White Matter Integrity And Age Related Differences In Reaction Time Components,
2013
Wayne State University
White Matter Integrity And Age Related Differences In Reaction Time Components, Yiqin Yang
Wayne State University Dissertations
Reduced speed in information processing is a well-documented phenomenon associated with advanced aging. Age-related deterioration in white matter integrity might play a role in age-related increase in reaction time (RT). However, the association between microstructural differences in particular white matter regions or tracts with RT is unclear. Decomposing RT into parts might be a better way to understand the relationship due to multiple processes involved in RT. In a lifespan sample of 90 healthy normotensive participants, this study examined the association between RT components derived from the Ratcliff diffusion model with age related difference in DTI indices of a wide …
The Influence Of Gender And Aging On The Neural Circuitry Supporing Facial Emotion Processing In Adults With Major Depressive Disorder,
2013
Wayne State University
The Influence Of Gender And Aging On The Neural Circuitry Supporing Facial Emotion Processing In Adults With Major Depressive Disorder, Emily Briceno
Wayne State University Dissertations
Major Depressive Disorder (MDD) is associated with decrements in facial emotion processing (FEP). Previous studies investigating the neural substrates of these decrements have often reported hyperactivity of emotion processing circuitry. Neural circuitry supporting FEP has been shown to be different between healthy men and women, and between young and elder adults. However, no prior studies have investigated how gender and aging affect emotion processing circuitry in individuals with MDD. The present study aimed to investigate the influence of gender and aging on emotion processing circuitry in MDD. One hundred-ten adults, grouped into subgroups according to MDD status, gender, and age …
Characterization Of Induced Neural Progenitors From Skin Fibroblasts By A Novel Combination Of Defined Factors.,
2013
University of Nebraska Medical Center
Characterization Of Induced Neural Progenitors From Skin Fibroblasts By A Novel Combination Of Defined Factors., Changhai Tian, Qiang Liu, Kangmu Ma, Yongxiang Wang, Qiang Chen, Randall Ambroz, David L. Klinkebiel, Yuju Li, Yunlong Huang, Jianqing Ding, Jie Wu, Jialin C. Zheng
Journal Articles: Pharmacology & Experimental Neuroscience
Recent reports have demonstrated that somatic cells can be directly converted to other differentiated cell types through ectopic expression of sets of transcription factors, directly avoiding the transition through a pluripotent state. Our previous experiments generated induced neural progenitor-like cells (iNPCs) by a novel combination of five transcription factors (Sox2, Brn2, TLX, Bmi1 and c-Myc). Here we demonstrated that the iNPCs not only possess NPC-specific marker genes, but also have qualities of primary brain-derived NPCs (WT-NPCs), including tripotent differentiation potential, mature neuron differentiation capability and synapse formation. Importantly, the mature neurons derived from iNPCs exhibit significant physiological properties, such as …
Investigating Therapeutic Options For Lafora Disease Using Structural Biology And Translational Methods,
2013
University of Kentucky
Investigating Therapeutic Options For Lafora Disease Using Structural Biology And Translational Methods, Amanda R. Sherwood
Theses and Dissertations--Molecular and Cellular Biochemistry
Lafora disease (LD) is a rare yet invariably fatal form of epilepsy characterized by progressive degeneration of the central nervous and motor systems and accumulation of insoluble glucans within cells. LD results from mutation of either the phosphatase laforin, an enzyme that dephosphorylates cellular glycogen, or the E3 ubiquitin ligase malin, the binding partner of laforin. Currently, there are no therapeutic options for LD, or reported methods by which the specific activity of glucan phosphatases such as laforin can be easily measured. To facilitate our translational studies, we developed an assay with which the glucan phosphatase activity of laforin as …
Impairment Of Trkb-Psd-95 Signaling In Angelman Syndrome,
2013
Brown University
Impairment Of Trkb-Psd-95 Signaling In Angelman Syndrome, Cong Cao, Mengia S. Rioult-Pedotti, Paolo Migani, Crystal J. Yu, Rakesh Tiwari, Keykavous Parang, Mark R. Spaller, Dennis J. Goebel, John Marshall
Pharmacy Faculty Articles and Research
Angelman syndrome (AS) is a neurodevelopment disorder characterized by severe cognitive impairment and a high rate of autism. AS is caused by disrupted neuronal expression of the maternally inherited Ube3A ubiquitin protein ligase, required for the proteasomal degradation of proteins implicated in synaptic plasticity, such as the activity-regulated cytoskeletal-associated protein (Arc/Arg3.1). Mice deficient in maternal Ube3A express elevated levels of Arc in response to synaptic activity, which coincides with severely impaired long-term potentiation (LTP) in the hippocampus and deficits in learning behaviors. In this study, we sought to test whether elevated levels of Arc interfere with brain-derived neurotrophic factor (BDNF) …
Multifactorial Modulation Of The Blood-Brain Barrier: Relationship To Stroke,
2013
University of Kentucky
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 …
Aβ Alters The Dna Methylation Status Of Cell-Fate Genes In An Alzheimer’S Disease Model,
2013
Liberty University
Aβ Alters The Dna Methylation Status Of Cell-Fate Genes In An Alzheimer’S Disease Model, Gary D. Isaacs, Noor Taher, Courtney Mckenzie, Rebecca Garrett, Matthew Baker, Nena Fox
Faculty Publications and Presentations
Alzheimer’s disease (AD) is characterized by neurofibrillary tangles and extracellular amyloid-β plaques (Aβ). Despite ongoing research, some ambiguity remains surrounding the role of Aβ in the pathogenesis of this neurodegenerative disease. While several studies have focused on the mutations associated with AD, our understanding of the epigenetic contributions to the disease remains less clear. To that end, we determined the changes in DNA methylation in differentiated human neurons with and without Aβ treatment. We isolated the DNA from neurons treated with Aβ or vehicle, and digested the two samples with either a methylation-sensitive (HpaII) or a methylation-insensitive (MspI) restriction endonuclease. …
A Neurophysiological Examination Of Stress Control In Martial Artists,
2013
University of Mississippi
A Neurophysiological Examination Of Stress Control In Martial Artists, Jack Pemment
Electronic Theses and Dissertations
The philosophies behind many martial arts often claim that by practicing martial arts individuals can gain better control over stress. We tested this idea by using controlled physical stressors to elicit an acute stress response from martial artists (n=15) and non-martial artists (n=18). To measure the extent of the stress response, we looked at changes in heart rate, respiratory sinus arrhythmia, and galvanic skin level. These three measures explore both parasympathetic and sympathetic responses, and changes in these variables continue to be explored in studies of stress and reactive aggression. In addition to our physical stressors we also exposed individuals …
Studies Of Regulated Exocytosis From Neuroendocrine Cells,
2013
Wayne State University
Studies Of Regulated Exocytosis From Neuroendocrine Cells, Madhurima Das
Wayne State University Theses
In this thesis we study cargo release and fusion pore dilation during calcium triggered exocytosis and the co-localization of calcium sensing proteins essential for exocytosis, in neuroendocrine cells.
Pancreatic beta cells secrete several hormones, the most studied one being insulin. C-peptide is a protein which is co-stored with and secreted from the same vesicles as insulin. It is found in the soluble phase unlike insulin, which is found in the dense core. The pancreatic beta cells also secrete the Chromogranin B (CgB) which is mostly found in the dense cores of secretory vesicles. In chapter 1, we found that CgB, …
Effects Of Intranasally Administered Dnsp-11 On The Central Dopamine System Of Normal And Parkinsonian Fischer 344 Rats,
2013
University of Kentucky
Effects Of Intranasally Administered Dnsp-11 On The Central Dopamine System Of Normal And Parkinsonian Fischer 344 Rats, James H. Sonne
Theses and Dissertations--Neuroscience
Due to the blood-brain barrier, delivery of many drugs to the brain has required intracranial surgery which is prone to complication. Here we show that Dopamine Neuron Stimulating Peptide 11 (DNSP-11), following non-invasive intranasal administration, protects dopaminergic neurons from a lesion model of Parkinson’s disease in the rat. A significant and dose-dependent increase in an index of dopamine turnover (the ratio of DOPAC to dopamine) was observed in the striatum of normal young adult Fischer 344 rats by whole-tissue neurochemistry compared to vehicle administered controls.
Among animals challenged with a moderate, unilateral 6-hydroxy-dopamine (6-OHDA) lesion of the substantia nigra, those …
Inhibition Of Calpains By Calpastatin: Implications For Cellular And Functional Damage Following Traumatic Brain Injury,
2013
University of Kentucky
Inhibition Of Calpains By Calpastatin: Implications For Cellular And Functional Damage Following Traumatic Brain Injury, Kathleen M. Schoch
Theses and Dissertations--Physiology
Traumatic brain injury (TBI) is a devastating health problem based on its high incidence, economic burden, and lack of effective pharmacological treatment. Individuals who suffer an injury often experience lifelong disability. TBI results in abrupt, initial cell damage leading to delayed neuronal death. The calcium-activated proteases, calpains, are known to contribute to this secondary neurodegenerative cascade. Prolonged activation of calpains results in proteolysis of numerous cellular substrates including cytoskeletal components, membrane receptors, and cytosolic proteins, contributing to cell demise despite coincident expression of calpastatin, the specific inhibitor of calpains.
A comprehensive analysis using two separate calpastatin transgenic mouse lines was …
Evaluation Of Insulin-Like Growth Factor-1 As A Therapeutic Approach For The Treatment Of Traumatic Brain Injury,
2013
University of Kentucky
Evaluation Of Insulin-Like Growth Factor-1 As A Therapeutic Approach For The Treatment Of Traumatic Brain Injury, Shaun W. Carlson
Theses and Dissertations--Physiology
Traumatic brain injury (TBI) is a prevalent CNS neurodegenerative condition that results in lasting neurological dysfunction, including potentially debilitating cognitive impairments. Despite the advancements in understanding the complex damage that can culminate in cellular dysfunction and loss, no therapeutic treatment has been effective in clinical trials, highlighting that new approaches are desperately needed. A therapy that limits cell death while simultaneously promoting reparative mechanisms, including post-traumatic neurogenesis, in the injured brain may have maximum effectiveness in improving recovery of function after TBI. Insulin-like growth factor-1 (IGF-1) is a potent growth factor that has previously been shown to promote recovery of …
Microglia Activation In A Rodent Model Of An Alcohol Use Disorder: The Importance Of Phenotype, Initiation, And Duration Of Activation,
2013
University of Kentucky
Microglia Activation In A Rodent Model Of An Alcohol Use Disorder: The Importance Of Phenotype, Initiation, And Duration Of Activation, Simon A. Marshall
Theses and Dissertations--Pharmacy
Chronic ethanol exposure results in neuroadaptations that drive the progression of an alcohol use disorder (AUD). One such driving force is alcohol-induced neurodegeneration. Neuroinflammation has been proposed as a mechanism underlying this damage. Although neuroinflammation is a physiological response to damage, overactivation of its pathways can lead to neurodegeneration. A hallmark indicator of neuroinflammation is microglial activation, but microglial activation is a heterogeneous continuum of phenotypes that can promote or inhibit neuroinflammation. Furthermore acute microglial activation is necessary to restore homeostasis, but prolonged activation can exacerbate damage. The diversity of microglia makes both the level and timecourse of activation vital …
Thc-Mediated Induction Of Δfosb And Its Modulation Of Cb1r Signaling And Adaptation,
2013
Virginia Commonwealth University
Thc-Mediated Induction Of Δfosb And Its Modulation Of Cb1r Signaling And Adaptation, Lazenka Matthew
Theses and Dissertations
The main psychoactive and therapeutic effects of Δ9-tetrahydrocannabinol (THC) are mediated through cannabinoid type 1 receptors (CB1Rs). The therapeutic uses of THC are mitigated by the development of tolerance to these therapeutic effects, whereas tolerance does not readily develop to some of the side-effects of THC, like motor impairment and reward. The development of tolerance occurs through adaptations at CB1Rs, which include desensitization (G-protein uncoupling) and downregulation (receptor degradation). Brain region-dependent differences in THC-mediated adaptations are proposed to explain the differences in tolerance to various THC-mediated effects. These studies focused on whether ΔFosB, a stable transcription factor, could regulate CB1R …
Progress Towards Understanding Of Mechanisms Of Action Of Potent Multifunctional Disease Modifying Therapeutics For Parkinson's Disease & Investigating The Methamphetamine-Induced Striatal Microglia Activation.,
2013
Wayne State University
Progress Towards Understanding Of Mechanisms Of Action Of Potent Multifunctional Disease Modifying Therapeutics For Parkinson's Disease & Investigating The Methamphetamine-Induced Striatal Microglia Activation., Mrudang M. Shah
Wayne State University Dissertations
PROGRESS TOWARDS UNDERSTANDING OF MECHANISMS OF ACTION OF POTENT MULTIFUNCTIONAL DISEASE MODIFYING
THERAPEUTICS FOR PARKINSON'S DISEASE.
by
MRUDANG MANOJKUMAR SHAH
December 2013
Advisor: Dr. Aloke Dutta
Major: Pharmaceutical Sciences
Degree: Doctor of Philosophy
Our long term goal is to design and develop potent multifunctional disease modifying therapeutics for Parkinson's disease. The objective of my dissertation was to understand the mechanisms of action of some potent small molecules (synthesized in our lab) as a disease modifying Parkinson's disease therapeutic. The objective was achieved by pursuing the following two specific aims:
1. Investigating anti-oxidant and neuroprotective effects of a lead molecule (D-512) …
Effects Of Electrical Stimulation And Testosterone In Translational Models Of Peripheral Nerve Injury,
2013
Loyola University Chicago
Effects Of Electrical Stimulation And Testosterone In Translational Models Of Peripheral Nerve Injury, Gina Monaco
Dissertations
As functional recovery following peripheral nerve injury is dependent upon successful regeneration and target reconnection, combinatorial treatments that enhance different regeneration events may be required for recovery from severe injuries. The neurotherapeutic effects of electrical stimulation (ES) and gonadal steroids have been demonstrated independently and in combination in extratemporal and intratemporal facial nerve injuries. The goals of the first aim were to develop a reliable intracranial facial nerve crush model and to investigate the therapeutic potential of combining ES with testosterone propionate (TP) in this most proximal injury model. Adult male rats were divided into intracranial sham-operated, intracranial crush, and …
Neurocognitive Function Declines Following Migraine Headache In College Students,
2013
Northern Michigan University
Neurocognitive Function Declines Following Migraine Headache In College Students, Marguerite Moore, T. Covassin, K.A. Pfeiffer, R.E. Norris, R.L. Jensen, C.F. Branta
Journal Articles
No abstract provided.
Sites Of Alcohol Action At The Glun1/Glun2b Nmda Receptor M3-M4 Domain Intersubunit Interfaces,
2013
Marquette University
Sites Of Alcohol Action At The Glun1/Glun2b Nmda Receptor M3-M4 Domain Intersubunit Interfaces, Yuanhao Zhao, M. Wu, Hong Ren, Robert W. Peoples
Biomedical Sciences Faculty Research and Publications
The N-methyl-D-aspartate (NMDA) receptor has been shown to be one of the most important target sites of alcohol in the central nervous system. We and others have identified positions in the third and fourth membrane-associated (M) domains of both GluN1 and GluN2A subunits that influence alcohol sensitivity. In the structural model of the NMDA receptor based upon the related GluA2 receptor, the outward face of the M3 domain of one subunit type is oriented toward the M4 domain of the other subunit type. We recently reported that four pairs of alcohol-sensitive amino acid positions in GluN1/GluN2A NMDA receptors interact at …
Identification Of Phosphorylation Sites In The Cooh-Terminal Tail Of The Μ-Opioid Receptor.,
2013
University of Bristol
Identification Of Phosphorylation Sites In The Cooh-Terminal Tail Of The Μ-Opioid Receptor., Ying-Ju Chen, Sue Oldfield, Adrian J. Butcher, Andrew B. Tobin, Kunal Saxena, Vsevolod V. Gurevich, Jeffrey L. Benovic, Graeme Henderson, Eamonn Kelly
Department of Biochemistry and Molecular Biology Faculty Papers
Phosphorylation is considered a key event in the signalling and regulation of the μ opioid receptor (MOPr). Here, we used mass spectroscopy to determine the phosphorylation status of the C-terminal tail of the rat MOPr expressed in human embryonic kidney 293 (HEK-293) cells. Under basal conditions, MOPr is phosphorylated on Ser(363) and Thr(370), while in the presence of morphine or [D-Ala2, NMe-Phe4, Gly-ol5]-enkephalin (DAMGO), the COOH terminus is phosphorylated at three additional residues, Ser(356) , Thr(357) and Ser(375). Using N-terminal glutathione S transferase (GST) fusion proteins of the cytoplasmic, C-terminal tail of MOPr and point mutations of the same, we …
The Mesocorticolimbic Dopamine Pathway Reconstituted In Vitro: Glutamate Receptors And Corticosteroid-Methamphetamine Neurotoxicity,
2013
University of Kentucky
The Mesocorticolimbic Dopamine Pathway Reconstituted In Vitro: Glutamate Receptors And Corticosteroid-Methamphetamine Neurotoxicity, Jennifer N. Berry
Theses and Dissertations--Psychology
Stress promotes the use of methamphetamine and other recreational substances and is often implicated in relapse to stimulant use. Thus, it is of critical importance to examine the consequences of the co-occurance of stress and methamphetamine use. Activity of the glutamatergic N-methyl D-aspartate (NMDA) receptor system appears to be involved in the neurotoxic effects of both chronic stress and methamphetamine exposure. The current studies investigated the hypothesis that chronic pre-exposure to the stress hormone corticosterone (CORT) results in an increase of NMDA receptor activity and that this will potentiate the neurotoxic effects of methamphetamine (METH). Co-cultures of the …
