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Articles 1 - 30 of 68
Full-Text Articles in Medical Cell Biology
Single-Cell Transcriptomics Reveals Biomarker Heterogeneity Linked To Cdk4/6 Inhibitor Resistance In Breast Cancer Cell Lines, Ilenia Migliaccio, Martina Bonechi, Dario Romagnoli, Giulia Boccalini, Francesca Galardi, Cristina Guarducci, Agostina Nardone, Rachel Schiff, Laura Biganzoli, Luca Malorni, Matteo Benelli
Single-Cell Transcriptomics Reveals Biomarker Heterogeneity Linked To Cdk4/6 Inhibitor Resistance In Breast Cancer Cell Lines, Ilenia Migliaccio, Martina Bonechi, Dario Romagnoli, Giulia Boccalini, Francesca Galardi, Cristina Guarducci, Agostina Nardone, Rachel Schiff, Laura Biganzoli, Luca Malorni, Matteo Benelli
Faculty, Staff and Students Publications
Cyclin dependent kinases 4 and 6 inhibitors have brought great improvements in the treatment of luminal breast cancer, but resistance is a major clinical hurdle. Multiple biomarkers of resistance have been proposed, but none is currently utilized in clinical practice. By performing single-cell RNA sequencing of seven palbociclib-naïve luminal breast cancer cell lines and palbociclib-resistant derivatives, we show that established biomarkers and pathways related to CDK4/6i resistance present marked intra- and inter- cell-line heterogeneity. Transcriptional features of resistance could be already observed in naïve cells correlating with levels of sensitivity (IC50) to palbociclib. Resistant derivatives showed transcriptional clusters that significantly …
Developing A Small Molecule To Inhibit Hsf1 Expression In Cancer And Evaluating Natural Genetic Variation In Small Molecule Toxicity., Michaela Kendal Foley
Developing A Small Molecule To Inhibit Hsf1 Expression In Cancer And Evaluating Natural Genetic Variation In Small Molecule Toxicity., Michaela Kendal Foley
Theses and Dissertations
Each year cancer affects nearly 20 million people worldwide and genetic differences across populations can impact cancer onset and progression. Specifically, tumors with high levels of HSF1, the master regulator of the cytoprotective heat shock response (HSR), are correlated with poor patient outcomes in multiple cancers such as prostate, breast, and melanoma. Subsequently, the development of pharmacological inhibitors of HSF1 represents a promising strategy for anticancer therapeutics. Using a luciferase-based transcriptional reporter, two small molecule libraries were screened for inhibitors of HSF1 expression in human embryonic kidney cells, yielding ten compounds that decrease HSF1 expression. To identify if cancer lines …
Uterine Pgrmc2 Deficiency Attenuates Endometrial Hyperplasia And Cancer And Prolongs Lifespan In A Pten Loss-Of-Function-Induced Cancer Model, Nicole C Kelp, Cindy A Pru, Sandeep Paudel, John P Lydon, J Julie Kim, John J Peluso, James K Pru
Uterine Pgrmc2 Deficiency Attenuates Endometrial Hyperplasia And Cancer And Prolongs Lifespan In A Pten Loss-Of-Function-Induced Cancer Model, Nicole C Kelp, Cindy A Pru, Sandeep Paudel, John P Lydon, J Julie Kim, John J Peluso, James K Pru
Faculty, Staff and Students Publications
The expression of members of the progesterone receptor membrane component (PGRMC) family, particularly PGRMC1, is elevated in diverse types of cancers, particularly those of the female reproductive system. While xenograft tumor studies using human transformed cell lines in immunocompromised mice have suggested that PGRMC1 enhances tumor growth and chemoresistance, the exact role of members of the PGRMC family in cancer development in vivo remains unclear. In this study, we examined the effect of deleting Pgrmc2 on the development of endometrial hyperplasia and cancer using a murine phosphatase and tensin homologue (Pten) conditional loss-of-function model. We previously established that …
Invasion And Metastasis In Cancer: Molecular Insights And Therapeutic Targets, Yongxing Li, Fengshuo Liu, Qingjin Cai, Lijun Deng, Qin Ouyang, Xiang H-F Zhang, Ji Zheng
Invasion And Metastasis In Cancer: Molecular Insights And Therapeutic Targets, Yongxing Li, Fengshuo Liu, Qingjin Cai, Lijun Deng, Qin Ouyang, Xiang H-F Zhang, Ji Zheng
Faculty, Staff and Students Publications
The progression of malignant tumors leads to the development of secondary tumors in various organs, including bones, the brain, liver, and lungs. This metastatic process severely impacts the prognosis of patients, significantly affecting their quality of life and survival rates. Research efforts have consistently focused on the intricate mechanisms underlying this process and the corresponding clinical management strategies. Consequently, a comprehensive understanding of the biological foundations of tumor metastasis, identification of pivotal signaling pathways, and systematic evaluation of existing and emerging therapeutic strategies are paramount to enhancing the overall diagnostic and treatment capabilities for metastatic tumors. However, current research is …
Exosomal Galectin-3 Promotes Peritoneal Metastases In Gastric Adenocarcinoma Via Microenvironment Alterations, Yibo Fan, Shumei Song, Melissa Pool Pizzi, Gengyi Zou, Jody V Vykoukal, Katsuhiro Yoshimura, Jiankang Jin, George A Calin, Rebecca E Waters, Qiong Gan, Linghua Wang, Samir Hanash, Shilpa S Dhar, Jaffer A Ajani
Exosomal Galectin-3 Promotes Peritoneal Metastases In Gastric Adenocarcinoma Via Microenvironment Alterations, Yibo Fan, Shumei Song, Melissa Pool Pizzi, Gengyi Zou, Jody V Vykoukal, Katsuhiro Yoshimura, Jiankang Jin, George A Calin, Rebecca E Waters, Qiong Gan, Linghua Wang, Samir Hanash, Shilpa S Dhar, Jaffer A Ajani
Faculty, Staff and Student Publications
Peritoneal carcinomatosis (PC) in gastric adenocarcinoma (GAC) is the most common metastatic site and leads to a short median survival. Exosomes have been shown to remodel the microenvironment, facilitating tumor metastases. However, the functional component in GAC cell-derived exosomes that remodel the landscape in the peritoneal cavity remains unclear. To address this, we performed in-depth proteomic profiling of ascites-derived exosomes from patients with PC, and we found that Galectin-3 was highly enriched in exosomes derived from malignant ascites. exosomal Galectin-3 was the crucial regulator of PC. Blockage of exosomal Galectin-3 significantly inhibited tumor metastases and prolonged overall survival. Exosomal Galectin-3 …
Characterizing A Rad23 Dependent Ultraviolet Radiation Resistance In Tetrahymena Thermophila, Emma June Liimatta
Characterizing A Rad23 Dependent Ultraviolet Radiation Resistance In Tetrahymena Thermophila, Emma June Liimatta
Graduate Theses/Dissertations
In 2020, 10 million deaths were attributed to cancer, with multidrug resistance being responsible for over 90% of deaths in cancer patients receiving treatment. This study utilized the model organism Tetrahymena thermophila to study how cells become resistant to Ultraviolet Radiation (UV) radiation, a process similar to multidrug resistance, specifically focusing on the nucleotide excision repair and ubiquitin shuttle protein Rad23. The National Cancer Institute documented 30-60% of cancers tested had a mutation in RAD23. Knockdown of RAD23 in Tetrahymena thermophila demonstrated a UV resistance phenotype with decreased nucleotide excision repair and differential expression of proteins active within caspase-independent …
Facilitation Of Chemotherapy Efficacy Through Targeted Drug Delivery In Lung Cancer Cells Via Ultrasound And Implications On Health Interventions, Ibrahim Nasim
Honors Undergraduate Theses
Lung Cancer (small cell and non-small cell) is the leading cause of cancer death in the US, accounting for about 20% of all cancer deaths. Paclitaxel (PTX) is a chemotherapeutic agent commonly used to treat lung cancer. It works by slowing and stopping cancer growth by stiffening microtubules within cells, promoting mitotic halt and cell death. Carboplatin (CP) is another agent given to lung cancer patients containing platinum and works via direct damage of oncolytic DNA. The exact mechanism of how PTX and CP cause cell death is still an under-studied area. This thesis aims to provide insight into how …
Unraveling The Link Between Language Barriers And Cancer Risk, Eman A. Toraih, Mohammad H. Hussein, Manal S. Malik, Alaa N. Malik, Emad Kandil, Manal S. Fawzy
Unraveling The Link Between Language Barriers And Cancer Risk, Eman A. Toraih, Mohammad H. Hussein, Manal S. Malik, Alaa N. Malik, Emad Kandil, Manal S. Fawzy
School of Medicine Faculty Publications
Purpose: Clear patient communication with the physician is an integral aspect of cancer treatment and successful health outcomes. Previous research has shown improved cancer screening in cases of patient navigator assistance to limited English proficient patients, but no research has analyzed the relationship between language isolation and cancer incidence rates in the United States. Methods: Using state-level data from the United States Census Bureau and the National Cancer Institute, we analyzed the correlations between language isolation and age-adjusted incidence rates across 19 different invasive cancers. Results: A complex relationship between language isolation and cancer incidence rates was found. States such …
Mechanisms Of Extracellular Vesicle Uptake And Implications For The Design Of Cancer Therapeutics, Stephanie R Jackson Cullison, Joseph P Flemming, Kubra Karagoz, Peter J Wermuth, Mỹ G Mahoney
Mechanisms Of Extracellular Vesicle Uptake And Implications For The Design Of Cancer Therapeutics, Stephanie R Jackson Cullison, Joseph P Flemming, Kubra Karagoz, Peter J Wermuth, Mỹ G Mahoney
Rowan-Virtua School of Osteopathic Medicine Departmental Research
The translation of pre-clinical anti-cancer therapies to regulatory approval has been promising, but slower than hoped. While innovative and effective treatments continue to achieve or seek approval, setbacks are often attributed to a lack of efficacy, failure to achieve clinical endpoints, and dose-limiting toxicities. Successful efforts have been characterized by the development of therapeutics designed to specifically deliver optimal and effective dosing to tumour cells while minimizing off-target toxicity. Much effort has been devoted to the rational design and application of synthetic nanoparticles to serve as targeted therapeutic delivery vehicles. Several challenges to the successful application of this modality as …
The Transcription Factor Irf4 Determines The Anti-Tumor Immunity Of Cd8+ T Cells, Hui Yan, Yulin Dai, Xiaolong Zhang, Hedong Zhang, Xiang Xiao, Jinfei Fu, Dawei Zou, Anze Yu, Tao Jiang, Xian C Li, Zhongming Zhao, Wenhao Chen
The Transcription Factor Irf4 Determines The Anti-Tumor Immunity Of Cd8+ T Cells, Hui Yan, Yulin Dai, Xiaolong Zhang, Hedong Zhang, Xiang Xiao, Jinfei Fu, Dawei Zou, Anze Yu, Tao Jiang, Xian C Li, Zhongming Zhao, Wenhao Chen
Faculty, Staff and Student Publications
Understanding the factors that regulate T cell infiltration and functional states in solid tumors is crucial for advancing cancer immunotherapies. Here, we discovered that the expression of interferon regulatory factor 4 (IRF4) was a critical T cell intrinsic requirement for effective anti-tumor immunity. Mice with T-cell-specific ablation of IRF4 showed significantly reduced T cell tumor infiltration and function, resulting in accelerated growth of subcutaneous syngeneic tumors and allowing the growth of allogeneic tumors. Additionally, engineered overexpression of IRF4 in anti-tumor CD8+ T cells that were adoptively transferred significantly promoted their tumor infiltration and transition from a naive/memory-like cell state into …
Got Pidd1? Natural Killer Cells Clear Polyploid Cells To Ensure A Balanced Genome, Alexandra N Brown-Suedel, Lisa Bouchier-Hayes
Got Pidd1? Natural Killer Cells Clear Polyploid Cells To Ensure A Balanced Genome, Alexandra N Brown-Suedel, Lisa Bouchier-Hayes
Faculty, Staff and Students Publications
Removal of polyploid cells is essential to preventing cancer and restricting tumor growth. A new study published in The EMBO Journal shows assembly of the NEMO-PIDDosome on extra centrioles. Activation of this protein complex leads to NF-κB activation that, in turn, induces NK cell-mediated cell clearance.
Functional Analysis Reveals Driver Cooperativity And Novel Mechanisms In Endometrial Carcinogenesis, Matthew Brown, Alicia Leon, Katarzyna Kedzierska, Charlotte Moore, Hayley L Belnoue-Davis, Susanne Flach, John P Lydon, Francesco J Demayo, Annabelle Lewis, Tjalling Bosse, Ian Tomlinson, David N Church
Functional Analysis Reveals Driver Cooperativity And Novel Mechanisms In Endometrial Carcinogenesis, Matthew Brown, Alicia Leon, Katarzyna Kedzierska, Charlotte Moore, Hayley L Belnoue-Davis, Susanne Flach, John P Lydon, Francesco J Demayo, Annabelle Lewis, Tjalling Bosse, Ian Tomlinson, David N Church
Faculty, Staff and Students Publications
High-risk endometrial cancer has poor prognosis and is increasing in incidence. However, understanding of the molecular mechanisms which drive this disease is limited. We used genetically engineered mouse models (GEMM) to determine the functional consequences of missense and loss of function mutations in Fbxw7, Pten and Tp53, which collectively occur in nearly 90% of high-risk endometrial cancers. We show that Trp53 deletion and missense mutation cause different phenotypes, with the latter a substantially stronger driver of endometrial carcinogenesis. We also show that Fbxw7 missense mutation does not cause endometrial neoplasia on its own, but potently accelerates carcinogenesis caused by Pten …
Development Of Combination Therapy Strategies To Treat Cancer Using Dihydroorotate Dehydrogenase Inhibitors, Nicholas Mullen
Development Of Combination Therapy Strategies To Treat Cancer Using Dihydroorotate Dehydrogenase Inhibitors, Nicholas Mullen
Theses & Dissertations
Cancer cells require supraphysiologic levels of nucleotide triphosphates to fuel their malignant behaviors, including uncontrolled proliferation, immune evasion, metastasis, and therapy resistance. This requirement is met by hyperactive flux through the de novo pyrimidine and de novo purine pathways. Dihydroorotate dehydrogenase (DHODH) is an essential enzyme in the de novo pyrimidine pathway that can be targeted by FDA approved and experimental drug compounds. A robust body of preclinical evidence, encompassing hundreds of independent studies over several decades, demonstrates impressive activity of DHODH inhibitors in animal models of cancer. Paradoxically, however, all clinical trials to date have failed to demonstrate efficacy …
The Effects Of Radiation On Cancer Stem Cells In Glioblastoma And Ovarian Cancer, Aaron Keniston
The Effects Of Radiation On Cancer Stem Cells In Glioblastoma And Ovarian Cancer, Aaron Keniston
Electronic Theses, Projects, and Dissertations
High grade serous ovarian cancer (HGSOC) and glioblastoma multiforme (GBM) are some of the most aggressive forms of cancer with poor patient survival. Despite successful cancer therapies, these malignancies have high recurrence rates which can be attributed to cancer stem cells (CSC) due to innate tumor initiating properties. In this study, we investigated the response of CSC populations to proton and photon radiation by quantification of core stem cell transcription factors Sox2 and Oct4. This was carried out utilizing a Sox2/Oct4 green fluorescent protein based reporter designated as SORE6-GFP measured by flow cytometry. We hypothesize that proton and photon irradiation …
Myod Functions As An Oncogene In Rhabdomyosarcoma By Promoting Survival Through Differentiation And Cyld, Alexander Oles
Myod Functions As An Oncogene In Rhabdomyosarcoma By Promoting Survival Through Differentiation And Cyld, Alexander Oles
MUSC Theses and Dissertations
Rhabdomyosarcoma (RMS) is the most common soft tissue cancer among
children, characterized by a skeletal muscle lineage that is impaired from
undergoing terminal differentiation. NF-κB is constitutively active in cancer cells
and plays a critical role in cell survival. Although NF-κB is also activated in RMS,
surprisingly we find that these tumors are less dependent on NF-κB to overcome
stress-induced cell death. Instead, RMS cells survive by being partially
differentiated under the control of the myogenic transcription factor MyoD. Loss of
MyoD or cellular reprogramming dedifferentiates RMS tumor cells and promotes
cell death when exposed to stress. Further, use of …
Endothelial-To-Osteoblast Transition In Normal Mouse Bone Development, Song-Chang Lin, Guoyu Yu, Yu-Chen Lee, Jian H Song, Xingzhi Song, Jianhua Zhang, Theocharis Panaretakis, Christopher J Logothetis, Yoshihiro Komatsu, Li-Yuan Yu-Lee, Guocan Wang, Sue-Hwa Lin
Endothelial-To-Osteoblast Transition In Normal Mouse Bone Development, Song-Chang Lin, Guoyu Yu, Yu-Chen Lee, Jian H Song, Xingzhi Song, Jianhua Zhang, Theocharis Panaretakis, Christopher J Logothetis, Yoshihiro Komatsu, Li-Yuan Yu-Lee, Guocan Wang, Sue-Hwa Lin
Faculty, Staff and Student Publications
Metastatic prostate cancer (PCa) in bone induces bone-forming lesions. We have previously shown that PCa-induced bone originates from endothelial cells (ECs) that have undergone EC-to-osteoblast (OSB) transition. Here, we investigated whether EC-to-OSB transition also occurs during normal bone formation. We developed an EC and OSB dual-color reporter mouse (DRM) model that marks EC-OSB hybrid cells with red and green fluorescent proteins. We observed EC-to-OSB transition (RFP and GFP co-expression) in both endochondral and intramembranous bone formation during embryonic development and in adults. Co-expression was confirmed in cells isolated from DRM. Bone marrow– and lung-derived ECs underwent transition to OSBs and …
Editorial: Hallmark Of Cancer: Reprogramming Of Cellular Metabolism, Baljinder Kaur, Yahya Sohrabi, Abhinav Achreja, Michael P. Lisanti, Ubaldo Emilio Martinez-Outshoorn
Editorial: Hallmark Of Cancer: Reprogramming Of Cellular Metabolism, Baljinder Kaur, Yahya Sohrabi, Abhinav Achreja, Michael P. Lisanti, Ubaldo Emilio Martinez-Outshoorn
Department of Medical Oncology Faculty Papers
No abstract provided.
An Overview: The Diversified Role Of Mitochondria In Cancer Metabolism, Yu'e Liu, Yihong Sun, Yadong Guo, Xiaoyun Shi, Xi Chen, Wenfeng Feng, Lei-Lei Wu, Jin Zhang, Shibo Yu, Yi Wang, Yufeng Shi
An Overview: The Diversified Role Of Mitochondria In Cancer Metabolism, Yu'e Liu, Yihong Sun, Yadong Guo, Xiaoyun Shi, Xi Chen, Wenfeng Feng, Lei-Lei Wu, Jin Zhang, Shibo Yu, Yi Wang, Yufeng Shi
Faculty, Staff and Students Publications
Mitochondria are intracellular organelles involved in energy production, cell metabolism and cell signaling. They are essential not only in the process of ATP synthesis, lipid metabolism and nucleic acid metabolism, but also in tumor development and metastasis. Mutations in mtDNA are commonly found in cancer cells to promote the rewiring of bioenergetics and biosynthesis, various metabolites especially oncometabolites in mitochondria regulate tumor metabolism and progression. And mutation of enzymes in the TCA cycle leads to the unusual accumulation of certain metabolites and oncometabolites. Mitochondria have been demonstrated as the target for cancer treatment. Cancer cells rely on two main energy …
Hypoxia Regulates Vessel-Modifying Macrophages And Vice Versa In Tumors, Kayla Jo Steinberger
Hypoxia Regulates Vessel-Modifying Macrophages And Vice Versa In Tumors, Kayla Jo Steinberger
Graduate Theses, Dissertations, and Problem Reports (ETD)
Hypoxia, or low oxygen, is a common feature of solid tumors correlating with poor survival in cancer patients. Growing tumors need a blood supply to deliver oxygen. Tumors attempt to re-acquire oxygen by forming new blood vessels from nearby, pre-existing vessels, a process known as angiogenesis. Past treatments aimed at preventing this process yielded not only disappointing results in the clinic but sometimes worsened the patient’s prognosis making the tumor more hypoxic, emphasizing the urgent need for novel targets. In tumors, angiogenesis is notoriously dysfunctional resulting in leaky, under-perfused blood vessels which cannot adequately deliver oxygen and exacerbates hypoxia. Emerging …
Msdrp: A Deep Learning Model Based On Multisource Data For Predicting Drug Response, Haochen Zhao, Xiaoyu Zhang, Qichang Zhao, Yaohang Li, Jianxin Wang
Msdrp: A Deep Learning Model Based On Multisource Data For Predicting Drug Response, Haochen Zhao, Xiaoyu Zhang, Qichang Zhao, Yaohang Li, Jianxin Wang
Computer Science Faculty Publications
Motivation: Cancer heterogeneity drastically affects cancer therapeutic outcomes. Predicting drug response in vitro is expected to help formulate personalized therapy regimens. In recent years, several computational models based on machine learning and deep learning have been proposed to predict drug response in vitro. However, most of these methods capture drug features based on a single drug description (e.g. drug structure), without considering the relationships between drugs and biological entities (e.g. target, diseases, and side effects). Moreover, most of these methods collect features separately for drugs and cell lines but fail to consider the pairwise interactions between drugs and cell …
Anti-Cancer Mechanisms Of Action Of Therapeutic Alternating Electric Fields (Tumor Treating Fields [Ttfields]), Shadi Shams, Chirag B Patel
Anti-Cancer Mechanisms Of Action Of Therapeutic Alternating Electric Fields (Tumor Treating Fields [Ttfields]), Shadi Shams, Chirag B Patel
Faculty, Staff and Student Publications
Despite improved survival outcomes across many cancer types, the prognosis remains grim for certain solid organ cancers including glioblastoma and pancreatic cancer. Invariably in these cancers, the control achieved by time-limited interventions such as traditional surgical resection, radiation therapy, and chemotherapy is short-lived. A new form of anti-cancer therapy called therapeutic alternating electric fields (AEFs) or tumor treating fields (TTFields) has been shown, either by itself or in combination with chemotherapy, to have anti-cancer effects that translate to improved survival outcomes in patients. Although the pre-clinical and clinical data are promising, the mechanisms of TTFields are not fully elucidated. Many …
Detailing The Effects Of Cbd On Parp And Survivin Expression In Ewing Sarcoma, Tyler Carter
Detailing The Effects Of Cbd On Parp And Survivin Expression In Ewing Sarcoma, Tyler Carter
Theses
Ewing sarcoma (ES) is an aggressive pediatric bone cancer with low five-year survival rates, particularly with recurrent disease because ES often becomes resistant to chemotherapy in these recurrences. Cannabidiol (CBD) has been identified as a potentially promising therapeutic for patients with ES. In other cancer types, CBD has demonstrated effects on two major proteins that contribute to chemotherapy resistance. The first, Poly (ADP-ribose) Polymerase I (PARP1), is a DNA damage repair enzyme that is overexpressed in recurrent ES. Though chemotherapy induces DNA damage in these cancer cells, the high levels of PARP1 facilitate repair of the DNA, allowing the mutated …
Cyclase-Associated Protein 1 (Cap1) In Cyclic Adenosine Monophosphate (Camp) And Protein Kinase C (Pkc) Signals To Regulate Cancer Cell Functions, Lokesh Kalki Mani Sai Akana
Cyclase-Associated Protein 1 (Cap1) In Cyclic Adenosine Monophosphate (Camp) And Protein Kinase C (Pkc) Signals To Regulate Cancer Cell Functions, Lokesh Kalki Mani Sai Akana
Student Theses and Dissertations
Cyclase-Associated Protein 1 (CAP1) is an actin-regulating protein that promotes actin dynamics and is also involved in cell adhesion and proliferation as well as implicated in human cancers. We previously found that phosphorylation at the Ser307/Ser309 tandem regulatory site on CAP1 is critical for CAP1 functions in breast and pancreatic cancer cells. We silenced CAP1 through RNAi in HCT116 and SW480 colon cancer cells as confirmed in Western blotting. We have found that depletion of CAP1 led to reduced FAK (Focal Adhesion Kinase) activity and matrix adhesion in SW480 cells, while it stimulated FAK activity and cell adhesion in HCT116 …
Targeting Syndecan-1: New Opportunities In Cancer Therapy, Zecheng Yang, Shuaitong Chen, Haoqiang Ying, Wantong Yao
Targeting Syndecan-1: New Opportunities In Cancer Therapy, Zecheng Yang, Shuaitong Chen, Haoqiang Ying, Wantong Yao
Faculty, Staff and Student Publications
Syndecan-1 (SDC1, CD138) is one of the heparan sulfate proteoglycans and is essential for maintaining normal cell morphology, interacting with the extracellular and intracellular protein repertoire, as well as mediating signaling transduction upon environmental stimuli. The critical role of SDC1 in promoting tumorigenesis and metastasis has been increasingly recognized in various cancer types, implying a promising potential of utilizing SDC1 as a novel target for cancer therapy. This review summarizes the current knowledge on SDC1 structure and functions, including its role in tumor biology. We also discuss the highlights and limitations of current SDC1-targeted therapies as well as the obstacles …
The Future Of Targeted Kinase Inhibitors In Melanoma, Signe Caksa, Usman Baqai, A E Aplin
The Future Of Targeted Kinase Inhibitors In Melanoma, Signe Caksa, Usman Baqai, A E Aplin
Department of Cancer Biology Faculty Papers
Melanoma is a cancer of the pigment-producing cells of the body and its incidence is rising. Targeted inhibitors that act against kinases in the MAPK pathway are approved for BRAF-mutant metastatic cutaneous melanoma and increase patients' survival. Response to these therapies is limited by drug resistance and is less durable than with immune checkpoint inhibition. Conversely, rare melanoma subtypes have few therapeutic options for advanced disease and MAPK pathway targeting agents show minimal anti-tumor effects. Nevertheless, there is a future for targeted kinase inhibitors in melanoma: in new applications such as adjuvant or neoadjuvant therapy and in novel combinations with …
The Effects Of Paclitaxel On Cellular Migration And The Cytoskeleton, Ashley Salguero-Gonzalez
The Effects Of Paclitaxel On Cellular Migration And The Cytoskeleton, Ashley Salguero-Gonzalez
Thinking Matters Symposium
In a clinical setting, some patients are exposed to an anti-cancer chemotherapy agent, paclitaxel. Cancerous cells undergo rapid, continuous cell division without control. Chemotherapy treatments try to slow and stop the uncontrollable cell division cycles and eliminate cancerous cells in the process. Paclitaxel serves as a treatment for some types of cancers, including lung, melanoma, bladder, and esophageal. Because it targets the cytoskeleton, paclitaxel can also influence cell migration. This project utilizes a cellular migration assay and an immunohistochemistry assay to analyze the effects of paclitaxel on the movement of cells and on the cytoskeleton of neuroglia rat cells with …
Beth Levine's Legacy: From The Discovery Of Becn1 To Therapies A Mentees' Perspective, Zhenyi An, Wei-Chung Chiang, Álvaro F Fernández, Luis H Franco, Congcong He, Shu-Yi Huang, Eunmyong Lee, Yang Liu, Salwa Sebti, Sanae Shoji-Kawata, Shyam Sirasanagandla, Richard C Wang, Yongjie Wei, Yuting Zhao, Silvia Vega-Rubin-De-Celis
Beth Levine's Legacy: From The Discovery Of Becn1 To Therapies A Mentees' Perspective, Zhenyi An, Wei-Chung Chiang, Álvaro F Fernández, Luis H Franco, Congcong He, Shu-Yi Huang, Eunmyong Lee, Yang Liu, Salwa Sebti, Sanae Shoji-Kawata, Shyam Sirasanagandla, Richard C Wang, Yongjie Wei, Yuting Zhao, Silvia Vega-Rubin-De-Celis
Faculty, Staff and Student Publications
With great sadness, the scientific community received the news of the loss of Beth Levine on 15 June 2020. Dr. Levine was a pioneer in the autophagy field and work in her lab led not only to a better understanding of the molecular mechanisms regulating the pathway, but also its implications in multiple physiological and pathological conditions, including its role in development, host defense, tumorigenesis, aging or metabolism. This review does not aim to provide a comprehensive view of autophagy, but rather an outline of some of the discoveries made by the group of Beth Levine, from the perspective of …
Differentiating The Mechanistic Role And Chemotherapeutic Potential Of Src And Podoplanin In Oncogenic Transformation, Edward P. Retzbach
Differentiating The Mechanistic Role And Chemotherapeutic Potential Of Src And Podoplanin In Oncogenic Transformation, Edward P. Retzbach
Graduate School of Biomedical Sciences Theses and Dissertations
There were an estimated 20 million new cancer cases worldwide in 2020, resulting in nearly 1000 deaths per hour [1]. Oral cancer exemplifies the difficulties of treating cancer patients. The first line for oral cancer treatment is surgery and radiation that can lead to patient disfigurement and decreased quality of life in cancer survivors [2-4]. Though there have been many developments in chemotherapy in the last 30 years, the 50% mortality rate associated with oral cancer has not changed [4, 5]. Longitudinal studies that track survival rates in oral cancer patients demonstrate a 3-fold reduction in patient deaths when patients …
The Role Of Decorin And Biglycan Signaling In Tumorigenesis, Valentina Diehl, Lisa Sophie Huber, Jonel Trebicka, Malgorzata Wygrecka, Renato V. Iozzo, Liliana Schaefer
The Role Of Decorin And Biglycan Signaling In Tumorigenesis, Valentina Diehl, Lisa Sophie Huber, Jonel Trebicka, Malgorzata Wygrecka, Renato V. Iozzo, Liliana Schaefer
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
The complex and adaptive nature of malignant neoplasm constitute a major challenge for the development of effective anti-oncogenic therapies. Emerging evidence has uncovered the pivotal functions exerted by the small leucine-rich proteoglycans, decorin and biglycan, in affecting tumor growth and progression. In their soluble forms, decorin and biglycan act as powerful signaling molecules. By receptor-mediated signal transduction, both proteoglycans modulate key processes vital for tumor initiation and progression, such as autophagy, inflammation, cell-cycle, apoptosis, and angiogenesis. Despite of their structural homology, these two proteoglycans interact with distinct cell surface receptors and thus modulate distinct signaling pathways that ultimately affect cancer …
Inhibiting Fatty Acid Binding Protein Family Members Decreases Multiple Myeloma Cell Proliferation Through Effecting The Myc Pathway, Mariah Farrell, Heather Fairfield, Anastasia D'Amico, Carolyne Falank, Connor Murphy, Michaela Reagan
Inhibiting Fatty Acid Binding Protein Family Members Decreases Multiple Myeloma Cell Proliferation Through Effecting The Myc Pathway, Mariah Farrell, Heather Fairfield, Anastasia D'Amico, Carolyne Falank, Connor Murphy, Michaela Reagan
Costas T. Lambrew Research Retreat 2021
FABP inhibition leads to increased survival of myeloma bearing mice and decreased cell growth by inhibiting MYC signaling.