic Nephropathy And Liver Steatosis In Murine Models Of Diabetes And Are Associated With Protection In Retrospective Human Studies, Brennan Winkler
MUSC Theses and Dissertations
Diabetes Mellitus (DM) affects 13.9% of men and 14.3% of women worldwide, a total of approximately 828 million people. Patients with diabetes are at risk of several complications including diabetic nephropathy (DN) and metabolic-associated steatohepatitis (MASH). These diseases eventually lead to end stage kidney disease (ESKD) and liver failure requiring dialysis and organ transplantation. In addition, diabetes exacerbates disease severity of autosomal dominant polycystic kidney disease (ADPKD), the most common potentially lethal genetic disease to affect humans with a prevalence of 1 in 500-1000. Therefore, a therapeutic approach that can attenuate organ damage and restore function in patients with DM, …
The Impact Of The Different Vdac Isoforms On Hbv Replication And Hbx Localization, Cody Mcumber
The Impact Of The Different Vdac Isoforms On Hbv Replication And Hbx Localization, Cody Mcumber
MUSC Theses and Dissertations
Chronic hepatitis B virus (HBV) infection is the leading cause of hepatocellular carcinoma worldwide. Despite the availability of a preventative vaccine, there are approximately 254 million people living with a chronic HBV infection. There are 9 known HBV genotypes, each with their own clinical impacts and manifestation in infected patients. HBx is the only regulatory protein encoded by the HBV genome and is required for efficient viral replication. HBx has many effects in infected hepatocytes besides known effects on HBV replication, such as localization to the mitochondria. HBx is also known to have impacts on mitochondrial membrane potential, mitochondrial permeability …