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Articles 121 - 150 of 1818

Full-Text Articles in Cell and Developmental Biology

Surface Keratin 1, A Tumor-Selective Peptide Target In Human Triple-Negative Breast Cancer, Shih-Jing Yao, Farideh Amirrad, Elmira Ziaei, Azam Saghaeidehkordi, Moom R. Roosan, Kiumars Shamloo, Ajay Sharma, Rachita K. Sumbria, Surya M. Nauli, Christopher G. Bunick, Kamaljit Kaur Jul 2025

Surface Keratin 1, A Tumor-Selective Peptide Target In Human Triple-Negative Breast Cancer, Shih-Jing Yao, Farideh Amirrad, Elmira Ziaei, Azam Saghaeidehkordi, Moom R. Roosan, Kiumars Shamloo, Ajay Sharma, Rachita K. Sumbria, Surya M. Nauli, Christopher G. Bunick, Kamaljit Kaur

Pharmacy Faculty Articles and Research

Targeting drugs to cancer cells via overexpressed cell-surface receptors has emerged as an effective therapeutic strategy for several cancers. However, identifying cell-surface receptors that allow selective uptake of targeting ligands by cancer cells—while sparing normal cells—remains a challenge, especially for triple-negative breast cancer (TNBC), which lacks a well-defined receptor for targeted delivery. In this study, immunohistochemical (IHC) analysis revealed that human TNBC patient tissues have significantly higher levels of keratin 1 (K1) compared to normal breast tissues. Among TNBC tissues, grade 3 tumors showed significantly higher (threefold) K1 expression compared to grade 2 tumors. We analyzed human TNBC and normal …


Microscopic Nucleic Acid-To-Protein Ratio: A Label-Free Approach For Pancreatic Cancer Detection, Sky Gao, Keerthi Priya Jangili, Alfred Akinlalu, Emmanuel Ogberefor, Tommy Gao, Kalpana Devaraj, Dali Sun Jun 2025

Microscopic Nucleic Acid-To-Protein Ratio: A Label-Free Approach For Pancreatic Cancer Detection, Sky Gao, Keerthi Priya Jangili, Alfred Akinlalu, Emmanuel Ogberefor, Tommy Gao, Kalpana Devaraj, Dali Sun

Electrical and Computer Engineering: Faculty Scholarship

Accurate and timely diagnosis remains a major clinical challenge, hindered by the limitations of conventional histopathological methods, which often rely on labor-intensive staining protocols and subjective interpretation by specialized pathologists. These methods can fail to capture the full molecular and phenotypic heterogeneity of tumors, leading to increased diagnostic time, cost, and variability. To overcome these challenges, we developed a novel label-free ultraviolet (UV) microscopic imaging technique that exploits the intrinsic optical absorption properties of cellular nucleic acids and proteins. By modifying standard brightfield microscopes, our approach quantitatively measures the nucleic acid-to-protein ratio (NPr), enabling high-resolution visualization and discrimination between malignant …


Murine Tbk1 Regulates Mpp3-Type Hspcs And Circulating Leukocytes In Normal Hematopoiesis And Flt3+ Lscs In Mll-Af9-Driven Leukemia, Austin P. Runde, Joseph Cannova, Ryan Mack, Kanak Joshi, Mark Sellin, Rohit Thalla, Allan Youmaran, Mattias Lenz, Peter Breslin, Wei Wei, Jiwang Zhang Jun 2025

Murine Tbk1 Regulates Mpp3-Type Hspcs And Circulating Leukocytes In Normal Hematopoiesis And Flt3+ Lscs In Mll-Af9-Driven Leukemia, Austin P. Runde, Joseph Cannova, Ryan Mack, Kanak Joshi, Mark Sellin, Rohit Thalla, Allan Youmaran, Mattias Lenz, Peter Breslin, Wei Wei, Jiwang Zhang

School of Medicine

BACKGROUND: Acute myeloid leukemia (AML) is an aggressive hematologic cancer with a notoriously bleak prognosis; for non-M3 AML, the overall 5-year survival rate is ∼30%. While 60-70% of newly diagnosed AML patients will achieve complete remission (CR), half of these patients will experience relapse (secondary resistance) by three years from their diagnosis. Moreover, 30-40% of AML patients present with refractory disease (primary resistance) and cannot respond to frontline treatments. Leukemia stem cells (LSCs) are implicated in both primary and secondary resistance, and their eradication is necessary to maintain CR. LSCs have unique transcriptomes and immunophenotypes, thus can be identified relatively …


Abstract 2853 Prmt7 Negatively Regulates The Expression P53 In Response To Dna Damage, Molly Niswender, Lorenzo Pessi, Cecilia Lopez, Marco Bisoffi Jun 2025

Abstract 2853 Prmt7 Negatively Regulates The Expression P53 In Response To Dna Damage, Molly Niswender, Lorenzo Pessi, Cecilia Lopez, Marco Bisoffi

Biology, Chemistry, and Environmental Sciences Faculty Articles and Research

Protein Arginine Methyltransferase 7 (PRMT7) is the only member of the protein arginine methyltransferase protein family that monomethylates its protein substrates. PRMT7 is found in both the nucleus and cytoplasm of breast cells and is believed to play a robust role in the tumorigenesis and metastasis of breast cancer. The goal of this project is to uncover possible pathways for PRMT7 to promote cancer progression. A preliminary antibody array was performed to determine the regulation of known cancer-related proteins by PRMT7. An early-stage human breast cancer cell line, MCF-7, was transfected with plasmid pCDH1-hPRMT7-GFP to over-express PRMT7. Qualitative and quantitative …


Elucidating The Roles Of Eukaryotic Initiation Factors Involved In Dap5 Mediated Translation, Jacob Nk Quartey Jun 2025

Elucidating The Roles Of Eukaryotic Initiation Factors Involved In Dap5 Mediated Translation, Jacob Nk Quartey

Dissertations, Theses, and Capstone Projects

Translation initiation in eukaryotes is a highly regulated process essential for accurate protein synthesis. It is a dynamic process that involves a complex interplay between messenger RNAs (mRNAs), ribosomal subunits, and a host of initiation factors, ensuring precise start codon selection and the subsequent assembly of the translation machinery. This process has well been known to be mediated by the eukaryotic Initiation Factor (eIF4F), which consists of the cap binding protein eIF4E, the scaffolding protein eIF4GI, and the helicase factor eIF4A.The recognition and binding of eIF4E to the m7G cap structure of the mRNA is essential for the …


Understanding How Genetic Mutations Induce Oligodendrocyte Progenitors To Become Cancer Cells, Dennis Huang Jun 2025

Understanding How Genetic Mutations Induce Oligodendrocyte Progenitors To Become Cancer Cells, Dennis Huang

Dissertations, Theses, and Capstone Projects

Gliomas are the most devastating adult brain tumors characterized by poor survival rate and limited options for treatment. Previous studies have shown that they are very heterogeneous and can be further sub-classified based on their transcriptional signature and the presence of specific mutations. One such subtype, is the “proneural glioma”, which is characterized by the enrichment in oligodendrocyte progenitor cell (OPC) transcripts and mutations in genes encoding for the tumor suppressor P53 (Trp53) and for Platelet Derived Grow Factor (PDGF) signaling. Since OPCs are the most abundant proliferative population in the adult brain, in this …


Investigating Genes Associated With Oncogenic Pka Activity In Fibrolamellar Carcinoma, Ananya Singh May 2025

Investigating Genes Associated With Oncogenic Pka Activity In Fibrolamellar Carcinoma, Ananya Singh

Undergraduate Honors Theses

Fibrolamellar Carcinoma (FLC) is a rare liver cancer, predominantly affecting younger individuals with no history of primary liver disease. As FLC comprises only < 1% of all liver tumors, our understanding of its development and treatment are extremely limited. All clinical cases of FLC contain a specific DNAJB1-PRKACA fusion. The mutation produces an oncogenic form of Protein Kinase A (PKA), known as DNAJ-PKAc, with enhanced binding activity compared to wild-type PKA. Specifically, DNAJ-PKAc interacts with different substrates than wild type PKA, affecting downstream signaling pathways to promote cancer development. However, the genetic dependencies that result from oncogenic DNAJ-PKAc signaling are not known. In this paper, I will show the process of performing a genome-wide CRISPRi screen in AML12DNAJ-PKAc cells to identify genes associated with oncogenic DNAJ-PKAc signaling. I will detail the preliminary benchmarking experiments, the screening process, the preparation of genomic DNA for sequencing, and the ongoing validation of screen results. I anticipate that this project will discover genes whose knockdown inhibits oncogenic DNAJ-PKAc signaling and reduces cell growth exclusively in the presence of PKA. The identified genes could represent potential therapeutic targets for cancer drugs that inhibit FLC progression. However, additional research is necessary to characterize their interactions with DNAJ-PKAc and their specific role in FLC development.


Targeting Neuronal Nitric Oxide Synthase (Nnos) As A Novel Approach To Enhancing The Anti-Melanoma Activity Of Immune Checkpoint Inhibitors, Anika R. Patel, Shirley Tong, Kate Alison Lozada, Amardeep Awasthi, Richard B. Silverman, Jennifer Totonchy, Sun Yang May 2025

Targeting Neuronal Nitric Oxide Synthase (Nnos) As A Novel Approach To Enhancing The Anti-Melanoma Activity Of Immune Checkpoint Inhibitors, Anika R. Patel, Shirley Tong, Kate Alison Lozada, Amardeep Awasthi, Richard B. Silverman, Jennifer Totonchy, Sun Yang

Pharmacy Faculty Articles and Research

Background and Objectives: Neuronal nitric oxide synthase (nNOS) overexpressed in melanoma plays a critical role in disease progression. Our previous studies demonstrated that nNOS inhibitors exhibited potent anti-melanoma activity and regulated PD-L1 expressions in the presence of interferon-gamma (IFN-γ). However, the role of nNOS in the melanoma immune response has not been well defined. Methods: Changes in gene expression profiles after nNOS inhibitor treatment were determined by transcriptomic analysis. A melanoma mouse model was used to determine the effects of nNOS inhibition on peripheral T cells and the in vivo anti-tumor activity of combining nNOS inhibitors with immune …


Assessing The Efficiency Of Methotrexate (Mtx) As An Antiviral Drug Against Gammaherpes Virus Replication, Yennifer A. Gaspar Garcia May 2025

Assessing The Efficiency Of Methotrexate (Mtx) As An Antiviral Drug Against Gammaherpes Virus Replication, Yennifer A. Gaspar Garcia

Honors Projects

It is estimated that ~15% of all cancers are caused by oncogenic virus infections. Two of the top seven cancer-causing human viruses are members of the gammaherpesvirus family: Epstein Barr Virus (EBV) and Kaposi’s Sarcoma Herpesvirus (KSHV). Our lab uses Murine Herpesvirus 68 (MHV-68), a mouse gammaherpesvirus with shares significant genetic homology to KSHV and EBV, as a model system to understand how gammaherpesviruses alter the metabolism of their host during lytic infection to promote their replication. We recently metabolically profiled MHV-68 infected host cells at various time points during the lytic infectious cycle. Our data showed nucleotide metabolism is …


A Bitter Brew For Cancer: Egcg’S Impact On Ewing Sarcoma Cells, Lizzeth Holguin, Mary-Esther Leblanc, Mariana Reyes, Terry Jo Shackleford May 2025

A Bitter Brew For Cancer: Egcg’S Impact On Ewing Sarcoma Cells, Lizzeth Holguin, Mary-Esther Leblanc, Mariana Reyes, Terry Jo Shackleford

Cell and Molecular Methods

Epigallocatechin Gallate (EGCG), a powerful antioxidant found in green tea, is an abundant treatment to treat Ewing Sarcoma cells, a pediatric cancer affecting the skeletal system. Given EGCG’s known role in other cancer treatments, these tests aim to investigate its effects as a standalone natural compound on Ewing Sarcoma cells. Focusing on the PI3K/AKT pathway, if the PI3K/AKT pathway is inhibited by EGCG, then it will lead to reduced cell survival and proliferation of EW8 cells. Using cell culture techniques, IncuCyte-based IC50 analysis, caspase 3/7, RNA purification, cDNA synthesis, and qRT-PCR, EGCG’s impact was assessed on cell apoptosis and gene …


The Effect Of Epigallocatechin Gallate (Egcg) And Alpha L-Mangostin On Tp53, Bax, And Vim Gene Expression And Apoptosis In Ewing Sarcoma Cells, Victoria Valdez, Terry Jo Shackleford May 2025

The Effect Of Epigallocatechin Gallate (Egcg) And Alpha L-Mangostin On Tp53, Bax, And Vim Gene Expression And Apoptosis In Ewing Sarcoma Cells, Victoria Valdez, Terry Jo Shackleford

Cell and Molecular Methods

Ewing Sarcoma (ES) is a malignant pediatric bone tumor driven by chromosomal translocations and fusion oncogenes with limited targeted treatment options. This study investigated the chemopreventive potential of two natural compounds, Epigallocatechin Gallate (EGCG) found in green tea, and Alpha L-Mangostin from mangosteen, on apoptosis and gene expression in ES cells. We hypothesized that EGCG and Alpha L-Mangostin treatment would induce apoptosis and downregulate cancer-promoting genes. To test this, we performed tissue culture, IC50 assays, caspase-based apoptosis detection, RNA purification, cDNA synthesis, and qRT-PCR on ES cell lines treated with a high and low concentration of the two compounds. Our …


Identification Of Methylation Patterns, Associated Dna Methylating Proteins, And Methyltransferase Inhibitors On The Promoter Regions Of Dax-1, Brandon Tyler Toy May 2025

Identification Of Methylation Patterns, Associated Dna Methylating Proteins, And Methyltransferase Inhibitors On The Promoter Regions Of Dax-1, Brandon Tyler Toy

Master's Theses

The DAX-1 gene (Dosage-Sensitive Sex Reversal, Adrenal Hypoplasia Congenita, Critical Region on the X chromosome, gene 1) encodes for an orphan nuclear hormone receptor and its mutation is implicated in multiple diseases including congenital adrenal hypoplasia, adrenal cancer, and breast cancer. Previous research has linked DAX-1 downregulation to tumor initiation in breast tissue, suggesting the gene acts as a tumor suppressor with respect to breast cancer. Additional studies completed by the Tzagarakis-Foster laboratory have shown that methylation of the DAX-1 promoter region is heavily influential in breast cancer development, with release of epigenetic repression resulting in slowing of cellular proliferation …


Early Hematopoietic Differentiation Of An Inducible Pluripotent Stem Cell Model Of Infant Lymphoblastic Leukemia, Meagan Vacek, Jacqelyn Nemechek, Irina Pushel, Bradley Thornton, Priyanka Kumar, Jay L. Vivian, John M. Perry May 2025

Early Hematopoietic Differentiation Of An Inducible Pluripotent Stem Cell Model Of Infant Lymphoblastic Leukemia, Meagan Vacek, Jacqelyn Nemechek, Irina Pushel, Bradley Thornton, Priyanka Kumar, Jay L. Vivian, John M. Perry

Research Days

This abstract describes our work regarding the differentiation of human inducible pluripotent stem cells into hematopoietic stem and progenitor cells as the groundwork for the development of a genomics driven inducible pluripotent stem cell model of KMT2A rearranged infant acute lymphoblastic leukemia.


Minimal Anti-Cancer Effects Of Mushroom-Derived Compounds Hispidin And Chaga Extract On Ewing Sarcoma Cells, Jordan Cosgrove, Fiona Coulbourne, Iris Reyna, Giselle Serna-Flores, Terry Jo Shackleford May 2025

Minimal Anti-Cancer Effects Of Mushroom-Derived Compounds Hispidin And Chaga Extract On Ewing Sarcoma Cells, Jordan Cosgrove, Fiona Coulbourne, Iris Reyna, Giselle Serna-Flores, Terry Jo Shackleford

Cell and Molecular Methods

Ewing sarcoma is a rare and aggressive cancer of adolescents and young adults driven by the EWSR1–FLI1 gene fusion. Standard treatments include chemotherapy, surgery, and radiation, though survival rates remain low. Natural compounds such as hispidin, derived from fungi, and Chaga mushroom extract have shown potential anti-cancer effects by disrupting cell cycle progression and promoting apoptosis in other cancer models. In this study, we tested the effects of hispidin and Chaga extract on Ewing sarcoma cells to evaluate their ability to suppress cell growth and identify potential therapeutic benefits.


The Effects Of Panobinostat On Cellular Signaling Pathways And How It Relates To Antitumor Activities In Ewing Sarcoma Cancer Cells, Crystal Valenzuela, Andrew Martini, Hannah Navarro, Mario Flores, Terry Jo Shackleford May 2025

The Effects Of Panobinostat On Cellular Signaling Pathways And How It Relates To Antitumor Activities In Ewing Sarcoma Cancer Cells, Crystal Valenzuela, Andrew Martini, Hannah Navarro, Mario Flores, Terry Jo Shackleford

Cell and Molecular Methods

Ewing sarcoma is a rare and aggressive cancer that primarily affects the bones and surrounding soft tissues, most commonly in children and young adults. Although the exact etiology remains unclear, a well-documented cause involves a chromosomal translocation resulting in the fusion of the EWSR1 and FLI1 genes. This fusion produces abnormal proteins that disrupt normal gene expression, cell signaling, and RNA processing, contributing to tumorigenesis. Prognosis varies significantly depending on the extent of metastasis, with 5-year survival rates ranging from 82% in localized cases to 39% in metastatic cases. Standard treatments include chemotherapy typically involving vincristine, doxorubicin, etoposide, and cyclophosphamide—surgical …


The Effects Of Hispidin And Eribulin Mesylate On Cell Proliferation Of Ewing Sarcoma Cell Lines, Elena Mares, Angelina Juarrita, Sierra Munoz, Terry Jo Shackleford May 2025

The Effects Of Hispidin And Eribulin Mesylate On Cell Proliferation Of Ewing Sarcoma Cell Lines, Elena Mares, Angelina Juarrita, Sierra Munoz, Terry Jo Shackleford

Cell and Molecular Methods

Ewing sarcoma is a type of cancer that targets the cells within bones and soft tissue and is most prevalent in younger populations. It is important to look at this specific cancer because there is no cure yet, and the risks increase, even after a patient has completed their treatment. We hypothesize that if we treat Ewing sarcoma cell lines with natural compounds, specifically Hispidin and Eribulin Mesylate, then the cell lines will decrease in cell viability and there will be an increase in apoptosis of the cancerous cell lines. We performed a series of experiments, which included IC50 analysis, …


Neurodevelopmental And Environmental Mechanisms Of Invasion, Proliferation, And Tumor Cell Fate Specification In Glioblastoma, Bianca Lynn Myers May 2025

Neurodevelopmental And Environmental Mechanisms Of Invasion, Proliferation, And Tumor Cell Fate Specification In Glioblastoma, Bianca Lynn Myers

Biomedical Sciences ETDs

Glioblastomas (GBMs) are the most aggressive primary brain tumors, and despite over 50 years of research efforts, the median survival remains at 14 months post-diagnosis. The current standard of care consists of maximal surgical resection radiotherapy with concurrent chemotherapy using temozolomide. However, the highly proliferative and invasive nature of GBM cells renders total resection nearly impossible as tumor cells invade the surrounding healthy tissue. The molecular and environmental drivers of these tumorigenic phenotypes are largely unknown. Here, we demonstrate that the neurodevelopmental transcription factor ASCL1 enhances tumor cell proliferation and invasion while activating the expression of a neural stem cell …


Cholestasis And Fluid Flow Are Biomechanic Regulators Of Cholangiocarcinoma Progression, Andrew Oleksijew May 2025

Cholestasis And Fluid Flow Are Biomechanic Regulators Of Cholangiocarcinoma Progression, Andrew Oleksijew

Theses & Dissertations

Cholestasis, altered or absent bile flow, is associated with poor survival in patients with cholangiocarcinoma, an aggressive cancer of the biliary epithelium. Changes in bile flow often result in stricture or obstruction. Experimental cholestasis promoted tumor growth and progression. However, studies are needed that directly assess the mechanical interaction between bile flow, or bile shear stress, and cholangiocarcinoma signaling. We hypothesized that cholestasis and absent bile shear stress activated cancer signaling and increased aggressive cellular behaviors such as proliferation and migration. Fluid shear stress approximating bile flow was applied by orbital culture plate method and compared to identical static culture …


Validating The Ability Of Iag933 To Block The Interaction Of Yap1 And Tead In Ovarian Cancer Cells, Alex Sage May 2025

Validating The Ability Of Iag933 To Block The Interaction Of Yap1 And Tead In Ovarian Cancer Cells, Alex Sage

Theses & Dissertations

Ovarian cancer is the most common and deadliest gynecologic malignancy. Approximately 40% of ovarian cancer patients exhibit chemoresistance after receiving initial treatment in the form of neoadjuvant chemotherapy or interval debulking surgery, of which YAP1 (Yes-associated protein 1) has been implicated in enhancing the resistance of ovarian cancer to Cisplatin and Taxol.1,2. This highlights the need to develop new therapeutic strategies that target the Hippo pathway to overcome resistance to traditional therapies.

YAP1 is a protein that acts as a transcription coregulator, promoting the transcription of genes involved in cellular proliferation and suppressing apoptotic genes. It is a …


Novel Combination Therapies For Estrogen Receptor-Positive Breast Cancer Driven By Rational Molecular Mechanisms, Anneka Lila Johnson May 2025

Novel Combination Therapies For Estrogen Receptor-Positive Breast Cancer Driven By Rational Molecular Mechanisms, Anneka Lila Johnson

Dartmouth College Ph.D Dissertations

Breast cancer (BC) is the most common non-keratinocyte cancer diagnosed in women in the United States with approximately 300,000 new cases diagnosed each year. Despite a myriad of treatment options, BC remains the second-most deadly cancer. Estrogen receptor-positive (ER+) BC comprises 60-70% of BC diagnoses and is treated with endocrine therapies that limit ER signaling. Despite endocrine therapy options, ~1/3 of patients experience recurrence within 10-20 years of diagnosis. Novel therapeutic strategies are required to limit BC recurrence-related morbidity and mortality.

Radiotherapy is used as an adjuvant treatment for ER+ BC patients prior to the use of endocrine therapy. Radiation …


Unpaired Virtual Histological Staining Of Tissue From Autofluorescence Using Regularized Cycle-Consistent Adversarial Networks, Zhesi Wen May 2025

Unpaired Virtual Histological Staining Of Tissue From Autofluorescence Using Regularized Cycle-Consistent Adversarial Networks, Zhesi Wen

Theses and Dissertations

We present a regularized CycleGAN with a Dense Residual U-Net to virtually stain autofluorescence images of tissue into H&E-like images. Our method outperforms standard architectures, reduces artifacts, and achieves superior FID scores, enabling efficient, label-free, and accurate digital pathology for unpaired datasets using multi-channel fluorescence inputs.


Ks151 Synergizes With Venetoclax And Abt-737 In Aml: Efficacy In Both Flt3-Wildtype And Flt3-Mutant Models, Sahil Jethi, Arnold Rojas, Omar S. Al-Odat, Krishne Gowda, Subash C. Jonnalagadda, Manoj Pandey May 2025

Ks151 Synergizes With Venetoclax And Abt-737 In Aml: Efficacy In Both Flt3-Wildtype And Flt3-Mutant Models, Sahil Jethi, Arnold Rojas, Omar S. Al-Odat, Krishne Gowda, Subash C. Jonnalagadda, Manoj Pandey

Rowan-Virtua Research Day

Acute myeloid leukemia (AML) is the most common leukemia in adult patients, with a 5-year survival rate of less than 30 percent. Therefore, more effective therapeutic strategies are required to prolong the survival of AML patients. Importantly, anti-apoptotic proteins, especially B-cell lymphoma 2 (Bcl-2), overexpression in AML is associated with uncontrolled growth as well as chemoresistance. Unsurprisingly, Bruton’s tyrosine kinase (BTK) overexpresses in AML and associated with poor prognosis and chemoresistance. The FDA-approved BTK inhibitor, ibrutinib, has been successful in treating other hematologic malignancies, but a proportion of patients relapse mainly because of acquired mutations at Cys481Ser (C481S) in the …


Identifying Novel Molecular Targets To Induce Ferroptosis In Drug-Tolerant Cancer Cells Through Computational Modeling, Haris J. Rana May 2025

Identifying Novel Molecular Targets To Induce Ferroptosis In Drug-Tolerant Cancer Cells Through Computational Modeling, Haris J. Rana

Biological Sciences Undergraduate Honors Theses

Ferroptosis is an iron-dependent, reactive oxygen species (ROS)-driven form of regulated cell death in which the cell membrane is degraded by lipid peroxidation. It is regulated by multiple enzymes, such as glutathione peroxidase 4 (GPX4), which prevents membrane degradation by reducing lipid peroxides and protecting cells from oxidative damage. When inhibitors like RSL3 target GPX4, lipid peroxides build up, and toxic ROS compromises membrane integrity. Traditional anticancer treatments, such as most chemotherapies, aim to eliminate tumor cells by damaging DNA and triggering apoptosis. However, resistance to apoptosis is a “hallmark of cancer,” often resulting in treatment failure. As a distinct …


Differential Regulation Of The Prkacaa Promoter In Zebrafish Melanoma Cell Lines, Maria Fiuk May 2025

Differential Regulation Of The Prkacaa Promoter In Zebrafish Melanoma Cell Lines, Maria Fiuk

Theses, Dissertations and Culminating Projects

The Inducible cAMP Early Repressor (ICER) comprises a group of isoforms that function as transcription factors within the cyclic AMP (cAMP) signaling pathway. These isoforms are encoded by the cAMP Response Element Modulator (CREM) gene. The cAMP signaling pathway and its associated transcriptional regulators have been implicated in the development of resistance to BRAF/MEK-targeted therapies in melanoma. Recent findings from our laboratory demonstrated that transgenic ICER expression in a zebrafish melanoma model promotes the formation of aggressive melanomas. Cell lines were established from tumors expressing ICER, as well as from control tumors expressing Green Fluorescent Protein (GFP). To begin characterizing …


Exploring Intracellular Signaling Responses To Ks18, A Potent Mcl-1 Inhibitor, In Multiple Myeloma, Emily Nelson, Omar S Al-Odat, Dhruti A. Brahmbhatt, Tulin Budak-Alpdogan, Subash Jonnalagadda, Manoj Kumar Pandey May 2025

Exploring Intracellular Signaling Responses To Ks18, A Potent Mcl-1 Inhibitor, In Multiple Myeloma, Emily Nelson, Omar S Al-Odat, Dhruti A. Brahmbhatt, Tulin Budak-Alpdogan, Subash Jonnalagadda, Manoj Kumar Pandey

Rowan-Virtua Research Day

Multiple myeloma (MM), a cancer of plasma B cells, is a hematological malignancy in which patients inevitably relapse and develop drug resistance. Mcl-1, a member of the anti-apoptotic subgroup of Bcl-2 family proteins, plays a critical role in the progression of multiple myeloma and contributes significantly to drug resistance. Elevated Mcl-1 expression is observed in approximately 52% of MM patients at diagnosis, increasing to 81% at relapse. Given its driving role in disease progression and therapy resistance, Mcl-1 inhibition has emerged as a promising therapeutic target, prompting ongoing research into the development and clinical evaluation of Mcl-1 inhibitors, particularly for …


Accelerated Tumor Growth And Lymphatic Spread Of Transplantable Melanomas In Tumor Necrosis Factor(Tnf)-Transgenic Mice, Catherine F. Alapatt, Robert Hughes, Roger Sheffmaker, Gillian Mcguire, Daniel Deegan, Igor Kuzin, Andrea Bottaro May 2025

Accelerated Tumor Growth And Lymphatic Spread Of Transplantable Melanomas In Tumor Necrosis Factor(Tnf)-Transgenic Mice, Catherine F. Alapatt, Robert Hughes, Roger Sheffmaker, Gillian Mcguire, Daniel Deegan, Igor Kuzin, Andrea Bottaro

Rowan-Virtua Research Day

Melanoma is the fifth most common cancer among American adults, with significant morbidity and mortality at 5 years remaining >60% for patients with stage IV disease. The malignancy is due to the transformation of melanocytes, with one of the major risk factors being ultraviolet light exposure. Although as many as one in five human cancers have been linked to chronic inflammation, the role of inflammatory signals in melanoma growth and metastasis remains poorly understood.

Tumor necrosis factor (TNF)-transgenic (TNFtg) mice are a well-established model of chronic systemic inflammation, with involvement of joints and other organ systems. To assess the effect …


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

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

Honors Scholar Theses

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


A Nano-Scale Approach To Controlled Apoptosis In Brain Cancer Through Magneto-Mechanical Actuation, Sakura Rieck May 2025

A Nano-Scale Approach To Controlled Apoptosis In Brain Cancer Through Magneto-Mechanical Actuation, Sakura Rieck

Biological Sciences Undergraduate Honors Theses

In this study, we investigate the effects of cell therapy and magneto-mechanical actuation (MMA) to treat glioblastoma (U87). MMA approach employs super low-frequency alternating magnetic fields (AMF) to actuate intracellular PEGylated superparamagnetic iron oxide nanoparticles (PEG-SPIONs). Magnetic forces are translated into mechanical agitation on PEG-SPIONs, which can disrupt key cellular components. We explored two ways in which the MMA approach can be used to combat cancer growth. First, we investigated MMA directly in U87 cells. Preliminary observations indicate that PEG-SPIONs are intracellularly taken up by the U87 cells via micropinocytosis. Cell-counting kit-8 toxicity assays revealed a cytotoxic effect of MMA …


Which Costimulatory Domains In Chimeric Antigen Receptor T Cells Induce Cytokine Responses That Are Linked To A More Toxic Car T Cell Therapy In Acute Lymphocytic Leukemia?, Elisabeth Cohen May 2025

Which Costimulatory Domains In Chimeric Antigen Receptor T Cells Induce Cytokine Responses That Are Linked To A More Toxic Car T Cell Therapy In Acute Lymphocytic Leukemia?, Elisabeth Cohen

Longwood Senior Thesis Proposal

No abstract provided.


Translation Of The Carcinogenic Dna Breakage-Repair Inhibition Mechanism For Hexavalent Chromium To Its Key Targets: Lung Epithelial Cells, Lung Tissue And Impacts On The Genome., Idoia Meaza Isusi May 2025

Translation Of The Carcinogenic Dna Breakage-Repair Inhibition Mechanism For Hexavalent Chromium To Its Key Targets: Lung Epithelial Cells, Lung Tissue And Impacts On The Genome., Idoia Meaza Isusi

Electronic Theses and Dissertations

Lung cancer is the leading cause of cancer death worldwide. Hexavalent chromium [Cr(VI)] is a human lung carcinogen with widespread occupational and environmental exposure. Despite the known health risks, how Cr(VI) causes lung cancer remains unclear. This dissertation investigates the mechanisms of Cr(VI)-induced carcinogenesis. Cr(VI) causes DNA damage, specifically DNA double strand breaks, and inhibits homologous recombination repair, a high-fidelity repair pathway. Unrepaired DNA double strand breaks or those repaired through error-prone pathways, progress to chromosomal damage, and chromosome instability. The latter is a common characteristic of Cr(VI)-exposed cells, and a hallmark of lung cancer. Although the mechanism of Cr(VI)-induced …