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1,818 full-text articles. Page 62 of 87.

Adipocytes Activate Mitochondrial Fatty Acid Oxidation And Autophagy To Promote Tumor Growth In Colon Cancer, Yang-An Wen, Xiaopeng Xing, Jennifer W. Harris, Yekaterina Y. Zaytseva, Mihail I. Mitov, Dana L. Napier, Heidi L. Weiss, B. Mark Evers, Tianyan Gao 2017 University of Kentucky

Adipocytes Activate Mitochondrial Fatty Acid Oxidation And Autophagy To Promote Tumor Growth In Colon Cancer, Yang-An Wen, Xiaopeng Xing, Jennifer W. Harris, Yekaterina Y. Zaytseva, Mihail I. Mitov, Dana L. Napier, Heidi L. Weiss, B. Mark Evers, Tianyan Gao

Markey Cancer Center Faculty Publications

Obesity has been associated with increased incidence and mortality of a wide variety of human cancers including colorectal cancer. However, the molecular mechanism by which adipocytes regulate the metabolism of colon cancer cells remains elusive. In this study, we showed that adipocytes isolated from adipose tissues of colon cancer patients have an important role in modulating cellular metabolism to support tumor growth and survival. Abundant adipocytes were found in close association with invasive tumor cells in colon cancer patients. Co-culture of adipocytes with colon cancer cells led to a transfer of free fatty acids that released from the adipocytes to …


Lipid Sensing By Mammalian Target Of Rapamycin, Deepak Menon 2017 CUNY Graduate Center

Lipid Sensing By Mammalian Target Of Rapamycin, Deepak Menon

Dissertations, Theses, and Capstone Projects

Mammalian target of Rapamycin (mTOR) is a protein kinase that integrates nutrient and growth factor signals to promote cellular growth and proliferation. mTOR exists in two complexes - mTORC1 and mTORC2 that are distinguished by their binding partners and signaling inputs. mTORC1 is responsive to growth factors, amino acids and glucose and is associated with Raptor; whereas, mTORC2 is responsive primarily to growth factors and is associated with Rictor. Raptor and Rictor confer substrate specificity to mTORC1 and mTORC2 respectively. Phosphatidic acid (PA), a lipid second messenger and a central metabolite for membrane phospholipid biosynthesis, is required for the stability …


Phlpp Regulates Hexokinase 2-Dependent Glucose Metabolism In Colon Cancer Cells, Xiaopeng Xiong, Yang-An Wen, Mihail I. Mitov, Mary C. Oaks, Shigeki Miyamoto, Tianyan Gao 2017 University of Kentucky

Phlpp Regulates Hexokinase 2-Dependent Glucose Metabolism In Colon Cancer Cells, Xiaopeng Xiong, Yang-An Wen, Mihail I. Mitov, Mary C. Oaks, Shigeki Miyamoto, Tianyan Gao

Markey Cancer Center Faculty Publications

Increased glucose metabolism is considered as one of the most important metabolic alterations adapted by cancer cells in order to generate energy as well as high levels of glycolytic intermediates to support rapid proliferation. PH domain leucine-rich repeat protein phosphatase (PHLPP) belongs to a novel family of Ser/Thr protein phosphatases that function as tumor suppressors in various types of human cancer. Here we determined the role of PHLPP in regulating glucose metabolism in colon cancer cells. Knockdown of PHLPP increased the rate of glucose consumption and lactate production, whereas overexpression of PHLPP had the opposite effect. Bioenergetic analysis using Seahorse …


Chloroquine-Inducible Par-4 Secretion Is Essential For Tumor Cell Apoptosis And Inhibition Of Metastasis, Ravshan Burikhanov, Nikhil Hebbar, Sunil K. Noothi, Nidhi Shukla, James Sledziona, Nathália Araujo, Meghana Kudrimoti, Qing Jun Wang, David S. Watt, Danny R. Welch, Jodi Maranchie, Akihiro Harada, Vivek M. Rangnekar 2017 University of Kentucky

Chloroquine-Inducible Par-4 Secretion Is Essential For Tumor Cell Apoptosis And Inhibition Of Metastasis, Ravshan Burikhanov, Nikhil Hebbar, Sunil K. Noothi, Nidhi Shukla, James Sledziona, Nathália Araujo, Meghana Kudrimoti, Qing Jun Wang, David S. Watt, Danny R. Welch, Jodi Maranchie, Akihiro Harada, Vivek M. Rangnekar

Radiation Medicine Faculty Publications

The induction of tumor suppressor proteins capable of cancer cell apoptosis represents an attractive option for the re-purposing of existing drugs. We report that the anti-malarial drug, chloroquine (CQ), is a robust inducer of Par-4 secretion from normal cells in mice and cancer patients in a clinical trial. CQ-inducible Par-4 secretion triggers paracrine apoptosis of cancer cells and also inhibits metastatic tumor growth. CQ induces Par-4 secretion via the classical secretory pathway that requires the activation of p53. Mechanistically, p53 directly induces Rab8b, a GTPase essential for vesicle transport of Par-4 to the plasma membrane prior to secretion. Our findings …


Yap Functions Via Tead Mediated Transcriptional Activation In Hepatoblastoma Pathogenesis, junyan tao 8598903, pin liu, jie zhang, sucha singh, xin chen, Na zhan, Satdarshan (Paul) Singh Monga 2017 ucsf

Yap Functions Via Tead Mediated Transcriptional Activation In Hepatoblastoma Pathogenesis, Junyan Tao 8598903, Pin Liu, Jie Zhang, Sucha Singh, Xin Chen, Na Zhan, Satdarshan (Paul) Singh Monga

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Survival Model Of Intrahepatic Cholangiocarcinoma; Sex As A Biological Variable, Mary A. Phillippi, Justin L. Mott, Cody J. Wehrkamp, Ying Xie, David Oupicky, Ashley M. Mohr, Bailey A. Stringham 2017 University of Nebraska Medical Center

Survival Model Of Intrahepatic Cholangiocarcinoma; Sex As A Biological Variable, Mary A. Phillippi, Justin L. Mott, Cody J. Wehrkamp, Ying Xie, David Oupicky, Ashley M. Mohr, Bailey A. Stringham

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Convergence Of Wnt/Beta-Catenin And Mtor Signaling In Liver Physiology And Hepatocellular Carcinoma, Adeola O. Adebayo Michael, Junyan Tao, Satdarshan P. Monga 2017 University of Pittsburgh

Convergence Of Wnt/Beta-Catenin And Mtor Signaling In Liver Physiology And Hepatocellular Carcinoma, Adeola O. Adebayo Michael, Junyan Tao, Satdarshan P. Monga

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Oncogenic Nelfe Enhances Myc-Induced Hepatocellular Carcinogenesis, Hien Dang, Atsushi Takai, Marshonna Forgues, Yosawat Pomyen, Haiwei Mou, Wen Xue, Debashish Ray, Kevn Ha, Quiad Morris, Timothy Hughes, Xin Wei Wang 2017 National Cancer Institute, Bethesda, United States

Oncogenic Nelfe Enhances Myc-Induced Hepatocellular Carcinogenesis, Hien Dang, Atsushi Takai, Marshonna Forgues, Yosawat Pomyen, Haiwei Mou, Wen Xue, Debashish Ray, Kevn Ha, Quiad Morris, Timothy Hughes, Xin Wei Wang

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Kruppel-Like Factor 2 In Cholangiocarcinoma, Cody J. Wehrkamp, Justin L. Mott 2017 University of Nebraska Medical Center

Kruppel-Like Factor 2 In Cholangiocarcinoma, Cody J. Wehrkamp, Justin L. Mott

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Brd4 Binds To Active Enhancers To Control Cell Identity Gene Induction In Adipogenesis And Myogenesis, Ji-Eun Lee, Young-Kwon Park, Sarah Park, Younghoon Jang, Nicholas Waring, Anup Dey, Keiko Ozato, Binbin Lai, Weiqun Peng, Kai Ge 2017 George Washington University

Brd4 Binds To Active Enhancers To Control Cell Identity Gene Induction In Adipogenesis And Myogenesis, Ji-Eun Lee, Young-Kwon Park, Sarah Park, Younghoon Jang, Nicholas Waring, Anup Dey, Keiko Ozato, Binbin Lai, Weiqun Peng, Kai Ge

Anatomy and Regenerative Biology Faculty Publications

The epigenomic reader Brd4 is an important drug target for cancers. However, its role in cell differentiation and animal development remains largely unclear. Using two conditional knockout mouse strains and derived cells, we demonstrate that Brd4 controls cell identity gene induction and is essential for adipogenesis and myogenesis. Brd4 co-localizes with lineage-determining transcription factors (LDTFs) on active enhancers during differentiation. LDTFs coordinate with H3K4 mono-methyltransferases MLL3/MLL4 (KMT2C/KMT2D) and H3K27 acetyltransferases CBP/p300 to recruit Brd4 to enhancers activated during differentiation. Brd4 deletion prevents the enrichment of Mediator and RNA polymerase II transcription machinery, but not that of LDTFs, MLL3/MLL4-mediated H3K4me1, and …


The Effect Of K562-Il21-2 Plasma Membrane Particles On The Proliferation Of Natural Killer Cells To Fight Cancer, Michelle Prophete 2017 University of Central Florida

The Effect Of K562-Il21-2 Plasma Membrane Particles On The Proliferation Of Natural Killer Cells To Fight Cancer, Michelle Prophete

Honors Undergraduate Theses

Immunotherapy has emerged as a current and future paradigm of cancer treatment, which utilizes the body’s immune system to eradicate cancer. Natural Killer (NK) cells as part of the innate immune system have immense potential in their anti-tumor cytotoxic activities and host cell surveillance properties. NK cells comprise approximately five to fifteen percent of peripheral blood lymphocytes and can be proliferated in vitro using recently developed methods with co-cultures with feeder cells (derived from engineered tumor cells) or plasma membrane (PM) particles, produced from the fore mentioned feeder cells, in combination with soluble cytokines. For efficient growth and maintenance of …


The Role Of Kinase Fusion Dnajb1-Prkaca In Fibrolamellar Hepatocellular Carcinoma, Yi Guo 2017 Mayo Clinic

The Role Of Kinase Fusion Dnajb1-Prkaca In Fibrolamellar Hepatocellular Carcinoma, Yi Guo

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Hepatocyte-Specific Deletion Of Tristetraprolin Family Of Rna Binding Proteins Result In The Development Of Hepatocellular Carcinomas, Sonika Patial 2017 Louisiana State University and Agricultural and Mechanical College

Hepatocyte-Specific Deletion Of Tristetraprolin Family Of Rna Binding Proteins Result In The Development Of Hepatocellular Carcinomas, Sonika Patial

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Characterization Of Malt1 Inhibitors And Their Effect On Leukemic Cell Growth Properties, Christina Snyder 2017 Rowan University

Characterization Of Malt1 Inhibitors And Their Effect On Leukemic Cell Growth Properties, Christina Snyder

Graduate School of Biomedical Sciences Theses and Dissertations

Leukemia is the most common childhood cancer, with a combined 40,000 predicted new cases in the United States in 2016 [8]. The two most common subtypes are acute myeloid leukemia (AML) and chronic lymphocytic leukemia (CLL) [9-11]. The commercially available inhibitor of Bruton’s tyrosine kinase (BTK) has shown promising results in clinical trials for CLL because of the importance of BCR signaling in CLL [12-15]. Recent studies suggest that the outgrowth of BTK inhibitor resistant clonal cells in some CLL patients results in a treatment-refractory phenotype [16-18]. MALT1, a protein involved in BCR activation of the NF-κB pathway that functions …


Ibrutinib In Combination With Sorafenib Synergistically Inhibits Proliferation And Survival Of Hepatocellular Carcinoma Cells By Targeting Egfr Signaling Pathway, Cho-Hao Lin, Nissar Wani, Khadija Elkholy, Kalpana Ghoshal 2017 The Ohio State University

Ibrutinib In Combination With Sorafenib Synergistically Inhibits Proliferation And Survival Of Hepatocellular Carcinoma Cells By Targeting Egfr Signaling Pathway, Cho-Hao Lin, Nissar Wani, Khadija Elkholy, Kalpana Ghoshal

Hepatobiliary Cancers: Pathobiology and Translational Advances

No abstract provided.


Development Of Cellular Assays To Monitor Enzymatic And Biological Activity Of Cd73: A Key Modulator Of Anti-Tumor Immune Response, Alexandra Fanuka 2017 Rowan University

Development Of Cellular Assays To Monitor Enzymatic And Biological Activity Of Cd73: A Key Modulator Of Anti-Tumor Immune Response, Alexandra Fanuka

Graduate School of Biomedical Sciences Theses and Dissertations

Ecto-5’-nucleotidase, known as CD73, is an extracellular enzyme that converts adenosine monophosphate (AMP) to adenosine and has recently been identified as a potential drug target for cancer immunotherapy. Its immunosuppressive effects, mediated by the activity of adenosine, are associated with higher rates of tumor invasion and metastasis, as well as poorer prognoses overall in many cancer types. CD73 is often co-expressed with ectonucleoside triphosphate diphosphohydrolase-1 (CD39), which catalyzes the conversion of adenosine triphosphate (ATP) to adenosine diphosphate (ADP), and ADP to AMP on the surface of tumor cells. Dual expression further propagates immunosuppressive effects of adenosine in the tumor microenvironment. …


Biomuta And Bioxpress: Mutation And Expression Knowledgebases For Cancer Biomarker Discovery, Hayley Dingerdissen, John Torcivia-Rodriguez, Yu Hu, Ting-Chia Chang, Raja Mazumder, Robel Kashay 2017 George Washington University

Biomuta And Bioxpress: Mutation And Expression Knowledgebases For Cancer Biomarker Discovery, Hayley Dingerdissen, John Torcivia-Rodriguez, Yu Hu, Ting-Chia Chang, Raja Mazumder, Robel Kashay

Biochemistry and Molecular Medicine Faculty Publications

Single-nucleotide variation and gene expression of disease samples represent important resources for biomarker discovery. Many databases have been built to host and make available such data to the community, but these databases are frequently limited in scope and/or content. BioMuta, a database of cancer-associated single-nucleotide variations, and BioXpress, a database of cancer-associated differentially expressed genes and microRNAs, differ from other disease-associated variation and expression databases primarily through the aggregation of data across many studies into a single source with a unified representation and annotation of functional attributes. Early versions of these resources were initiated by pilot funding for specific research …


Press-Pulse: A Novel Therapeutic Strategy For The Metabolic Management Of Cancer, Thomas Seyfried, George Yu, Joseph Maroon, Dominic D'Agostino 2017 George Washington University

Press-Pulse: A Novel Therapeutic Strategy For The Metabolic Management Of Cancer, Thomas Seyfried, George Yu, Joseph Maroon, Dominic D'Agostino

Urology Faculty Publications

Background

A shift from respiration to fermentation is a common metabolic hallmark of cancer cells. As a result, glucose and glutamine become the prime fuels for driving the dysregulated growth of tumors. The simultaneous occurrence of “Press-Pulse” disturbances was considered the mechanism responsible for reduction of organic populations during prior evolutionary epochs. Press disturbances produce chronic stress, while pulse disturbances produce acute stress on populations. It was only when both disturbances coincide that population reduction occurred.

Methods

This general concept can be applied to the management of cancer by creating chronic metabolic stresses on tumor cell energy metabolism (press disturbance) …


Therapeutic Potential Of Targeting Reactive Oxygen Species (Ros) Stress In Myelodysplastic Syndrome (Mds), Karine Z. Oben 2017 University of Kentucky

Therapeutic Potential Of Targeting Reactive Oxygen Species (Ros) Stress In Myelodysplastic Syndrome (Mds), Karine Z. Oben

Theses and Dissertations--Microbiology, Immunology, and Molecular Genetics

Myelodysplastic syndromes (MDS) are a diverse group of clonal hematologic disorders characterized by ineffective blood cell production (hematopoiesis), dysplastic (abnormal) cell morphology in one or more hematopoietic lineages, and progression to acute myeloid leukemia (AML). The response rate to current FDA approved therapies is low and not durable. Just about 50% of MDS patients respond to these drug therapies and a majority of responders relapse within 2-3 years. Hence there is a compelling need to investigate new therapy options.

We investigated the anticancer potential and possible underlying molecular mechanisms of action of a plant-derived compound, Withaferin A (WFA) in MDS. …


Engineered Peptides For Applications In Cancer-Targeted Drug Delivery And Tumor Detection, R. Soudy, N. Byeon, Y. Raghuwanshi, S. Ahmed, A. Lavasanifar, Kamaljit Kaur 2017 University of Alberta

Engineered Peptides For Applications In Cancer-Targeted Drug Delivery And Tumor Detection, R. Soudy, N. Byeon, Y. Raghuwanshi, S. Ahmed, A. Lavasanifar, Kamaljit Kaur

Pharmacy Faculty Articles and Research

Cancer-targeting peptides as ligands for targeted delivery of anticancer drugs or drug carriers have the potential to significantly enhance the selectivity and the therapeutic benefit of current chemotherapeutic agents. Identification of tumor-specific biomarkers like integrins, aminopeptidase N, and epidermal growth factor receptor as well as the popularity of phage display techniques along with synthetic combinatorial methods used for peptide design and structure optimization have fueled the advancement and application of peptide ligands for targeted drug delivery and tumor detection in cancer treatment, detection and guided therapy. Although considerable preclinical data have shown remarkable success in the use of tumor targeting …


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