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Articles 511 - 540 of 1817
Full-Text Articles in Cancer Biology
Determining The Roles Of The Oligomerization And C-Terminal Domains In Mutant P53 Gain-Of-Function Activities, George K. Annor
Determining The Roles Of The Oligomerization And C-Terminal Domains In Mutant P53 Gain-Of-Function Activities, George K. Annor
Dissertations, Theses, and Capstone Projects
The tumor suppressor p53 (TP53) gene is often mutated in cancer, with missense mutations found in the central DNA binding domain, and less often in the oligomerization domain (OD) and C-terminal domain (CTD). The OD and CTD have been found to be critical for the tumor suppressor functionality of wild-type p53 (wtp53). Specific missense mutations in the DNA binding domain have been found to confer new gain-of-function (GOF) activities. Mutations that destabilize tetramer formation, or deletion of key lysine residues within the CTD, downregulate the ability of wtp53 to transactivate (increase the rate of transcription of) its target …
Characterization Of Exosomes And Their Role In Cellular Migration In Chemosensitive And Chemoresistant Ovarian Cancer Cells, Courtney Mceneaney
Characterization Of Exosomes And Their Role In Cellular Migration In Chemosensitive And Chemoresistant Ovarian Cancer Cells, Courtney Mceneaney
Honors Program Theses and Projects
Chemotherapy-resistant cells that remain after primary cancer treatment lead to recurrence and metastasis, resulting in a poor prognosis for patients. Chemoresistant cells were created by our collaborators using the human ovarian cancer cell line, OVCAR8, by selection of cells that survived serial culture with cisplatin, a platinum-based chemotherapeutic. The cisplatin-resistant cells (OVCAR8R) demonstrate a morphology unique from the original cisplatin-sensitive cells (OVCAR8) which could correlate with their difference in aggressiveness. My research goal is to isolate and characterize exosomes from the OVCAR8 and OVCAR8Rlines. Exosomes are small vesicles secreted from cells and contribute to the tumor microenvironment(TME). It has been …
Post-Transcriptional Control Of The Epithelial-To-Mesenchymal Transition (Emt) In Ras-Driven Colorectal Cancers, Chaitra Rao
Post-Transcriptional Control Of The Epithelial-To-Mesenchymal Transition (Emt) In Ras-Driven Colorectal Cancers, Chaitra Rao
Theses & Dissertations
Colorectal cancer (CRC) originates from epithelial cells lining the colon or rectum of the gastrointestinal tract. Most cancer deaths result from a tumor spreading to distant organs; however epithelial cells do not normally migrate from their tissue of origin. To do so, epithelial cells undergo biochemical changes allowing them to acquire behavior similar to motile mesenchymal cells termed the epithelial-to-mesenchymal transition (EMT), which contributes to tumor invasion and metastasis. Our study demonstrated that CRC cells require a molecular scaffold, Kinase Suppressor of Ras 1 (KSR1), and ERK to promote the EMT-like phenotype through the preferential translation of Epithelial Stromal Interaction …
Dysregulation Of Mir-10a Promotes Cancer Features In Cholangiocarcinoma, Matthieu Spriet
Dysregulation Of Mir-10a Promotes Cancer Features In Cholangiocarcinoma, Matthieu Spriet
Theses & Dissertations
Cholangiocarcinoma is a primary liver cancer of the bile duct epithelium that exhibits microRNA-mediated control of tumor cell signaling. Strides toward new treatment rest on a better defining of cholangiocarcinoma tumor biology including the RNA-based layer of regulation. Additionally, there is a gap in knowledge on microRNA expression in human tissue. While there is RNA-seq data of microRNA expression in tissue, it does not differentiate between cell types, thus leaving unanswered questions about cell specific microRNA biology and expression.
Here, we identify miR-10a as an oncogenic microRNA acting through MAPK signaling. Using cholangiocarcinoma cell lines, we determined miR-10a is an …
Investigating The Role Of Splenic Macrophages In Pancreatic Cancer, Daisy V. Gonzalez
Investigating The Role Of Splenic Macrophages In Pancreatic Cancer, Daisy V. Gonzalez
Theses & Dissertations
Pancreatic cancer is currently the 3rd leading cause of all cancer-related deaths, with a 5-year survival rate remaining at 10%. The current standard treatment of care and a lack of effective diagnostic markers leaves patients with a dismal prognosis at advanced stages of the disease. This thesis research evaluated the effect of ApoE-expressing macrophages in the spleen. First, we aimed to assess the ApoE expression in the spleen of pancreatic tumor-bearing mice. Results showed that ApoE expression in splenic macrophages increased as the disease progressed. In addition, we saw a significant increase in marginal zone metallophilic macrophages and red pulp …
Gaps In Patient Education On Safe Handling And Disposal Of Oral Chemotherapy Drugs: A Pilot Prospective Cohort Survey Study, Sun Yang, Priya Patel, Alexandra Corcoran, Eric Dobberpuhl, Samantha Isidro, Dustin Le, Analise Klassen, Jay Rho, David Tran, Richard Beuttler, Neda Noori Nassr, Katherine Gruenberg, Siu-Fun Wong
Gaps In Patient Education On Safe Handling And Disposal Of Oral Chemotherapy Drugs: A Pilot Prospective Cohort Survey Study, Sun Yang, Priya Patel, Alexandra Corcoran, Eric Dobberpuhl, Samantha Isidro, Dustin Le, Analise Klassen, Jay Rho, David Tran, Richard Beuttler, Neda Noori Nassr, Katherine Gruenberg, Siu-Fun Wong
Pharmacy Faculty Articles and Research
Background
Oral anticancer chemotherapy (OC) has been misperceived as being safer than intravenous chemotherapy, leading to its increased risk of improper handling and disposal. This survey study assessed the knowledge, practices and attitudes of pharmacists and patients regarding OC handling and disposal, gaps in knowledge and barriers to patient education. Methods
Surveys were developed based on literature review and pilot study validation results. Patients completed a 33-item paper or electronic survey whereas pharmacists completed a 38-item electronic survey. Descriptive statistics and Fisher’s exact test computed using the R Project were used for analyses. Results
Pharmacist group (16/25, 62.5%) and patient …
Sex Differences In Cancer Cachexia And A Novel Mitochondrial Target For Cancer-Induced Muscle Wasting, Seongkyun Lim
Sex Differences In Cancer Cachexia And A Novel Mitochondrial Target For Cancer-Induced Muscle Wasting, Seongkyun Lim
Graduate Theses and Dissertations
Cancer cachexia (CC) is a devastating wasting syndrome characterized by marked weight loss including skeletal muscle atrophy that affects approximately 80% of cancer patients. Current therapeutic treatments including pharmacological and nutritional intervention are insufficient to prevent or reverse it. Prior studies demonstrated lower muscle mass, impaired muscle function, and mitochondrial health in the development of CC. Specifically, mitochondrial fusion protein, Optic atrophy 1 (OPA1) which plays a significant role in skeletal muscle health, is suppressed in the development of CC. Furthermore, most pre-clinical CC studies were mainly focused on males although there are distinct phenotypical differences in skeletal muscle between …
A Computational Model Of The Line-1 Retrotransposon Life Cycle And Visualization Of Metabolic Networks In 3-Dimensions., Michael D. Martin
A Computational Model Of The Line-1 Retrotransposon Life Cycle And Visualization Of Metabolic Networks In 3-Dimensions., Michael D. Martin
Electronic Theses and Dissertations
Computational modeling of metabolic reactions and cellular systems is evolving as a tool for quantitative prediction of metabolic parameters and reaction pathway analysis. In this work, the basics of computational cell biology are presented as well as a summary of physical processes within the cell, and the algorithmic methods used to find time dependent solutions. Protein-protein and enzyme-substrate interactions are mathematically represented via mass action kinetics to construct sets of linear differential equations that describe reaction rates and formation of protein complexes. Using mass action methods, examples of reaction networks and their solutions are presented within the Virtual Cell simulation …
Integrin-Mediated Mechanotransduction Controls Activation Of Yap And Invasive Growth Of Breast Cancer, Xiaobo Wang
Integrin-Mediated Mechanotransduction Controls Activation Of Yap And Invasive Growth Of Breast Cancer, Xiaobo Wang
Dissertations and Theses (Open Access)
Tumor extracellular matrix (ECM) stiffness is correlated with the aggressiveness of breast cancer. Integrin-mediated adhesion and signaling are crucial for mammary tumorigenesis and tumor progression, in which focal adhesion kinase (FAK) - Src family kinases (SFKs) serves as a hub to relay the mechanical cues from the ECM. We have investigated the mechanisms through which integrin signaling controls mammary tumorigenesis and found that integrin-mediated mechanotransduction controls invasive growth of breast cancer cells in stiff matrices through activation of FAK and YAP. Mechanistic studies revealed that integrin signaling induces - via activation SFKs - tyrosine phosphorylation and inactivation of LATS1 and …
Regulation Of Systemic And Cellular Metabolism In Prostate Cancer By Camkk2 And Elucidation Of Atgl’S Role In Disease Progression, Dominik Awad
Dissertations and Theses (Open Access)
The androgen receptor (AR) is the major driver of prostate cancer; hence, men with progressing disease are treated with androgen deprivation therapy (ADT). However, the majority of patients will relapse within 2-3 years due to multiple AR reactivation mechanisms. Thus, AR and the processes downstream of the receptor remain central drivers of prostate cancer. A direct target of AR is CAMKK2, a gene coding for the serine/threonine kinase Ca2+/calmodulin-dependent protein kinase kinase 2 (CAMKK2), a protein upregulated in advanced prostate cancer. CAMKK2 modulates many of its pathological effects through the phosphorylation and activation of the 5' AMP-activated …
Grk3 Connects Angiogenesis And Neuroendocrine Differentiation In Prostate Cancer By Activating Hdac2 That Epigenetically Represses Tsp1 And Rest, Samira Naderinezhad
Grk3 Connects Angiogenesis And Neuroendocrine Differentiation In Prostate Cancer By Activating Hdac2 That Epigenetically Represses Tsp1 And Rest, Samira Naderinezhad
Dissertations and Theses (Open Access)
Prostate cancer (PCa) is the second most frequent cancer and the second leading cause of mortality in men in the United States. Neuroendocrine prostate cancer (NEPC) is the aggressive subset of castration-resistant prostate cancer (CRPC), found in ~20% lethal CRPC. The mechanisms underlying the progression of PCa to NEPC are still largely unclear, and new drug targets are desperately needed. NEPC is highly vascularized (angiogenic) and characterized by high expression of neuroendocrine markers. However, direct molecular links connecting angiogenesis and neuroendocrine differentiation are elusive.
Since epigenetic regulation has been implicated in NEPC progression, we examined expression patterns of 147 epigenetic …
Genomewide Crispr/Cas9 Screen Identifies Network Of Protein Complexes That Regulate Trim24, Lalit Patel
Genomewide Crispr/Cas9 Screen Identifies Network Of Protein Complexes That Regulate Trim24, Lalit Patel
Dissertations and Theses (Open Access)
TRIM24 is an oncogenic chromatin reader that is frequently overexpressed in human tumors and associated with poor prognosis. However, TRIM24 is rarely mutated, duplicated, or rearranged in cancer. This raises questions about how TRIM24 is regulated and whether changes in its regulation are responsible for its activity in cancer.
To investigate this possibility, I performed a genomewide CRISPR/Cas9 screen library using fluorescence activated cell sorting (FACS) to identify regulators of TRIM24. The screen was enabled by two innovations. I engineered cells with an in-frame knock-in of mClover3 to the endogenous copy of TRIM24 to allow fluorescent monitoring of TRIM24 expression …
The Role Of The Hypoxia-Inducible Factor 2 In Pancreatic Cancer: Mechanisms Of Tumor Immunosuppression And Intestinal Radioprotection, Carolina Garcia Garcia
The Role Of The Hypoxia-Inducible Factor 2 In Pancreatic Cancer: Mechanisms Of Tumor Immunosuppression And Intestinal Radioprotection, Carolina Garcia Garcia
Dissertations and Theses (Open Access)
Pancreatic ductal adenocarcinoma (PDAC) is a devastating disease with dismal prognosis. The only curative option for patients is surgery, but over 80% of patients are not surgical candidates. Unfortunately, PDAC is resistant to the three remaining options. PDAC is characterized by a profoundly hypoxic and immunosuppressive stroma, which contributes to its therapeutic recalcitrance. Alpha-smooth muscle actin+ (αSMA+) cancer-associated fibroblasts (CAFs) are the most abundant stromal component, as well as mediators of stromal deposition. The hypoxia-inducible factors (HIF1 and HIF2) coordinate responses to hypoxia, yet, despite their known association to poor patient outcomes, their functions within the PDAC tumor microenvironment (TME) …
Roles Of Oxidative Stress And Dna Methylation In Cigarette Smoking-Induced Accelerated Acute Myeloid Leukemia Progression, Mary Figueroa
Roles Of Oxidative Stress And Dna Methylation In Cigarette Smoking-Induced Accelerated Acute Myeloid Leukemia Progression, Mary Figueroa
Dissertations and Theses (Open Access)
Acute myeloid leukemia (AML) is a commonly diagnosed cancer in smokers. When current or former smokers have AML, they have worse survival compared to never smoking patients. This has been observed clinically for decades, but then it is unknown how smoking leads to worsened AML survival. Smoking causes oxidative stress and altered DNA methylation that persists for decades in peripheral blood mononuclear cells, but these changes from smoking have not been evaluated in the context of AML. We hypothesize that smoking-induced molecular changes, including altered DNA methylation associated with poor AML prognosis, promote AML. We developed a novel model to …
Non-Photic Mechanisms Of Entrainment In Bmal1 Deficient Conditions, Jamie Tran
Non-Photic Mechanisms Of Entrainment In Bmal1 Deficient Conditions, Jamie Tran
Dissertations and Theses (Open Access)
Maintaining our internal circadian (i.e. 24 -hour) clock is imperative to our daily biological and mental well-being. Large epidemiological studies have shown that disruptions of our circadian rhythms can lead to poor mental health, metabolic diseases, and various types of cancer. Various external cues that have become a part of the modern times such as electricity, shift -work, rapid travel across various time zones, easier access to nutritionally unbalanced food items, and various rigid social demands have deleterious effects on our internal clock, and generally reduce robustness of the circadian clock. The two following projects aim to examine two fundamental …
The Roles Of Epithelial–Mesenchymal Plasticity In Tumor Heterogeneity, Metastasis, And Patient Survival In Breast Cancer, Meredith Septer Brown
The Roles Of Epithelial–Mesenchymal Plasticity In Tumor Heterogeneity, Metastasis, And Patient Survival In Breast Cancer, Meredith Septer Brown
Dartmouth College Ph.D Dissertations
The Epithelial-to-Mesenchymal transition, a critical cellular process in development, is frequently co-opted by solid tumors to promote invasion and metastasis. In particular, the hybrid or intermediate EMT state, possessing both epithelial and mesenchymal characteristics, is associated with increased cancer stemness and plasticity. Similarly, intra-tumoral heterogeneity in solid tumors, in particular breast cancer, is associated with poor prognosis, tumor growth, proliferation, drug resistance, and metastasis. We sought to understand the link between the generation of intra-tumoral heterogeneity and the intermediate EMT state and their impact on tumor progression and patient prognosis. As part of my thesis work, I developed a model …
Trends In Utilization Of Human Papillomavirus Vaccines And The Incidence Of Malignant Cervical Cancer In The U.S. Population: A Secondary Analysis, Myah Luna, Soumya Upadhyay
Trends In Utilization Of Human Papillomavirus Vaccines And The Incidence Of Malignant Cervical Cancer In The U.S. Population: A Secondary Analysis, Myah Luna, Soumya Upadhyay
Healthcare Administration and Policy Faculty Research
Background: Human papillomavirus (HPV) is a sexually transmitted infection, and HPV types 16 and 18 are responsible for approximately 66% of all U.S. cervical cancer cases in women. The quadrivalent HPV vaccine was licensed in mid-2006, and it was designed to target and protect against HPV types 6, 11, 16, and 18. The aim of this study is to examine the utilization rate of the HPV vaccine, and the trends and incidence rate of malignant cervical cancer across the United States. Methods: This study utilized data from Surveillance, Epidemiology, and End Results (SEER) and the National Immunization Survey's (NIS) teenage …
Combined Curcumin And Luteolin Synergistically Inhibit Colon Cancer Associated With Notch1 And Tgf-Β Signaling Pathways In Cultured Cells And Xenograft Mice, Rukayat Aromokeye, Hongwei Si
Combined Curcumin And Luteolin Synergistically Inhibit Colon Cancer Associated With Notch1 And Tgf-Β Signaling Pathways In Cultured Cells And Xenograft Mice, Rukayat Aromokeye, Hongwei Si
Human Sciences Faculty Research
This study aimed to select a combination of curcumin and luteolin, two phytochemicals from food, at lower concentrations with a higher inhibitory effect on colon cancer growth and investigate possible molecular mechanisms of this anti-colon cancer effect. By pairwise combination screening, we identified that the combination of curcumin (CUR) at 15 μM and luteolin (LUT) at 30 μM (C15L30) synergistically suppressed the proliferation of human colon cancer CL-188 cells, but the individual chemicals had a little inhibitory effect at the selected concentrations. This result was also confirmed in other colon cancer DLD-1cells, suggesting that this synergistic inhibitory effect of C15L30 …
Complex Role Of Microbiome In Pancreatic Tumorigenesis: Potential Therapeutic Implications, Suneetha Amara, Li V. Yang, Venkataswarup Tiriveedhi, Mahvish Muzaffar
Complex Role Of Microbiome In Pancreatic Tumorigenesis: Potential Therapeutic Implications, Suneetha Amara, Li V. Yang, Venkataswarup Tiriveedhi, Mahvish Muzaffar
Biology Faculty Research
Pancreatic cancer (PC) is the fourth leading cause of cancer-related mortality with limited diagnostic and therapeutic options. Although immunotherapy has shown promise in the treatment of several cancers, its role in pancreatic cancer is rather limited. Several studies have focused on determining the role of the tumor microenvironment with cancer-cell-intrinsic events and tumor-infiltrating immune cellular properties. However, in the past decade, there has been emerging research aimed at delineating the role of the host microbiome, including the metabolites from microbes and host responses, on pancreatic tumorigenesis. Importantly, there is emerging evidence suggesting the beneficial role of a gut microbiome transplant …
Low-Salt Diet Reduces Anti-Ctla4 Mediated Systemic Immune-Related Adverse Events While Retaining Therapeutic Efficacy Against Breast Cancer, Durga Khandekar, Debolanle O. Dahunsi, Isaac V. Manzanera Esteve, Sonya Reid, Jeffrey C. Rathmell, Jens M. Titze, Venkataswarup Tiriveedhi
Low-Salt Diet Reduces Anti-Ctla4 Mediated Systemic Immune-Related Adverse Events While Retaining Therapeutic Efficacy Against Breast Cancer, Durga Khandekar, Debolanle O. Dahunsi, Isaac V. Manzanera Esteve, Sonya Reid, Jeffrey C. Rathmell, Jens M. Titze, Venkataswarup Tiriveedhi
Biology Faculty Research
Immune checkpoint inhibitor (ICI) therapy has revolutionized the breast cancer treatment landscape. However, ICI-induced systemic inflammatory immune-related adverse events (irAE) remain a major clinical challenge. Previous studies in our laboratory and others have demonstrated that a high-salt (HS) diet induces inflammatory activation of CD4+T cells leading to anti-tumor responses. In our current communication, we analyzed the impact of dietary salt modification on therapeutic and systemic outcomes in breast-tumor-bearing mice following anti-cytotoxic T-lymphocyte-associated protein 4 (CTLA4) monoclonal antibody (mAb) based ICI therapy. As HS diet and anti-CTLA4 mAb both exert pro-inflammatory activation of CD4+T cells, we hypothesized that a combination of …
Cytotoxic Activity Of Non-Specific Lipid Transfer Protein (Nsltp1) From Ajwain (Trachyspermum Ammi) Seeds, Saud O. Alshammari, Taibah Aldakhil, Qamar A. Alshammari, David Salehi, Aftab Ahmed
Cytotoxic Activity Of Non-Specific Lipid Transfer Protein (Nsltp1) From Ajwain (Trachyspermum Ammi) Seeds, Saud O. Alshammari, Taibah Aldakhil, Qamar A. Alshammari, David Salehi, Aftab Ahmed
Pharmacy Faculty Articles and Research
Background
Trachyspermum ammi, commonly known as Ajwain, is a member of the Apiaceae family. It is a therapeutic herbal spice with diverse pharmacological properties, used in traditional medicine for various ailments. However, all previous studies were conducted using small molecule extracts, leaving the protein’s bioactivity undiscovered.
Aim
The current study aimed to demonstrate the cytotoxic activity of Ajwain non-specific lipid transfer protein (nsLTP1) in normal breast (MCF10A), breast cancer (MCF-7), and pancreatic cancer (AsPC-1) cell lines. Also, to evaluate its structural stability in human serum as well as at high temperature conditions.
Methods
The cytotoxic activity of Ajwain nsLTP1 was …
Microbial Experience Increases Cytotoxicity Of Tumor-Infiltrating Cd8+ T Cells And Controls Tumor Growth, Nicholas Aaron Bunda
Microbial Experience Increases Cytotoxicity Of Tumor-Infiltrating Cd8+ T Cells And Controls Tumor Growth, Nicholas Aaron Bunda
Masters Theses
Cancer immunotherapy research is traditionally conducted with specific pathogen-free (SPF) mice, which most accurately mimic the immune system of a human newborn. This makes translational research challenging, as this mouse model is not an accurate reflection of the adult patients who ultimately receive newly developed treatments. It is necessary to further develop a mouse model that bridges this gap and increases translatability of current cancer immunotherapy research.
By cohousing specific pathogen-free mice with regular pet store (PS) mice, we have generated a cohoused (CoH) mouse that reflects the microbial experience of an adult human immune system. We investigated antigen experience, …
Activation Of P53-Regulated Pro-Survival Signals And Hypoxia-Independent Mitochondrial Targeting Of Tigar By E6 Oncoproteins Of High-Risk Hpvs, Lacin Yapindi
Biological Sciences Theses and Dissertations
The high-risk human papillomaviruses are small, non-enveloped double-stranded DNA viruses that infect the basal epithelial keratinocytes. The majority of HPV infections are self-limiting and asymptomatic; however, in 2-4% of all infected individuals, persistent infections with high-risk HPVs lead to malignancies, including head-and-neck cancers and anogenital carcinomas, particularly cervical cancers. The HPV life cycle is strongly tied to the normal differentiation process of the epithelial tissue. Upon cell entry, the viral genome is maintained as episomal DNA within the nuclei of HPV-infected basal keratinocytes and amplified to a low copy number as the cells divide. As a part of the self-renewing …
A Small Peptide Increases Drug Delivery In Human Melanoma Cells, Shirley Tong, Shaban Darwish, Hanieh Hossein Nejad Ariani, Kate Alison Lozada, David Salehi, Maris A. Cinelli, Richard B. Silverman, Kamaljit Kaur, Sun Yang
A Small Peptide Increases Drug Delivery In Human Melanoma Cells, Shirley Tong, Shaban Darwish, Hanieh Hossein Nejad Ariani, Kate Alison Lozada, David Salehi, Maris A. Cinelli, Richard B. Silverman, Kamaljit Kaur, Sun Yang
Pharmacy Faculty Articles and Research
Melanoma is the most fatal type of skin cancer and is notoriously resistant to chemotherapies. The response of melanoma to current treatments is difficult to predict. To combat these challenges, in this study, we utilize a small peptide to increase drug delivery to melanoma cells. A peptide library array was designed and screened using a peptide array-whole cell binding assay, which identified KK-11 as a novel human melanoma-targeting peptide. The peptide and its D-amino acid substituted analogue (VPWxEPAYQrFL or D-aa KK-11) were synthesized via a solid-phase strategy. Further studies using FITC-labeled KK-11 demonstrated dose-dependent uptake in human melanoma cells. D-aa …
Targeting Androgen Receptor On Glioblastoma, Nan Zhao
Targeting Androgen Receptor On Glioblastoma, Nan Zhao
Theses & Dissertations
Glioblastoma (GBM) is the most aggressive primary brain malignancy. The standard treatment of this tumor is surgery, followed by radiation with concurrent and adjuvant temozolomide. GBM cancer stem cells (CSCs) have been proposed to be responsible for radioresistance. It is necessary to identify novel therapeutic agent(s) that can pass the blood-brain barrier (BBB) and enhance radiation effects. Targeting the androgen receptor (AR) is promising in treating glioblastoma (GBM) in cell culture, and flank implant models but the mechanisms remain unclear. AR antagonists, including enzalutamide, are available for treating prostate cancer patients in the clinic and can pass the BBB; thus, …
Visceral Adipose Tissue Remodeling In Pancreatic Ductal Adenocarcinoma Cachexia: The Role Of Activin A Signaling, Pauline Xu
Theses & Dissertations
Pancreatic ductal adenocarcinoma (PDAC) is currently the third leading cause of cancer death in the United States and is projected to become the second leading cause by the year 2030. Prognosis for patients with metastatic disease remains dismal, with cachexia as a main contributor to the low survival rate. Emerging reports indicate that PDAC patients display distinct phenotypes of cachexia development, with either adipose tissue loss preceding skeletal muscle wasting or loss of only adipose tissue. While muscle wasting has been the most frequently studied mechanism in cachexia research, changes in adipose tissue are increasingly understood as important components of …
Evaluating Targets And Therapeutics For The Treatment Of Pancreatic Cancer, Shelby M. Knoche
Evaluating Targets And Therapeutics For The Treatment Of Pancreatic Cancer, Shelby M. Knoche
Theses & Dissertations
Pancreatic cancer has a dismally low survival rate, due to inadequate understanding of the processes that are involved in disease development and progression. Despite the identification of oncogenic drivers such as KRAS and p53, there is a need for the identification of molecular targets to improve and develop novel therapeutic approaches for the treatment of pancreatic cancer. Studies from our laboratory have identified and evaluated targets and therapeutic approaches that can aid in our understanding of pancreatic cancer disease progression and improve patient outcomes. Through the use of epidermal growth factor receptor (EGFR) ligands (EGF and TGF-α) and small molecule …
Phos-Tag-Based Screens Identify Novel Therapeutic Targets In Ovarian Cancer And Pancreatic Cancer, Renya Zeng
Phos-Tag-Based Screens Identify Novel Therapeutic Targets In Ovarian Cancer And Pancreatic Cancer, Renya Zeng
Theses & Dissertations
Multiple Phos-tag-based screens were conducted in anti-tubulin drug (paclitaxel and nocodazole)-treated cells to explore novel targets implicated in cell cycle regulation, resistance against paclitaxel, and yes-associated protein (YAP) nucleocytoplasmic transport. The Phos-tag-based screen of protein kinases identified that several proteins were degraded or phosphorylated in response to anti-tubulin drug treatment. A tyrosine kinase, fibroblast growth factor receptor 4 (FGFR4), was significantly degraded upon anti-tubulin drug treatment, suggesting its potential role in cell response to paclitaxel. Further functional investigations identified that FGFR4 mediated paclitaxel resistance in ovarian cancer, and specific inhibitors targeting FGFR4 could sensitize ovarian cancer cells to paclitaxel. Mechanistically, …
Characterization Of 1,1-Diarylethylene Foxm1 Inhibitors Against High-Grade Serous Ovarian Carcinoma Cells, Cassie Liu
Characterization Of 1,1-Diarylethylene Foxm1 Inhibitors Against High-Grade Serous Ovarian Carcinoma Cells, Cassie Liu
Theses & Dissertations
Forkhead box M1 (FOXM1) is a member of the conserved forkhead box (FOX) transcription factor family. Over the last two decades, FOXM1 has emerged as a multifunctional oncoprotein and a robust biomarker of poor prognosis in many human malignancies. FOXM1 and its associated oncogenic transcriptional signature are enriched in >85% of ovarian cancer cases, and FOXM1 expression and activity can be enhanced by a plethora of genomic, transcriptional, post-transcriptional, and post-translational mechanisms. As a master transcriptional regulator, FOXM1 promotes critical oncogenic phenotypes in ovarian cancer, including: (1) cell proliferation, (2) invasion and metastasis, (3) chemotherapy resistance, (4) cancer stem cell …
Sox2 Dosage Governs Tumor Cell Identity And Proliferation, Ethan P. Metz
Sox2 Dosage Governs Tumor Cell Identity And Proliferation, Ethan P. Metz
Theses & Dissertations
The stem cell transcription factor SOX2 has been widely recognized for its critical roles during mammalian development. SOX2 expression has also been implicated in more than 20 types of human cancers. Importantly, the expression of SOX2 is regulated at multiple levels, which enables the tight regulation of SOX2 levels. Previous work from our laboratory has shown that elevating SOX2 from an inducible promoter inhibits the proliferation of several human tumor cell types. Other studies have reported that high levels of SOX2 are necessary to maintain lineage plasticity in advanced tumors. Thus, the dosage of SOX2 plays a critical role in …