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Articles 91 - 120 of 196
Full-Text Articles in Neurosciences
Cb1 Receptor Antagonism Blocks Stress-Potentiated Reinstatement Of Cocaine Seeking In Rats, Jayme R. Mcreynolds, Elizabeth M. Doncheck, Oliver Vranjkovic, Geoffrey S. Ganzman, David A. Baker, Cecilia J. Hillard, John R. Mantsch
Cb1 Receptor Antagonism Blocks Stress-Potentiated Reinstatement Of Cocaine Seeking In Rats, Jayme R. Mcreynolds, Elizabeth M. Doncheck, Oliver Vranjkovic, Geoffrey S. Ganzman, David A. Baker, Cecilia J. Hillard, John R. Mantsch
Biomedical Sciences Faculty Research and Publications
Rationale
Under some conditions, stress, rather than directly triggering cocaine seeking, potentiates reinstatement to other stimuli, including a subthreshold cocaine dose. The mechanisms responsible for stress-potentiated reinstatement are not well defined. Endocannabinoid signaling is increased by stress and regulates synaptic transmission in brain regions implicated in motivated behavior.
Objectives
The objective of this study was to test the hypothesis that cannabinoid type 1 receptor (CB1R) signaling is required for stress-potentiated reinstatement of cocaine seeking in rats.
Methods
Following i.v. cocaine self-administration (2 h access/day) and extinction in male rats, footshock stress alone does not reinstate cocaine seeking but reinstatement is …
The Relationship Of Spasticity And Impairments In Force Regulation And Neuromuscular Fatigue Post Stroke, Reivian Berrios Barillas
The Relationship Of Spasticity And Impairments In Force Regulation And Neuromuscular Fatigue Post Stroke, Reivian Berrios Barillas
Dissertations (1934 -)
Hyperreflexia that causes muscle spasticity may contribute to limitations in force regulation and walking ability post stroke. Additionally, neuromuscular fatigue may reduce force regulation, which is important because fatigue can assist to strengthen muscles that control walking. Hyperreflexia may be caused by cortical disinhibition that allows Ia afferents to amplify excitatory synaptic inputs to motoneuron pools. Cortical disinhibition is presumably caused by stroke-related motor cortex damage. Although, other excitatory synaptic sources to motoneurons contribute to motor control, hyperreflexia may be one contributor that affects stroke survivors. However, hyperreflexia is reported infrequently to effect force regulation post stroke. The goal was …
A Neurobiological Pathway That Mediates Stress-Induced Drug Use, Oliver Vranjkovic
A Neurobiological Pathway That Mediates Stress-Induced Drug Use, Oliver Vranjkovic
Dissertations (1934 -)
Cocaine addiction represents a tremendous health and financial burden on our society and the high rate of relapse to cocaine use in abstinent addicts represents a major barrier to effective therapy. Thus, understanding the factors that contribute to relapse and the underlying neurobiological processes is important for guiding the development of treatment for addiction. Stressful life events often trigger drug use in recovering addicts. The contribution of stress to drug use is problematic due to the unpredictable and often uncontrollable nature of stress. A growing literature indicates that norepinephrine and corticotropin releasing factor (CRF) in the brain play key roles …
Neural Plasticity In Response To Intervention In Adolescents With Autism Spectrum Disorders, Sheryl Jayne Stevens
Neural Plasticity In Response To Intervention In Adolescents With Autism Spectrum Disorders, Sheryl Jayne Stevens
Dissertations (1934 -)
Current theories of Autism Spectrum Disorders (ASD) suggest that they may develop from the transactional interaction between biological risk factors and environmental processes (Dawson et al., 2009). Due to the brain’s experience-expectant nature, one’s degree of social exposure may have a significant impact on their brain development and behavioral presentation. In addition to the primary critical neurodevelopmental period identified in early childhood, recent research has demonstrated a second period of substantial neurodevelopment during the adolescent period (Sisk & Foster, 2004). This study investigated the neural and behavioral impact of participation in an empirically validated behavioral intervention (The Program for the …
Drug Predictive Cues Activate Aversion-Sensitive Striatal Neurons That Encode Drug Seeking, Daniel S. Wheeler, Mykel A. Robble, Emily M. Hebron, Matthew J. Dupont, Amanda L. Ebben, Robert A. Wheeler
Drug Predictive Cues Activate Aversion-Sensitive Striatal Neurons That Encode Drug Seeking, Daniel S. Wheeler, Mykel A. Robble, Emily M. Hebron, Matthew J. Dupont, Amanda L. Ebben, Robert A. Wheeler
Biomedical Sciences Faculty Research and Publications
Drug-associated cues have profound effects on an addict’s emotional state and drug-seeking behavior. Although this influence must involve the motivational neural system that initiates and encodes the drug-seeking act, surprisingly little is known about the nature of such physiological events and their motivational consequences. Three experiments investigated the effect of a cocaine-predictive stimulus on dopamine signaling, neuronal activity, and reinstatement of cocaine seeking. In all experiments, rats were divided into two groups (paired and unpaired), and trained to self-administer cocaine in the presence of a tone that signaled the immediate availability of the drug. For rats in the paired group, …
Overexpression Of Sox11 Promotes Corticospinal Tract Regeneration After Spinal Injury While Interfering With Functional Recovery, Zimei Wang, Ashley Reynolds, Adam Kirry, Christopher Nienhaus, Murray G. Blackmore
Overexpression Of Sox11 Promotes Corticospinal Tract Regeneration After Spinal Injury While Interfering With Functional Recovery, Zimei Wang, Ashley Reynolds, Adam Kirry, Christopher Nienhaus, Murray G. Blackmore
Biomedical Sciences Faculty Research and Publications
Embryonic neurons, peripheral neurons, and CNS neurons in zebrafish respond to axon injury by initiating pro-regenerative transcriptional programs that enable axons to extend, locate appropriate targets, and ultimately contribute to behavioral recovery. In contrast, many long-distance projection neurons in the adult mammalian CNS, notably corticospinal tract (CST) neurons, display a much lower regenerative capacity. To promote CNS repair, a long-standing goal has been to activate pro-regenerative mechanisms that are normally missing from injured CNS neurons. Sox11 is a transcription factor whose expression is common to a many types of regenerating neurons, but it is unknown whether suboptimal Sox11 expression contributes …
A New Obesity Model Reveals The Hypophagic Properties Of Pacap Involve The Regulation Of Homeostatic Feeding In The Ventromedial Hypothalamic Nucleus And Hedonic Feeding In The Nucleus Accumbens, Matthew M. Hurley, Brian Maunze, Jon M. Resch, Mogen M. Frenkel, M. J. Reilley, Megan E. Block, David A. Baker, Sujean Choi
A New Obesity Model Reveals The Hypophagic Properties Of Pacap Involve The Regulation Of Homeostatic Feeding In The Ventromedial Hypothalamic Nucleus And Hedonic Feeding In The Nucleus Accumbens, Matthew M. Hurley, Brian Maunze, Jon M. Resch, Mogen M. Frenkel, M. J. Reilley, Megan E. Block, David A. Baker, Sujean Choi
Biomedical Sciences Faculty Research and Publications
Binge eating in humans is a complex disorder that often involves discrete, compulsive feeding sessions of highly palatable foods even in the absence of a deprivation state or hunger. Binging can be effectively modeled in rodents by providing subjects with limited access to a palatable food source (Western Diet; WD) as an adjunct to ad lib access to normal chow (Standard Chow; SC). Although this design recapitulates several fundamental characteristics observed in binge eating disorder, the binge eating observed in this paradigm is likely a product of both hedonic and homeostatic drives with the need to balance energy stores still …
Expression Patterns Of Bdnf With Central Anorexigenic Signaling Pathways Involving Pacap In The Hypothalamic Ventromedial Nuclei, Brian Maunze, Matthew M. Hurley, Jon M. Resch, M. J. Reilley, E. M. Wassmann, Sujean Choi
Expression Patterns Of Bdnf With Central Anorexigenic Signaling Pathways Involving Pacap In The Hypothalamic Ventromedial Nuclei, Brian Maunze, Matthew M. Hurley, Jon M. Resch, M. J. Reilley, E. M. Wassmann, Sujean Choi
Biomedical Sciences Faculty Research and Publications
Pituitary adenylate cyclase-activating polypeptide (PACAP) is a 38-amino acid polypeptide belonging to the secretin super family of peptides. PACAP binds to its type 1 receptor (PAC1R) with greater affinity than for the receptors for vasoactive intestinal polypeptides (VIP), VPAC1 and VPAC2. Although mRNA for PACAP and its receptor PAC1R are found throughout the central nervous system, they are abundantly expressed in the hypothalamic ventromedial nuclei (VMN). In male Sprague Dawley rats, infusions of PACAP into the VMN produce a robust decrease in food intake with concomitant increased energy expenditure, decreased body weight, and significantly elevated brain-derived neurotrophic factor (BDNF) mRNA …
Pacap And Cocaine Reinstatement: A Neuropeptide Expressed By Corticostriatal Neurons That Regulates Nucleus Accumbens Astrocytes, Linghai Kong, E. Hess, Brian Maunze, Matthew M. Hurley, Khadijah Makky, Sujean Choi, John R. Mantsch, David A. Baker
Pacap And Cocaine Reinstatement: A Neuropeptide Expressed By Corticostriatal Neurons That Regulates Nucleus Accumbens Astrocytes, Linghai Kong, E. Hess, Brian Maunze, Matthew M. Hurley, Khadijah Makky, Sujean Choi, John R. Mantsch, David A. Baker
Biomedical Sciences Faculty Research and Publications
Drug addiction involves heightened relapse vulnerability arising from persistent drug-induced neuro-adaptations, including a) hypofrontality which is thought to reflect reduced firing of cortical afferents to the nucleus accumbens (NAcc) and b) altered glutamate homeostasis in NAcc that likely involves reduced glutamate release and uptake by astrocytes. An important question is whether these forms of pathological plasticity are functionally linked such that reduced corticostriatal firing may result in aberrant regulation of astrocytes in the NAcc. To begin to evaluate this possibility, we first determined whether neurons regulate system xc- (Sxc) activity, a mechanism of non-vesicular glutamate release by astrocytes. We found …
Regulation Of System XC- By Pharmacological Manipulation Of Cellular Thiols, Rebecca Albano, Nicholas J. Raddatz, Julie Hjelmhaug, David A. Baker, Doug Lobner
Regulation Of System XC- By Pharmacological Manipulation Of Cellular Thiols, Rebecca Albano, Nicholas J. Raddatz, Julie Hjelmhaug, David A. Baker, Doug Lobner
Biomedical Sciences Faculty Research and Publications
The cystine/glutamate exchanger (system xc-) mediates the transport of cystine into the cell in exchange for glutamate. By releasing glutamate, system xc- can potentially cause excitotoxicity. However, through providing cystine to the cell, it regulates the levels of cellular glutathione (GSH), the main endogenous intracellular antioxidant, and may protect cells against oxidative stress. We tested two different compounds that deplete primary cortical cultures containing both neurons and astrocytes of intracellular GSH, L-buthionine-sulfoximine (L-BSO), and diethyl maleate (DEM). Both compounds caused significant concentration and time dependent decreases in intracellular GSH levels. However; DEM caused an increase …
Augmented Cystine–Glutamate Exchange By Pituitary Adenylate Cyclase-Activating Polypeptide Signaling Via The Vpac1 Receptor, Jon M. Resch, Rebecca Albano, Xiaoqian Liu, Julie Hjelmhaug, Doug Lobner, David A. Baker, Sujean Choi
Augmented Cystine–Glutamate Exchange By Pituitary Adenylate Cyclase-Activating Polypeptide Signaling Via The Vpac1 Receptor, Jon M. Resch, Rebecca Albano, Xiaoqian Liu, Julie Hjelmhaug, Doug Lobner, David A. Baker, Sujean Choi
Biomedical Sciences Faculty Research and Publications
In the central nervous system, cystine import in exchange for glutamate through system xc- is critical for the production of the antioxidant glutathione by astrocytes, as well as the maintenance of extracellular glutamate. Therefore, regulation of system xc- activity affects multiple aspects of cellular physiology and may contribute to disease states. Pituitary adenylate cyclase-activating polypeptide (PACAP) is a neuronally derived peptide that has already been demonstrated to modulate multiple aspects of glutamate signaling suggesting PACAP may also target activity of cystine–glutamate exchange via system xc-. In this study, 24-h treatment of primary cortical …
Behavioral Assessment Of Acute Inhibition Of System XC - In Rats, Victoria Lutgen, Jon M. Resch, Krista Qualmann, Nicholas J. Raddatz, Cristina Panhans, Ellen M. Olander, Linghai Kong, Sujean Choi, John R. Mantsch, David A. Baker
Behavioral Assessment Of Acute Inhibition Of System XC - In Rats, Victoria Lutgen, Jon M. Resch, Krista Qualmann, Nicholas J. Raddatz, Cristina Panhans, Ellen M. Olander, Linghai Kong, Sujean Choi, John R. Mantsch, David A. Baker
Biomedical Sciences Faculty Research and Publications
Rationale
Gaps in our understanding of glutamatergic signaling may be key obstacles in accurately modeling complex CNS diseases. System xc - is an example of a poorly understood component of glutamate homeostasis that has the potential to contribute to CNS diseases.
Objectives
This study aims to determine whether system xc - contributes to behaviors used to model features of CNS disease states.
Methods
In situ hybridization was used to map mRNA expression of xCT throughout the brain. Microdialysis in the prefrontal cortex was used to sample extracellular glutamate levels; HPLC was used to measure extracellular glutamate and tissue …
Phosphate And Acidosis Act Synergistically To Depress Peak Power In Rat Muscle Fibers, Cassandra R. Nelson, Edward P. Debold, Robert H. Fitts
Phosphate And Acidosis Act Synergistically To Depress Peak Power In Rat Muscle Fibers, Cassandra R. Nelson, Edward P. Debold, Robert H. Fitts
Biomedical Sciences Faculty Research and Publications
Skeletal muscle fatigue is characterized by the buildup of H+ and inorganic phosphate (Pi), metabolites that are thought to cause fatigue by inhibiting muscle force, velocity, and power. While the individual effects of elevated H+ or Pi have been well characterized, the effects of simultaneously elevating the ions, as occurs during fatigue in vivo, are still poorly understood. To address this, we exposed slow and fast rat skinned muscle fibers to fatiguing levels of H+ (pH 6.2) and Pi (30 mM) and determined the effects on contractile properties. At 30°C, elevated Pi …
Cyclic Ovarian Hormone Modulation Of Supraspinal Δ9-Tetrahydrocannabinol-Induced Antinociception And Cannabinoid Receptor Binding In The Female Rat, Alexa A. Wakley, Alisha A. Mcbride, Linda K. Vaughn, Rebecca M. Craft
Cyclic Ovarian Hormone Modulation Of Supraspinal Δ9-Tetrahydrocannabinol-Induced Antinociception And Cannabinoid Receptor Binding In The Female Rat, Alexa A. Wakley, Alisha A. Mcbride, Linda K. Vaughn, Rebecca M. Craft
Biomedical Sciences Faculty Research and Publications
Estrous cycle-related fluctuations in delta-9-tetrahydrocannabinol (THC)-induced antinociception have been observed in the rat. The aim of this study was to determine which major ovarian hormone modulates the antinociceptive effects of i.c.v. THC, and whether hormone modulation of THC's behavioral effects could be due to changes in brain cannabinoid receptors (CBr). Vehicle (oil) or hormones (estradiol or progesterone, or both) were administered to female rats on days 3 and 7 post-ovariectomy. On the morning or afternoon of day 8 or day 9, vehicle or THC (100 μg) was administered i.c.v. Paw pressure, tail withdrawal, locomotor activity and catalepsy tests were conducted …
Stress-Induced Cocaine Seeking Requires A Beta-2 Adrenergic Receptor-Regulated Pathway From The Ventral Bed Nucleus Of The Stria Terminalis That Regulates Crf Actions In The Ventral Tegmental Area, Oliver Vranjkovic, Paul J. Gasser, Clayton H. Gerndt, David A. Baker, John R. Mantsch
Stress-Induced Cocaine Seeking Requires A Beta-2 Adrenergic Receptor-Regulated Pathway From The Ventral Bed Nucleus Of The Stria Terminalis That Regulates Crf Actions In The Ventral Tegmental Area, Oliver Vranjkovic, Paul J. Gasser, Clayton H. Gerndt, David A. Baker, John R. Mantsch
Biomedical Sciences Faculty Research and Publications
The ventral bed nucleus of the stria terminalis (vBNST) has been implicated in stress-induced cocaine use. Here we demonstrate that, in the vBNST, corticotropin releasing factor (CRF) is expressed in neurons that innervate the ventral tegmental area (VTA), a site where the CRF receptor antagonist antalarmin prevents the reinstatement of cocaine seeking by a stressor, intermittent footshock, following intravenous self-administration in rats. The vBNST receives dense noradrenergic innervation and expresses β adrenergic receptors (ARs). Footshock-induced reinstatement was prevented by bilateral intra-vBNST injection of the β-2 AR antagonist, ICI-118,551, but not the β-1 AR antagonist, betaxolol. Moreover, bilateral intra-vBNST injection of …
Inhibition Of Food Intake By Pacap In The Hypothalamic Ventromedial Nuclei Is Mediated By Nmda Receptors, Jon M. Resch, Brian Maunze, Kailynn A. Phillips, Sujean Choi
Inhibition Of Food Intake By Pacap In The Hypothalamic Ventromedial Nuclei Is Mediated By Nmda Receptors, Jon M. Resch, Brian Maunze, Kailynn A. Phillips, Sujean Choi
Biomedical Sciences Faculty Research and Publications
Central injections of pituitary adenylate cyclase-activating polypeptide (PACAP) into the ventromedial nuclei (VMN) of the hypothalamus produce hypophagia that is dependent upon the PAC1 receptor; however, the signaling downstream of this receptor in the VMN is unknown. Though PACAP signaling has many targets, this neuropeptide has been shown to influence glutamate signaling in several brain regions through mechanisms involving NMDA receptor potentiation via activation of the Src family of protein tyrosine kinases. With this in mind, we examined the Src-NMDA receptor signaling pathway as a target for PACAP signaling in the VMN that may mediate its effects on feeding behavior. …
Nature Of The Neurotoxic Membrane Actions Of Amyloid-Β On Hippocampal Neurons In Alzheimer's Disease, Fernando J. Sepúlveda, Humberto Fierro, Eduardo Fernandez, Carolina Castillo, Robert W. Peoples, Carlos Opazo, Luis G. Aguayo
Nature Of The Neurotoxic Membrane Actions Of Amyloid-Β On Hippocampal Neurons In Alzheimer's Disease, Fernando J. Sepúlveda, Humberto Fierro, Eduardo Fernandez, Carolina Castillo, Robert W. Peoples, Carlos Opazo, Luis G. Aguayo
Biomedical Sciences Faculty Research and Publications
The mechanism by which amyloid-β (Aβ) produces brain dysfunction in patients with Alzheimer's disease is largely unknown. According to previous studies, Aβ might share perforating properties with gramicidin, a well-accepted membrane-disrupting peptide. Therefore, we hypothesize that the key steps leading to synaptotoxicity by Aβ and gramicidin involve peptide aggregation, pore formation, and calcium dysregulation. Here, we show that Aβ and gramicidin form aggregates enriched in β-sheet structures using electron microscopy, and Thioflavin and Congo Red staining techniques. Also, we found that Aβ and gramicidin display fairly similar actions in hippocampal cell membranes, i.e. inducing Ca2+ entry and synaptoxicity characterized …
Fgf-2 Induces Neuronal Death Through Upregulation Of System Xc-, Xiaoqian Liu, Rebecca Albano, Doug Lobner
Fgf-2 Induces Neuronal Death Through Upregulation Of System Xc-, Xiaoqian Liu, Rebecca Albano, Doug Lobner
Biomedical Sciences Faculty Research and Publications
The cystine/glutamate antiporter (system xc-) transports cystine into cell in exchange for glutamate. Fibroblast growth factor-2 (FGF-2) upregulates system xc- selectively on astrocytes, which leads to increased cystine uptake, the substrate for glutathione production, and increased glutamate release. While increased intracellular glutathione can limit oxidative stress, the increased glutamate release can potentially lead to excitotoxicity to neurons. To test this hypothesis, mixed neuronal and glial cortical cultures were treated with FGF-2. Treatment with FGF-2 for 48 h caused a significant neuronal death in these cultures. Cell death was not observed in neuronal-enriched cultures, or astrocyte-enriched …
Neurobiological Mechanisms That Contribute To Stress-Related Cocaine Use, John R. Mantsch, Oliver Vranjkovic, Robert C. Twining, Paul J. Gasser, Jayme R. Mcreynolds, Jordan M. Blacktop
Neurobiological Mechanisms That Contribute To Stress-Related Cocaine Use, John R. Mantsch, Oliver Vranjkovic, Robert C. Twining, Paul J. Gasser, Jayme R. Mcreynolds, Jordan M. Blacktop
Biomedical Sciences Faculty Research and Publications
The ability of stressful life events to trigger drug use is particularly problematic for the management of cocaine addiction due to the unpredictable and often uncontrollable nature of stress. For this reason, understanding the neurobiological processes that contribute to stress-related drug use is important for the development of new and more effective treatment strategies aimed at minimizing the role of stress in the addiction cycle. In this review we discuss the neurocircuitry that has been implicated in stress-induced drug use with an emphasis on corticotropin releasing factor actions in the ventral tegmental area (VTA) and an important pathway from the …
The Hiv-1 Protein Vpr Targets The Endoribonuclease Dicer For Proteasomal Degradation To Boost Macrophage Infection, Laurieann Klockow, Hamayun J. Sharifi, Xiaoyun Wen, Meg Flagg, Andrea K.M. Furuya, Michael Nekorchuk, Carlos M.C. De Noronha
The Hiv-1 Protein Vpr Targets The Endoribonuclease Dicer For Proteasomal Degradation To Boost Macrophage Infection, Laurieann Klockow, Hamayun J. Sharifi, Xiaoyun Wen, Meg Flagg, Andrea K.M. Furuya, Michael Nekorchuk, Carlos M.C. De Noronha
Biomedical Sciences Faculty Research and Publications
The HIV-1 protein Vpr enhances macrophage infection, triggers G2 cell cycle arrest, and targets cells for NK-cell killing. Vpr acts through the CRL4DCAF1 ubiquitin ligase complex to cause G2 arrest and trigger expression of NK ligands. Corresponding ubiquitination targets have not been identified. UNG2 and SMUG1 are the only known substrates for Vpr-directed depletion through CRL4DCAF1. Here we identify the endoribonuclease Dicer as a target of HIV-1 Vpr-directed proteasomal degradation through CRL4DCAF1. We show that HIV-1 Vpr inhibits short hairpin RNA function as expected upon reduction of Dicer levels. Dicer inhibits HIV-1 replication in T …
Environmental Circadian Disruption Elevates The Il-6 Response To Lipopolysaccharide In Blood, Kandis L. Adams, Oscar Castanon-Cervantes, Jennifer A. Evans, Alec J. Davidson
Environmental Circadian Disruption Elevates The Il-6 Response To Lipopolysaccharide In Blood, Kandis L. Adams, Oscar Castanon-Cervantes, Jennifer A. Evans, Alec J. Davidson
Biomedical Sciences Faculty Research and Publications
The immune system is regulated by circadian clocks within the brain and immune cells. Environmental circadian disruption (ECD), consisting of a 6-h phase advance of the light:dark cycle once a week for 4 weeks, elevates the inflammatory response to lipopolysaccharide (LPS) both in vivo and in vitro. This indicates that circadian disruption adversely affects immune function; however, it remains unclear how the circadian system regulates this response under ECD conditions. Here, we develop an assay using ex vivo whole-blood LPS challenge to investigate the circadian regulation of immune responses in mice and to determine the effects of ECD on these …
Prefrontal Activity Links Nonoverlapping Events In Memory, Marieke R. Gilmartin, Hiroyuki Miyawaki, Fred J. Helmstetter, Kamran Diba
Prefrontal Activity Links Nonoverlapping Events In Memory, Marieke R. Gilmartin, Hiroyuki Miyawaki, Fred J. Helmstetter, Kamran Diba
Biomedical Sciences Faculty Research and Publications
The medial prefrontal cortex (mPFC) plays an important role in memory. By maintaining a working memory buffer, neurons in prelimbic (PL) mPFC may selectively contribute to learning associations between stimuli that are separated in time, as in trace fear conditioning (TFC). Until now, evidence for this bridging role was largely descriptive. Here we used optogenetics to silence neurons in the PL mPFC of rats during learning in TFC. Memory formation was prevented when mPFC was silenced specifically during the interval separating the cue and shock. Our results provide support for a working memory function for these cells and indicate that …
Nr2a- And Nr2b-Containing Nmda Receptors In The Prelimbic Medial Prefrontal Cortex Differentially Mediate Trace, Delay, And Contextual Fear Conditioning, Marieke R. Gilmartin, Janine L. Kwapis, Fred J. Helmstetter
Nr2a- And Nr2b-Containing Nmda Receptors In The Prelimbic Medial Prefrontal Cortex Differentially Mediate Trace, Delay, And Contextual Fear Conditioning, Marieke R. Gilmartin, Janine L. Kwapis, Fred J. Helmstetter
Biomedical Sciences Faculty Research and Publications
Activation of N-methyl-D-aspartate receptors (NMDAR) in the prelimbic medial prefrontal cortex (PL mPFC) is necessary for the acquisition of both trace and contextual fear memories, but it is not known how specific NR2 subunits support each association. The NR2B subunit confers unique properties to the NMDAR and may differentially regulate these two fear memories. Here we show that NR2A-containing NMDARs mediate trace, delay, and contextual fear memories, but NR2B-containing NMDARs are required only for trace conditioning, consistent with a role for PL mPFC in working memory.
Evidence For Covalent Linkage Between Some Plasma Α2-Antiplasmin Molecules And Aα Chains Of Circulating Fibrinogen, Michael W. Mosesson, Trudy Holyst, Irene Hernandez, Kevin R. Siebenlist
Evidence For Covalent Linkage Between Some Plasma Α2-Antiplasmin Molecules And Aα Chains Of Circulating Fibrinogen, Michael W. Mosesson, Trudy Holyst, Irene Hernandez, Kevin R. Siebenlist
Biomedical Sciences Faculty Research and Publications
Plasma alpha2-antiplasmin (α2AP) is a single-chain serine protease inhibitor acting mainly through the fibrinolytic system. Its physiological importance is underscored by the observation that homozygous α2AP deficiency results in a severe hemorrhagic disorder due to rapid fibrin clot lysis (hyperfibrinolysis).
Sites Of Alcohol Action At The Glun1/Glun2b Nmda Receptor M3-M4 Domain Intersubunit Interfaces, Yuanhao Zhao, M. Wu, Hong Ren, Robert W. Peoples
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 …
Interactions Among Positions In The Third And Fourth Membrane-Associated Domains At The Intersubunit Interface Of The N-Methyl-D-Aspartate Receptor Forming Sites Of Alcohol Action, Hong Ren, Yulin Zhao, Donard S. Dwyer, Robert W. Peoples
Interactions Among Positions In The Third And Fourth Membrane-Associated Domains At The Intersubunit Interface Of The N-Methyl-D-Aspartate Receptor Forming Sites Of Alcohol Action, Hong Ren, Yulin Zhao, Donard S. Dwyer, Robert W. Peoples
Biomedical Sciences Faculty Research and Publications
The N-methyl-d-aspartate (NMDA) glutamate receptor is a major target of ethanol in the brain. Previous studies have identified positions in the third and fourth membrane-associated (M) domains of the NMDA receptor GluN1 and GluN2A subunits that influence alcohol sensitivity. The predicted structure of the NMDA receptor, based on that of the related GluA2 subunit, indicates a close apposition of the alcohol-sensitive positions in M3 and M4 between the two subunit types. We tested the hypothesis that these positions interact to regulate receptor kinetics and ethanol sensitivity by using dual substitution mutants. In single-substitution mutants, we found that a position …
Glutathione-Mediated Neuroprotection Against Methylmercury Neurotoxicity In Cortical Culture Is Dependent On Mrp1, Travis Rush, Xiaoqian Liu, Andrew B. Nowakowski, David H. Petering, Doug Lobner
Glutathione-Mediated Neuroprotection Against Methylmercury Neurotoxicity In Cortical Culture Is Dependent On Mrp1, Travis Rush, Xiaoqian Liu, Andrew B. Nowakowski, David H. Petering, Doug Lobner
Biomedical Sciences Faculty Research and Publications
Methylmercury (MeHg) exposure at high concentrations poses significant neurotoxic threat to humans worldwide. The present study investigated the mechanisms of glutathione-mediated attenuation of MeHg neurotoxicity in primary cortical culture. MeHg (5 μM) caused depletion of mono- and disulfide glutathione in neuronal, glial and mixed cultures. Supplementation with exogenous glutathione, specifically glutathione monoethyl ester (GSHME) protected against the MeHg induced neuronal death. MeHg caused increased reactive oxygen species (ROS) formation measured by dichlorodihydrofluorescein (DCF) fluorescence with an early increase at 30 min and a late increase at 6 h. This oxidative stress was prevented by the presence of either GSHME or …
Cannabinoid Receptor Involvement In Stress-Induced Cocaine Reinstatement: Potential Interaction With Noradrenergic Pathways, Linda K. Vaughn, John R. Mantsch, Oliver Vranjkovic, G. Stroh, M. Lacourt, M. Kreutter, Cecilia J. Hillard
Cannabinoid Receptor Involvement In Stress-Induced Cocaine Reinstatement: Potential Interaction With Noradrenergic Pathways, Linda K. Vaughn, John R. Mantsch, Oliver Vranjkovic, G. Stroh, M. Lacourt, M. Kreutter, Cecilia J. Hillard
Biomedical Sciences Faculty Research and Publications
This study examined the role of endocannabinoid signaling in stress-induced reinstatement of cocaine seeking and explored the interaction between noradrenergic and endocannabinergic systems in the process. A well-validated preclinical model for human relapse, the rodent conditioned place preference assay, was used. Cocaine-induced place preference was established in C57BL/6 mice using injections of 15 mg/kg cocaine. Following extinction of preference for the cocaine-paired environment, reinstatement of place preference was determined following 6 min of swim stress or cocaine injection (15 mg/kg, i.p.). The role of endocannabinoid signaling was studied using the cannabinoid antagonist AM-251 (3 mg/kg, i.p.). Another cohort of mice …
Catecholamines In The Bed Nucleus Of The Stria Terminalis Reciprocally Respond To Reward And Aversion, Robert A. Wheeler
Catecholamines In The Bed Nucleus Of The Stria Terminalis Reciprocally Respond To Reward And Aversion, Robert A. Wheeler
Biomedical Sciences Faculty Research and Publications
Background
Traditionally, norepinephrine has been associated with stress responses, whereas dopamine has been associated with reward. Both of these catecholamines are found within the bed nucleus of the stria terminalis (BNST), a brain relay nucleus in the extended amygdala between cortical/limbic centers, and the hypothalamic-pituitary-adrenal axis. Despite this colocalization, little is known about subsecond catecholamine signaling in subregions of the BNST in response to salient stimuli.
Methods
Changes in extracellular catecholamine concentration in subregions of the BNST in response to salient stimuli were measured within the rat BNST with fast-scan cyclic voltammetry at carbon-fiber microelectrodes.
Results
A discrete subregional distribution …
L-Tetrahydropalamatine: A Potential New Medication For The Treatment Of Cocaine Addiction, Jia Bei Wang, John R. Mantsch
L-Tetrahydropalamatine: A Potential New Medication For The Treatment Of Cocaine Addiction, Jia Bei Wang, John R. Mantsch
Biomedical Sciences Faculty Research and Publications
Levo-tetrahydropalmatine (l-THP) is an active constituent of herbal preparations containing plant species of the genera Stephania and Corydalis and has been approved and used in China for a number of clinical indications under the drug name Rotundine. The pharmacological profile of l-THP, which includes antagonism of dopamine D1 and D2 receptors and actions at dopamine D3, α adrenergic and serotonin receptors, suggests that it may have utility for treating cocaine addiction. In this review, we provide an overview of the pharmacological properties of l-THP and the evidence supporting its development as an anti-addiction medication. The results …