Two Phase Model To Study The Correlation Between Brain Tumor Growth Rate And The Formation Of Peritumoral Edema,
2018
Florida State University
Two Phase Model To Study The Correlation Between Brain Tumor Growth Rate And The Formation Of Peritumoral Edema, Inmaculada Sorribes, Helen Byrne, Nicholas Moore, Harsh Jain
Biology and Medicine Through Mathematics Conference
No abstract provided.
Identification Of A Tola Protein Binding Site For Bacterial Toxins,
2018
Bowling Green State University
Identification Of A Tola Protein Binding Site For Bacterial Toxins, Monica Ferrante
Honors Projects
Group A colicins are proteinaceous bacteriocins encoded by plasmids that exploit the cellular envelope protein TolA to translocate the cell wall barrier and cellular envelope of the bacterium Escherichia coli. These colicins offer protocols for studying certain protein-protein interactions involved in such membrane transport functions. Previous experimentations suggest the carboxyl-terminal domain of TolA protein contains specific amino acid binding regions required for the translocation of group A colicins into E. coli. The amino acid sequence of this domain varies between E. coli and other gram-negative bacterial species. It has been suggested that this diversity could be utilized to …
Transcriptional Profiling Reveals Extraordinary Diversity Among Skeletal Muscle Tissues,
2018
Washington University in St. Louis
Transcriptional Profiling Reveals Extraordinary Diversity Among Skeletal Muscle Tissues, Erin E. Terry, Xiping Zhang, Christy Hoffmann, Laura D. Hughes, Scott A. Lewis, Jiajia Li, Matthew J. Wallace, Lance A. Riley, Collin M. Douglas, Miguel A. Gutierrez-Monreal, Nicholas F. Lahens, Ming C. Gong, Francisco H. Andrade, Karyn A. Esser, Michael E. Hughes
Physiology Faculty Publications
Skeletal muscle comprises a family of diverse tissues with highly specialized functions. Many acquired diseases, including HIV and COPD, affect specific muscles while sparing others. Even monogenic muscular dystrophies selectively affect certain muscle groups. These observations suggest that factors intrinsic to muscle tissues influence their resistance to disease. Nevertheless, most studies have not addressed transcriptional diversity among skeletal muscles. Here we use RNAseq to profile mRNA expression in skeletal, smooth, and cardiac muscle tissues from mice and rats. Our data set, MuscleDB, reveals extensive transcriptional diversity, with greater than 50% of transcripts differentially expressed among skeletal muscle tissues. We detect …
Disease-Linked Connexin26 S17f Promotes Volar Skin Abnormalities And Mild Wound Healing Defects In Mice (Vol. 8, E2845, 2017),
2018
The University of Western Ontario
Disease-Linked Connexin26 S17f Promotes Volar Skin Abnormalities And Mild Wound Healing Defects In Mice (Vol. 8, E2845, 2017), Eric R. Press, Katanya C. Alaga, Kevin Barr, Qing Shao, Felicitas Bosen, Klaus Willecke, Dale W. Laird
Anatomy and Cell Biology Publications
No abstract provided.
Perinatal Pb2+ Exposure Alters The Expression Of Genes Related To The Neurodevelopmental Gaba-Shift In Postnatal Rats,
2018
CUNY College of Staten Island
Perinatal Pb2+ Exposure Alters The Expression Of Genes Related To The Neurodevelopmental Gaba-Shift In Postnatal Rats, Lorenz Simon Neuwirth, Greg R. Phillips, Abdeslem El Idrissi
Publications and Research
Background: Lead (Pb2+) is an environmental neurotoxicant that disrupts neurodevelopment, communication, and organization through competition with Ca2+ signaling. How perinatal Pb2+ exposure affects Ca2+-related gene regulation remains unclear. However, Ca2+ activates the L-Type voltage sensitive calcium channel β-3 subunit (Ca-β3), which autoregulates neuronal excitability and plays a role in the GABA-shift from excitatory-toinhibitory neurotransmission.
Method: A total of eight females (n = 4 Control and n = 4 Perinatal) and four males (n = 2 Control and n = 2 Perinatal) rats were used as breeders to serve as Dams and Sires. The Dam’s litters each ranged from N = …
Visualizing Mutation-Specific Differences In The Trafficking-Deficient Phenotype Of Kv11.1 Proteins Linked To Long Qt Syndrome Type 2,
2018
University of Kentucky
Visualizing Mutation-Specific Differences In The Trafficking-Deficient Phenotype Of Kv11.1 Proteins Linked To Long Qt Syndrome Type 2, Allison R. Hall, Corey L. Anderson, Jennifer L. Smith, Tooraj Mirshahi, Samy-Claude Elayi, Craig T. January, Brian P. Delisle
Physiology Faculty Publications
KCNH2 encodes the Kv11.1 α-subunit that underlies the rapidly activating delayed-rectifier K+ current in the heart. Loss-of-function KCNH2 mutations cause long QT syndrome type 2 (LQT2), and most LQT2-linked missense mutations inhibit the trafficking of Kv11.1 channel protein to the cell surface membrane. Several trafficking-deficient LQT2 mutations (e.g., G601S) generate Kv11.1 proteins that are sequestered in a microtubule-dependent quality control (QC) compartment in the transitional endoplasmic reticulum (ER). We tested the hypothesis that the QC mechanisms that regulate LQT2-linked Kv11.1 protein trafficking are mutation-specific. Confocal imaging analyses of HEK293 cells stably expressing the trafficking-deficient LQT2 mutation F805C showed that, …
Lanthanide-Doped Ceria Nanoparticles As Backside Coaters To Improve Silicon Solar Cell Efficiency,
2018
Kuwait University
Lanthanide-Doped Ceria Nanoparticles As Backside Coaters To Improve Silicon Solar Cell Efficiency, Ali Hajjiah, Effat Samir, Nader Shehata, Mohamed Salah
Biology Faculty Publications
This paper introduces lanthanide-doped ceria nanoparticles as silicon solar cell back-side coaters, showing their influence on the solar cell efficiency. Ceria nanoparticles can be synthesized to have formed oxygen vacancies (O-vacancies), which are associated with converting cerium ions from the Ce4+ state ions to the Ce3+ ones. These O-vacancies follow the rule of improving silicon solar cell conductivity through a hopping mechanism. Besides, under near-ultra violet (near-UV) excitation, the reduced trivalent cerium Ce3+ ions are directly responsible for down converting the un-absorbed UV wavelengths to a resultant green photo-luminescence emission at ~520 nm, which is absorbed through …
Eukaryotic Translation Initiation Factor 4a Down-Regulation Mediates Interleukin-24-Induced Apoptosis Through Inhibition Of Translation,
2018
CUNY Graduate Center
Eukaryotic Translation Initiation Factor 4a Down-Regulation Mediates Interleukin-24-Induced Apoptosis Through Inhibition Of Translation, Xuelin Zhong, Leah Persaud, Hilal Muharam, Ashleigh Francis, Dibash Das, Bertal Huseyin Atkas, Moire Sauane
Publications and Research
Dysregulated activity of helicase eIF4A drives transformation to and maintenance of cancer cell phenotype by reprogramming cellular translation. Interleukin 24 (IL-24) is a tumor-suppressing protein, which has the ability to inhibit angiogenesis, sensitize cancer cells to chemotherapy, and induce cancer cell-specific apoptosis. In this study, we found that eIF4A is inhibited by IL-24. Consequently, selective reduction of translation was observed for mRNAs harboring strong secondary structures in their 50 -untranslated regions (50UTRs). These mRNAs encode proteins, which function in cell survival and proliferation. Consistently, overexpression of eIF4A conferred cancer cells with resistance to IL-24-induced cell death. It has been established …
Antioxidants And Cancer: Theories, Techniques, And Trials In Preventing Cancer,
2018
Universidad de Tarapacá
Antioxidants And Cancer: Theories, Techniques, And Trials In Preventing Cancer, Gloria M. Calaf, Francisco Aguayo, Consolato M. Sergi, Angeles Juarranz, Debasish Roy
Publications and Research
No abstract provided.
High Salt Induces P-Glycoprotein Mediated Treatment Resistance In Breast Cancer Cells Through Store Operated Calcium Influx,
2018
Tennessee State University
High Salt Induces P-Glycoprotein Mediated Treatment Resistance In Breast Cancer Cells Through Store Operated Calcium Influx, Duaa Babaer, Suneetha Amara, Michael Ivy, Yan Zhao, Philip E. Lammers, Jens M. Titze, Venkataswarup Tiriveedhi
Biology Faculty Research
Recent evidence from our laboratory has demonstrated that high salt (Δ0.05 M NaCl) induced inflammatory response and cancer cell proliferation through salt inducible kinase-3 (SIK3) upregulation. As calcium influx is known to effect inflammatory response and drug resistance, we examined the impact of high salt on calcium influx in breast cancer cells. Treatment of MCF-7 and MDA-MB-231 cells with high salt induced an enhanced intracellular calcium intensity, which was significantly decreased by store operated calcium entry (SOCE) inhibitor co-treatment. Further, high salt induced P-glycoprotein (P-gp) mediated paclitaxel drug resistance in breast cancer cells. Murine tumor studies demonstrated that injection of …
Examining The Roles Of Genetic And Environmental Factors In Drosophila Melanogaster Hematopoiesis And Innate Immune System,
2018
Baruch College
Examining The Roles Of Genetic And Environmental Factors In Drosophila Melanogaster Hematopoiesis And Innate Immune System, Minkyung Lee
Student Theses and Dissertations
Nearly 24 million people are affected by autoimmune diseases in the United States. Main causes of autoimmune diseases have been attributed to genetic predisposition and environmental exposure to chemicals such as hormones and pesticides. Due to the large population that are affected by autoimmune diseases, it is critical to understand the mechanisms behind them. In this study, we sought to explore both genetic and environmental factors that affect hematopoiesis, or the formation of specific blood cells, and immune system in Drosophila melanogaster. As Drosophila melanogaster have conserved pathways of hematopoiesis as humans, they were used as the model organism …
What We Do Not Know About Fungal Cell Adhesion Molecules,
2018
CUNY Brooklyn College
What We Do Not Know About Fungal Cell Adhesion Molecules, Peter N. Lipke
Publications and Research
There has been extensive research on structure and function of fungal cell adhesion molecules, but the most of the work has been about adhesins in Candida albicans and Saccharomyces cerevisiae. These yeasts are members of a single ascomycete order, and adhesion molecules from the six other fungal phyla are only sparsely described in the literature. In these other phyla, most of the research is at the cellular level, rather than at the molecular level, so there has been little characterization of the adhesion molecules themselves. A catalog of known adhesins shows some common features: high Ser/Thr content, tandem repeats, N- …
Preclinical Evaluation Of Novel Fatty Acid Synthase Inhibitors In Primary Colorectal Cancer Cells And A Patient-Derived Xenograft Model Of Colorectal Cancer,
2018
University of Kentucky
Preclinical Evaluation Of Novel Fatty Acid Synthase Inhibitors In Primary Colorectal Cancer Cells And A Patient-Derived Xenograft Model Of Colorectal Cancer, Yekaterina Y. Zaytseva, Piotr G. Rychahou, Anh-Thu Le, Timothy L. Scott, Robert M. Flight, Ji Tae Kim, Jennifer Harris, Jinpeng Liu, Chi Wang, Andrew J. Morris, Theru A. Sivakumaran, Teresa Fan, Hunter Moseley, Tianyan Gao, Eun Young Lee, Heidi L. Weiss, Timothy S. Heuer, George Kemble, B. Mark Evers
Toxicology and Cancer Biology Faculty Publications
Fatty Acid Synthase (FASN), a key enzyme of de novo lipogenesis, is upregulated in many cancers including colorectal cancer (CRC); increased FASN expression is associated with poor prognosis. Potent FASN inhibitors (TVBs) developed by 3-V Biosciences demonstrate anti-tumor activity in vitro and in vivo and a favorable tolerability profile in a Phase I clinical trial.
However, CRC characteristics associated with responsiveness to FASN inhibition are not fully understood. We evaluated the effect of TVB-3664 on tumor growth in nine CRC patient-derived xenografts (PDXs) and investigated molecular and metabolic changes associated with CRC responsiveness to FASN inhibition.
CRC cells and PDXs …
The Caspase Cascade During Hibernation In The Golden-Mantled Ground Squirrel, Spermophilus Lateralis,
2018
University of Nevada, Las Vegas
The Caspase Cascade During Hibernation In The Golden-Mantled Ground Squirrel, Spermophilus Lateralis, Michael David Treat
UNLV Theses, Dissertations, Professional Papers, and Capstones
In several human pathologies like heart attack, stroke, neurodegenerative diseases, and autoimmune disorders, widespread cell death, or apoptosis, is a major cause of organ dysfunction and death. Hibernating golden-mantled ground squirrels, Spermophilus lateralis, experience numerous conditions during the winter that are known to be pro-apoptotic in other mammal systems (e.g. extreme hypothermia, ischemia and reperfusion, acidosis, increased reactive oxygen species, bone and muscle disuse). However, studies suggest that hibernators may invoke a protective phenotype to limit widespread cell damage and loss during the hibernation season. Could regulating apoptosis provide protection against the harmful conditions experienced during the hibernation season? Could …
Assembly-Hub Function Of Er-Localized Snare Proteins In Biogenesis Of Tombusvirus Replication Compartment,
2018
University of Kentucky
Assembly-Hub Function Of Er-Localized Snare Proteins In Biogenesis Of Tombusvirus Replication Compartment, Zsuzsanna Sasvari, Nikolay Kovalev, Paulina Alatriste Gonzalez, Kai Xu, Peter D. Nagy
Plant Pathology Faculty Publications
Positive-strand RNA viruses assemble numerous membrane-bound viral replicase complexes within large replication compartments to support their replication in infected cells. Yet the detailed mechanism of how given subcellular compartments are subverted by viruses is incompletely understood. Although, Tomato bushy stunt virus (TBSV) uses peroxisomal membranes for replication, in this paper, we show evidence that the ER-resident SNARE (soluble NSF attachment protein receptor) proteins play critical roles in the formation of active replicase complexes in yeast model host and in plants. Depletion of the syntaxin 18-like Ufe1 and Use1, which are components of the ER SNARE complex in the ERAS (ER …
Egfr Polymorphisms In Drosophila Melanogaster,
2018
CUNY Bernard M Baruch College
Egfr Polymorphisms In Drosophila Melanogaster, Stacie Chue, Neha Mehta, Samantha Poon, Heather Trazino
Publications and Research
No abstract provided.
Fear Memory Recall Potentiates Opiate Reward Sensitivity Through Dissociable Dopamine D1 Versus D4 Receptor-Dependent Memory Mechanisms In The Prefrontal Cortex.,
2018
The University of Western Ontario
Fear Memory Recall Potentiates Opiate Reward Sensitivity Through Dissociable Dopamine D1 Versus D4 Receptor-Dependent Memory Mechanisms In The Prefrontal Cortex., Jing Jing Li, Hanna Szkudlarek, Justine Renard, Roger Hudson, Walter Rushlow, Steven R. Laviolette
Anatomy and Cell Biology Publications
Disturbances in prefrontal cortical (PFC) dopamine (DA) transmission are well established features of psychiatric disorders involving pathological memory processing, such as post-traumatic stress disorder and opioid addiction. Transmission through PFC DA D4 receptors (D4Rs) has been shown to potentiate the emotional salience of normally nonsalient emotional memories, whereas transmission through PFC DA D1 receptors (D1Rs) has been demonstrated to selectively block recall of reward- or aversion-related associative memories. In the present study, using a combination of fear conditioning and opiate reward conditioning in male rats, we examined the role of PFC D4/D1R signaling during the processing of fear-related memory acquisition …
Morphoregulatory Functions Of The Rna-Binding Motif Protein 3 In Cell Spreading, Polarity And Migration,
2018
The Scripps Research Institute
Morphoregulatory Functions Of The Rna-Binding Motif Protein 3 In Cell Spreading, Polarity And Migration, J. Pilotte, W. Kiosses, S. W. Chan, H. P. Makarenkova, Esther E. Dupont-Versteegden, P. W. Vanderklish
Physical Therapy Faculty Publications
RNA-binding proteins are emerging as key regulators of transitions in cell morphology. The RNA-binding motif protein 3 (RBM3) is a cold-inducible RNA-binding protein with broadly relevant roles in cellular protection, and putative functions in cancer and development. Several findings suggest that RBM3 has morphoregulatory functions germane to its roles in these contexts. For example, RBM3 helps maintain the morphological integrity of cell protrusions during cell stress and disease. Moreover, it is highly expressed in migrating neurons of the developing brain and in cancer invadopodia, suggesting roles in migration. We here show that RBM3 regulates cell polarity, spreading and migration. RBM3 …
Till Death Do Us Part: The Marriage Of Autophagy And Apoptosis.,
2018
Rowan University
Till Death Do Us Part: The Marriage Of Autophagy And Apoptosis., Katrina F Cooper
Rowan-Virtua School of Osteopathic Medicine Departmental Research
Autophagy is a widely conserved catabolic process that is necessary for maintaining cellular homeostasis under normal physiological conditions and driving the cell to switch back to this status quo under times of starvation, hypoxia, and oxidative stress. The potential similarities and differences between basal autophagy and stimulus-induced autophagy are still largely unknown. Both act by clearing aberrant or unnecessary cytoplasmic material, such as misfolded proteins, supernumerary and defective organelles. The relationship between reactive oxygen species (ROS) and autophagy is complex. Cellular ROS is predominantly derived from mitochondria. Autophagy is triggered by this event, and by clearing the defective organelles effectively, …
Preclinical Outcomes Of Intratumoral Modulation Therapy For Glioblastoma,
2018
Department of Clinical Neurological Sciences, Schulich School of Medicine and Dentistry, Western University
Preclinical Outcomes Of Intratumoral Modulation Therapy For Glioblastoma, Andrea R. Di Sebastiano, Andrew Deweyert, Simon Benoit, Erin Iredale, Hu Xu, Cleusa De Oliveira, Eugene Wong, Susanne Schmid, Matthew O. Hebb
Anatomy and Cell Biology Publications
Glioblastoma (GBM) is the leading cause of high fatality cancer arising within the adult brain. Electrotherapeutic approaches offer new promise for GBM treatment by exploiting innate vulnerabilities of cancer cells to low intensity electric fields. This report describes the preclinical outcomes of a novel electrotherapeutic strategy called Intratumoral Modulation Therapy (IMT) that uses an implanted stimulation system to deliver sustained, titratable, low intensity electric fields directly across GBM-affected brain regions. This pilot technology was applied to in vitro and animal models demonstrating significant and marked reduction in tumor cell viability and a cumulative impact of concurrent IMT and chemotherapy in …
