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Articles 31 - 60 of 233
Full-Text Articles in Cell and Developmental Biology
Structure-Based Discovery Of Malate Dehydrogenase Inhibitors With Efficacy Against C. Parvum Oocysts, Ankita Bharatbhai Kheni
Structure-Based Discovery Of Malate Dehydrogenase Inhibitors With Efficacy Against C. Parvum Oocysts, Ankita Bharatbhai Kheni
Biochemistry and Molecular Biology
Cryptosporidium parvum, the etiological agent of Cryptosporidiosis (diarrheal illness) represents a significant global health burden, particularly affecting immunodeficient and pediatric populations. Since the parasite has a highly reduced mitochondrion and relies on glycolysis, enzymes such as C. parvum malate dehydrogenase (CpMDH), which are believed to be indispensable for parasite viability due to their pivotal roles in NAD⁺ regeneration and redox balance, remain largely unexplored as therapeutic targets. The present study employed a multifaceted experimental and computational strategy to evaluate the inhibitory activity of two lead-like and drug-like small molecules, referred to as compound 1.8 and compound 1.5, against the cofactor …
Decorin Promotes Nascent Proteoglycan Retention In Cartilage Matrix By Strengthening Collagen Ii-Aggrecan Integration, Thomas Li, Gabriela Canziani, Yuchen Liu, Neil Patel, Biao Han, Mingyue Fan, Annie Porter, Bryan Kwok, Chao Wang, Qing Li, David E. Birk, Renato V. Iozzo, Irwin M. Chaiken, X. Lucas Lu, Robert L. Mauck, Lin Han
Decorin Promotes Nascent Proteoglycan Retention In Cartilage Matrix By Strengthening Collagen Ii-Aggrecan Integration, Thomas Li, Gabriela Canziani, Yuchen Liu, Neil Patel, Biao Han, Mingyue Fan, Annie Porter, Bryan Kwok, Chao Wang, Qing Li, David E. Birk, Renato V. Iozzo, Irwin M. Chaiken, X. Lucas Lu, Robert L. Mauck, Lin Han
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Cartilage extracellular matrix (ECM), a hydrated collagen II-aggrecan composite, undergoes dynamic turnover during both normal homeostasis and disease-associated remodeling. This study elucidates a crucial role for decorin in promoting the retention and stability of nascent aggrecan within this matrix. By applying bio-orthogonal click-labeling, we demonstrate that loss of decorin accelerates the release of nascent aggrecan under both physiological and inflammatory conditions, without affecting its preferential localization to the pericellular matrix. Conversely, supplementation with exogenous decorin mitigates inflammation-induced loss of nascent aggrecan, supporting its potential as a therapeutic target. At the molecular level, decorin exhibits strong binding affinity for aggrecan, and …
Uncovering Dkk1 As A Therapeutically Relevant Target In Aggressive Er+ Breast Cancer Using A Novel Antiestrogen, Kristen Young
Uncovering Dkk1 As A Therapeutically Relevant Target In Aggressive Er+ Breast Cancer Using A Novel Antiestrogen, Kristen Young
Dissertations
Over 70 percent of breast cancers are estrogen receptor-positive (ERα+), meaning that the hormone estrogen drives tumor growth. Although first-line targeted therapies that directly block ERα from hormone-dependent pathologies are initially effective, almost half of patients ultimately progress. These patients show high mutational rates to the ESR1 gene that encodes for ERα. A hotspot missense tyrosine to serine mutation at position 537 (Y537S) initiates hormone-independent, allele-specific transcriptional programs that increase metastasis. While next-generation ERα-targeted therapies show promise, benefits are often limited compared to standard-of-care. Understanding the mechanisms of action used by the Y537S ESR1 breast cancer cells to evade therapeutic …
Loss Of Mct1 Mediated Lactate Uptake Causes Delayed Endplate Maturation And Intervertebral Disc Degeneration, Maria Tsingas, Konstantinos Tsingas, Mei Smyers, Wujuan Zhang, Aaron R. Goldman, Eulisa Lawrence, John A. Collins, Makarand V. Risbud
Loss Of Mct1 Mediated Lactate Uptake Causes Delayed Endplate Maturation And Intervertebral Disc Degeneration, Maria Tsingas, Konstantinos Tsingas, Mei Smyers, Wujuan Zhang, Aaron R. Goldman, Eulisa Lawrence, John A. Collins, Makarand V. Risbud
Department of Orthopaedic Surgery Faculty Papers
During skeletal growth, it is thought that the lactate secreted by the glycolytic nucleus pulposus (NP) cells exits the intervertebral disc into circulation via endplates. Our current studies challenge this long-held notion. Mice with early postnatal, endplate, and annulus fibrosus-specific deletion of lactate importer, MCT1, exhibited disc degeneration characterized by NP cell loss and pronounced endplate structural changes. Using metabolic and transcriptomic approaches, we demonstrate that MCT1 loss inhibits endplate chondrocyte differentiation and that lactate serves both as a crucial TCA metabolite and promotes protein and histone lactylation and gene expression. These findings suggest that during skeletal growth, NP-derived lactate …
Profiling Nucleolin Phosphorylation During Dna Damage Response And Cell Cycle Arrest, Hanjun Jeon
Profiling Nucleolin Phosphorylation During Dna Damage Response And Cell Cycle Arrest, Hanjun Jeon
Dissertations, Theses, and Capstone Projects
This dissertation examines site-specific and global phosphorylation dynamics of nucleolin (NCL) in response to DNA damage and cell-cycle perturbations. By combining phospho-specific immunoblotting with Phos-tag SDS-PAGE analysis, distinct phosphorylation patterns were identified across experimental conditions. The results define reproducible, condition-dependent phosphorylation states of NCL and provide a framework for studying its regulation under cellular stress.
Routine Transfusion Of Rh(D)-Positive Rbcs To Rh(D)-Negative Patients Designated As Do Not Resuscitate Conserves Rh(D)-Negative Red Blood Cell Inventory, Julie Katz Karp, Jovanna Everetts, Juliana Guarente, Angelica Vivero, Tiffany Bohr, Mary Harach
Routine Transfusion Of Rh(D)-Positive Rbcs To Rh(D)-Negative Patients Designated As Do Not Resuscitate Conserves Rh(D)-Negative Red Blood Cell Inventory, Julie Katz Karp, Jovanna Everetts, Juliana Guarente, Angelica Vivero, Tiffany Bohr, Mary Harach
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Background: A minority of blood donors are Rh(D)-negative, and Rh(D)-negative red blood cell (RBC) products are often overutilized. As such, Rh(D)-negative RBCs may be difficult to maintain in blood bank inventory.
Study design and methods: We changed our blood bank laboratory policy to approve non-alloimmunized Rh(D)-negative patients to receive Rh(D)-positive RBCs for routine transfusion under defined criteria. Those criteria included Rh(D)-negative males (all ages) and females (aged >50 years) who were designated as do not resuscitate (DNR), either with or without intubation, in the electronic medical record.
Results: From August 15, 2024 through August 15, 2025, a total of 204 …
Is Trimethylamine N-Oxide A Friend, Foe, Or Hormetic Agent In Patients With Parkinson’S Disease: A Focused Review Of One Microbial Metabolite, Abraham B. Alton
Is Trimethylamine N-Oxide A Friend, Foe, Or Hormetic Agent In Patients With Parkinson’S Disease: A Focused Review Of One Microbial Metabolite, Abraham B. Alton
Student Works
This review synthesizes recent literature examining trimethylamine N-oxide (TMAO) synthesis and its potential role in Parkinson’s Disease (PD) pathology. An increase in TMAO plasma and CSF concentration is associated with PD progression and severity. TMAO biosynthesis is a two-step process. First, precursors including carnitine and choline are converted to trimethylamine (TMA) by gut microbes. Second, TMAO is oxidized to TMAO in the liver. Once absorbed into circulation TMAO crosses the blood brain barrier and may influence PD disease pathology by increasing neuroinflammation and astrocyte activation and damaging the cerebral lymphatic system. These mechanisms may contribute to the cognitive and motor …
Mitochondria-Er Contact Sites (Mercs) In The Cell Cycle: Molecular Architecture And Functional Remodeling Across Cellular States, Eduardo Silva-Pavez, Bruno Torres-Gonzalez, Michelle Sotomayor, Benjamín Cartes-Saavedra, Dorian V. Ziegler, Yessia Hidalgo-Fadic, Ulises Ahumada-Castro
Mitochondria-Er Contact Sites (Mercs) In The Cell Cycle: Molecular Architecture And Functional Remodeling Across Cellular States, Eduardo Silva-Pavez, Bruno Torres-Gonzalez, Michelle Sotomayor, Benjamín Cartes-Saavedra, Dorian V. Ziegler, Yessia Hidalgo-Fadic, Ulises Ahumada-Castro
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Mitochondria–endoplasmic reticulum (ER) contact sites (MERCS) are nanoscopic, dynamic platforms integrating metabolism, signaling, and stress responses to regulate cell fate. These nanoscopic interfaces remodel continuously to meet the demands of proliferating, quiescent, and senescent cells. We synthesize evidence that MERCS actively coordinate local Ca2+ signaling, non-vesicular lipid transfer, and proteostasis to shape mitochondrial function and cellular homeostasis. We discuss how MERCS architecture changes across the cell cycle and during arrest, distinguishing adaptive from maladaptive remodeling, and consider therapeutic potential in aging and age-related disease.
The Impact Of Tgfβ Conditioning And Socs3 Expression On Cytokine Signal Transduction And Inflammatory Gene Expression In Fibroblasts, Morgan Anderson-Crannage
The Impact Of Tgfβ Conditioning And Socs3 Expression On Cytokine Signal Transduction And Inflammatory Gene Expression In Fibroblasts, Morgan Anderson-Crannage
NYMC Student Theses and Dissertations
Inflammation is a major driver in many aspects of recessive dystrophic epidermolysis bullosa (RDEB) pathology, including impaired wound healing, fibrosis, and potentially cutaneous squamous cell carcinoma development. Fibroblasts, as key stromal cells in the dermis, are responsible for orchestrating inflammatory responses through the secretion of cytokines and chemokines upon stimulation with IL-1α or IL-6. Suppressor of Cytokine Signaling 3 (SOCS3) functions as a negative feedback regulator of cytokine signaling and has emerged as a key modulator of inflammatory responses in immune cells and fibroblasts. Transforming Growth Factor Beta (TGFβ), a known driver of fibrosis in RDEB, has been implicated in …
In Vitro Reversal Of Abc Transporter Mediated Multidrug Resistance In Human Ovarian And Non-Small Cell Lung Cancer Models, Alison K. Kellom, Pia D. Vogel
In Vitro Reversal Of Abc Transporter Mediated Multidrug Resistance In Human Ovarian And Non-Small Cell Lung Cancer Models, Alison K. Kellom, Pia D. Vogel
Biological Sciences Theses and Dissertations
One of the major causes of treatment failure in aggressive cancers is multidrug resistance (MDR), which is linked to the overexpression of membrane efflux proteins that export chemotherapeutics from cancer cells. This mechanism prevents chemotherapeutic drugs from reaching cytotoxic concentrations intracellularly, allowing the cancer to survive. Two primary mediators of this mechanism are P-glycoprotein (P-gp) and Breast Cancer Resistance Protein (BCRP). P-gp and BCRP are transmembrane ATP-binding cassette (ABC) transporters that are frequently overexpressed in MDR cancers. They utilize the binding and hydrolysis of ATP to transport a diverse range of amphipathic molecules of varying size (Schinkel and Jonker, 2003), …
Characterizing A Potential Cbp/P300 Histone Acetyltransferase Homolog In Tardigrade Germline Specification And Development, Brittney Michelle Hartshorn
Characterizing A Potential Cbp/P300 Histone Acetyltransferase Homolog In Tardigrade Germline Specification And Development, Brittney Michelle Hartshorn
Honors Projects
Germline specification is a fundamental process that ensures the proper development of germ cells. Germline specification occurs either through germ cell determinants maternally inherited through the mechanism of preformation or through induction, where cell interaction and epigenetic modifications direct specification. Determining how these mechanisms evolved and diverged remains an important question in developmental biology. Despite research on germline regulation in model organisms such as Caenorhabditis elegans or Drosophila melanogaster, such regulation remains poorly understood in many other animal groups. Tardigrades are an emerging model system for investigating developmental mechanisms due to their phylogenetic placement and experimentally tractable embryos. CBP/P300 is …
Mllt1 Is Required To Maintain B-Lymphopoiesis, Janani Prakash
Mllt1 Is Required To Maintain B-Lymphopoiesis, Janani Prakash
Dissertations
MLLT1 (also named ENL) is an epigenetic reader protein that binds to crotonylated or acetylated lysine residues of histone 3 through its N-terminal YEATS domain. Positive and negative regulatory complexes compete for binding to C-terminal MLLT1, and promote transcription elongation (SEC, Super elongation complex; DOT1L) or transcriptional repression (PRC1, Polycomb repressive complex 1). MLLT1 was initially identified as a chromosomal translocation partner to MLL(KMT2A) in a subset of MLL-rearranged leukemias. MLL-ENL fusion protein causes both lymphoid (predominantly B-ALL) and mixed lineage leukemias. MLLT1 has been implicated in leukemic stem cell survival in MLL-rearranged cell lines but its role in normal …
Potential Innate And Adaptive Roles Played By Γδ T Cells In A Bacterial Immunization Model, Lee Anne Talbot
Potential Innate And Adaptive Roles Played By Γδ T Cells In A Bacterial Immunization Model, Lee Anne Talbot
Seton Hall University Dissertations and Theses (ETDs)
Francisella tularensis is a highly infectious intracellular bacterium and the causative agent of tularemia, with pulmonary infection resulting in severe disease and high mortality if untreated. While protective immunity to F. tularensis has been largely attributed to CD4⁺ T cell–mediated IFN-γ responses, the contribution of γδ T cells to mucosal immunity and vaccine-induced protection remains poorly defined. The objective of this study was to characterize the role of γδ T cells during primary pulmonary infection with F. tularensis live vaccine strain (LVS) and following intranasal immunization with inactivated F. tularensis (iFt) prior to LVS challenge.
Using a murine intranasal infection …
P300/Cbp Inhibition With Inobrodib In Combination With Gilteritinib And Venetoclax Targets Leukemia Stem Cells In Epigenetic Mutant Aml, Melanie L. Goetz, Jennifer S. Romer-Seibert, Amanda M. Versace, Scott Kogan, Chetan Jeurkar, Robert L. Bowman, Nigel Brooks, Kris Frese, Sara E. Meyer
P300/Cbp Inhibition With Inobrodib In Combination With Gilteritinib And Venetoclax Targets Leukemia Stem Cells In Epigenetic Mutant Aml, Melanie L. Goetz, Jennifer S. Romer-Seibert, Amanda M. Versace, Scott Kogan, Chetan Jeurkar, Robert L. Bowman, Nigel Brooks, Kris Frese, Sara E. Meyer
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
Acute myeloid leukemia (AML) is a fatal blood cancer with cytotoxic chemotherapy offering at best 25% 5-year survival. While targeted BCL2 and FLT3 inhibitors venetoclax and gilteritinib are used upfront in the treatment of a subset of adult patients with AML and help to extend the survival of some patients, a curative treatment combination with minimal side effects has yet to be discovered. We find that use of the dual histone acetyltransferase p300/CBP bromodomain inhibitor CCS1477 (inobrodib), together with venetoclax and gilteritinib, virtually eliminates leukemia stem cells in an aggressive preclinical model of DNMT3A/FLT3-mutant AML by impairing pro-oncogenic survival and …
Junctional Actin As A Mechanical Hub For Supracellular Actomyosin Force Transmission During Apical Constriction, Jasneet Brar
Junctional Actin As A Mechanical Hub For Supracellular Actomyosin Force Transmission During Apical Constriction, Jasneet Brar
UNLV Theses, Dissertations, Professional Papers, and Capstones
Apical constriction is a conserved morphogenetic mechanism that drives epithelial folding during development. During ventral furrow formation in Drosophila melanogaster, contractile actomyosin networks generate forces that reduce apical cell area resulting in tissue invagination. For these cell-scale forces to produce coordinated tissue-scale changes, contractile networks must be mechanically integrated across neighboring cells. Although adherens junctions are known to mediate this coupling, it is unclear how junctions are integrated into cortical actin cytoskeleton, which directly determines cell, and consequently tissue, shape. This thesis tests the hypothesis that supracellular actomyosin organization during apical constriction depends on distinct adherens junction based mechanical couplings: …
Thrombin-Induced Myofibroblast Differentiation Is Regulated By Myocardin And Novel Effector Genes In Ipf Fibroblasts, Christiana Okeke
Thrombin-Induced Myofibroblast Differentiation Is Regulated By Myocardin And Novel Effector Genes In Ipf Fibroblasts, Christiana Okeke
Biotechnology Theses
Idiopathic pulmonary fibrosis (IPF) is a progressive interstitial lung disease characterized by fibroblast activation, excessive extracellular matrix (ECM) deposition, and irreversible respiratory decline. In this study, we investigated the role of myocardin and its downstream effectors, RGS5, DLGAP5, and TAGLN, in thrombin-induced myofibroblast differentiation and ECM remodeling using primary human IPF fibroblasts. Myocardin knockdown significantly attenuated thrombin-induced expression of profibrotic genes, including FN1, COL1A1, PAI-1, ACTA2, and CNN1, as well as the novel effectors RGS5, DLGAP5, and TAGLN, confirming myocardin as a central regulator of fibrotic signaling. Silencing RGS5 produced minimal effects on gene and protein expression despite minor downward …
The Dynamics Of Synchrony On Replicating Biological Populations, Montse Torres Garcia, Kevin Mcgoff, Francis Motta, Breschine Cummins, Steve Haase
The Dynamics Of Synchrony On Replicating Biological Populations, Montse Torres Garcia, Kevin Mcgoff, Francis Motta, Breschine Cummins, Steve Haase
Biology and Medicine Through Mathematics Conference
No abstract provided.
The Effects Of Cinnamaldehyde On Tetrahymena Thermophila, Sydney Kurland
The Effects Of Cinnamaldehyde On Tetrahymena Thermophila, Sydney Kurland
Publications and Research
In addition to their common use as spices in cooking and baking, cinnamon plants, Cinnamomum zeylanicum and Cinnamomum cassia for example, have long been used in herbal remedies worldwide. Cinnamon contains many vital oils and active compounds including cinnamaldehyde (CMD). Numerous studies looking at potential therapeutic effects of cinnamon have demonstrated its antioxidant, anti-inflammatory, and antimicrobial properties (1, 2, 3). Therefore, it is important to continue studying the efficacy, benefits, and mechanisms of action of cinnamon and CMD to have a complete understanding of its full potential. Tetrahymena thermophila is a ciliated protozoan commonly used as a model organism to …
Phosphate-Mediated Regulation Of Intracellular Calcium Dynamics, Huma Shahzad, Mohammed S. Razzaque
Phosphate-Mediated Regulation Of Intracellular Calcium Dynamics, Huma Shahzad, Mohammed S. Razzaque
School of Medicine Publications
Phosphate (Pi) and calcium (Ca2+) are essential mineral ions that play coordinated roles in maintaining normal cellular functions. While various steps of calcium signaling are well characterized, emerging evidence suggests the critical role of both intracellular and extra cellular phosphate in regulating intracellular Ca2+. In the cytoplasm, phosphate influences ATP production and organelle calcium buffering and influences the activity of calcium pumps, such as sarcoplasmic/endoplasmic reticulum Ca2+-ATPase (SERCA) and the plasma membrane Ca2+-ATPase (PMCA). Extracellular phosphate, taken up via sodium-dependent phosphate transporters, triggers signaling cascades that affect the processes of calcium influx, storage, and release. Additionally, high extracellular phosphate levels …
The Risk Of Bpa In B Lymphocyte-Mediated Autoimmunity, Mario J. Palacios
The Risk Of Bpa In B Lymphocyte-Mediated Autoimmunity, Mario J. Palacios
Senior Honors Theses
Autoimmune disorders disproportionately affect females, a bias largely attributed to estrogen's modulation of B lymphocyte development and tolerance. Bisphenol A (BPA), a common plastic monomer, shows estrogenic activity and acts as an endocrine disruptor and epigenetic modifier. This thesis examines how BPA may increase autoimmune risk by mimicking estrogen such that it can excite estrogen receptors which rescue autoreactive B lymphocytes from apoptosis. While direct research linking BPA to B lymphocyte-mediated autoimmunity is limited, understanding BPA’s course of action in B lymphocytes is critical for addressing the rising prevalence of autoimmune diseases and its possible link to the increased and …
Synthesis Of A Nicotine-Like Backbone Ligand For Binding Evaluation At Plk-1 Pbd, Carter Johnson
Synthesis Of A Nicotine-Like Backbone Ligand For Binding Evaluation At Plk-1 Pbd, Carter Johnson
Undergraduate University Honors Capstones
Cancer is a significant problem and requires continued research, as it remains one of the leading causes of death worldwide (Ramos, 2021). This capstone explores the synthesis and preliminary evaluation of a nicotine-type compound as a potential cancer-curing agent targeting the PLK-1 PBD protein using fluorescence polarization. The hypothesis is that a specific ligand may contribute to cancer research. This project also reviews cancer management methods while illustrating the discovery of chemical drugs used in chemotherapy. The project involves synthesizing and testing 3-((1-methylpyrrolidin-2-yl)methoxy)-1-alkylpyridin-1-ium, known as Compound C, to determine whether it can function as a potential cancer management agent. The …
Nanoparticle-Based Therapy For Peripheral Artery Disease: Evaluation Of Collagen Reduction And Fibrosis Mitigation In Ischemic Tissue, Tresha Nguyen
Nanoparticle-Based Therapy For Peripheral Artery Disease: Evaluation Of Collagen Reduction And Fibrosis Mitigation In Ischemic Tissue, Tresha Nguyen
2026 Spring Honors Capstones Projects
Peripheral Artery Disease (PAD) is characterized by reduced blood flow, ischemic injury, and fibrosis, which collectively impair tissue function. Current treatment strategies are limited in their ability to target fibrotic tissue and restore normal function effectively. This study evaluates the therapeutic potential of drug-loaded nanoparticles to reduce fibrosis in ischemic tissue. Nanoparticles were synthesized and characterized for in vivo application. Tissue samples from experimental groups, including saline control, blank nanoparticles, free drug, and drug-loaded nanoparticles, were analyzed using Masson’s Trichrome staining to quantify collagen deposition. Histological images were processed using image analysis software to determine the percentage of collagen area. …
Cell Cycle Inhibition: Illudin S And Its Effects On Cdk2 In Ewing Sarcoma, Stephanie Diez, Natalie Flores, Alexandria Hernandez, Viviana Palacios, Terry Jo Shackleford
Cell Cycle Inhibition: Illudin S And Its Effects On Cdk2 In Ewing Sarcoma, Stephanie Diez, Natalie Flores, Alexandria Hernandez, Viviana Palacios, Terry Jo Shackleford
Cell and Molecular Methods
Ewing Sarcomas are aggressive round cell mesenchymal neoplasmas that have a high occurrence in children and young adults. CDK2 is a protein that is involved in the G1 phase of the cell cycle, which promotes the transition to the S phase. CDK2 kinase activation is mainly observed in the G1/S-phase transition.3 CDK2 binds to Cyclin proteins is responsible for entry and progression, thereby leading to maximal apoptosis activity in the S-phase. Illudin S is a drug that has been known to target cancer-specific cells, such as leukemia. Illudin S, in general are a cytotoxic metabolite that comes from plants, specifically …
Yap1 Knockdown And Panobinostat Treatment Increase Apoptotic Response And Decrease Gene Expression In Ewing Sarcoma Cells, Luna Collazo-Garcia, Alejandra Favela Santos, Madeline Torres-Salazar, Isabella Toscano, Terry Jo Shackleford
Yap1 Knockdown And Panobinostat Treatment Increase Apoptotic Response And Decrease Gene Expression In Ewing Sarcoma Cells, Luna Collazo-Garcia, Alejandra Favela Santos, Madeline Torres-Salazar, Isabella Toscano, Terry Jo Shackleford
Cell and Molecular Methods
Ewing sarcoma (EWS) is considered to be one of the most aggressive pediatric malignancies, often characterized by its dysregulated gene expression driven by oncogenic fusion proteins. The Hippo signaling effector Yes-associated protein 1 (YAP1) has been known in promoting cell proliferation, survival, and therapeutic resistance in multiple cancers. However, its role in Ewing sarcoma response to treatment remains unclear. This study investigated whether YAP1 knockdown enhances the sensitivity of Ewing sarcoma cells to the histone deacetylase inhibitor Panobinostat. Ewing sarcoma, ES8, cells were transfected with a YAP1-targeting siRNA (siYAP1) or a non-targeting control (siControl) and treated with DMSO, 0.1 μM, …
Everolimus Treatment Combined With Akt1 Knockdown Increased Apoptosis And Decreased Cell Proliferation In Ewing Sarcoma Cells, Arisha Arif, Alfie Barcenez, Sophia Ruter, Nicole Vanegas-Riddick, Terry Jo Shackleford
Everolimus Treatment Combined With Akt1 Knockdown Increased Apoptosis And Decreased Cell Proliferation In Ewing Sarcoma Cells, Arisha Arif, Alfie Barcenez, Sophia Ruter, Nicole Vanegas-Riddick, Terry Jo Shackleford
Cell and Molecular Methods
The purpose of this study is to use the gene AKT1, due to the interest in AKT1’s role in cancer cell proliferation, and the drug Everolimus, to determine if combined targeted therapy works as a more efficient therapeutic approach. Ewing Sarcoma has been connected to chromosomal translocations and is most common in pediatric patients. It is most often treated with chemotherapy and local treatments. It may be connected to the gene AKT1 due to how it regulates cell metabolism, growth, and proliferation. The gene mTOR is similarly connected to cell metabolism and proliferation, and is inhibited by the drug Everolimus. …
Sirna Knockdown Of Rptor Reduces Rptor Expression, Increases Brd4 Expression, And Alters Proliferation And Apoptosis In Ewing's Sarcoma Cells, Sergio Cipriano, David Leavitt, Michael Olivia, Liam Valdez, Terry Jo Shackleford
Sirna Knockdown Of Rptor Reduces Rptor Expression, Increases Brd4 Expression, And Alters Proliferation And Apoptosis In Ewing's Sarcoma Cells, Sergio Cipriano, David Leavitt, Michael Olivia, Liam Valdez, Terry Jo Shackleford
Cell and Molecular Methods
Ewing sarcoma is a highly aggressive cancer that primarily affects children and young adults. Although treatment options exist, many patients do not respond effectively, showing the need for improved targeted therapies. RPTOR is a key in mTORC1 complex which regulates cell growth, proliferation, and survival. LY2874455 is a selective pan-FGFR inhibitor that targets growth factor signaling pathways involved in tumor progression, and FGFR signaling interacts with pathways such as mTOR, making it a potential target for combination therapies. We hypothesized that silencing RPTOR in Ewing sarcoma cells would disrupt mTOR signaling and alter expression of genes linked to cell survival …
Everolimus And Sirna-Mediated Mtor Inhibition Reduces Proliferation And Promotes Apoptosis In Ewing Sarcoma Cells, Dylan Calvert, Malorie Martinez, Alexa Miner, Ellis Quiroga, Terry Jo Shackleford
Everolimus And Sirna-Mediated Mtor Inhibition Reduces Proliferation And Promotes Apoptosis In Ewing Sarcoma Cells, Dylan Calvert, Malorie Martinez, Alexa Miner, Ellis Quiroga, Terry Jo Shackleford
Cell and Molecular Methods
Ewing Sarcoma (ES) is an aggressive pediatric bone cancer characterized by rapid cell proliferation and poor prognosis, making the identification of therapeutic targets critical. One of the mechanistic targets is rapamycin (mTOR) signaling pathway, which is critical for regulating cell growth, proliferation, and survival. Abnormal activation of the mTOR signaling pathway has been linked to the progression of ES, as it drives uncontrolled cell growth and apoptosis resistance. Because mTOR represents a promising therapeutic target for ES treatment, we hypothesized that inhibiting mTOR activity through an siRNA-mediated knockdown or through Everolimus drug treatment, would reduce cell proliferation and promote ES …
Role Of Kif4a In The Fxa-Induced Phenotypic Modulation Of Pleural Mesothelial Cells, Sudishna Khanal
Role Of Kif4a In The Fxa-Induced Phenotypic Modulation Of Pleural Mesothelial Cells, Sudishna Khanal
Biotechnology Theses
Pleural injuries can disrupt the organization of the pleural surface, leading to pleural remodeling and fibrosis (PF), characterized by the proliferation of myofibroblasts expressing alpha-smooth muscle actin (α-SMA) and the deposition of extracellular matrix proteins, primarily due to the mesenchymal transition of pleural mesothelial cells (PMCs) (MesoMT). It is well established that various external stimuli, such as TGF-β, thrombin, and factor Xa (FXa), induce MesoMT. Our laboratory found that myocardin, a transcriptional co-activator, was dramatically up-regulated during MesoMT, and that gene silencing of myocardin (MyoCD) diminished MesoMT. RNA sequencing data showed that FXa activated a set of genes not upregulated …
Bax Activation Through The N-Terminal Bh3-Like Domains Of Vdac1 And Vdac2, Autumn A. Peters
Bax Activation Through The N-Terminal Bh3-Like Domains Of Vdac1 And Vdac2, Autumn A. Peters
Honors Theses
Voltage-dependent anion channels (VDACs) are central to mitochondrial function by mediating metabolite diffusion across the mitochondrial outer membrane (MOM). Two isoforms, VDACs 1 and 2, are also implicated in apoptosis based on interactions with Bcl-2 family proteins that control this process, including Bax and Bcl-xL. Activation of the pro-apoptotic protein Bax by interaction with ‘BH3-only’ proteins, such as Bim or Bid, induces MOM permeabilization to signal apoptosis, yet accumulating evidence indicates VDACs 1 and 2 may also affect Bax. We discovered that the VDAC N-terminal domains contain high sequence similarity to the conserved BH3 domains within Bcl-2 family members that …
A Conserved Role For Cyclin C In Regulated Cell Death Across Yeast And Humans, Samar Emami, David Stieg, Daniel Smethurst, Justin Bauer, Randy Strich
A Conserved Role For Cyclin C In Regulated Cell Death Across Yeast And Humans, Samar Emami, David Stieg, Daniel Smethurst, Justin Bauer, Randy Strich
Rowan-Virtua Research Day
Background: Programmed cell death (PCD) is a tightly regulated process that maintains tissue homeostasis and eliminates damaged, infected, or malignant cells. A key regulator of this process is Cyclin C (CCNC), which functions as a component of the mediator complex to regulate gene transcription. During cellular stress, CCNC translocates from the nucleus to the mitochondria, where it associates with Dnm1 to promote mitochondrial fragmentation and apoptosis.
Objective: This study aimed to unravel conservation of CCNC’s function between yeast and humans by investigating whether human CCNC can induce apoptosis in yeast and whether it does so through interaction with …