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Articles 91 - 120 of 155
Full-Text Articles in Medical Toxicology
Redox-Mediated And Ionizing-Radiation-Induced Inflammatory Mediators In Prostate Cancer Development And Treatment, Lu Miao, Aaron K. Holley, Yanming Zhao, William H. St. Clair, Daret K. St. Clair
Redox-Mediated And Ionizing-Radiation-Induced Inflammatory Mediators In Prostate Cancer Development And Treatment, Lu Miao, Aaron K. Holley, Yanming Zhao, William H. St. Clair, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
SIGNIFICANCE: Radiation therapy is widely used for treatment of prostate cancer. Radiation can directly damage biologically important molecules; however, most effects of radiation-mediated cell killing are derived from the generated free radicals that alter cellular redox status. Multiple proinflammatory mediators can also influence redox status in irradiated cells and the surrounding microenvironment, thereby affecting prostate cancer progression and radiotherapy efficiency.
RECENT ADVANCES: Ionizing radiation (IR)-generated oxidative stress can regulate and be regulated by the production of proinflammatory mediators. Depending on the type and stage of the prostate cancer cells, these proinflammatory mediators may lead to different biological consequences ranging from …
Fused In Sarcoma Is A Novel Regulator Of Manganese Superoxide Dismutase Gene Transcription, Sanjit Kumar Dhar, Jiayu Zhang, Jozsef Gal, Yong Xu, Lu Miao, Bert C. Lynn, Haining Zhu, Edward J. Kasarskis, Daret K. St. Clair
Fused In Sarcoma Is A Novel Regulator Of Manganese Superoxide Dismutase Gene Transcription, Sanjit Kumar Dhar, Jiayu Zhang, Jozsef Gal, Yong Xu, Lu Miao, Bert C. Lynn, Haining Zhu, Edward J. Kasarskis, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
AIMS: FUsed in sarcoma (FUS) is a multifunctional DNA/RNA-binding protein that possesses diverse roles, such as RNA splicing, RNA transport, DNA repair, translation, and transcription. The network of enzymes and processes regulated by FUS is far from being fully described. In this study, we have focused on the mechanisms of FUS-regulated manganese superoxide dismutase (MnSOD) gene transcription.
RESULTS: Here we demonstrate that FUS is a component of the transcription complex that regulates the expression of MnSOD. Overexpression of FUS increased MnSOD expression in a dose-dependent manner and knockdown of FUS by siRNA led to the inhibition of MnSOD gene transcription. …
Redox-Modulated Phenomena And Radiation Therapy: The Central Role Of Superoxide Dismutases, Aaron K. Holley, Lu Miao, Yanming Zhao, Daret K. St. Clair, William H. St. Clair
Redox-Modulated Phenomena And Radiation Therapy: The Central Role Of Superoxide Dismutases, Aaron K. Holley, Lu Miao, Yanming Zhao, Daret K. St. Clair, William H. St. Clair
Toxicology and Cancer Biology Faculty Publications
SIGNIFICANCE: Ionizing radiation is a vital component in the oncologist's arsenal for the treatment of cancer. Approximately 50% of all cancer patients will receive some form of radiation therapy as part of their treatment regimen. DNA is considered the major cellular target of ionizing radiation and can be damaged directly by radiation or indirectly through reactive oxygen species (ROS) formed from the radiolysis of water, enzyme-mediated ROS production, and ROS resulting from altered aerobic metabolism.
RECENT ADVANCES: ROS are produced as a byproduct of oxygen metabolism, and superoxide dismutases (SODs) are the chief scavengers. ROS contribute to the radioresponsiveness of …
Nuclear Interaction Between Adr-Induced P65 And P53 Mediates Cardiac Injury In Inos (−/−) Mice, Marsha P. Cole, Jitbanjong Tangpong, Terry D. Oberley, Luksana Chaiswing, Kinsley K. Kiningham, Daret K. St. Clair
Nuclear Interaction Between Adr-Induced P65 And P53 Mediates Cardiac Injury In Inos (−/−) Mice, Marsha P. Cole, Jitbanjong Tangpong, Terry D. Oberley, Luksana Chaiswing, Kinsley K. Kiningham, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
Adriamycin (ADR) treatment causes an imbalance in the levels of nitric oxide (•NO) and superoxide (O2•−) production leading to cardiac injury. Previously we demonstrated that mice lacking inducible nitric oxide synthase (iNOS) have increased oxidative stress and mitochondrial injury. The molecular events leading to increased mitochondrial injury in iNOS deficient mice is unknown. ADR in the absence of iNOS preferentially activates a proapoptotic pathway without a concurrent increase in prosurvival pathways. Treatment with ADR leads to an increase in DNA binding activity of nuclear factor kappa B (NFκB) and p53 in wildtype mice. Following ADR …
Repair Of Oxidative Dna Damage And Cancer: Recent Progress In Dna Base Excision Repair, Timothy L. Scott, Suganya Rangaswamy, Christina A. Wicker, Tadahide Izumi
Repair Of Oxidative Dna Damage And Cancer: Recent Progress In Dna Base Excision Repair, Timothy L. Scott, Suganya Rangaswamy, Christina A. Wicker, Tadahide Izumi
Toxicology and Cancer Biology Faculty Publications
SIGNIFICANCE: Reactive oxygen species (ROS) are generated by exogenous and environmental genotoxins, but also arise from mitochondria as byproducts of respiration in the body. ROS generate DNA damage of which pathological consequence, including cancer is well established. Research efforts are intense to understand the mechanism of DNA base excision repair, the primary mechanism to protect cells from genotoxicity caused by ROS.
RECENT ADVANCES: In addition to the notion that oxidative DNA damage causes transformation of cells, recent studies have revealed how the mitochondrial deficiencies and ROS generation alter cell growth during the cancer transformation.
CRITICAL ISSUES: The emphasis of this …
Ether Bridge Formation In Loline Alkaloid Biosynthesis, Juan Pan, Minakshi Bhardwaj, Jerome Ralph Faulkner, Padmaja Nagabhyru, Nikki D. Charlton, Richard M. Higashi, Anne-Frances Miller, Carolyn A Young, Robert B. Grossman, Christopher L. Schardl
Ether Bridge Formation In Loline Alkaloid Biosynthesis, Juan Pan, Minakshi Bhardwaj, Jerome Ralph Faulkner, Padmaja Nagabhyru, Nikki D. Charlton, Richard M. Higashi, Anne-Frances Miller, Carolyn A Young, Robert B. Grossman, Christopher L. Schardl
Toxicology and Cancer Biology Faculty Publications
Lolines are potent insecticidal agents produced by endophytic fungi of cool-season grasses. These alkaloids are composed of a pyrrolizidine ring system and an uncommon ether bridge linking carbons 2 and 7. Previous results indicated that 1-aminopyrrolizidine was a pathway intermediate. We used RNA interference to knock down expression of lolO, resulting in the accumulation of an alkaloid identified as exo-1-acetamidopyrrolizidine based on high-resolution MS and NMR. Genomes of endophytes differing in alkaloid profiles were sequenced, revealing that those with mutated lolO accumulated exo-1-acetamidopyrrolizidine but no lolines. Heterologous expression of wild-type lolO complemented a lolO mutant, resulting in …
Intramolecular Telomeric G-Quadruplexes Dramatically Inhibit Dna Synthesis By Replicative And Translesion Polymerases, Revealing Their Potential To Lead To Genetic Change, Deanna N. Edwards, Amrita Machwe, Zhigang Wang, David K. Orren
Intramolecular Telomeric G-Quadruplexes Dramatically Inhibit Dna Synthesis By Replicative And Translesion Polymerases, Revealing Their Potential To Lead To Genetic Change, Deanna N. Edwards, Amrita Machwe, Zhigang Wang, David K. Orren
Toxicology and Cancer Biology Faculty Publications
Recent research indicates that hundreds of thousands of G-rich sequences within the human genome have the potential to form secondary structures known as G-quadruplexes. Telomeric regions, consisting of long arrays of TTAGGG/AATCCC repeats, are among the most likely areas in which these structures might form. Since G-quadruplexes assemble from certain G-rich single-stranded sequences, they might arise when duplex DNA is unwound such as during replication. Coincidentally, these bulky structures when present in the DNA template might also hinder the action of DNA polymerases. In this study, single-stranded telomeric templates with the potential to form G-quadruplexes were examined for their effects …
Paracrine Apoptotic Effect Of P53 Mediated By Tumor Suppressor Par-4, Ravshan Burikhanov, Tripti Shrestha-Bhattarai, Nikhil Hebbar, Shirley Qiu, Yanming Zhao, Gerard P. Zambetti, Vivek M. Rangnekar
Paracrine Apoptotic Effect Of P53 Mediated By Tumor Suppressor Par-4, Ravshan Burikhanov, Tripti Shrestha-Bhattarai, Nikhil Hebbar, Shirley Qiu, Yanming Zhao, Gerard P. Zambetti, Vivek M. Rangnekar
Radiation Medicine Faculty Publications
The guardian of the genome, p53, is often mutated in cancer and may contribute to therapeutic resistance. Given that p53 is intact and functional in normal tissues, we harnessed its potential to inhibit the growth of p53-deficient cancer cells. Specific activation of p53 in normal fibroblasts selectively induced apoptosis in p53-deficient cancer cells. This paracrine effect was mediated by p53-dependent secretion of the tumor suppressor Par-4. Accordingly, the activation of p53 in normal mice, but not p53−/− or Par-4−/− mice, caused systemic elevation of Par-4, which induced apoptosis of p53-deficient tumor cells. Mechanistically, p53 …
Strand Exchange Of Telomeric Dna Catalyzed By The Werner Syndrome Protein (Wrn) Is Specifically Stimulated By Trf2, Deanna Edwards, David K. Orren, Amrita Machwe
Strand Exchange Of Telomeric Dna Catalyzed By The Werner Syndrome Protein (Wrn) Is Specifically Stimulated By Trf2, Deanna Edwards, David K. Orren, Amrita Machwe
Toxicology and Cancer Biology Faculty Publications
Werner syndrome (WS), caused by loss of function of the RecQ helicase WRN, is a hereditary disease characterized by premature aging and elevated cancer incidence. WRN has DNA binding, exonuclease, ATPase, helicase and strand annealing activities, suggesting possible roles in recombination-related processes. Evidence indicates that WRN deficiency causes telomeric abnormalities that likely underlie early onset of aging phenotypes in WS. Furthermore, TRF2, a protein essential for telomere protection, interacts with WRN and influences its basic helicase and exonuclease activities. However, these studies provided little insight into WRN's specific function at telomeres. Here, we explored the possibility that WRN and TRF2 …
Mismatch Repair Genes Mlh1 And Mlh3 Modify Cag Instability In Huntington's Disease Mice: Genome-Wide And Candidate Approaches, Ricardo Mouro Pinto, Ella Dragileva, Andrew Kirby, Alejandro Lloret, Edith Lopez, Jason St. Claire, Gagan B. Panigrahi, Caixia Hou, Kim Holloway, Tammy Gillis, Jolene R. Guide, Paula E. Cohen, Guo-Min Li, Christopher E. Pearson, Mark J. Daly, Vanessa C. Wheeler
Mismatch Repair Genes Mlh1 And Mlh3 Modify Cag Instability In Huntington's Disease Mice: Genome-Wide And Candidate Approaches, Ricardo Mouro Pinto, Ella Dragileva, Andrew Kirby, Alejandro Lloret, Edith Lopez, Jason St. Claire, Gagan B. Panigrahi, Caixia Hou, Kim Holloway, Tammy Gillis, Jolene R. Guide, Paula E. Cohen, Guo-Min Li, Christopher E. Pearson, Mark J. Daly, Vanessa C. Wheeler
Toxicology and Cancer Biology Faculty Publications
The Huntington's disease gene (HTT) CAG repeat mutation undergoes somatic expansion that correlates with pathogenesis. Modifiers of somatic expansion may therefore provide routes for therapies targeting the underlying mutation, an approach that is likely applicable to other trinucleotide repeat diseases. Huntington's disease Hdh(Q111) mice exhibit higher levels of somatic HTT CAG expansion on a C57BL/6 genetic background (B6.Hdh(Q111) ) than on a 129 background (129.Hdh(Q111) ). Linkage mapping in (B6x129).Hdh(Q111) F2 intercross animals identified a single quantitative trait locus underlying the strain-specific difference in expansion in the striatum, implicating mismatch repair (MMR) gene Mlh1 as the most likely candidate modifier. …
Proteomic Analysis Of Mismatch Repair-Mediated Alkylating Agent-Induced Dna Damage Response, Xi Chen, Yong Zhao, Guo-Min Li, Lin Guo
Proteomic Analysis Of Mismatch Repair-Mediated Alkylating Agent-Induced Dna Damage Response, Xi Chen, Yong Zhao, Guo-Min Li, Lin Guo
Toxicology and Cancer Biology Faculty Publications
BACKGROUND: Mediating DNA damage-induced apoptosis is an important genome-maintenance function of the mismatch repair (MMR) system. Defects in MMR not only cause carcinogenesis, but also render cancer cells highly resistant to chemotherapeutics, including alkylating agents. To understand the mechanisms of MMR-mediated apoptosis and MMR-deficiency-caused drug resistance, we analyze a model alkylating agent (N-methyl-N’-nitro-N-nitrosoguanidine, MNNG)-induced changes in protein phosphorylation and abundance in two cell lines, the MMR-proficient TK6 and its derivative MMR-deficient MT1.
RESULTS: Under an experimental condition that MNNG-induced apoptosis was only observed in MutSα-proficient (TK6), but not in MutSα-deficient (MT1) cells, quantitative analysis …
Metal-Based Nanoparticle Interactions With The Nervous System: The Challenge Of Brain Entry And The Risk Of Retention In The Organism, Robert A. Yokel, Eric A. Grulke, Robert C. Macphail
Metal-Based Nanoparticle Interactions With The Nervous System: The Challenge Of Brain Entry And The Risk Of Retention In The Organism, Robert A. Yokel, Eric A. Grulke, Robert C. Macphail
Pharmaceutical Sciences Faculty Publications
This review of metal-based nanoparticles focuses on factors influencing their distribution into the nervous system, evidence they enter brain parenchyma, and nervous system responses. Gold is emphasized as a model metal-based nanoparticle and for risk assessment in the companion review. The anatomy and physiology of the nervous system, basics of colloid chemistry, and environmental factors that influence what cells see are reviewed to provide background on the biological, physical–chemical, and internal milieu factors that influence nervous system nanoparticle uptake. The results of literature searches reveal little nanoparticle research included the nervous system, which about equally involved in vitro and in …
Protection Of Dietary Polyphenols Against Oral Cancer, Yijian Ding, Hua Yao, Yanan Yao, Leonard Yenwong Fai, Zhuo Zhang
Protection Of Dietary Polyphenols Against Oral Cancer, Yijian Ding, Hua Yao, Yanan Yao, Leonard Yenwong Fai, Zhuo Zhang
Toxicology and Cancer Biology Faculty Publications
Oral cancer represents a health burden worldwide with approximate 275,000 new cases diagnosed annually. Its poor prognosis is due to local tumor invasion and frequent lymph node metastasis. Better understanding and development of novel treatments and chemo-preventive approaches for the preventive and therapeutic intervention of this type of cancer are necessary. Recent development of dietary polyphenols as cancer preventives and therapeutic agents is of great interest due to their antioxidant and anti-carcinogenic activities. Polyphenols may inhibit carcinogenesis in the stage of initiation, promotion, or progression. In particular, dietary polyphenols decrease incidence of carcinomas and exert protection against oral cancer by …
Dynamic Functions Of Rhoa In Tumor Cell Migration And Invasion, Kathleen L. O'Connor, Min Chen
Dynamic Functions Of Rhoa In Tumor Cell Migration And Invasion, Kathleen L. O'Connor, Min Chen
Markey Cancer Center Faculty Publications
RhoA is one of the more extensively studied members of the Rho family of small GTPase where it is most readily recognized for its contributions to actin-myosin contractility and stress fiber formation. Accordingly, RhoA function during cell migration has been relegated to the rear of the cell where it mediates retraction of the trailing edge. However, RhoA can also mediate membrane ruffling, lamellae formation and membrane blebbing, thus suggesting an active role in membrane protrusions at the leading edge. With the advent of fluorescence resonance energy transfer (FRET)-based Rho activity reporters, RhoA has been shown to be active at the …
Uv Radiation And The Skin, John A. D'Orazio, Stuart G. Jarrett, Alexandra Amaro-Ortiz, Timothy Scott
Uv Radiation And The Skin, John A. D'Orazio, Stuart G. Jarrett, Alexandra Amaro-Ortiz, Timothy Scott
Toxicology and Cancer Biology Faculty Publications
UV radiation (UV) is classified as a "complete carcinogen" because it is both a mutagen and a non-specific damaging agent and has properties of both a tumor initiator and a tumor promoter. In environmental abundance, UV is the most important modifiable risk factor for skin cancer and many other environmentally-influenced skin disorders. However, UV also benefits human health by mediating natural synthesis of vitamin D and endorphins in the skin, therefore UV has complex and mixed effects on human health. Nonetheless, excessive exposure to UV carries profound health risks, including atrophy, pigmentary changes, wrinkling and malignancy. UV is epidemiologically and …
Loss Of Fbp1 By Snail-Mediated Repression Provides Metabolic Advantages In Basal-Like Breast Cancer, Chenfang Dong, Tingting Yuan, Yadi Wu, Yifan Wang, Teresa W-M Fan, Sumitra Miriyala, Yiwei Lin, Jun Yao, Jian Shi, Tiebang Kang, Pawel Lorkiewicz, Daret St. Clair, Mien-Chie Hung, B. Mark Evers, Binhua P. Zhou
Loss Of Fbp1 By Snail-Mediated Repression Provides Metabolic Advantages In Basal-Like Breast Cancer, Chenfang Dong, Tingting Yuan, Yadi Wu, Yifan Wang, Teresa W-M Fan, Sumitra Miriyala, Yiwei Lin, Jun Yao, Jian Shi, Tiebang Kang, Pawel Lorkiewicz, Daret St. Clair, Mien-Chie Hung, B. Mark Evers, Binhua P. Zhou
Toxicology and Cancer Biology Faculty Publications
The epithelial-mesenchymal transition (EMT) enhances cancer invasiveness and confers tumor cells with cancer stem cell (CSC)-like characteristics. We show that the Snail-G9a-Dnmt1 complex, which is critical for E-cadherin promoter silencing, is also required for the promoter methylation of fructose-1,6-biphosphatase (FBP1) in basal-like breast cancer (BLBC). Loss of FBP1 induces glycolysis and results in increased glucose uptake, macromolecule biosynthesis, formation of tetrameric PKM2, and maintenance of ATP production under hypoxia. Loss of FBP1 also inhibits oxygen consumption and reactive oxygen species production by suppressing mitochondrial complex I activity; this metabolic reprogramming results in an increased CSC-like property and tumorigenicity by enhancing …
Multifactorial Modulation Of The Blood-Brain Barrier: Relationship To Stroke, Bei Zhang
Multifactorial Modulation Of The Blood-Brain Barrier: Relationship To Stroke, Bei Zhang
Theses and Dissertations--Nutritional Sciences
The blood-brain barrier (BBB) is a dynamic interface, mainly consisting of highly specialized brain microvascular endothelial cells (BMECs) that segregate the central nervous system (CNS) from the peripheral circulation. Impairment of the BBB, due to disruption of tight junction (TJ) proteins and inflammatory responses, may initiate and/or contribute to the progress of CNS disorders, including stroke. Stroke is the second leading cause of death worldwide. It has been shown that aging and environmental pollutants can induce brain endothelium dysfunction, and are considered as risk factors for stroke.
Deficiency of telomerase is highly linked with aging-associated vascular diseases. Evidence indicates that …
Effects Of Cellular Heterogeneity And Immune Cells In Angiotensin Ii-Infused Hemorrhaged Ascending Aortas, Kyung Sik Jung
Effects Of Cellular Heterogeneity And Immune Cells In Angiotensin Ii-Infused Hemorrhaged Ascending Aortas, Kyung Sik Jung
Theses and Dissertations--Toxicology and Cancer Biology
A previous thoracic aortic aneurysm time course study from our laboratory determined that ascending aortic dilation was significantly increased by day 5, and reached a plateau by day 28 of angiotensin II (AngII) infusion. We also found that mice had hemorrhage localized to the ascending aortas by day 5 of AngII infusion. The purpose of these studies was to provide mechanistic insight into the development of AngII-induced ascending aortic hemorrhage.
Male C57BL/6 mice fed normal diet were subcutaneously infused with either AngII (1000 ng/kg/min) or saline for 5 days. To examine cellular heterogeneity, hemorrhaged ascending aortas were collected and sectioned …
Luteolin Inhibits Human Prostate Tumor Growth By Suppressing Vascular Endothelial Growth Factor Receptor 2-Mediated Angiogenesis, Poyil Pratheeshkumar, Young-Ok Son, Amit Budhraja, Xin Wang, Songze Ding, Lei Wang, Andrew Hitron, Jeong-Chae Lee, Donghern Kim, Sasidharan Padmaja Divya, Gang Chen, Zhuo Zhang, Jia Luo, Xianglin Shi
Luteolin Inhibits Human Prostate Tumor Growth By Suppressing Vascular Endothelial Growth Factor Receptor 2-Mediated Angiogenesis, Poyil Pratheeshkumar, Young-Ok Son, Amit Budhraja, Xin Wang, Songze Ding, Lei Wang, Andrew Hitron, Jeong-Chae Lee, Donghern Kim, Sasidharan Padmaja Divya, Gang Chen, Zhuo Zhang, Jia Luo, Xianglin Shi
Toxicology and Cancer Biology Faculty Publications
Angiogenesis, the formation of new blood vessels from pre-existing vascular beds, is essential for tumor growth, invasion, and metastasis. Luteolin is a common dietary flavonoid found in fruits and vegetables. We studied the antiangiogenic activity of luteolin using in vitro, ex vivo, and in vivo models. In vitro studies using rat aortic ring assay showed that luteolin at non-toxic concentrations significantly inhibited microvessel sprouting and proliferation, migration, invasion and tube formation of endothelial cells, which are key events in the process of angiogenesis. Luteolin also inhibited ex vivo angiogenesis as revealed by chicken egg chorioallantoic membrane assay (CAM) …
Lack Of P53 Affects The Expression Of Several Brain Mitochondrial Proteins: Insights From Proteomics Into Important Pathways Regulated By P53, Ada Fiorini, Rukhsana Sultana, Eugenio Barone, Giovanna Cenini, Marzia Perluigi, Cesare Mancuso, Jian Cai, Jon B. Klein, Daret K. St. Clair, D. Allan Butterfield
Lack Of P53 Affects The Expression Of Several Brain Mitochondrial Proteins: Insights From Proteomics Into Important Pathways Regulated By P53, Ada Fiorini, Rukhsana Sultana, Eugenio Barone, Giovanna Cenini, Marzia Perluigi, Cesare Mancuso, Jian Cai, Jon B. Klein, Daret K. St. Clair, D. Allan Butterfield
Chemistry Faculty Publications
The tumor suppressor protein p53 has been described "as the guardian of the genome" for its crucial role in regulating the transcription of numerous genes responsible for cells cycle arrest, senescence, or apoptosis in response to various stress signals. Although p53 promotes longevity by decreasing the risk of cancer through activation of apoptosis or cellular senescence, several findings suggest that an increase of its activity may have deleterious effects leading to selected aspects of the aging phenotype and neurodegenerative diseases. There is the link between p53 and oxidative stress, the latter a crucial factor that contributes to neurodegenerative processes like …
Nadph Oxidase 4 Mediates Insulin-Stimulated Hif-1Α And Vegf Expression, And Angiogenesis In Vitro, Dan Meng, Aihong Mei, Junxu Liu, Xueling Kang, Xianglin Shi, Ruizhe Qian, Sifeng Chen
Nadph Oxidase 4 Mediates Insulin-Stimulated Hif-1Α And Vegf Expression, And Angiogenesis In Vitro, Dan Meng, Aihong Mei, Junxu Liu, Xueling Kang, Xianglin Shi, Ruizhe Qian, Sifeng Chen
Toxicology and Cancer Biology Faculty Publications
Acute intensive insulin therapy causes a transient worsening of diabetic retinopathy in type 1 diabetes patients and is related to VEGF expression. Reactive oxygen species (ROS) have been shown to be involved in HIF-1α and VEGF expression induced by insulin, but the role of specific ROS sources has not been fully elucidated. In this study we examined the role of NADPH oxidase subunit 4 (Nox4) in insulin-stimulated HIF-1α and VEGF expression, and angiogenic responses in human microvascular endothelial cells (HMVECs). Here we demonstrate that knockdown of Nox4 by siRNA reduced insulin-stimulated ROS generation, the tyrosine phosphorylation of IR-β and IRS-1, …
Quercetin Inhibits Angiogenesis Mediated Human Prostate Tumor Growth By Targeting Vegfr- 2 Regulated Akt/Mtor/P70s6k Signaling Pathways, Poyil Pratheeshkumar, Amit Budhraja, Young-Ok Son, Xin Wang, Zhuo Zhang, Songze Ding, Lei Wang, Andrew Hitron, Jeong-Chae Lee, Mei Xu, Gang Chen, Jia Luo, Xianglin Shi
Quercetin Inhibits Angiogenesis Mediated Human Prostate Tumor Growth By Targeting Vegfr- 2 Regulated Akt/Mtor/P70s6k Signaling Pathways, Poyil Pratheeshkumar, Amit Budhraja, Young-Ok Son, Xin Wang, Zhuo Zhang, Songze Ding, Lei Wang, Andrew Hitron, Jeong-Chae Lee, Mei Xu, Gang Chen, Jia Luo, Xianglin Shi
Toxicology and Cancer Biology Faculty Publications
Angiogenesis is a crucial step in the growth and metastasis of cancers, since it enables the growing tumor to receive oxygen and nutrients. Cancer prevention using natural products has become an integral part of cancer control. We studied the antiangiogenic activity of quercetin using ex vivo, in vivo and in vitro models. Rat aortic ring assay showed that quercetin at non-toxic concentrations significantly inhibited microvessel sprouting and exhibited a significant inhibition in the proliferation, migration, invasion and tube formation of endothelial cells, which are key events in the process of angiogenesis. Most importantly, quercetin treatment inhibited ex vivo angiogenesis …
Inverse Relationship Between Psa And Il-8 In Prostate Cancer: An Insight Into A Nf-Κb-Mediated Mechanism, Yong Xu, Daret K. St. Clair, Fang Fang, William H. St. Clair
Inverse Relationship Between Psa And Il-8 In Prostate Cancer: An Insight Into A Nf-Κb-Mediated Mechanism, Yong Xu, Daret K. St. Clair, Fang Fang, William H. St. Clair
Toxicology and Cancer Biology Faculty Publications
Background: Prostate specific antigen (PSA) is traditionally used as an indicator for the presence of prostate cancer (PCa) and radiotherapy is generally used to treat inoperable and locally advanced PCa. However, how cellular PSA level is associated with sensitivity of PCa to radiotherapy is unknown. The previous finding that the RelB-based NF-κB alternative pathway differentially regulates PSA and interleukin-8 (IL-8) in aggressive PCa has directed our attention to the role of RelB in the response of PCa to radiotherapy.
Methodology/Principal Findings: RelB and its targets PSA and IL-8 in PCa cells were manipulated by ectopic expression in PCa …
Ex Vivo And In Vivo Methods And Related Compositions For Generating Hematopoietic Stem Cell Populations, Gary Van Zant, Ying Liang
Ex Vivo And In Vivo Methods And Related Compositions For Generating Hematopoietic Stem Cell Populations, Gary Van Zant, Ying Liang
Toxicology and Cancer Biology Faculty Patents
Various embodiments provide methods and related compositions for increasing the population size of hematopoietic stem cells (HSCs) in patients that may benefit from reconstitution of stem cells and/or differentiated cells of the blood lineage. The present methods enable the production of HSCs ex vivo and in vivo by reducing latexin expression and/or latexin activity within HSC exposed to various antagonists. Inhibition of latexin expression and/or latexin activity by various antagonists can promote HSC proliferation and/or inhibit HSC apoptosis. Antagonists that can reduce latexin expression and/or latexin activity can be utilized to regenerate endogenous HSCs within patients affected with disorders, diseases, …
Mnsod And Autophagy In Prevention Of Oxidative Mitochondrial Injuries Induced By Uvb In Murine Skin, Vasudevan Bakthavatchalu
Mnsod And Autophagy In Prevention Of Oxidative Mitochondrial Injuries Induced By Uvb In Murine Skin, Vasudevan Bakthavatchalu
Theses and Dissertations--Toxicology and Cancer Biology
UVB radiation is a known environmental carcinogen that causes DNA damage and increase ROS generation in mitochondria. Accumulating evidence suggests that mtDNA damage and increased ROS generation trigger mitochondrial translocation of p53. Within mitochondria, p53 interacts with nucleoid macromolecular complexes such as mitochondrial antioxidant MnSOD, mitochondrial DNA polymerase Polγ, and mtDNA. Mitochondria are considered to be a potential source for damage-associated molecular patterns (DAMPs) such as mtDNA, cytochrome C, ATP, and formyl peptides. Intracytoplasmic release of DAMPs can trigger inflammasome formation and programmed cell death processes. Autophagic clearance of mitochondria with compromised integrity can inhibit inflammatory and cell death processes. …
Novel Mechanism Leading To Mismatch Repair Deficiency And Mutator Phenotype, Janice Ortega Rodríguez
Novel Mechanism Leading To Mismatch Repair Deficiency And Mutator Phenotype, Janice Ortega Rodríguez
Theses and Dissertations--Toxicology and Cancer Biology
DNA mismatch repair (MMR) is a critical genome-maintenance system. It ensures genome stability by correcting mismatches generated during DNA replication, suppressing homologous recombination, and inducing apoptosis in response to severe DNA damage. As a result, defects in MMR lead to genome-wide mutations and susceptibility to both hereditary and sporadic cancer syndromes. The hallmark of cancer cells defective in MMR is their ability to display frequent instability in simple repetitive DNA sequences, a phenomenon called microsatellite instability (MSI). However, only ~70% of the MSI-positive tumors have identifiable MMR gene mutations, indicating that additional factor(s) are responsible for the MSI phenotype in …
Physiological And Toxicological Roles Of Abc Transporters In Cellular Efflux Of Substrates, Donna J. Coy
Physiological And Toxicological Roles Of Abc Transporters In Cellular Efflux Of Substrates, Donna J. Coy
Theses and Dissertations--Toxicology and Cancer Biology
ATP-binding cassette (ABC) transporters are transmembrane proteins that transport a wide variety of substrates across intra and extra-cellular membranes. A few examples of endo and xenobiotic substrates are metabolic products, lipids, sterols, and drugs. An important function of ABC transporters involved in export is to prevent intracellular the buildup of toxic products. Several ABC transporters have also been associated with drug resistance upon treatment with chemotherapeutic agents. P-glycoprotein (P-GP) and the multidrug resistant (MRP) transporters of the ABC C family are examples of transporters that confer chemo-resistance.
We have studied two unique roles of ABC transporters in the liver and …
Manganese Superoxide Dismutase: Guardian Of The Powerhouse, Aaron K. Holley, Vasudevan Bakthavatchalu, Joyce M. Velez-Roman, Daret K. St. Clair
Manganese Superoxide Dismutase: Guardian Of The Powerhouse, Aaron K. Holley, Vasudevan Bakthavatchalu, Joyce M. Velez-Roman, Daret K. St. Clair
Toxicology and Cancer Biology Faculty Publications
The mitochondrion is vital for many metabolic pathways in the cell, contributing all or important constituent enzymes for diverse functions such as β-oxidation of fatty acids, the urea cycle, the citric acid cycle, and ATP synthesis. The mitochondrion is also a major site of reactive oxygen species (ROS) production in the cell. Aberrant production of mitochondrial ROS can have dramatic effects on cellular function, in part, due to oxidative modification of key metabolic proteins localized in the mitochondrion. The cell is equipped with myriad antioxidant enzyme systems to combat deleterious ROS production in mitochondria, with the mitochondrial antioxidant enzyme manganese …
Phenethyl Isothiocyanate Exhibits Antileukemic Activity In Vitro And In Vivo By Inactivation Of Akt And Activation Of Jnk Pathways, N. Gao, Amit Budhraja, S. Cheng, E.-H. Liu, J. Chen, Z. Yang, D. Chen, Zhuo Zhang, Xianglin Shi
Phenethyl Isothiocyanate Exhibits Antileukemic Activity In Vitro And In Vivo By Inactivation Of Akt And Activation Of Jnk Pathways, N. Gao, Amit Budhraja, S. Cheng, E.-H. Liu, J. Chen, Z. Yang, D. Chen, Zhuo Zhang, Xianglin Shi
Toxicology and Cancer Biology Faculty Publications
Effects of phenethyl isothiocyanate (PEITC) have been investigated in human leukemia cells (U937, Jurkat, and HL-60) as well as in primary human acute myeloid leukemia (AML) cells in relation to apoptosis and cell signaling events. Exposure of cells to PEITC resulted in pronounced increase in the activation of caspase-3, -8, -9, cleavage/degradation of PARP, and apoptosis in dose- and time-dependent manners. These events were accompanied by the caspase-independent downregulation of Mcl-1, inactivation of Akt, as well as activation of Jun N-terminal kinase (JNK). Inhibition of PI3K/Akt by LY294002 significantly enhanced PEITC-induced apoptosis. Conversely, enforced activation of Akt by a constitutively …
P53 Regulates Oxidative Stress-Mediated Retrograde Signaling: A Novel Mechanism For Chemotherapy-Induced Cardiac Injury, Joyce M. Velez, Sumitra Miriyala, Ramaneeya Nithipongvanitch, Teresa Noel, Chotiros D. Plabplueng, Terry Oberley, Paiboon Jungsuwadee, Holly Van Remmen, Mary Vore, Daret K. St Clair
P53 Regulates Oxidative Stress-Mediated Retrograde Signaling: A Novel Mechanism For Chemotherapy-Induced Cardiac Injury, Joyce M. Velez, Sumitra Miriyala, Ramaneeya Nithipongvanitch, Teresa Noel, Chotiros D. Plabplueng, Terry Oberley, Paiboon Jungsuwadee, Holly Van Remmen, Mary Vore, Daret K. St Clair
Toxicology and Cancer Biology Faculty Publications
The side effects of cancer therapy on normal tissues limit the success of therapy. Generation of reactive oxygen species (ROS) has been implicated for numerous chemotherapeutic agents including doxorubicin (DOX), a potent cancer chemotherapeutic drug. The production of ROS by DOX has been linked to DNA damage, nuclear translocation of p53, and mitochondrial injury; however, the causal relationship and molecular mechanisms underlying these events are unknown. The present study used wild-type (WT) and p53 homozygous knock-out (p53(-/-)) mice to investigate the role of p53 in the crosstalk between mitochondria and nucleus. Injecting mice with DOX (20 mg/kg) causes oxidative stress …