Role Of Occludin In The Regulation Of Epithelial Tight Junctions,
2016
University of Tennessee Health Science Center
Role Of Occludin In The Regulation Of Epithelial Tight Junctions, Bhargavi Manda
Theses and Dissertations (ETD)
Tight junctions (TJ) constitute the primary component of epithelial barrier function, a disruption of which is involved in the pathogenesis of many gastrointestinal, pulmonary and renal diseases. Occludin is the major transmembrane protein of TJ, a deletion of which leads to a complex phenotype including chronic inflammation in several epithelial tissues of occludin deficient mice and poor TJ integrity in epithelial cell lines. Its down regulation was seen in Crohn’s disease, tumors of the colon, brain, endometrium and breast cancer. Occludin is also known to be a target that enables Hepatitis C Virus infection and bacterial pathogenesis. But the specific …
The Nucleolar Protein Nucleophosmin Undergoes Liquid-Liquid Phase Separation With Arginine-Rich Nucleolar Proteins Through Weak, Multivalent Electrostatic Interactions,
2016
University of Tennessee Health Science Center
The Nucleolar Protein Nucleophosmin Undergoes Liquid-Liquid Phase Separation With Arginine-Rich Nucleolar Proteins Through Weak, Multivalent Electrostatic Interactions, Jaclyn Alicia Cika
Theses and Dissertations (ETD)
Nucleoli are nuclear membrane-less organelles that are the sites for ribosome biogenesis and serve as sensors of cellular stress. Weak, multivalent protein-protein interactions and interactions between disordered, low complexity domains (LCDs) and rRNA have been shown to promote liquid-liquid phase separation (LLPS) in vitro, suggesting a basis for the liquid-like behavior of nucleoli. Nucleophosmin (NPM1), a multifunctional and highly abundant nucleolar protein, exhibits structural features associated with LLPS suggesting a role in nucleolar organization. Specifically, NPM1 forms a pentamer through its N-terminal oligomerization domain and can bind to rRNA through its C-terminal nucleic acid binding domain. Multiple acidic tracts throughout …
The Influence Of Age On The Diagnostic Performance Of White Blood Cell Count And Absolute Neutrophil Count In Suspected Pediatric Appendicitis.,
2016
Children's Mercy Hospital
The Influence Of Age On The Diagnostic Performance Of White Blood Cell Count And Absolute Neutrophil Count In Suspected Pediatric Appendicitis., Richard G. Bachur, Peter S. Dayan, Nanette C. Dudley, Lalit Bajaj, Michelle D. Stevenson, Charles G. Macias, Manoj K. Mittal, Jonathan Bennett, Kelly A. Sinclair, Michael C. Monuteaux, Anupam B. Kharbanda
Manuscripts, Articles, Book Chapters and Other Papers
OBJECTIVE: White blood cell (WBC) count and absolute neutrophil count (ANC) are a standard part of the evaluation of suspected appendicitis. Specific threshold values are utilized in clinical pathways, but the discriminatory value of WBC count and ANC may vary by age. The objective of this study was to investigate whether the diagnostic value of WBC count and ANC varies across age groups and whether diagnostic thresholds should be age-adjusted.
METHODS: This is a multicenter prospective observational study of patients aged 3-18 years who were evaluated for appendicitis. Receiver operator characteristic curves were developed to assess overall discriminative power of …
Single-Cell Transcriptional Analysis Reveals Novel Neuronal Phenotypes And Interaction Networks Involved In The Central Circadian Clock.,
2016
Department of Pathology, Anatomy and Cell Biology, Daniel Baugh Institute for Functional Genomics and Computational Biology, Sidney Kimmel Medical College, Thomas Jefferson University; Department of Chemical and Biomolecular Engineering, University of Delaware
Single-Cell Transcriptional Analysis Reveals Novel Neuronal Phenotypes And Interaction Networks Involved In The Central Circadian Clock., James Park, Haisun Zhu, Sean O'Sullivan, Babatunde A Ogunnaike, David R Weaver, James S. Schwaber, Rajanikanth Vadigepalli
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Single-cell heterogeneity confounds efforts to understand how a population of cells organizes into cellular networks that underlie tissue-level function. This complexity is prominent in the mammalian suprachiasmatic nucleus (SCN). Here, individual neurons exhibit a remarkable amount of asynchronous behavior and transcriptional heterogeneity. However, SCN neurons are able to generate precisely coordinated synaptic and molecular outputs that synchronize the body to a common circadian cycle by organizing into cellular networks. To understand this emergent cellular network property, it is important to reconcile single-neuron heterogeneity with network organization. In light of recent studies suggesting that transcriptionally heterogeneous cells organize into distinct cellular …
Mirna-145 Increases Therapeutic Sensibility To Gemcitabine Treatment Of Pancreatic Adenocarcinoma Cells.,
2016
Department of Laboratory Medicine, Huashan Hospital of Fudan University, Shanghai, China; The Department of Clinical Laboratory, Central Laboratory, Jing'an District Centre Hospital of Shanghai, Huashan Hospital of Fudan University Jing'An Branch, Shanghai, China
Mirna-145 Increases Therapeutic Sensibility To Gemcitabine Treatment Of Pancreatic Adenocarcinoma Cells., Yong Lin, Xin Ge, Yiyang Wen, Zhu-Mei Shi, Qiu-Dan Chen, Min Wang, Ling-Zhi Liu, Bing-Hua Jiang, Yuan Lu
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Pancreatic adenocarcinoma is one of the most leading causes of cancer-related deaths worldwide. Although recent advances provide various treatment options, pancreatic adenocarcinoma has poor prognosis due to its late diagnosis and ineffective therapeutic multimodality. Gemcitabine is the effective first-line drug in pancreatic adenocarcinoma treatment. However, gemcitabine chemoresistance of pancreatic adenocarcinoma cells has been a major obstacle for limiting its treatment effect. Our study found that p70S6K1 plays an important role in gemcitabine chemoresistence. MiR-145 is a tumor suppressor which directly targets p70S6K1 for inhibiting its expression in pancreatic adenocarcinoma, providing new therapeutic scheme. Our findings revealed a new mechanism underlying …
Peroxiredoxin Catalysis At Atomic Resolution,
2016
Oregon State University
Peroxiredoxin Catalysis At Atomic Resolution, Arden Perkins, Derek Parsonage, Kimberly J. Nelson, O. Maduka Ogba, Paul Ha-Yeon Cheong, Leslie B. Poole, P. Andrew Karplus
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Peroxiredoxins (Prxs) are ubiquitous cysteine-based peroxidases that guard cells against oxidative damage, are virulence factors for pathogens, and are involved in eukaryotic redox regulatory pathways. We have analyzed catalytically active crystals to capture atomic resolution snapshots of a PrxQ-subfamily enzyme (from Xanthomonas campestris) proceeding through thiolate, sulfenate, and sulfinate species. These analyses provide structures of unprecedented accuracy for seeding theoretical studies, and show novel conformational intermediates giving insight into the reaction pathway. Based on a highly non-standard geometry seen for the sulfenate intermediate, we infer that the sulfenate formation itself can strongly promote local unfolding of the active site to …
Ehd1 As A Positive Regulator Of Macrophage Colony-Stimulating Factor-1 Receptor,
2016
University of Nebraska Medical Center
Ehd1 As A Positive Regulator Of Macrophage Colony-Stimulating Factor-1 Receptor, Luke R. Cypher
Theses & Dissertations
The master regulator of the macrophage development, differentiation, proliferation, survival, phagocytosis, cytokine secretion, motility, adhesion, migration, and spreading is the receptor tyrosine kinase (RTK) colony stimulating factor-1 receptor (CSF-1R). Aberrant CSF-1R signaling is present amongst a variety of highly prevalent and devastating human diseases in the United States such as atherosclerosis, cancer, inflammatory bowel disease, arthritis, and neuro-demyelination/neuro-degeneration. A better understanding of basic mechanisms that govern macrophage development and function is of vital importance in treating patients afflicted with these conditions/diseases. CSF-1R presentation on the macrophage cell surface is a required precursor for CSF1- induced RTK dimerization (activation) and downstream …
Integrated Live Imaging And Molecular Profiling Of Embryoid Bodies Reveals A Synchronized Progression Of Early Differentiation.,
2016
Tel Aviv University
Integrated Live Imaging And Molecular Profiling Of Embryoid Bodies Reveals A Synchronized Progression Of Early Differentiation., Jonathan Boxman, Naor Sagy, Sirisha Achanta, Rajanikanth Vadigepalli, Iftach Nachman
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Embryonic stem cells can spontaneously differentiate into cell types of all germ layers within embryoid bodies (EBs) in a highly variable manner. Whether there exists an intrinsic differentiation program common to all EBs is unknown. Here, we present a novel combination of high-throughput live two-photon imaging and gene expression profiling to study early differentiation dynamics spontaneously occurring within developing EBs. Onset timing of Brachyury-GFP was highly variable across EBs, while the spatial patterns as well as the dynamics of mesendodermal progression following onset were remarkably similar. We therefore defined a 'developmental clock' using the Brachyury-GFP signal onset timing. Mapping snapshot …
Activated Clotting Time (Act): Comparison Of The Hemochron Signature Elite And The Abbott I-Stat,
2016
Thomas Jefferson University Hospitals, Philadelphia, PA, USA
Activated Clotting Time (Act): Comparison Of The Hemochron Signature Elite And The Abbott I-Stat, Lilah Evans, Susanne Gallo, Joseph J. Leo, Barbara Goldsmith, Phd, Facb
Department of Pathology, Anatomy, and Cell Biology Posters
BACKGROUND
ACT is commonly used for heparin anticoagulation monitoring during procedures including cardiopulmonary bypass surgery, coronary angioplasty, and interventional radiology. To prevent thrombosis, moderate to high levels of heparin anticoagulation are required. The Hemochron Signature Elite (HSE, Accriva Diagnostics, formerly ITC, San Diego, CA) was implemented at TJUH as a replacement for the older model Hemochron Response (Accriva/ITC Model HRS.110, San Diego, CA). Operating room (OR) perfusionists reported irreproducible high results using HSE that could not be explained clinically. In consideration of use of i-STAT analyzers (Abbott Point of Care, Princeton, NJ) as an alternative to HSE, we performed a …
Performance Of Creatinine And Chloride On The Epoc Analyzer,
2016
Thomas Jefferson University Hospitals, Philadelphia, PA, USA
Performance Of Creatinine And Chloride On The Epoc Analyzer, Lilah Evans, Susanne Gallo, Stacey K. Mardekian, Barbara Goldsmith, Phd, Facb
Department of Pathology, Anatomy, and Cell Biology Posters
BACKGROUND
The epoc Blood Analysis System (Alere, Orlando, FL) performs blood gases, electrolytes, and metabolites using a Blood Gas Electrolyte and Metabolite (BGEM) Test Card panel on 92 uL of whole blood. The BGEM test card uses potentiometric sensors to measure sodium, potassium, ionized calcium, pH, pCO2; amperometric sensors to measure pO2, glucose, and lactate; and a conductometric sensor to measure hematocrit. Results are available in 3-10 minutes, depending upon the time between calibration and patient testing. TJUH implemented the epoc in its ICUs in 2012 to provide Point of Care (POC) results. Alere recently added creatinine and chloride sensors …
The Role Of E. Coli Transcript-Cleavage Factors Gre In Transcriptional Regulation Under Hyperosmotic Stress,
2016
Rowan University
The Role Of E. Coli Transcript-Cleavage Factors Gre In Transcriptional Regulation Under Hyperosmotic Stress, Kseniya Obraztsova
Graduate School of Biomedical Sciences Theses and Dissertations
Escherichia coli adapts to changes in the osmotic environment through the process of osmotic response which entails synthesis of specific enzymes and transporters to accumulate essential osmoprotectants. This process is highly regulated at the level of transcription. Upon cell exposure to high salt, RNA polymerase (RNAP} rapidly dissociates from genomic DNA, while the nucleoid becomes hyper condensed. During the subsequent osmoadaptation phase RNAP reassociates with the DNA and resumes transcription. The mechanisms of transcription initiation, promoter escape and its regulation during osmoadaptation are poorly understood. Here we demonstrate that a highly conserved bacterial regulator, transcript cleavage factor GreA, is essential …
The Genetic Hierarchy Of The Heterochronic Pathway In C. Elegans,
2016
Rowan University
The Genetic Hierarchy Of The Heterochronic Pathway In C. Elegans, Jennifer Tsialikas
Graduate School of Biomedical Sciences Theses and Dissertations
The correct timing of developmental events is fundamental to the growth of every animal. The pathways that control developmental timing and cell-fate succession are complex and robust in a way that underscores this importance. In this work, I have shown how an early developmental regulator, LIN-14, acts to integrate the earliest aspects of development with the events that take place afterward. I have uncovered how microRNAs from two different families fit into the cascade of proteins and micro RNA regulation that defines the developmental timing pathway. Finally, my work has helped to uncover the dual-acting nature of two proteins in …
The Role Of Neurovascular Compromise, Autoimmune Antibodies And Neuronal Calcium Sensor Proteins During The Onset And Progression Of Alzheimer's Disease - Linking The Retina With The Brain,
2016
Rowan University School of Osteopathic Medicine
The Role Of Neurovascular Compromise, Autoimmune Antibodies And Neuronal Calcium Sensor Proteins During The Onset And Progression Of Alzheimer's Disease - Linking The Retina With The Brain, Hao Wu
Graduate School of Biomedical Sciences Theses and Dissertations
Alzheimer's disease (AD), the main cause of dementia, is a progressive and irreversible neurodegenerative disease. The pathological hallmarks of the disease include bloodbrain barrier (BBB) breach, neurofibrillary tang les and amyloid plaques. Also, emerging evidence has raised the possibility that instead of a secondary consequence, the neuroinflammation contributes to the development and early progression of AD. However, the mechanism underlying the blood-neural barrier (BNB), chronic inflammation and neuronal degenerative diseases (NDDs) remain to be elucidated.
To explore the role of the chronic inflammation in NDDs and delineate the early steps of these diseases, in vivo drug-induced and transgenic mouse models …
Reduced Motor Neuron Excitability Is An Important Contributor To Weakness In A Rat Model Of Sepsis,
2016
Wright State University - Main Campus
Reduced Motor Neuron Excitability Is An Important Contributor To Weakness In A Rat Model Of Sepsis, Paul Nardelli, Jacob A. Vincent, Randall K. Powers, Timothy C. Cope, Mark M. Rich
Neuroscience, Cell Biology & Physiology Faculty Publications
The mechanisms by which sepsis triggers intensive care unit acquired weakness (ICUAW) remain unclear. We previously identified difficulty with motor unit recruitment in patients as a novel contributor to ICUAW. To study the mechanism underlying poor recruitment of motor units we used the rat cecal ligation and puncture model of sepsis. We identified striking dysfunction of alpha motor neurons during repetitive firing. Firing was more erratic, and often intermittent. Our data raised the possibility that reduced excitability of motor neurons was a significant contributor to weakness induced by sepsis. In this study we quantified the contribution of reduced motor neuron …
Regulation Of Breast Cancer Initiation And Progression By 14-3-3zeta,
2016
The University of Texas Graduate School of Biomedical Sciences at Houston
Regulation Of Breast Cancer Initiation And Progression By 14-3-3zeta, Chia-Chi Chang
Dissertations and Theses (Open Access)
14-3-3ζ is a ubiquitously expressed family member of proteins that have been implicated to have oncogenic potential through its interactions and involvement in cancer initiation and progression. 14-3-3ζ belongs to the highly conserved 14-3-3ζ protein family and modulates numerous pathways in cancer. Overexpression of 14-3-3ζ is an early event, occurs in more than 40% of human breast cancer cases, and is associated with disease recurrence and poor prognosis. Metabolic reprogramming is a hallmark of cancer. Cancer cells elevate aerobic glycolysis to produce metabolic intermediates and reducing equivalents, thereby facilitating cellular adaptation to the adverse environment and sustaining fast proliferation. Interestingly, …
The Roles Of Nuclear Receptor Nr4a1 In Cancer Cell Proliferation And Skeletal Muscle Differentiation,
2016
University of Tennessee Health Science Center
The Roles Of Nuclear Receptor Nr4a1 In Cancer Cell Proliferation And Skeletal Muscle Differentiation, Alexa Farmer
Theses and Dissertations (ETD)
Nuclear receptors (NRs) constitute a major class of drug targets in the treatment of various cancer types. NRs respond to cellular signals and become activated upon ligand binding to transcriptionally modulate expression of target genes. NR4A1 (Nur77) is a member of the NR4A family of nuclear receptors and displays an oncogenic profile in many cancer models. It is often upregulated in adult solid malignancies and is known to promote cell proliferation and survival. Knockdown studies of NR4A1 in cancer cell lines results in decreased cell growth and angiogenesis and increased apoptosis, suggesting NR4A1 is an oncogenic protein. Due to the …
Development Of Rational Combination Therapy With Parp Inhibitors And Kinase Inhibitors In Tnbc,
2016
The University of Texas Graduate School of Biomedical Sciences at Houston
Development Of Rational Combination Therapy With Parp Inhibitors And Kinase Inhibitors In Tnbc, Wen-Hsuan Yu
Dissertations and Theses (Open Access)
Poly (ADP-ribose) polymerase inhibitors (PARPi) emerge as potential targeting drugs for BRCA-deficient cancers including triple negative breast cancer (TNBC). However, it has been reported that a subgroup of patients even with BRCA mutation fails to respond to PARPi in multiple clinical trials. In this study, we identified c-Met, a tyrosine kinase, phosphorylates PARP1 at Y907 and that the phosphorylation increases PARP1 activity, thereby rendering cancer cells resistant to PARPi. The combination of c-Met inhibitors (METi) and PARPi has a synergistic effect for c-Met overexpressed TNBC in vitro and in vivo. In addition to c-Met, through functional analysis, we found …
Exome-Based Variant Detection In Core Promoters.,
2016
University of Nebraska Medical Center
Exome-Based Variant Detection In Core Promoters., Yeong C. Kim, Jian Cui, Jiangtao Luo, Fengxia Xiao, Bradley Downs, San Ming Wang
Journal Articles: Genetics, Cell Biology & Anatomy
Core promoter controls the initiation of transcription. Core promoter sequence change can disrupt transcriptional regulation, lead to impairment of gene expression and ultimately diseases. Therefore, comprehensive characterization of core promoters is essential to understand normal and abnormal gene expression in biomedical studies. Here we report the development of EVDC (Exome-based Variant Detection in Core promoters) method for genome-scale analysis of core-promoter sequence variation. This method is based on the fact that exome sequences contain the sequences not only from coding exons but also from non-coding region including core promoters generated by random fragmentation in exome sequencing process. Using exome data …
Cytojournal Quiz Cases: Publishing Open-Access, Pubmed-Searchable Cytopathology Cases With Educational Messages,
2016
Wayne State University
Cytojournal Quiz Cases: Publishing Open-Access, Pubmed-Searchable Cytopathology Cases With Educational Messages, Katherine G. Akers, Vinod B. Shidham
Library Scholarly Publications
No abstract provided.
Microrna-Target Interactions In Embryonic Stem Cells,
2016
Rowan University
Microrna-Target Interactions In Embryonic Stem Cells, Shuang Wu
Graduate School of Biomedical Sciences Theses and Dissertations
Animal embryogenesis is a highly orchestrated process involving many geneexpression programs that determine specific fates of individual cells during development. Gene expression can be regulated at different stages such as at transcription initiation or mRNA stability, and microRNA-mediated gene regulation is a crucial pathway on the regulation of mRNA stability. microRNAs, or miRNAs, are small, conserved non-coding RNAs that negatively regulate gene expression post-transcriptionally. The mouse miR-290-295 cluster and its human homolog miR-371-373 are stem cell-specific miRNA clusters, and their expression can only be observed in early embryos, primordial germ cells, germ cell compartments of adult testis and embryonic stem …
