Inverse Changes In Ghrelin And A2a Receptor Gene Expression Levels In The Hippocampus Of Heart Failure Canines Following Spinal Cord Stimulation,
2015
East Tennessee State University
Inverse Changes In Ghrelin And A2a Receptor Gene Expression Levels In The Hippocampus Of Heart Failure Canines Following Spinal Cord Stimulation, Benjamin E. Jewett
Undergraduate Honors Theses
Myocardial infarction (MI), often referred to as a heart attack, is a serious health issue in the United States. There is a well-documented link between MI and major depressive disorder (MDD), with a high incidence of MDD occurring after an MI. Overlapping pathologies have been observed within the hippocampus of the brain in animal models of MI and depression. These observations suggest that pathobiological cross-talk between the heart and brain could have a role in the etiology of MDD that occurs after an MI. Spinal cord stimulation (SCS) has previously been shown to have both cardioprotective and neuroprotective effects post-MI, …
Exercise-Induced Adult Neruogenesis And The Seizure Threshold: The Role Of Cox-2,
2015
Syracuse University
Exercise-Induced Adult Neruogenesis And The Seizure Threshold: The Role Of Cox-2, Gina Kim
Renée Crown University Honors Thesis Projects - All
Neurogenesis, the generation of new neurons, is most prevalent when the brain is being formed during pre-natal development. However, this process continues in select areas in the brain during adult life as well. One such area in the brain is the dentate gyrus (DG) of the hippocampus, an area known to be associated with learning and memory. In this region, neurogenesis is believed to contribute to neuroplasticity as well as improving its functions in learning and memory. Interestingly, this synthesis of neurons is increased by physical activity—predominantly running—and by seizures originating in the limbic system. The increased excitatory neuronal activity …
Pathological Effects Of Repeated Concussive Tbi In Mouse Models: Periventricular Damage And Ventriculomegaly,
2015
University of Connecticut - Storrs
Pathological Effects Of Repeated Concussive Tbi In Mouse Models: Periventricular Damage And Ventriculomegaly, Richard H. Wolferz Jr.
Honors Scholar Theses
Repeated concussive traumatic brain injury (rcTBI) is the most prominent form of head injury affecting the brain, with an estimated 1.7 million Americans affected each year (Kuhn 2012). Neurologists have been concerned about the danger of repeated head impacts since the 1920’s, but researchers have only begun to understand the long-term effects of rcTBI (McKee 2009). Although symptoms can be as mild as dizziness, current research suggests that multiple concussions can lead to a progressive degenerative brain disease known as chronic traumatic encephalopathy (CTE) (Luo 2008, McKee 2009, Kane 2013). Research on the brain is just beginning to scratch the …
Death Associated Protein Kinase (Dapk) -Mediated Neurodegenerative Mechanisms In Nematode Excitotoxicity,
2015
CUNY City College
Death Associated Protein Kinase (Dapk) -Mediated Neurodegenerative Mechanisms In Nematode Excitotoxicity, John S. Del Rosario, Katherine Genevieve Feldmann, Towfiq Ahmed, Uzair Amjad, Bakkeung Ko, Junhyung An, Tauhid Mahmud, Maha Salama, Shirley Mei, Daniel Asemota, Itzhak Mano
Publications and Research
Background: Excitotoxicity (the toxic overstimulation of neurons by the excitatory transmitter Glutamate) is a central process in widespread neurodegenerative conditions such as brain ischemia and chronic neurological diseases. Many mechanisms have been suggested to mediate excitotoxicity, but their significance across diverse excitotoxic scenarios remains unclear. Death Associated Protein Kinase (DAPK), a critical molecular switch that controls a range of key signaling and cell death pathways, has been suggested to have an important role in excitotoxicity. However, the molecular mechanism by which DAPK exerts its effect is controversial. A few distinct mechanisms have been suggested by single (sometimes contradicting) studies, and …
Neuroinflammation And J2 Prostaglandins: Linking Impairment Of The Ubiquitin-Proteasome Pathway And Mitochondria To Neurodegeneration,
2015
CUNY Hunter College
Neuroinflammation And J2 Prostaglandins: Linking Impairment Of The Ubiquitin-Proteasome Pathway And Mitochondria To Neurodegeneration, Maria E. Figueiredo-Pereira, Patricia Rockwell, Thomas Schmidt-Glenewinkel, Peter Serrano
Publications and Research
The immune response of the CNS is a defense mechanism activated upon injury to initiate repair mechanisms while chronic over-activation of the CNS immune system (termed neuroinflammation) may exacerbate injury. The latter is implicated in a variety of neurological and neurodegenerative disorders such as Alzheimer and Parkinson diseases, amyotrophic lateral sclerosis, multiple sclerosis, traumatic brain injury, HIV dementia, and prion diseases. Cyclooxygenases (COX-1 and COX-2), which are key enzymes in the conversion of arachidonic acid into bioactive prostanoids, play a central role in the inflammatory cascade. J2 prostaglandins are endogenous toxic products of cyclooxygenases, and because their levels are significantly …
Pcdh19 Expression In Normal And Regenerating Adult Zebrafish Retinas,
2015
University of Akron Main Campus
Pcdh19 Expression In Normal And Regenerating Adult Zebrafish Retinas, Kristin N. Forkapa Ms.
Williams Honors College, Honors Research Projects
My Honors Research Project will test the function of the N-cadherin molecule on the zebrafish optic nerve regeneration. N-cadherin is a member of the cadherin superfamily. Cadherins are cell adhesion molecules important for animal development and maintenance of adult structures. Unlike mammals, fish and amphibians have the ability to regenerate their optic nerve after damages. Molecular mechanisms underlying the optic nerve regeneration are still under intense investigation. Studies in Dr. Liu’s laboratory showed that expression of several cadherins, including N-cadherin, was greatly increased during adult zebrafish optic nerve regeneration, suggesting that cadherins may be involved in the optic nerve regeneration …
Targeting Methylglyoxal And Ppar Gamma To Alleviate Neuropathic Pain Associated With Type 2 Diabetes,
2015
University of Kentucky
Targeting Methylglyoxal And Ppar Gamma To Alleviate Neuropathic Pain Associated With Type 2 Diabetes, Ryan B. Griggs
Theses and Dissertations--Physiology
Neuropathic pain affects up to 50% of the 29 million diabetic patients in the United States. Neuropathic pain in diabetes manifests as a disease of the peripheral and central nervous systems. The prevalence of type 2 diabetes is far greater than type 1 (90%), yet the overwhelming focus on type 1 models this has left the mechanisms of pain in type 2 diabetes largely unknown. Therefore I aimed to improve the current mechanistic understanding of pain associated with type 2 diabetes using two preclinical rodent models: Zucker Diabetic Fatty rats and db/db mice. In addition, I highlight the translational importance …
Signals From The 4th Dimension: Role Of Extracellular Matrix Signaling In Synaptic Plasticity Mediating Addiction,
2015
Medical University of South Carolina
Signals From The 4th Dimension: Role Of Extracellular Matrix Signaling In Synaptic Plasticity Mediating Addiction, Alexander C. W. Smith
MUSC Theses and Dissertations
Chronic cocaine abuse causes maladaptive neuroadaptations that underlie vulnerability to relapse, even after protracted abstinence. A great deal of work has examined mechanisms of neuroplasticity by which these occur. However, the majority of experimentation has focused on intracellular signaling cascades, while the extracellular compartment has been largely ignored. In the past decade, work has emerged in the learning and memory literature that indicates that extracellular matrix remodeling and signaling is required for adaptive forms of neuroplasticity (e.g. learning and memory), although it has not been thoroughly examined in models of maladaptive neuroplasticity. Throughout this dissertation a drug self-administration, extinction and …
Elucidating The Role Of Endogenous Electric Fields In Regulating The Astrocytic Response To Injury In The Mammalian Central Nervous System,
2015
Virginia Commonwealth University
Elucidating The Role Of Endogenous Electric Fields In Regulating The Astrocytic Response To Injury In The Mammalian Central Nervous System, Matthew L. Baer
Theses and Dissertations
Endogenous bioelectric fields guide morphogenesis during embryonic development and regeneration by directly regulating the cellular functions responsible for these phenomena. Although this role has been extensively explored in many peripheral tissues, the ability of electric fields to regulate wound repair and stimulate regeneration in the mammalian central nervous system (CNS) has not been convincingly established. This dissertation explores the role of electric fields in regulating the injury response and controlling the regenerative potential of the mammalian CNS. We place particular emphasis on their influence on astrocytes, as specific differences in their injury-induced behaviors have been associated with differences in the …
Gliopathy Of Demyelinating And Non-Demyelinating Strains Of Mouse Hepatitis Virus,
2015
Philadelphia College of Osteopathic Medicine
Gliopathy Of Demyelinating And Non-Demyelinating Strains Of Mouse Hepatitis Virus, Lawrence Charles Kenyon, Kaushiki Biswas, Kenneth Shindler, Manasi Nabar, Marjorie Stout, Susan T. Hingley, Judith B. Grinspan, Jayasri Das Sarma
PCOM Scholarly Works
Demyelination in the central nervous system induced by neurovirulent strains of Mouse Hepatitis Virus (MHV) is mediated by the viral spike glycoprotein, but it is not clear whether the mechanism of this disease pathology involves direct viral infection of oligodendrocytes. Detailed studies of glial cell tropism of MHV are presented, demonstrating that direct MHV infection of oligodendrocytes differs between demyelinating (RSA59) and non-demyelinating (RSMHV2) viral strains both in vitro and in vivo. Our results indicate that direct injury of mature oligodendrocytes is an important mechanism of virus-induced demyelination. In vivo, RSA59 infection was identified in spinal cord gray and white …
Clique Topology Reveals Intrinsic Geometric Structure In
Neural Correlations,
2015
University of Pennsylvania
Clique Topology Reveals Intrinsic Geometric Structure In Neural Correlations, Chad Giusti, Eva Pastalkova, Carina Curto, Vladimir Itskov
Department of Mathematics: Faculty Publications
Detecting meaningful structure in neural activity and connectivity data is challenging in the presence of hidden nonlinearities, where traditional eigenvalue-based methods may be misleading. We introduce a novel approach to matrix analysis, called clique topology, that extracts features of the data invariant under nonlinear monotone transformations. These features can be used to detect both random and geometric structure, and depend only on the relative ordering of matrix entries. We then analyzed the activity of pyramidal neurons in rat hippocampus, recorded while the animal was exploring a 2D environment, and confirmed that our method is able to detect geometric organization using …
An Epigenetic Hypothesis For The Genomic Memory Of Pain,
2015
Stanford University
An Epigenetic Hypothesis For The Genomic Memory Of Pain, Sebastian Alvarado, Maral Tajerian, Matthew Suderman, Ziv Machnes, Stephanie Pierfelice, Magali Millecamps, Laura S. Stone, Moshe Szyf
Publications and Research
Chronic pain is accompanied with long-term sensory, affective and cognitive disturbances. What are the mechanisms that mediate the long-term consequences of painful experiences and embed them in the genome? We hypothesize that alterations in DNA methylation, an enzymatic covalent modification of cytosine bases in DNA,serve as a “genomic” memory of pain in the adult cortex. DNA methylation is an epigenetic mechanism for long-term regulation of gene expression. Neuronal plasticity at the neuroanatomical, functional, morphological, physiological and molecular levels has been demonstrated throughout the neuroaxis in response to persistent pain, including in the adult prefrontal cortex (PFC). We have previously reported …
Enhanced Cgmp-Dependent Signaling In Astrocytes: Novel Therapeutic Target In Alzheimer's Disease,
2015
Philadelphia College of Osteopathic Medicine
Enhanced Cgmp-Dependent Signaling In Astrocytes: Novel Therapeutic Target In Alzheimer's Disease, Nyema M. Woart
PCOM Biomedical Studies Student Scholarship
Over five million Americans suffer from Alzheimer’s Disease (AD), with an expected 34% increase in the incidence in this disease over the next decade. Unfortunately, there is no cure for AD. Recent studies have indicated that drugs which increase the levels of cyclic guanosine-3’5’-monophosphate (cGMP) may help preserve learning and memory in AD and enhance cognition in the aging brain; however, the mechanism(s) of how cGMP exerts this beneficial effect is unknown. The present findings now suggest that elevation of cGMP in astrocytes depresses inhibitory potassium currents in these cells to stimulate their protective influence on neuronal activity. Cellular currents …
Glutamatergic Neurotransmission In The Prefrontal Cortex Mediates The Suppressive Effect Of Intra-Pfc Infusion Of Bdnf On Cocaine-Seeking,
2015
Medical University of South Carolina
Glutamatergic Neurotransmission In The Prefrontal Cortex Mediates The Suppressive Effect Of Intra-Pfc Infusion Of Bdnf On Cocaine-Seeking, Bok Soon Go
MUSC Theses and Dissertations
Infusion of BDNF into the dorsomedial prefrontal cortex (dmPFC) immediately after the last session of cocaine self-administration prevents cocaine-mediated malfunction of synaptic modulation in the dmPFC that mediates relapse to cocaine-seeking through both GluN2A subunit-containing NMDA receptors and GluN2B subunit-containing NMDA receptors (NMDARS). Intra-dmPFC BDNF is known to suppress cocaine-seeking by normalization of cocaine self-administration- induced disturbance of glutamatergic transmission in the nucleus accumbens (NAc) and by prevention of the cocaine self-administration-induced decrease in extracellular signal-regulated kinase (ERK) activity in the dmPFC through activation of tyrosine receptor kinase B (TrkB). Neuronal activity is required for BDNF-induced ERK activation and the …
Gene Expression And Alzheimer's Disease: Evaluation Of Gene Expression Patterns In Brain And Blood For An Alzheimer's Disease Mouse Model,
2015
Liberty University
Gene Expression And Alzheimer's Disease: Evaluation Of Gene Expression Patterns In Brain And Blood For An Alzheimer's Disease Mouse Model, Amanda Hazy
Senior Honors Theses
Previous studies have established a causative role for altered gene expression in development of Alzheimer’s disease (AD). These changes can be affected by methylation and miRNA regulation. In this study, expression of miRNA known to change methylation status in AD was assessed by qPCR. Genome-wide expression changes were determined by RNA-sequencing of mRNA from hippocampus and blood of control and AD mice. The qPCR data showed significantly increased expression of Mir 17 in AD, and sequencing data revealed 230 genes in hippocampus, 58 genes in blood, and 8 overlapping genes showing significant differential expression (p value ≤ 0.05). Expression data …
Characterization Of The Trans-Plasma Membrane Electron Transport System In The Myelin Membrane,
2015
Wilfrid Laurier University
Characterization Of The Trans-Plasma Membrane Electron Transport System In The Myelin Membrane, Afshan Sohail
Theses and Dissertations (Comprehensive)
Myelination is the key feature of evolution in the nervous system of vertebrates. Myelin is the protrusion of glial cells. More specifically, "oligodendrocytes" in the central nervous system (CNS), and "Schwann" cells in the peripheral nervous system (PNS) form myelin membranes. Myelin remarkably, enhances the propagation of nerve impulses. However, myelin restricts the access of extracellular metabolites to the axons. A pathology called "demyelination" is associated with myelin. The myelin sheath is not only an insulator, but it is itself metabolically active. In this study it is hypothesized that the ratio of NAD(P)+/NAD(P)H and the glycolytic pathway of …
Cellular-Based Brain Pathology In The Anterior Cingulate Cortex Of Males With Autism Spectrum Disorder,
2014
East Tennessee State University
Cellular-Based Brain Pathology In The Anterior Cingulate Cortex Of Males With Autism Spectrum Disorder, Jessica D. Crawford
Electronic Theses and Dissertations
Autism spectrum disorder (ASD) now affects 1 in 68 children in the United States. Disorders within this spectrum share hallmark deficits in verbal and nonverbal communication, repetitive behavior, and social interaction. The cause of ASD is still unknown. Even though hundreds of genetic abnormalities have been identified in ASD, these markers account for less than 1% of all ASD cases. Researchers continue to search for pathological markers common to all or most cases of ASD. The research presented in this dissertation used a novel combination of state-of-the-art methods to investigate brain pathology in ASD. Postmortem anterior cingulate cortex (ACC) from …
A Comprehensive Study Of The Effects Of Neurotoxins On Noradrenergic Phenotypes, Neuronal Responses And Potential Intervention By Antidepressants In Noradrenergic Cells,
2014
East Tennessee State University
A Comprehensive Study Of The Effects Of Neurotoxins On Noradrenergic Phenotypes, Neuronal Responses And Potential Intervention By Antidepressants In Noradrenergic Cells, Yan Wang
Electronic Theses and Dissertations
It has been reported that locus coeruleus (LC) degeneration precedes the degeneration of other neurons in the brain in some neurodegenerative diseases like Alzheimer’s disease (AD) and Parkinson’s disease (PD). However, the precise mechanisms of neurodegeneration remain to be elucidated. N-(2-chloroethyl)-N-ethyl-2-bromobenzylamine (DSP4) has been widely used as a noradrenergic neurotoxin in the development of AD and PD animal models for specific LC degeneration. However, the precise mechanism of action of DSP4 remains unclear. An increased systemic DNA damage caused by neurotoxin or oxidative stress has been found to be related to the pathogenic development of neurodegeneration. The process of neurodegeneration …
Functional Characterization Of The Arginine Vasotocin 4 Receptor (Vt4r) In Sensory Circumventricular Organs Of The Chicken Gallus Gallus,
2014
University of Arkansas, Fayetteville
Functional Characterization Of The Arginine Vasotocin 4 Receptor (Vt4r) In Sensory Circumventricular Organs Of The Chicken Gallus Gallus, Nguiessan Alphonse Aman
Graduate Theses and Dissertations
Past studies have shown that the avian vasotocin 4 receptor (VT4R), homologous to the mammalian arginine vasopressin receptor 1a (V1aR/AVPR1A) is involved in immobilization stress. It was not known, however, whether the receptor is also associated with osmotic stress, and if so, what brain regions may be involved. Four treatment groups of chicks were used for the study. One group was subjected to 1h immobilization stress and two groups were administered intraperitoneal injection of 3 M NaCl or 0.15 M NaCl. One additional group served as controls. After 1 h, blood samples were taken for the determination of plasma levels …
The Insulin/Igf Signaling Regulators Cytohesin/Grp-1 And Pip5k/Ppk-1 Modulate Susceptibility To Excitotoxicity In C. Elegans,
2014
CUNY City College
The Insulin/Igf Signaling Regulators Cytohesin/Grp-1 And Pip5k/Ppk-1 Modulate Susceptibility To Excitotoxicity In C. Elegans, Nazila Tehrani, John Del Rosario, Moises Dominguez, Robert Kalb, Itzhak Mano
Publications and Research
During ischemic stroke, malfunction of excitatory amino acid transporters and reduced synaptic clearance causes accumulation of Glutamate (Glu) and excessive stimulation of postsynaptic neurons, which can lead to their degeneration by excitotoxicity. The balance between cell death-promoting (neurotoxic) and survival-promoting (neuroprotective) signaling cascades determines the fate of neurons exposed to the excitotoxic insult. The evolutionary conserved Insulin/IGF Signaling (IIS) cascade can participate in this balance, as it controls cell stress resistance in nematodes and mammals. Blocking the IIS cascade allows the transcription factor FoxO3/DAF-16 to accumulate in the nucleus and activate a transcriptional program that protects cells from a range …
