Open Access. Powered by Scholars. Published by Universities.®
- Keyword
-
- Cocaine (14)
- Dopamine (10)
- Relapse (10)
- Stress (10)
- Addiction (7)
-
- Corticosterone (7)
- Glutamate (7)
- Norepinephrine (6)
- PACAP (6)
- Reinstatement (6)
- Suprachiasmatic nucleus (6)
- Axon regeneration (5)
- Electrophysiology (5)
- Fibrinogen (5)
- Transcription factor (5)
- Alcohol (4)
- Astrocyte (4)
- CRF (4)
- Circadian (4)
- Factor XIII (4)
- Fibrin (4)
- Glutamate receptor (4)
- Nucleus accumbens (4)
- Spinal cord injury (4)
- System xc- (4)
- Alzheimer's disease (3)
- Behavior (3)
- Corticospinal (3)
- Cystine (3)
- Ethanol (3)
Articles 91 - 120 of 177
Full-Text Articles in Neurosciences
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 …
A Single Phenylalanine Residue In The Main Intracellular Loop Of Α1 Γ-Aminobutyric Acid Type A And Glycine Receptors Influences Their Sensitivity To Propofol, Gustavo Moraga-Cid, Gonzalo E. Yevenes, Günther Schmalzing, Robert W. Peoples, Luis G. Aguayo
A Single Phenylalanine Residue In The Main Intracellular Loop Of Α1 Γ-Aminobutyric Acid Type A And Glycine Receptors Influences Their Sensitivity To Propofol, Gustavo Moraga-Cid, Gonzalo E. Yevenes, Günther Schmalzing, Robert W. Peoples, Luis G. Aguayo
Biomedical Sciences Faculty Research and Publications
Background: The intravenous anesthetic propofol acts as a positive allosteric modulator of glycine (GlyRs) and γ-aminobutyric acid type A (GABAARs) receptors. Although the role of transmembrane residues is recognized, little is known about the involvement of other regions in the modulatory effects of propofol. Therefore, the influence of the large intracellular loop in propofol sensitivity of both receptors was explored. Methods: The large intracellular loop of α1 GlyRs and α1β2 GABAARs was screened using alanine replacement. Sensitivity to propofol was studied using patch-clamp recording in HEK293 cells transiently transfected with …
Augmented Cocaine Seeking In Response To Stress Or Crf Delivered Into The Ventral Tegmental Area Following Long-Access Self-Administration Is Mediated By Crf Receptor Type 1 But Not Crf Receptor Type 2, Jordan M. Blacktop, Chad Seubert, David A. Baker, Nathan Ferda, Geng Lee, Evan N. Graf, John R. Mantsch
Augmented Cocaine Seeking In Response To Stress Or Crf Delivered Into The Ventral Tegmental Area Following Long-Access Self-Administration Is Mediated By Crf Receptor Type 1 But Not Crf Receptor Type 2, Jordan M. Blacktop, Chad Seubert, David A. Baker, Nathan Ferda, Geng Lee, Evan N. Graf, John R. Mantsch
Biomedical Sciences Faculty Research and Publications
Stressful events are determinants of relapse in recovering cocaine addicts. Excessive cocaine use may increase susceptibility to stressor-induced relapse through alterations in brain corticotropin-releasing factor (CRF) regulation of neurocircuitry involved in drug seeking. We previously reported that the reinstatement of cocaine seeking by a stressor (footshock) is CRF dependent and is augmented in rats that self-administered cocaine under long-access (LgA; 6 h daily) conditions for 14 d when compared with rats provided shorter daily cocaine access [short access (ShA) rats; 2 h daily]. Further, we have demonstrated that reinstatement in response to intracerebroventricular CRF administration is heightened in LgA rats. …
Natural And Synthetic Corticosteroids Inhibit Uptake2-Mediated Transport In Cns Neurons, Jonathan E. Hill, Khadijah Makky, Lalita Shrestha, Cecilia J. Hillard, Paul J. Gasser
Natural And Synthetic Corticosteroids Inhibit Uptake2-Mediated Transport In Cns Neurons, Jonathan E. Hill, Khadijah Makky, Lalita Shrestha, Cecilia J. Hillard, Paul J. Gasser
Biomedical Sciences Faculty Research and Publications
In addition to exerting actions via mineralocorticoid and glucocorticoid receptors, corticosteroids also act by inhibiting uptake2, a high-capacity monoamine transport system originally described in peripheral tissues. Recent studies have demonstrated that uptake2 transporters are expressed in the brain and play roles in monoamine clearance, suggesting that they mediate some corticosteroid effects on physiological and behavioral processes. However, the sensitivity of brain uptake2 to many natural and synthetic corticosteroids has not been characterized. Cultured rat cerebellar granule neurons (CGNs) were previously shown to exhibit corticosterone-sensitive accumulation of the uptake2 substrate1-methyl-4-phenylpyridinium (MPP+). We examined the …
Oral Administration Of Levo-Tetrahydropalmatine Attenuates Reinstatement Of Extinguished Cocaine Seeking By Cocaine, Stress Or Drug-Associated Cues In Rats, Yazmin Figueroa-Guzman, Christopher R. Mueller, Oliver Vranjkovic, Samantha Wisniewski, Zheng Yang, Shi-Jiang Li, Colin Bohr, Evan N. Graf, David A. Baker, John R. Mantsch
Oral Administration Of Levo-Tetrahydropalmatine Attenuates Reinstatement Of Extinguished Cocaine Seeking By Cocaine, Stress Or Drug-Associated Cues In Rats, Yazmin Figueroa-Guzman, Christopher R. Mueller, Oliver Vranjkovic, Samantha Wisniewski, Zheng Yang, Shi-Jiang Li, Colin Bohr, Evan N. Graf, David A. Baker, John R. Mantsch
Biomedical Sciences Faculty Research and Publications
Cocaine addiction is characterized by a persistently heightened susceptibility to drug relapse. For this reason, the identification of medications that prevent drug relapse is a critical goal of drug abuse research. Drug re-exposure, the onset of stressful life events, and exposure to cues previously associated with drug use have been identified as determinants of relapse in humans and have been found to reinstate extinguished cocaine seeking in rats. This study examined the effects of acute oral (gavage) administration of levo-tetrahydropalmatine (l-THP), a tetrahydroprotoberberine isoquinoline with a pharmacological profile that includes antagonism of D1, D2 and D3 dopamine receptors, …
Insulin-Like Growth Factor 1 And Transforming Growth Factor-Β Stimulate Cystine/Glutamate Exchange Activity In Dental Pulp Cells, Katherine Pauly, Kymberly Fritz, Alyssa Furey, Doug Lobner
Insulin-Like Growth Factor 1 And Transforming Growth Factor-Β Stimulate Cystine/Glutamate Exchange Activity In Dental Pulp Cells, Katherine Pauly, Kymberly Fritz, Alyssa Furey, Doug Lobner
Biomedical Sciences Faculty Research and Publications
Introduction
The growth factors insulin-like growth factor (IGF-1) and transforming growth factor-β (TGF-β) are protective to dental pulp cells in culture against the toxicity of the composite materials Durafill VS and Flow Line (Henry Schein Inc, New York, NY). Because the toxicity of these materials is mediated by oxidative stress, it seemed possible that the protective effects of IGF-1 and TGF-β were through the enhancement of an endogenous antioxidant mechanism.
Methods
We used cultured dental pulp cells to determine the mechanism of the protective effects of IGF-1 and TGF-β, focusing on the glutathione system and the role of cystine/glutamate exchange …
Forebrain Origins Of Glutamatergic Innervation To The Rat Paraventricular Nucleus Of The Hypothalamus: Differential Inputs To The Anterior Versus Posterior Subregions, Yvonne M. Ulrich-Lai, Kenneth R. Jones, Dana R. Ziegler, William E. Cullinan, James P. Herman
Forebrain Origins Of Glutamatergic Innervation To The Rat Paraventricular Nucleus Of The Hypothalamus: Differential Inputs To The Anterior Versus Posterior Subregions, Yvonne M. Ulrich-Lai, Kenneth R. Jones, Dana R. Ziegler, William E. Cullinan, James P. Herman
Biomedical Sciences Faculty Research and Publications
The hypothalamic paraventricular nucleus (PVN) regulates numerous homeostatic systems and functions largely under the influence of forebrain inputs. Glutamate is a major neurotransmitter in forebrain, and glutamate neurosignaling in the PVN is known to mediate many of its functions. Previous work showed that vesicular glutamate transporters (VGluTs; specific markers for glutamatergic neurons) are expressed in forebrain sites that project to the PVN; however, the extent of this presumed glutamatergic innervation to the PVN is not clear. In the present study retrograde FluoroGold (FG) labeling of PVN-projecting neurons was combined with in situ hybridization for VGluT1 and VGluT2 mRNAs to identify …
Effect Of Animal Facility Construction On Basal Hypothalamic-Pituitary-Adrenal And Renin-Aldosterone Activity In The Rat, Hershel Raff, Eric D. Bruder, William E. Cullinan, Dana R. Ziegler, Eric P. Cohen
Effect Of Animal Facility Construction On Basal Hypothalamic-Pituitary-Adrenal And Renin-Aldosterone Activity In The Rat, Hershel Raff, Eric D. Bruder, William E. Cullinan, Dana R. Ziegler, Eric P. Cohen
Biomedical Sciences Faculty Research and Publications
Nearby construction can cause subtle, but important activation of the hypothalamic-pituitary-adrenal axis in laboratory rats.
Although loud noise and intense vibration are known to alter the behavior and phenotype of laboratory animals, little is known about the effects of nearby construction. We studied the effect of a nearby construction project on the classic stress hormones ACTH, corticosterone, renin, and aldosterone in rats residing in a barrier animal facility before, for the first 3 months of a construction project, and at 1 month after all construction was completed. During some of the construction, noise and vibrations were not obvious to investigators …
Repeated N-Acetyl Cysteine Reduces Cocaine Seeking In Rodents And Craving In Cocaine-Dependent Humans, Shelley L. Amen, Linda B. Piacentine, Muhammad E. Ahmad, Shi-Jiang Li, John R. Mantsch, Robert C. Risinger, David A. Baker
Repeated N-Acetyl Cysteine Reduces Cocaine Seeking In Rodents And Craving In Cocaine-Dependent Humans, Shelley L. Amen, Linda B. Piacentine, Muhammad E. Ahmad, Shi-Jiang Li, John R. Mantsch, Robert C. Risinger, David A. Baker
Biomedical Sciences Faculty Research and Publications
Addiction is a chronic relapsing disorder hypothesized to be produced by drug-induced plasticity that renders individuals vulnerable to craving-inducing stimuli such as re-exposure to the drug of abuse. Drug-induced plasticity that may result in the addiction phenotype includes increased excitatory signaling within corticostriatal pathways that correlates with craving in humans and is necessary for reinstatement in rodents. Reduced cystine–glutamate exchange by system xc– appears to contribute to heightened excitatory signaling within the striatum, thereby posing this as a novel target in the treatment of addiction. In the present report, we examined the impact of repeated N-acetyl cysteine, …
The Effect Of High Dose Total Body Irradiation On Acth, Corticosterone, And Catecholamines In The Rat, Eric P. Cohen, Eric D. Bruder, William E. Cullinan, Dana R. Ziegler, Hershel Raff
The Effect Of High Dose Total Body Irradiation On Acth, Corticosterone, And Catecholamines In The Rat, Eric P. Cohen, Eric D. Bruder, William E. Cullinan, Dana R. Ziegler, Hershel Raff
Biomedical Sciences Faculty Research and Publications
Total body irradiation (TBI) or partial body irradiation is a distinct risk of accidental, wartime, or terrorist events. Total body irradiation is also used as conditioning therapy before hematopoietic stem cell transplantation. This therapy can result in injury to multiple tissues and might result in death as a result of multiorgan failure. The hypothalamic–pituitary–adrenal (HPA) axis could play a causative role in those injuries, in addition to being activated under conditions of stress. In a rat model of TBI, we have established that radiation nephropathy is a significant lethal complication, which is caused by hypertension and uremia. The current study …
Levo-Tetrahydropalmatine Attenuates Cocaine Self-Administration Under A Progressive-Ratio Schedule And Cocaine Discrimination In Rats, John R. Mantsch, Samantha Wisniewski, Oliver Vranjkovic, Corey Peters, Amanda Becker, Abbey Valentine, Shi-Jiang Li, David A. Baker, Zheng Yang
Levo-Tetrahydropalmatine Attenuates Cocaine Self-Administration Under A Progressive-Ratio Schedule And Cocaine Discrimination In Rats, John R. Mantsch, Samantha Wisniewski, Oliver Vranjkovic, Corey Peters, Amanda Becker, Abbey Valentine, Shi-Jiang Li, David A. Baker, Zheng Yang
Biomedical Sciences Faculty Research and Publications
Levo-tetrahydropalmatine (l-THP) is an alkaloid found in many traditional Chinese herbal preparations and has a unique pharmacological profile that includes dopamine receptor antagonism. Previously we demonstrated that l-THP attenuates fixed-ratio (FR) cocaine self-administration (SA) and cocaine-induced reinstatement in rats at doses that do not alter food-reinforced responding. This study examined the effects of l-THP on cocaine and food SA under progressive-ratio (PR) schedules of reinforcement and the discriminative stimulus effects of cocaine. In adult male Sprague–Dawley rats self-administering cocaine (0.5 or 1.0 mg/kg/inf), l-THP significantly reduced breaking points at the 1.875, 3.75 and 7.5 mg/kg …
Effects Of Hypothyroidism On Cell Proliferation And Neuroblasts In The Hippocampal Dentate Gyrus In A Rat Model Of Type 2 Diabetes, Sun Shin Yi, In Koo Hwang, Ji Won Choi, Moo-Ho Won, Je Kyung Seong, Yeo Sung Yoon
Effects Of Hypothyroidism On Cell Proliferation And Neuroblasts In The Hippocampal Dentate Gyrus In A Rat Model Of Type 2 Diabetes, Sun Shin Yi, In Koo Hwang, Ji Won Choi, Moo-Ho Won, Je Kyung Seong, Yeo Sung Yoon
Biomedical Sciences Faculty Research and Publications
We observed how the hypothyroid state affects diabetic states and modifies cell proliferation and neuroblast differentiation in the hippocampal dentate gyrus (DG). For this, 0.03% methimazole, an anti-thyroid drug, was administered to 7-week-old, pre-diabetic Zucker diabetic fatty (ZDF) rats by drinking water for 5 weeks, and the animals were sacrificed at 12 weeks of age. At this age, corticosterone levels were significantly increased in the ZDF rats compared to those in the control (Zucker lean control, ZLC) rats. Methimazole (methi) treatment in the ZDF rats (ZDF-methi rats) significantly decreased corticosterone levels and diabetes-induced hypertrophy of adrenal glands. In the DG, …
Molecular Requirements For Ethanol Differential Allosteric Modulation Of Ligand-Gated Ion Channels Based On Selective Gβγ Modulation, Gonzalo E. Yevenes, Gustavo Moraga-Cid, Ariel Avila, Leonardo Guzman, Maximiliano Figueroa, Robert W. Peoples, Luis G. Aguayo
Molecular Requirements For Ethanol Differential Allosteric Modulation Of Ligand-Gated Ion Channels Based On Selective Gβγ Modulation, Gonzalo E. Yevenes, Gustavo Moraga-Cid, Ariel Avila, Leonardo Guzman, Maximiliano Figueroa, Robert W. Peoples, Luis G. Aguayo
Biomedical Sciences Faculty Research and Publications
It is now believed that the allosteric modulation produced by ethanol in glycine receptors (GlyRs) depends on alcohol binding to discrete sites within the protein structure. Thus, the differential ethanol sensitivity of diverse GlyR isoforms and mutants was explained by the presence of specific residues in putative alcohol pockets. Here, we demonstrate that ethanol sensitivity in two LGIC members, the GlyR adult α1 and embryonic α2 subunits, can be modified through selective mutations that rescued or impaired Gβγ modulation. Even though that both isoforms were able to physically interact with Gβγ, only the α1 GlyR was functionally …
Transcriptional Profiles For Glutamate Transporters Reveal Differences Between Organophosphates But Similarities With Unrelated Neurotoxicants, Theodore A. Slotkin, Doug Lobner, Frederic J. Seidler
Transcriptional Profiles For Glutamate Transporters Reveal Differences Between Organophosphates But Similarities With Unrelated Neurotoxicants, Theodore A. Slotkin, Doug Lobner, Frederic J. Seidler
Biomedical Sciences Faculty Research and Publications
The developmental neurotoxicity of organophosphates involves mechanisms other than their shared property as cholinesterase inhibitors, among which are excitotoxicity and oxidative stress. We used PC12 cells as a neurodevelopmental model to compare the effects of chlorpyrifos and diazinon on the expression of genes encoding glutamate transporters. Chlorpyrifos had a greater effect in cells undergoing nerve growth factor-induced neurodifferentiation as compared to undifferentiated PC12 cells, with peak sensitivity at the initiation of differentiation, reflecting a global upregulation of all the glutamate transporter genes expressed in this cell line. In differentiating cells, chlorpyrifos had a significantly greater effect than did diazinon and …
Synaptotoxicity Of Alzheimer Beta Amyloid Can Be Explained By Its Membrane Perforating Property, Fernando Sepulveda, Jorge Parodi, Robert W. Peoples, Carlos Opazo, Luis G. Aguayo
Synaptotoxicity Of Alzheimer Beta Amyloid Can Be Explained By Its Membrane Perforating Property, Fernando Sepulveda, Jorge Parodi, Robert W. Peoples, Carlos Opazo, Luis G. Aguayo
Biomedical Sciences Faculty Research and Publications
The mechanisms that induce Alzheimer’s disease (AD) are largely unknown thereby deterring the development of disease-modifying therapies. One working hypothesis of AD is that Aβ excess disrupts membranes causing pore formation leading to alterations in ionic homeostasis. However, it is largely unknown if this also occurs in native brain neuronal membranes. Here we show that similar to other pore forming toxins, Aβ induces perforation of neuronal membranes causing an increase in membrane conductance, intracellular calcium and ethidium bromide influx. These data reveal that the target of Aβ is not another membrane protein, but that Aβ itself is the cellular target …
Toxicity Of Flow Line, Durafill Vs, And Dycal To Dental Pulp Cells: Effects Of Growth Factors, Alyssa Furey, Julie Hjelmhaug, Doug Lobner
Toxicity Of Flow Line, Durafill Vs, And Dycal To Dental Pulp Cells: Effects Of Growth Factors, Alyssa Furey, Julie Hjelmhaug, Doug Lobner
Biomedical Sciences Faculty Research and Publications
Introduction
The objective was to determine the effects of growth factor treatment on dental pulp cell sensitivity to toxicity of 2 composite restoration materials, Flow Line and Durafill VS, and a calcium hydroxide pulp capping material, Dycal.
Methods
Toxicity of the dental materials to cultures of primary dental pulp cells was determined by the MTT metabolism assay. The ability of 6 different growth factors to influence the toxicity was tested.
Results
A 24-hour exposure to either Flow Line or Durafill VS caused approximately 40% cell death, whereas Dycal exposure caused approximately 80% cell death. The toxicity of Flow Line and …
Involvement Of Noradrenergic Neurotransmission In The Stress- But Not Cocaine-Induced Reinstatement Of Extinguished Cocaine-Induced Conditioned Place Preference In Mice: Role For Β-2 Adrenergic Receptors, John R. Mantsch, Andy Meyer, Oliver Vranjkovic, Chad E. Beyer, David A. Baker, Holly Caretta
Involvement Of Noradrenergic Neurotransmission In The Stress- But Not Cocaine-Induced Reinstatement Of Extinguished Cocaine-Induced Conditioned Place Preference In Mice: Role For Β-2 Adrenergic Receptors, John R. Mantsch, Andy Meyer, Oliver Vranjkovic, Chad E. Beyer, David A. Baker, Holly Caretta
Biomedical Sciences Faculty Research and Publications
The responsiveness of central noradrenergic systems to stressors and cocaine poses norepinephrine as a potential common mechanism through which drug re-exposure and stressful stimuli promote relapse. This study investigated the role of noradrenergic systems in the reinstatement of extinguished cocaine-induced conditioned place preference by cocaine and stress in male C57BL/6 mice. Cocaine- (15 mg/kg, i.p.) induced conditioned place preference was extinguished by repeated exposure to the apparatus in the absence of drug and reestablished by a cocaine challenge (15 mg/kg), exposure to a stressor (6-min forced swim (FS); 20–25°C water), or administration of the α-2 adrenergic receptor (AR) antagonists yohimbine …
Pathologically Activated Neuroprotection Via Uncompetitive Blockade Of N-Methyl-D-Aspartate Receptors With Fast Off-Rate By Novel Multifunctional Dimer Bis(Propyl)-Cognitin, Jialie Luo, Wenming Li, Yuming Zhao, Hongjun Fu, Dik-Lung Ma, Jing Tang, Chaoying Li, Robert W. Peoples, Fushun Li, Qinwen Wang, Pingbo Huang, Jun Xia, Yuanping Pang, Yifan Han
Pathologically Activated Neuroprotection Via Uncompetitive Blockade Of N-Methyl-D-Aspartate Receptors With Fast Off-Rate By Novel Multifunctional Dimer Bis(Propyl)-Cognitin, Jialie Luo, Wenming Li, Yuming Zhao, Hongjun Fu, Dik-Lung Ma, Jing Tang, Chaoying Li, Robert W. Peoples, Fushun Li, Qinwen Wang, Pingbo Huang, Jun Xia, Yuanping Pang, Yifan Han
Biomedical Sciences Faculty Research and Publications
Uncompetitive N-methyl-d-aspartate (NMDA) receptor antagonists with fast off-rate (UFO) may represent promising drug candidates for various neurodegenerative disorders. In this study, we report that bis(propyl)-cognitin, a novel dimeric acetylcholinesterase inhibitor and γ-aminobutyric acid subtype A receptor antagonist, is such an antagonist of NMDA receptors. In cultured rat hippocampal neurons, we demonstrated that bis(propyl)-cognitin voltage-dependently, selectively, and moderately inhibited NMDA-activated currents. The inhibitory effects of bis(propyl)-cognitin increased with the rise in NMDA and glycine concentrations. Kinetics analysis showed that the inhibition was of fast onset and offset with an off-rate time constant of 1.9 s. Molecular docking simulations showed moderate …
Drug-Induced Plasticity Contributing To Heightened Relapse Susceptibility: Neurochemical Changes And Augmented Reinstatement In High-Intake Rats, Aric Madayag, Kristen S. Kau, Doug Lobner, John R. Mantsch, Samantha Wisniewski, David A. Baker
Drug-Induced Plasticity Contributing To Heightened Relapse Susceptibility: Neurochemical Changes And Augmented Reinstatement In High-Intake Rats, Aric Madayag, Kristen S. Kau, Doug Lobner, John R. Mantsch, Samantha Wisniewski, David A. Baker
Biomedical Sciences Faculty Research and Publications
A key in understanding the neurobiology of addiction and developing effective pharmacotherapies is revealing drug-induced plasticity that results in heightened relapse susceptibility. Previous studies have demonstrated that increased extracellular glutamate, but not dopamine, in the nucleus accumbens core (NAcc) is necessary for cocaine-induced reinstatement. In this report, we examined whether drug-induced adaptations that are necessary to generate cocaine-induced reinstatement also determine relapse vulnerability. To do this, rats were assigned to self-administer cocaine under conditions resulting in low (2 h/d; 0.5 mg/kg/infusion, i.v.) or high (6 h/d; 1.0 mg/kg/infusion, i.v.) levels of drug intake since these manipulations produce groups of rats …