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Articles 1 - 25 of 25
Full-Text Articles in Medical Cell Biology
Antiestrogens As Bone Protective Therapeutics For Estrogen Receptor-Positive Breast Cancer In The Presence Of Osteoporosis, Faith E. Parker, Emily K. Zboril, David C. Boyd, Rachel Myrick, J. Chuck Harrell
Antiestrogens As Bone Protective Therapeutics For Estrogen Receptor-Positive Breast Cancer In The Presence Of Osteoporosis, Faith E. Parker, Emily K. Zboril, David C. Boyd, Rachel Myrick, J. Chuck Harrell
Undergraduate Research Posters
Breast cancer (BC) is one of the most significant causes of mortality among women and the second leading cause of cancer death in women. The estrogen receptor (ER) is a key oncogenic driver in the majority of breast cancer. ER+ BC is the most common molecular subtype of BC. Management of ER+ breast cancer varies depending on menopausal status. For premenopausal women, the goal is to suppress estradiol production from the ovaries with surgical oophorectomy and/or aromatase inhibitors. In postmenopausal women, endocrine therapy (ET) serves to suppress estradiol production from sources other than the ovaries. During the menopausal transition, estradiol …
Formation Of Vasculogenic Mimicry: Role Of Melanoma Differentiation Associated Gene-9 In Human Melanoma, Jinkal Shah
Formation Of Vasculogenic Mimicry: Role Of Melanoma Differentiation Associated Gene-9 In Human Melanoma, Jinkal Shah
Theses and Dissertations
Malignant melanoma (MM) is the most aggressive skin cancer and the most frequent skin disorder in Caucasians. MM is associated with aggressive and progressive disease states, leading to major cancer-related morbidity and mortality. Recent investigations identify an alternative pathway -vasculogenic mimicry (VM), which is considered a cancer hallmark that can independently facilitate tumor neovascularization by the formation of fluid-conducting and vascular endothelial cells. MM cells undergoing VM can dedifferentiate into numerous cellular phenotypes and acquire endothelial-like features, resulting in the formation of the de novo matrix-rich vascular-like networks, such as plasma and red blood cells. The co-generation of endothelial cells, …
Proposing An Rna Interference (Rnai)-Based Treatment For Human Immunodeficiency Virus (Hiv) By Analyzing The Post-Transcriptional Gene Targeting Of Sars-Cov-2, Hepatitis C Virus, And A549 Lung Cancer Cells, Arjun Jagdeesh
Undergraduate Research Posters
Human Immunodeficiency Virus (HIV) is a retrovirus that infects CD4+ T cell lymphocytes in humans, leading to the development of Acquired Immunodeficiency Syndrome (AIDS) if left untreated. While current treatment methods, including antiretroviral combination treatments, effectively limit HIV replication, HIV can evade these treatments due to its high mutation rate. Long-term antiretroviral treatment can also be toxic to patients, meaning patients would benefit from a new mechanism of HIV treatment. RNA interference (RNAi) is an antiviral pathway found in mammals, plants, and insects that involves a small-interfering RNA that is incorporated into a protein complex called the RNA-induced Silencing Complex …
Isoprenylation Inhibition Suppresses Fcεri-Mediated Mast Cell Function And Allergic Inflammation, Aditya Kotha, Jordan M. Dailey, Aslamuzzaman Kazi, Said Sebti, John J. Ryan
Isoprenylation Inhibition Suppresses Fcεri-Mediated Mast Cell Function And Allergic Inflammation, Aditya Kotha, Jordan M. Dailey, Aslamuzzaman Kazi, Said Sebti, John J. Ryan
Undergraduate Research Posters
Allergic disease is driven by cell signaling cascades that activate immune cells. One key player is mast cells, which is activated by IgE antibodies signaling through the high affinity IgE receptor, FceRI. Therefore, targeting FceRI-mediated cascades can offer for novel treatments for allergic disease. Statins have been demonstrated to reduce the severity of asthma, a common allergic airway disease. Statins are an FDA approved class of drugs with the intended purpose of lowering blood cholesterol. We previously found that while statins inhibit mast cell function in allergic disease, these anti-inflammatory effects vary widely amongst differing mouse strains and human donors, …
Investigation Of The Dyrk1a Regulation By Lzts2-Sipa1l1 Complex, Rebecca Gunnin, Austin Witt B.S., Larisa Litovchick M.D.,Ph.D.
Investigation Of The Dyrk1a Regulation By Lzts2-Sipa1l1 Complex, Rebecca Gunnin, Austin Witt B.S., Larisa Litovchick M.D.,Ph.D.
Undergraduate Research Posters
A region on chromosome 21, the Down Syndrome critical region (DSCR), is associated with major defects found in Down Syndrome, such as craniofacial malformations. DYRK1A is a gene found on chromosome 21 within the DSCR that encodes an enzyme, dual specificity tyrosine-phosphorylation-regulated kinase 1A. DYRK1A is known to phosphorylate many substrate proteins and is thought to be involved in tumor suppression, neurological development, cell cycle regulation, and aging. Recently, the Litovchick lab and others reported that DYRK1A also plays a role in the double-strand break repair of DNA, which could lead to mutations and tumorigenesis, if deregulated.
The Litovchick lab …
Characterizing The Effects Of Antiandrogens And Senolytics To Enhance The Therapeutic Response To Castration-Resistant Prostate Cancer, Justin M. Silverman
Characterizing The Effects Of Antiandrogens And Senolytics To Enhance The Therapeutic Response To Castration-Resistant Prostate Cancer, Justin M. Silverman
Theses and Dissertations
Prostate cancer is the most frequently diagnosed cancer in males and the second most common cause of cancer deaths. Androgen deprivation therapy, whether through surgical or chemical castration, is the mainstay for treatment of advanced prostate cancer; however, despite an initial response, most patients eventually develop a progressive PSA rise, and castration- sensitive prostate cancer gives rise to castration-resistant prostate cancer. The standard of care therapy includes the antiandrogens such as enzalutamide and abiraterone acetate as well as the microtubule poison, docetaxel, and various immunotherapies; however, while prostate cancer research is progressing, there continues to be a compelling need for …
Molecular Mechanisms Of Prdm16 As A Tumor Suppressor In Pancreatic Ductal Adenocarcinoma, Eric Hurwitz
Molecular Mechanisms Of Prdm16 As A Tumor Suppressor In Pancreatic Ductal Adenocarcinoma, Eric Hurwitz
Theses and Dissertations
The transcription factor Prdm16 functions as a potent suppressor of transforming growth factor-beta (TGF-b) signaling, whose inactivation is deemed essential to the progression of pancreatic ductal adenocarcinoma (PDAC). Using the KrasG12D-based mouse model of human PDAC, we surprisingly found that ablating Prdm16 did not block but instead accelerated PDAC formation and progression, suggesting that Prdm16 might function as a tumor suppressor in this malignancy. Subsequent genetic experiments showed that ablating Prdm16 along with Smad4 resulted in a shift from a well-differentiated and confined neoplasm to a highly aggressive and metastatic disease, which was associated with a striking deviation …
Anthracyclines Attenuate The Nrf1-Mediated Bounce-Back Response, Bader Albalawi
Anthracyclines Attenuate The Nrf1-Mediated Bounce-Back Response, Bader Albalawi
Theses and Dissertations
Proteasome inhibitors, such as carfilzomib, are FDA-approved to treat multiple myeloma and mantle cell lymphoma. Unfortunately, proteasome inhibitors have only produced clinically significant results in patients with hematologic cancers, despite their predicted pan-cancer utility, and even hematologic cancer types frequently show intrinsic and acquired resistance.
One proposed mechanism responsible for the proteasome inhibitors' shortcomings is the NRF1-mediated bounce-back response. Identification of drugs that can potentiate the action of proteasome inhibitors could overcome resistance in patients with hematologic cancers and expand proteasome inhibitors' use to treat solid tumors. Our previous studies have identified anthracyclines as potential compounds that interfere with the …
Crosstalk Between Hippo And Rb Tumour Suppressor Pathways In Ovarian Cancer, Fatmata Sesay
Crosstalk Between Hippo And Rb Tumour Suppressor Pathways In Ovarian Cancer, Fatmata Sesay
Theses and Dissertations
The cell cycle is a highly regulated process that ensures the timely and accurate division of cells. Events of the normal cell cycle fall under two categories - positive and negative regulatory mechanisms. The first category, positive regulatory machinery, includes active protein complexes of cyclins in association with their partnering cyclin-dependent kinases (cyclin/CDK), which mediate series of phosphorylation events that relay a cell cycle progression from one stage to the next. The second category, the negative regulatory mechanisms, include the checkpoint controls consisting of the retinoblastoma (RB) family of proteins, some of which can form a transcriptional repressor complex DREAM. …
The Effect Of The Senolytic Abt-263 On Androgen Deprivation-Induced Senescent Prostate Tumor Cells, So Min Lee
The Effect Of The Senolytic Abt-263 On Androgen Deprivation-Induced Senescent Prostate Tumor Cells, So Min Lee
Theses and Dissertations
Prostate cancer (PCa) is one of the leading causes of cancer-related deaths in men. Although standard treatments such as androgen deprivation therapies (ADT) and antiandrogens have increased survival for many patients, most men placed on these therapies will develop castration-resistant disease (CRPC). Previous studies have shown that these treatments have limited cytotoxicity and instead promote cell growth arrest. Our current work demonstrates that prostate tumor cells grown in the absence of androgens by using charcoal-stripped serum undergo senescence-mediated or senescent-like growth arrest, based on the cellular expression of senescence-associated-beta-galactosidase (SA-β-Gal). Our studies further suggest that this senescence is transient and …
Real-Time Interactive Simulation Of Human Atrial Electrical Activity On Realistic 3d Atrial Structures Using Webgl, Abouzar Kaboudian, Yanyan Ji, Elizabeth Cherry, Flavio H. Fenton
Real-Time Interactive Simulation Of Human Atrial Electrical Activity On Realistic 3d Atrial Structures Using Webgl, Abouzar Kaboudian, Yanyan Ji, Elizabeth Cherry, Flavio H. Fenton
Biology and Medicine Through Mathematics Conference
No abstract provided.
Inhibition Of Cancer Stem Cells By Glycosaminoglycan Mimetics, Connor P. O'Hara
Inhibition Of Cancer Stem Cells By Glycosaminoglycan Mimetics, Connor P. O'Hara
Theses and Dissertations
Connor O’Hara July 29, 2019
Inhibition of Cancer Stem Cells by Glycosaminoglycan Mimetics
In the United States cancer is the second leading cause of death, with colorectal cancer (CRC) being the third deadliest cancer and expected to cause over 51,000 fatalities in 2019 alone.1 The current standard of care for CRC depends largely on the staging, location, and presence of metastasis.2 As the tumor grows and invades nearby lymph tissue and blood vessels, CRC has the opportunity to invade not only nearby tissue but also metastasize into the liver and lung (most commonly).3 The 5-year survival rate …
Modulation Of Autophagy And Senescence To Enhance The Response To Therapy In Triple Negative Breast Cancer, Liliya Tyutyunyk-Massey
Modulation Of Autophagy And Senescence To Enhance The Response To Therapy In Triple Negative Breast Cancer, Liliya Tyutyunyk-Massey
Theses and Dissertations
Abstract
Although great strides have been made over the decades in development and optimization of anti-cancer therapies, even highly effective drugs often fail to completely eliminate tumors. Residual tumor cells can enter into a state of dormancy for prolonged periods of time but eventually are able to regain proliferative capacity and reemerge as chemotherapy-resistant disease. Because recurrent disease is a leading contributor to patient’s mortality, it is paramount to identify strategies for effectively destroying residual tumor cells.
Cytotoxic drugs and ionizing radiation are used as standard therapies in a variety of cancers. These modalities induce apoptosis, autophagy and senescence. Senescence …
Reduction Of Oxidative Stress And Storage Lesions (Rcsl) In Red Blood Cells: Analysis Of Ascorbic Acid (Aa), N-Acetylcysteine Amide (Ad4), And Serotonin (5-Ht), Shanmuka Gadiraju
Reduction Of Oxidative Stress And Storage Lesions (Rcsl) In Red Blood Cells: Analysis Of Ascorbic Acid (Aa), N-Acetylcysteine Amide (Ad4), And Serotonin (5-Ht), Shanmuka Gadiraju
AUCTUS: The Journal of Undergraduate Research and Creative Scholarship
Oxidative stress is a common occurrence in red blood cell (RBC) storage in blood banks throughout the world. Typically RBC units stored under routine standard protocol (stored in SAGM-CPD additive solution) can only be kept up to forty-two days for transfusion usage before being discarded. I am studying the effects of Ascorbic Acid (AA), N-acetylcysteine amide (AD4), and Serotonin or 5-hydroxytryptamine (5- HT) as additives in blood bank storage to find out if these additives can reduce storageinduced oxidative stress on red blood cells (RBCs), as well as to understand how potential blood storage additives can affect the shelf life …
The Effect Of Dna Methylation On Tp73 Expression In Tumorgenesis, Nujuma A. Moussa
The Effect Of Dna Methylation On Tp73 Expression In Tumorgenesis, Nujuma A. Moussa
Undergraduate Research Posters
Abstract: The Effect of DNA Methylation on TP73 Expression in Tumorgenesis
Nujuma Moussa, Zhixing Yao, Zaki A. Sherif
Department of Biochemistry & Molecular Biology, Howard University College of Medicine
TP73 is a member of the TP53 family of proteins that acts as a transcription factor to help regulate cellular distress. This tumor protein may play a dual role as a tumor suppressor and tumor promoter. The TP73 gene is mapped to chromosome 1p36, a frequently deleted region in neuroblastoma and other types of tumors. While mutations in the TP53 gene are commonly known to cause noxious cancers, 30% of cancers …
Regulation Of Biliary Progenitor Cell Proliferation By Hedgehog Signaling In In Vivo And Ex Vivo Organoid Models, Nataliya Razumilava M.D., Junya Shiota M.D., Ramon Ocadiz-Ruiz Ph.D., Nureen Hanisah Mohamad Zaki, Kais Zakharia M.D., Michael Mathew Hayes, Juanita Lynn Merchant M.D., Ph.D.
Regulation Of Biliary Progenitor Cell Proliferation By Hedgehog Signaling In In Vivo And Ex Vivo Organoid Models, Nataliya Razumilava M.D., Junya Shiota M.D., Ramon Ocadiz-Ruiz Ph.D., Nureen Hanisah Mohamad Zaki, Kais Zakharia M.D., Michael Mathew Hayes, Juanita Lynn Merchant M.D., Ph.D.
Hepatobiliary Cancers: Pathobiology and Translational Advances
No abstract provided.
Targeting Hepatocellular Carcinoma Through Tgf-Β Pathway E3 Ligases, Kazufumi Ohshiro, Jian Chen, Shulin Li, Jon White, Asif Rashid, Lopa Mishra
Targeting Hepatocellular Carcinoma Through Tgf-Β Pathway E3 Ligases, Kazufumi Ohshiro, Jian Chen, Shulin Li, Jon White, Asif Rashid, Lopa Mishra
Hepatobiliary Cancers: Pathobiology and Translational Advances
No abstract provided.
The Role Of Uridine-Cytidine Kinase 2 In The Development Of Hepatocellular Carcinoma, Dehai Wu, Song Tao, Keunsoo Ahn, Nicha Wongjarupong, Lewis Roberts
The Role Of Uridine-Cytidine Kinase 2 In The Development Of Hepatocellular Carcinoma, Dehai Wu, Song Tao, Keunsoo Ahn, Nicha Wongjarupong, Lewis Roberts
Hepatobiliary Cancers: Pathobiology and Translational Advances
No abstract provided.
Characterization Of The Role Of Insulin-Like Growth Factor Binding Protein 7 (Igfbp7) Using A Genetic Knockout Mouse Model, Maaged A. Akiel
Characterization Of The Role Of Insulin-Like Growth Factor Binding Protein 7 (Igfbp7) Using A Genetic Knockout Mouse Model, Maaged A. Akiel
Theses and Dissertations
In the US, the incidence and mortality rates of hepatocellular carcinoma (HCC) are alarmingly increasing since no effective therapy is available for the advanced disease. Activation of IGF signaling is a major oncogenic event in diverse cancers, including HCC. Insulin-like growth factor binding protein-7 (IGFBP7) inhibits IGF signaling by binding to IGF-1 receptor (IGF-1R) and functions as a potential tumor suppressor for hepatocellular carcinoma (HCC). IGFBP7 abrogates tumors by inducing cancer-specific senescence and apoptosis and inhibiting angiogenesis. We now document that Igfbp7 knockout (Igfbp7-/- ) mouse shows constitutive activation of IGF signaling, presents with pro-inflammatory and immunosuppressive microenvironment, and develops …
Role Of Translation Initiation In Regulation Of Epithelial Junctions And Cell Motility, Fahda Fawaz Alsharief
Role Of Translation Initiation In Regulation Of Epithelial Junctions And Cell Motility, Fahda Fawaz Alsharief
Theses and Dissertations
The integrity and barrier properties of intestinal epithelium are determined by specialized adhesive structures known as intercellular junctions; composed of adherens junctions (AJs), tight junctions (TJs) and focal adhesions that mediate cell-cell and cell matrix interactions, respectively. These two types of epithelial cell adhesions regulate each other during disruption and restitution of the epithelial barrier. Inflammatory cytokines such as interferon gamma (IFNγ) and tumor necrosis factor alpha (TNFα) are elevated during intestinal inflammation. The most notable effects of IFNγ and TNFα on intestinal epithelial homeostasis involve disruption of apical junctions and attenuation of cell migration. Although molecular mechanisms underlying these …
Interaction Between Atm Kinase And P53 In Determining Glioma Radiosensitivity, Syed F. Ahmad
Interaction Between Atm Kinase And P53 In Determining Glioma Radiosensitivity, Syed F. Ahmad
Theses and Dissertations
Glioblastoma multiforme (GBM) is the most common primary brain tumor. Studies have shown that targeting the DNA damage response can sensitize cancer cells to DNA damaging agents. Ataxia telangiectasia mutated (ATM) is involved in signaling DNA double strand breaks. Our group has previously shown that ATM inhibitors (ATMi) sensitize GBM cells and tumors to ionizing radiation. This effect is greater when the tumor suppressor p53 is mutated.
The goals of this work include validation of a new ATM inhibitor, AZ32, and elucidation of how ATMi and p53 status interact to promote cell death after radiation. We propose that ATMi and …
Dual Pi3k/Mtor Inhibition With Bez235 Augments The Therapeutic Efficacy Of Doxorubicin In Cancer Without Influencing Cardiac Function, David E. Durrant
Dual Pi3k/Mtor Inhibition With Bez235 Augments The Therapeutic Efficacy Of Doxorubicin In Cancer Without Influencing Cardiac Function, David E. Durrant
Theses and Dissertations
Cancer continues to be a leading cause death in the United States despite improved treatments. Cancerous lesions form after acquiring oncogenic driver mutations or losing tumor suppressor function in normal cells. Traditional therapies have included use of genotoxic substances that take advantage of the increased growth rate and loss of tumor suppressor function to cause cell death. One such drug is the anthracycline antibiotic doxorubicin (DOX). DOX interchelates into DNA and disrupts transcriptional machinery while also poisoning topoisomerase II. This results in single and double stranded DNA breaks, which if severe enough leads to either necrotic or apoptotic cell death. …
Novel Therapeutic Strategies For Pancreatic Cancer, Bridget A. Quinn
Novel Therapeutic Strategies For Pancreatic Cancer, Bridget A. Quinn
Theses and Dissertations
Pancreatic cancer is a devastating disease that leaves patients with a very poor prognosis and few therapeutic options. Many of the treatment options available are the same that have been used for almost 2 decades. There is a dire need for both novel treatments for this disease as well as novel strategies of treatment. This body of work will introduce and provide evidence in support of a novel combination therapy for pancreatic cancer treatment, a novel strategy of modifying currently used chemotherapeutics for pancreatic cancer therapy, and a novel transgenic preclinical mouse model of pancreatic cancer. Sabutoclax, an antagonist of …
Mda-9/Syntenin: From Glioblastoma Pathogenesis To Targeted Therapy, Timothy P. Kegelman
Mda-9/Syntenin: From Glioblastoma Pathogenesis To Targeted Therapy, Timothy P. Kegelman
Theses and Dissertations
The most common malignant glioma, glioblastoma multiforme (GBM), remains an intractable tumor despite advances in therapy. Its proclivity to infiltrate surrounding brain tissue contributes greatly to its treatment failure and the grim prognosis of patients. Radiation is a staple in modern therapeutic regimens, though cells surviving radiation become more aggressive and invasive. Consequently, it is imperative to define further the cellular mechanisms that control GBM invasion and identify promising novel therapeutic targets. Melanoma differentiation associated gene-9 (MDA-9/Syntenin) is a highly conserved PDZ domain-containing scaffolding protein that promotes invasion and metastasis in human melanoma models. We show that MDA-9/Syntenin is robustly …
Discovering Protein Functions And Career Goals: The Suppressor Sike, Rebekah Rifareal
Discovering Protein Functions And Career Goals: The Suppressor Sike, Rebekah Rifareal
AUCTUS: The Journal of Undergraduate Research and Creative Scholarship
Discovering IMSD was accidental. I was having a routine advising appointment and discussing future careers when the topic surfaced. At the time, I had no clue about what I wanted to do, so my advisor suggested that I explore research and encouraged me to apply for the program.