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Articles 31 - 60 of 1817

Full-Text Articles in Cancer Biology

Targeting Rna Polymerase I In Ewing Sarcoma Treatment, Alexis Bruce Apr 2026

Targeting Rna Polymerase I In Ewing Sarcoma Treatment, Alexis Bruce

Theses

Ewing sarcoma is a rare and aggressive pediatric bone cancer with poor survival rates in patients, as low as 30% in advanced or recurrent cases. There are limited treatment options, making molecularly targeted therapy vital to explore. Through CRISPR scans of Ewing sarcoma cell lines, ribosome biogenesis was highlighted as a potential target. As RNA polymerase I is a key component of ribosome biogenesis, the cytotoxic ability of two RNA Polymerase I inhibitors, CX-5461 and BMH-21, were used on patient-derived Ewing sarcoma cells. The efficacy of the drugs on two cell lines was determined via measuring cell viability, migration potential, …


Cellular And Molecular Characterization Of Ube3a Function In Cic-Dux4 Sarcoma, Jesse D. Walker Apr 2026

Cellular And Molecular Characterization Of Ube3a Function In Cic-Dux4 Sarcoma, Jesse D. Walker

Theses

CIC-DUX4 sarcoma (CDS) is a rare and extremely aggressive soft tissue sarcoma that primarily affects children and young adults. CDS is characterized by an oncogenic chromosomal translocation. Current treatments for CDS are similar to those in other sarcomas like surgery, chemotherapy, and radiation. Treatments, however show that CDS responds poorly compared to other sarcomas, due to relapses of localized disease at high rates and short duration response of treatment, proving the importance of understanding CIC-DUX4’s complex role on how it regulates overall gene expression in CDS cells from a molecular approach.

UBE3A is a ubiquitin protein ligase that plays a …


Differential Effects Of Veratridine And 5-Fluorouracil On Ubxn2a-Targeted Mortalin And Rictor Proteins In Patient-Derived Colorectal Cancer Cells, Kate S. Schraufnagel Apr 2026

Differential Effects Of Veratridine And 5-Fluorouracil On Ubxn2a-Targeted Mortalin And Rictor Proteins In Patient-Derived Colorectal Cancer Cells, Kate S. Schraufnagel

Honors Thesis

Colorectal cancer (CRC) is a leading cause of cancer-related mortality, particularly in patients with metastatic CRC and/or those who have developed resistance to conventional chemotherapy. There has been a significant rise in early-onset CRC (EOCRC) incidences in patients under age 50. Due to lack of screening, these patients are commonly diagnosed in the later stages where there is a lack of effective therapies. This highlights the need for targeted therapies that address the molecular drivers of tumor progression and treatment resistance. UBXN2A is a tumor suppressor protein that regulates key oncogenic pathways in CRC, including Mortalin-2 (mot-2)-mediated p53 suppression and …


The Impact Of Pp1Β Cancer-Associated Polymorphisms On Pp1Β Protein Abundance And Cell Survival In Humanized Saccharomyces Cerevisiae, Kaylee Martinez Apr 2026

The Impact Of Pp1Β Cancer-Associated Polymorphisms On Pp1Β Protein Abundance And Cell Survival In Humanized Saccharomyces Cerevisiae, Kaylee Martinez

Honors Theses

PP1β is an understudied protein phosphatase that affects the cell’s ability to reproduce. It has been known to be an important part of the cell cycle. Mutations within PP1β have been found to affect that process and influence the development of cancer and disease. In this thesis, different PP1β cancer and disease associated polymorphisms are investigated through the use of humanized yeast. PP1β yeast variants are tested by using Live/Dead cell assay and western blot techniques. Live/Dead analysis was conducted on different strains grown at permissible temperature (room temperature) and non-permissible temperature (37°C) over the course of 6 or 48 …


Mitochondrial Transfer And Induced Ros As A Therapeutic Strategy In Idh2-Mutant Chondrosarcoma, Vegas R. Bedder, Caleb Wyckoff, Chris Osgood, Gavin A. Vasquez, Michael Stacey Mar 2026

Mitochondrial Transfer And Induced Ros As A Therapeutic Strategy In Idh2-Mutant Chondrosarcoma, Vegas R. Bedder, Caleb Wyckoff, Chris Osgood, Gavin A. Vasquez, Michael Stacey

Knowledge and Creativity Expo

Chondrosarcoma (CS) are common bone cancers that produce cartilaginous tumors and are extremely refractive to chemo-and-radiation therapies, leaving very limited treatment options. They contain mutations in the isocitrate dehydrogenase genes, IDH1 or IDH2. Either IDH1 or IDH2 mutations are present in individual tumors, but not both. They both convert alphaketoglutarate (αKG) into the potent oncometabolite D-2-hydroxyglutarate (D2HG). D2HG can be transported from the tumors to cells of the tumor microenvironment (TME) where it can alter metabolic and epigenetic profiles in recipient cells. The process of α-KG to D2HG conversion occurs in the cytoplasm of IDH1 mutant cells, and in the …


Synthetic Lethality Between Rb-Loss And E2f3 Inhibition In Small Cell Cancers Targeted By Pyrimidine Synthesis Blockade, Evan R. Abt, Liang Wang, Grigor Varuzhanyan, Jack Freeland, Tian He, Guadalupe M. Peña-Garcia, Lauryn Ruegg, Jami Mclaughlin, Donghui Cheng, Nikolas G. Balanis, Chia-Chun Chen, Yang Xu, Yi Xing, Sanaz Memarzadeh, Caius G. Radu, Thomas G. Graeber, Owen N. Witte Mar 2026

Synthetic Lethality Between Rb-Loss And E2f3 Inhibition In Small Cell Cancers Targeted By Pyrimidine Synthesis Blockade, Evan R. Abt, Liang Wang, Grigor Varuzhanyan, Jack Freeland, Tian He, Guadalupe M. Peña-Garcia, Lauryn Ruegg, Jami Mclaughlin, Donghui Cheng, Nikolas G. Balanis, Chia-Chun Chen, Yang Xu, Yi Xing, Sanaz Memarzadeh, Caius G. Radu, Thomas G. Graeber, Owen N. Witte

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

Small cell carcinoma is a highly lethal cancer variant often found with neuroendocrine (NE) features, as exemplified by small cell lung cancer and small cell NE prostate cancer (SCPC). A genome-wide CRISPR dependency screen using SCPC models generated through human prostate cell transformation identifies a requirement for the transcription factor E2F3. E2F3 dependency is linked to RB inactivation, a near universal occurrence across small cell cancers. The requirement for E2F3 is shared by RB-deficient cells originating from the prostate, lung, and adnexa. In RB-deficient cancer cells, E2F3 inhibition restrains cell cycle progression, proliferation, and tumor growth in vivo. Inhibition of …


Role Of Na⁺/K⁺-Atpase And Sodium–Calcium Exchanger In Digitoxin-Induced Cytotoxicity In Triple Negative Breast Cancer Cells, Alyson Sotomayor Quispe, Marilyn Odom Phd Mar 2026

Role Of Na⁺/K⁺-Atpase And Sodium–Calcium Exchanger In Digitoxin-Induced Cytotoxicity In Triple Negative Breast Cancer Cells, Alyson Sotomayor Quispe, Marilyn Odom Phd

SPARK Symposium Presentations

Triple Negative Breast Cancer (TNBC) is characterized by the absence of estrogen, progesterone, and HER2 receptors, limiting targeted treatment options. Digitoxin, a drug used to treat heart failure and atrial fibrillation through Na⁺/K⁺-ATPase inhibition, has demonstrated anticancer effects in TNBC cells, including apoptosis via the NF-κB pathway. This study investigates whether the Na⁺/K⁺-ATPase and sodium–calcium exchanger contribute to the mechanism of action of digitoxin in TNBC cells. We hypothesize that these transporters mediate digitoxin-induced cytotoxic effects. To test this, MDA-MB-468 cells were treated with digitoxin, and protein localization and expression were analyzed using immunofluorescence and Western blot. Digitoxin treatment resulted …


Advancements In Extracellular Vesicle Research, Lucia R. Languino Mar 2026

Advancements In Extracellular Vesicle Research, Lucia R. Languino

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

The AAEV (American Association of Extracellular Vesicles) Annual Meeting at the John P. McGovern Commons in Houston, TX convened over 300 leading re- searchers, clinicians, and industry experts from around the world to advance the rapidly evolving field of extracellular vesicle (EV) science. EVs, nanoscale lipid- bound particles released by all prokaryotic and eukaryotic cells, have emerged as crucial mediators of intercellular communication, trans- porting proteins, nucleic acids, and lipids that influence a wide spectrum of physiological and pathological processes. Their involvement in immune modulation, tissue regeneration, cancer progression, metabolic regulation, and other complex biological functions positions EVs as promising …


Fiber Optic Polarimetric Stress Sensor Improvements, Maxwell R. Richter, Max Randall, Mark C. Harrison Mar 2026

Fiber Optic Polarimetric Stress Sensor Improvements, Maxwell R. Richter, Max Randall, Mark C. Harrison

Engineering Faculty Articles and Research

The progression of diseases such as cancer has been correlated with tissue stiffness. For example, breast cancer tissue has been found to be stiffer than healthy mammary tissue. At present, stiffness measurement devices are not suitable for nondestructive, high-resolution measurements on small, delicate samples. We report a compact, portable, and sensitive fiber optic stress sensor that overcomes many of these limitations and is suitable for soft materials such as tissue. We demonstrate several improvements to a previous fiber stress sensor in physical hardware, software, and data analysis. We have designed and fabricated a custom enclosure to shield the sensitive setup …


Nanoencapsulation Of Tomentosin-Rich Pulicaria Crispa Fraction In Mil-53(Fe) Improves The Release Profile And In Vitro Anti-Colorectal Cancer Activity, Hamies Baher Feb 2026

Nanoencapsulation Of Tomentosin-Rich Pulicaria Crispa Fraction In Mil-53(Fe) Improves The Release Profile And In Vitro Anti-Colorectal Cancer Activity, Hamies Baher

Dentistry

No abstract provided.


New Inhibitors Of Neuronal Nitric Oxide Synthase For The Treatment Of Melanoma, Amardeep Awasthi, Anika Patel, Huiying Li, Koon Mook Kang, Christine D. Hardy, Anas Ansari, Raghad Nowar, Hasan Alhaddad, Md. Emtiaz Hasan, Sun Yang, Thomas L. Poulos, Richard B. Silverman Jan 2026

New Inhibitors Of Neuronal Nitric Oxide Synthase For The Treatment Of Melanoma, Amardeep Awasthi, Anika Patel, Huiying Li, Koon Mook Kang, Christine D. Hardy, Anas Ansari, Raghad Nowar, Hasan Alhaddad, Md. Emtiaz Hasan, Sun Yang, Thomas L. Poulos, Richard B. Silverman

Pharmacy Faculty Articles and Research

In 2024, an estimated 100,640 new cases of invasive melanoma were diagnosed in the U.S., with 9290 deaths. Our previous studies revealed that neuronal nitric oxide synthase (nNOS) derived nitric oxide plays a critical role in melanoma progression, making nNOS inhibition a promising strategy. High structural similarity among NOS isoforms requires careful design of nNOS inhibitors to avoid off-target effects. Our previous lead, HH044, demonstrated potent antimelanoma activity but exhibited only moderate nNOS selectivity. Here, we utilized a structure-based approach to design nNOS inhibitors that promote interactions with human nNOS-specific residue His342. Compound 9 exhibited inhibition of both human ( …


Updating Misev: When, What, How, And Why?, Naveed Akbar, Dylan Burger, Benedetta Bussolati, Edit Buzás, Randy Carney, Young-Eun Cho, Tom Driedonks, Juan Manuel Falcon-Perez, Yu Fujita, Deborah Goberdhan, An Hendrix, Yiyao Huang, Suresh Mathivanan, Mỹ Mahoney, Sujata Mohanty, Andreas Möller, Nicole Noren Hooten, Stefano Pluchino, Carlos Salomon, Ana Claudia Torrecilhas, Sara Veiga, Kenneth Witwer Jan 2026

Updating Misev: When, What, How, And Why?, Naveed Akbar, Dylan Burger, Benedetta Bussolati, Edit Buzás, Randy Carney, Young-Eun Cho, Tom Driedonks, Juan Manuel Falcon-Perez, Yu Fujita, Deborah Goberdhan, An Hendrix, Yiyao Huang, Suresh Mathivanan, Mỹ Mahoney, Sujata Mohanty, Andreas Möller, Nicole Noren Hooten, Stefano Pluchino, Carlos Salomon, Ana Claudia Torrecilhas, Sara Veiga, Kenneth Witwer

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

No abstract provided.


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 Jan 2026

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 …


An Antioxidant Cocktail Of Tert-Butylhydroquinone And A Manganese Porphyrin Induces Toxic Levels Of Oxidative Stress In Cancer Cells, Sandra Tamarin, Hannah Jung, Joseph Lamorte, Laura Biesterveld, Gabriel Piñero, Grace Turchetta, Molly Myers, Rebecca Oberley-Deegan, Aimee Eggler Jan 2026

An Antioxidant Cocktail Of Tert-Butylhydroquinone And A Manganese Porphyrin Induces Toxic Levels Of Oxidative Stress In Cancer Cells, Sandra Tamarin, Hannah Jung, Joseph Lamorte, Laura Biesterveld, Gabriel Piñero, Grace Turchetta, Molly Myers, Rebecca Oberley-Deegan, Aimee Eggler

Student Papers, Posters & Projects

Despite significant advancement in cancer treatments, therapies with minimal toxicity to healthy cells are still limited. One targetable weakness of cancer cells is their sensitivity to oxidative stress. We find that the combination of two antioxidants—the common food additive tert-butylhydroquinone (tBHQ) and a manganese porphyrin in clinical trials, MnTnBuOE-2-PyP5+ (MnBuOE)—increases oxidative stress and causes apoptotic death in several cancer cell lines, but not in mouse primary fibroblasts. Investigating the mechanism of cell death, MnBuOE is observed to catalyze the oxidation of tBHQ, producing the electrophilic quinone tert-butylquinone (tBQ). A critical role for tBQ and its electrophilic character was revealed with …


Evaluation Of Peptides And Peptide–Doxorubicin Conjugates Designed And Synthesized For Targeting Triple-Negative Breast Cancer Via Cell-Surface Receptors, Shih-Jing (Jane) Yao Jan 2026

Evaluation Of Peptides And Peptide–Doxorubicin Conjugates Designed And Synthesized For Targeting Triple-Negative Breast Cancer Via Cell-Surface Receptors, Shih-Jing (Jane) Yao

Pharmaceutical Sciences (PhD) Dissertations

A significant problem faced in oncology is the lack of chemotherapeutic agents that are tumor site-specific, resulting in reduced therapeutic efficacy and unintended infliction of harm to surrounding healthy tissues and cells that often lead to serious side effects. Current strategies being explored to circumvent this issue aim to refine delivery of  chemotherapeutic agents specifically to tumor sites, which may be achieved via conjugation of these agents to biomarker-specific ligands. This forms the foundation of ligand-targeted drug delivery. Among different breast cancers, treatment of the triple-negative breast cancer (TNBC) subtype has been particularly challenging, largely due to the absence of …


Exploring The Synergistic Effects Of Cisplatin And Curcumin In Osteosarcoma Cells, Ellis Stafford, Alexa Cabral, Andrea Florian Ph.D., Reese Nagy Jan 2026

Exploring The Synergistic Effects Of Cisplatin And Curcumin In Osteosarcoma Cells, Ellis Stafford, Alexa Cabral, Andrea Florian Ph.D., Reese Nagy

SPARK Symposium Presentations

Osteosarcoma (OS) is a highly aggressive bone cancer characterized by rapid metastasis, which drastically reduces patient survival rates from 70% in localized cases to 30% upon metastasis. Current treatments combining chemotherapy with cisplatin and surgical intervention are often ineffective against metastatic OS and are associated with significant side effects. Cisplatin targets cancer cells by binding to DNA, disrupting transcription and replication, and inducing apoptosis. To address the challenges associated with current treatments, this study investigates the potential of combining cisplatin with curcumin, the bioactive compound derived from turmeric, as a novel therapeutic approach. Curcumin has shown anticancer properties by inducing …


Proteome-Based Identification And Validation Of Nxpe3 In Childhood Acute Lymphoblastic Leukaemia, Najia Tabassum, Yamna Khurshid, Basir Syed, Aftab Ahmad, Sadia Muhammad, Rehan Imad, Talat Mirza Jan 2026

Proteome-Based Identification And Validation Of Nxpe3 In Childhood Acute Lymphoblastic Leukaemia, Najia Tabassum, Yamna Khurshid, Basir Syed, Aftab Ahmad, Sadia Muhammad, Rehan Imad, Talat Mirza

Pharmacy Faculty Articles and Research

Background: Childhood acute lymphoblastic leukaemia (cALL) tends to metastasize to central nervous system. Treatment with antileukemic agents against CNS leukaemia is an essential component for cure in ALL. Hence, it is essential to identify biomarkers for CNS infiltration. Proteomics, supported by mass spectrometry, is the platform for exploring biomarkers in various biological samples, contributing to translational research. Objectives: This study aimed to identify the plasma proteome profile of children across different risk groups of cALL. Neurexophilin and PC-esterase family, member 3 (NXPE3), was validated. The protein-protein interactions (PPI) of NXPE3 were evaluated with bioinformatics analyses. Methods: Plasma …


Crispr Transgenic Clytia Hemisphaerica As A Vector For Toxin Delivery In A Zebrafish Melanoma Model, Theodore G. Paz Jan 2026

Crispr Transgenic Clytia Hemisphaerica As A Vector For Toxin Delivery In A Zebrafish Melanoma Model, Theodore G. Paz

Theses, Dissertations and Culminating Projects

The jellyfish Clytia hemisphaerica has the potential to be used in cancer therapies with the discovery of potential active toxin target regions to be modified for use. The program Venomix is a Uniprot-based database that was utilized in this experiment to generate likely flagged hit regions using Clytia hemisphaerica CDS files run against its database of terrestrial toxins (Furuno et al., 2003; Macrander et al., 2018). By themselves they are indeterminate as to whether they are active toxin region hits (Macrander et al., 2018). With further analysis such as toxin homology in closely related, annotated marine taxa and accounting for …


Targeted And Screening Based Approaches To Analyze Drm Transcriptional Repressor Complex Activity In Caenorhabditis Elegans, Emily Washeleski Jan 2026

Targeted And Screening Based Approaches To Analyze Drm Transcriptional Repressor Complex Activity In Caenorhabditis Elegans, Emily Washeleski

Dissertations, Master's Theses and Master's Reports

The molecular machinery that control the eukaryotic cell cycle, specifically the processes that mediate the switch between cellular division or quiescence, are essential for cellular and organismal viability. However, how the same machinery integrates with developmental or differentiation programs is less well understood. In Caenorhabditis elegans, the 8-subunit DRM complex (for Dp, Rb and MuvB), whose subunits belong to the Synthetic Mulitivulva (SynMuv) B class genes, is a central regulator of the cell cycle but also prevents inappropriate cell fate specification. The conserved mammalian DREAM complex (for Dp, Rb, E2F, And MuvB) is best known as a transcriptional repressor …


Synergistic Sensitization Of Pancreatic Cancer Cells By Nanosecond Pulsed Electric Fields And Cold Atmospheric Plasma Via Amplifying Ros And Apoptotic Signaling, Zobia Minhas, Edwin A. Oshin, Lifang Yang, Chunqi Jiang, Siqi Guo Jan 2026

Synergistic Sensitization Of Pancreatic Cancer Cells By Nanosecond Pulsed Electric Fields And Cold Atmospheric Plasma Via Amplifying Ros And Apoptotic Signaling, Zobia Minhas, Edwin A. Oshin, Lifang Yang, Chunqi Jiang, Siqi Guo

Bioelectrics Publications

Pancreatic cancer remains a highly lethal malignancy, with standard therapies offering limited benefits in advanced stages; thus, novel strategies that exploit specific cancer cell vulnerabilities are urgently needed. Building on our previous findings that nanosecond pulsed electric fields (nsPEF) combined with cold atmospheric plasma (CAP) produce enhanced cytotoxicity, this study investigates the molecular mechanisms underlying this synergy. Pan02 pancreatic cancer cells were subjected to nsPEF, CAP, or a combination of both. We assessed cell viability, reactive oxygen species (ROS) production, and mitochondrial integrity using metabolic assays, flow cytometry, and fluorescence microscopy. Apoptotic markers were evaluated via Western blotting and caspase …


Nanosecond Electric Pulses As A Novel In Situ Vaccination Strategy For Cancer Treatment: Mechanisms, Challenges And Prospects, Siqi Guo Jan 2026

Nanosecond Electric Pulses As A Novel In Situ Vaccination Strategy For Cancer Treatment: Mechanisms, Challenges And Prospects, Siqi Guo

Bioelectrics Publications

Nanosecond electric pulses (nsEPs) are an emerging pulsed-power technology with unique bioelectric characteristics distinct from conventional long-pulse electroporation. As a tunable physical modality, nsEPs can modulate intracellular structures, membrane dynamics, and signaling pathways. Increasing evidence supports nsEPs as a promising non-thermal tumor ablation approach due to their high spatial precision, preservation of critical tissue structures, and minimal adverse effects. One of the most significant discoveries associated with nsEP tumor ablation is the induction of potent systemic antitumor immunity, particularly in situ vaccination (ISV) effects and, in some cases, abscopal effects against distant untreated tumors. Substantial evidence demonstrates that nsEPs can …


A Sweet Spot For Chemotherapy: The Influence Of Insulin And Glucagon On Oxaliplatin Sensitivity In Colorectal Cancer Cells, Daniella Cohen, Andrea Florian Jan 2026

A Sweet Spot For Chemotherapy: The Influence Of Insulin And Glucagon On Oxaliplatin Sensitivity In Colorectal Cancer Cells, Daniella Cohen, Andrea Florian

SPARK Symposium Presentations

There is a well-established relationship between cellular metabolism, cancer progression, and treatment response. Metabolic hormones such as insulin and glucagon regulate pathways involved in cell growth, survival, and stress responses and have been linked to tumor development and chemotherapy sensitivity. Understanding how metabolic signaling influences cancer treatment may provide insight into factors that affect therapeutic outcomes. This study aims to investigate how insulin and glucagon affect the susceptibility of colorectal cancer cells (CRC) to the chemotherapeutic agent oxaliplatin. CRC cells were treated with insulin or glucagon and exposed to varying concentrations of oxaliplatin. Cell viability was measured to evaluate treatment …


Comparing The Differences Of Hsp90Α And Hsp90Β In Native Protein Complex Incorporation, Daryna Serediuk Jan 2026

Comparing The Differences Of Hsp90Α And Hsp90Β In Native Protein Complex Incorporation, Daryna Serediuk

Honors Theses and Capstones

Epichaperomes are long-lasting, stable assemblies of chaperones, co-chaperones, and associated factors that facilitate cell survival in maladaptive cellular states. Their inhibition has emerged as an attractive therapeutic strategy for the treatment of cancer and neurodegenerative diseases (Rodina et al., 2016). Epichaperomes are hallmarks of robust proliferation in cancer cell populations across many cancer types and are abundantly present in several stem cell varieties, including induced pluripotent stem cells, human embryonic kidney cells, and cancer stem cells (Kishinevsky et al., 2018).

The core protein of the eukaryotic heat shock protein machinery, Heat Shock Protein 90 (Hsp90), is a central chaperone that …


Investigation Into The A/Ss Of Cervical Cancer And Its Effects On Tumor Control Probability In Radiation Therapy, Cameron Thayer-Freeman Jan 2026

Investigation Into The A/Ss Of Cervical Cancer And Its Effects On Tumor Control Probability In Radiation Therapy, Cameron Thayer-Freeman

Theses and Dissertations--Radiation Medicine

The standard of care for locally advanced cervical cancer is chemoradiation, consisting of conventional external beam therapy (EBT) followed by a boost of high dose rate (HDR) brachytherapy. These two radiation treatments will illicit different degrees of biological response depending on the tissue in question, and quantifying the overall effect the combined treatments will have require some form of biological modeling. The linear quadratic (LQ) model of cell survival is the most widely used radiobiological model in clinics across the nation.

It is quantified by the parameters a and ß, which model how radiation generates lethal damage in a population …


Immune Suppression And Epigenetic Reprogramming In Epithelial-Mesenchymal Transition, Hanxu Lu Jan 2026

Immune Suppression And Epigenetic Reprogramming In Epithelial-Mesenchymal Transition, Hanxu Lu

Dartmouth College Ph.D Dissertations

Epithelial-mesenchymal transition (EMT) is increasingly recognized as a dynamic spectrum of cellular programthat contributes to tumor progression, metastasis, and therapeutic resistance. Rather than existing as discrete epithelial or mesenchymal phenotypes, tumor cells undergo intermediate EMT states in which epithelial and mesenchymal features are partially and variably expressed. In this thesis, I studied EMT state heterogeneity through two complementary and integrated dimensions: tumor-immune interactions and the dynamic remodeling of epigenetic programs across the EMT spectrum. Using a clonal EMT model derived from the murine triple-negative 4T1 mammary carcinoma cell line, including epithelial, intermediate, and mesenchymal states that are stably maintained in …


Brain-Derived Extracellular Vesicles Potentially Mediate Crosstalk With Peripheral Organs In Neurodegenerative Diseases, Ramzi H. Hamdalla, Vibha B. Bhaskar, Changhai Tian Jan 2026

Brain-Derived Extracellular Vesicles Potentially Mediate Crosstalk With Peripheral Organs In Neurodegenerative Diseases, Ramzi H. Hamdalla, Vibha B. Bhaskar, Changhai Tian

Toxicology and Cancer Biology Faculty Publications

Brain-Derived Extracellular vesicles (BDEVs) are emerging mediators of intra- and interorgan communication in neurodegenerative diseases (NDs) such as Alzheimer’s Disease (AD) and Parkinson’s Disease (PD). A growing body of evidence suggests that BDEVs play an important role in modulating intercellular communication within the central nervous system in the pathogenesis of many NDs. By transporting non-coding RNAs (e.g., miRNAs) and important pathological proteins, BDEVs also influence peripheral organs and contribute to the progression of disease in the central nervous system (CNS). This review extends the understanding of NDs beyond solely brain dysfunction and gives a novel framework for the progression of …


The Role Of Tumor Microenvironment In Glioblastoma Multiforme(Gbm) Therapeutic Resistance, Kwesi E. Taylor Jan 2026

The Role Of Tumor Microenvironment In Glioblastoma Multiforme(Gbm) Therapeutic Resistance, Kwesi E. Taylor

Master's Theses or Doctor of Nursing Practice

Despite significant advances in cancer research and treatment, Glioblastoma multiforme (GBM) remains one of the most difficult cancers to treat effectively, with minimal improvement in long-term survival rates over the past few decades. This is largely attributed to tumor heterogeneity and the ability of tumor cells to develop adaptive resistance mechanisms supported by the tumor microenvironment (TME). Although the TME is recognized as a key contributor to tumor progression and therapeutic resistance, the underlying molecular pathways and regulatory genes remain incompletely understood. This study investigated the role of the tumor microenvironment in GBM therapeutic resistance using a bioinformatics approach. Single-cell …


Ovarian Cancer Immunology And Immunotherapy: Editorial Note, Chris D. Platsoucas Jan 2026

Ovarian Cancer Immunology And Immunotherapy: Editorial Note, Chris D. Platsoucas

Biological Sciences Faculty Publications

[Introduction] As the guest editor of the Special Issue on Ovarian Cancer Immunology Immunotherapy, I would like to include certain brief comments on the current state of the field and to introduce the Special Issue. Ovarian carcinoma and malignant melanoma are the first human tumors where immune responses, primarily restricted to autologous tumor cells, were first demonstrated. T-cell lines and clones developed in recombinant interleukin-2 (rIL-2) from tumor-infiltrating lymphocytes (TIL) from these tumors exhibited cytotoxicity and/or cytokine production, primarily restricted to autologous tumor cells. The T-cell receptor (TCR) and the CD3 differentiation antigen on effector T cells and HLA on …


Detection And Characterization Of Cancer Using Cfdna Fragmentomic Analysis, Guneet Bhogal Jan 2026

Detection And Characterization Of Cancer Using Cfdna Fragmentomic Analysis, Guneet Bhogal

Master's Projects

Cell-free DNA (cfDNA) fragmentomics has emerged as a promising non-invasive approach for detecting and characterizing cancer by analyzing DNA fragmentation patterns. These fragment patterns are unique and can be used to distinguish between tumor and healthy DNA. This paper uses machine learning models to detect cancer by evaluating Shannon entropy of fragment lengths at the first coding exon 1 regions and correlating them to targeted cancer genes. This approach was applied to two datasets consisting of samples with prostate, breast, and lung cancers. Our results indicated that exon 1 fragmentation entropy captures biologically relevant differences in cancer-specific chromatin organization and …


Investigating The Interaction Of Gram-Positive Lactobacillus Species With Mucin In The Context Of Barrett's Esophagus, Ritisha Suresh Jan 2026

Investigating The Interaction Of Gram-Positive Lactobacillus Species With Mucin In The Context Of Barrett's Esophagus, Ritisha Suresh

Honors Undergraduate Theses

Gastroesophageal Reflux Disease (GERD) can progress to the precancerous Barrett’s Esophagus (BE) condition, in which the normal esophageal squamous epithelium is replaced with a columnar epithelium containing goblet cells. Mucins, sticky substances, are secreted in response to bile acid exposure during reflux episodes to protect the esophageal epithelium. Goblet cells secrete these mucins, which can also scaffold microbial colonization. Probiotic Lactobacillus bacteria can use glycosidase enzymes to process mucin and metabolize them into their component sugars (glycans). This project aims to identify the role of the Lactobacillus-mucin interaction in BE, as glycan availability could confer an advantage to Lactobacillus …