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Articles 61 - 90 of 154
Full-Text Articles in Neurosciences
Astrocyte Morphology, Heterogeneity, And Density In The Developing African Giant Rat (Cricetomys Gambianus), Matthew A. Olude, Oluwaseun A. Mustapha, Oluwatunde A. Aderounmu, James O. Olopade, Amadi O. Ihunwo
Astrocyte Morphology, Heterogeneity, And Density In The Developing African Giant Rat (Cricetomys Gambianus), Matthew A. Olude, Oluwaseun A. Mustapha, Oluwatunde A. Aderounmu, James O. Olopade, Amadi O. Ihunwo
Brain and Mind Institute
Astrocyte morphologies and heterogeneity were described in male African giant rats (AGR; Cricetomys gambianus, Waterhouse) across three age groups (five neonates, five juveniles, and five adults) using Silver impregnation method and immunohistochemistry against glial fibrillary acidic protein. Immunopositive cell signaling, cell size and population were least in neonates, followed by adults and juveniles, respectively. In neonates, astrocyte processes were mostly detected within the glia limitans of the mid and hind brain; their cell bodies measuring 32 ± 4.8 μm in diameter against 91 ± 5.4 μm and 75 ± 1.9 μm in juveniles and adults, respectively. Astrocyte heterogeneity in …
Novel Advances In Alzheimer's Disease, Jacob P. Naumann
Novel Advances In Alzheimer's Disease, Jacob P. Naumann
The Downtown Review: An Interdisciplinary Journal Written and Peer-Reviewed by Mandel Honors College Students at Cleveland State University
Alzheimer’s disease, the most common form of dementia in adults, is a progressive degenerative neurological disease that affects memory, cognition, and behavior. Dr. Alois Alzheimer discovered and diagnosed the irreversible disease in 1906 after documenting the famous case of Auguste Deter.1 Since the discovery of the disease, numerous advances have made it possible to not only better understand the causal factors, but also to improve the medical diagnosis and preventative measures that healthcare providers can implement. For the first time since 1984, the National Institute on Aging (NIAA) and the Alzheimer’s Association (AA) proposed and published new diagnostic guideline …
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, …
Connectionist Perspectives On Language Learning, Representation And Processing., Marc F Joanisse, James L Mcclelland
Connectionist Perspectives On Language Learning, Representation And Processing., Marc F Joanisse, James L Mcclelland
Brain and Mind Institute Researchers' Publications
The field of formal linguistics was founded on the premise that language is mentally represented as a deterministic symbolic grammar. While this approach has captured many important characteristics of the world's languages, it has also led to a tendency to focus theoretical questions on the correct formalization of grammatical rules while also de-emphasizing the role of learning and statistics in language development and processing. In this review we present a different approach to language research that has emerged from the parallel distributed processing or 'connectionist' enterprise. In the connectionist framework, mental operations are studied by simulating learning and processing within …
Estrodial Effects On Age-Related Shifts In Learning And Memory: A Multiple Memory Systems Approach, Luis Castelan
Estrodial Effects On Age-Related Shifts In Learning And Memory: A Multiple Memory Systems Approach, Luis Castelan
Renée Crown University Honors Thesis Projects - All
Many findings from our lab and others suggest that circulating estrogens as well as estrogen replacement after ovariectomy influence cognitive performance. Young female rats trained during proestrus, when estrogens are high, or with acute estradiol (E2) administration after ovariectomy perform better on the hippocampus-sensitive place task but worse on the striatum-sensitive response task (Korol et al., 2004; Korol and Kolo, 2002). Behavioral neuroscience studies tend to use male rodent models to avoid the complexities of the female reproductive cycle, producing a gap in our knowledge about neural mechanisms of learning and memory in females. As a consequence, age-related effects of …
Functional Capacity In Schizophrenia: Relationship Among Effort, Reinforcement Learning And Self-Beliefs, Sally J. Vogel
Functional Capacity In Schizophrenia: Relationship Among Effort, Reinforcement Learning And Self-Beliefs, Sally J. Vogel
UNLV Theses, Dissertations, Professional Papers, and Capstones
Individuals with schizophrenia exhibit a wide range of complex neurocognitive, psychiatric and behavioral impairments. Recent research suggests that this complex array of symptoms can be at least partially accounted for by dysfunction in more basic mechanisms, such as the ability to learn from positive and negative reinforcement, or the ability to exert adequate effort when completing simple tasks. Evidence also suggests that deficits in these basic mechanisms may contribute to more complex symptoms, such as functional impairment. Also, the relationship between neurocognitive deficits and functional impairment has been found to be mediated by defeatist performance beliefs. However, studies have not …
Manipulation Of The Microbiome And Its Impact On Functional Recovery Following Ischemic Stroke, Michal Jandzinski
Manipulation Of The Microbiome And Its Impact On Functional Recovery Following Ischemic Stroke, Michal Jandzinski
Honors Scholar Theses
Each year, nearly 800,000 individuals residing in the United States will have a stroke. Of these, about 130,000 cases will prove fatal while many of the survivors will be forced to live with disability for the remainder of their lives. Out of all strokes over 87% are ischemic strokes. The widespread incidence of this debilitating condition costs the United States an estimated $36.5 billion dollars every single year. Despite this, clinicians are armed with very little to combat the disease. Recent research developments have brought about the rise in awareness about the importance of the microbiome, the various gut flora …
Connecticut's Elderly Population: An In-Depth Analysis Of Current And Future Trends In Elder Care, With A Focus On Dementia And Cognitive Decline, Emily J. Snodgrass
Connecticut's Elderly Population: An In-Depth Analysis Of Current And Future Trends In Elder Care, With A Focus On Dementia And Cognitive Decline, Emily J. Snodgrass
Honors Scholar Theses
The aging population in Connecticut currently represents ~15% of the state’s population but is anticipated to rapidly increase over the next 20 years. My thesis is an examination of the types of interventions and programs currently available for elderly persons with memory impairment and cognitive decline, as well as the challenges associated with caring for a larger elderly population. Data collected from interviews with CT healthcare and research professionals representative of the diverse specialties of aging together with an analysis of current research literature are used to demonstrate the importance of continued research and expansion of appropriate and accessible services …
A Comparison Of The Effects Of Different Doses Of Gabab Receptor Ligands On Spatial Learning And Memory And Memory Flexibility, Chelcie Heaney
A Comparison Of The Effects Of Different Doses Of Gabab Receptor Ligands On Spatial Learning And Memory And Memory Flexibility, Chelcie Heaney
UNLV Theses, Dissertations, Professional Papers, and Capstones
The principal inhibitory neurotransmitter in the brain, gamma amino-butyric acid (GABA), mediates several types of learning and memory. Of the two main receptor subtypes for GABA, the in vivo role of GABAB receptor in learning and memory is less well characterized and the current data often conflict. Based on the current literature, it is unclear, for instance, whether enhancing GABAergic activity via the GABAB receptor could be beneficial for or detrimental to learning and memory. Hippocampally-dependent learning and memory tasks are of particular interest due to their clinical relevance to patients with schizophrenia or Alzheimer’s disease, who exhibit impaired performance …
Integration Of Atm, Atr, And Dna-Pkcs Signaling Maintains Genome Integrity During Neurogenesis, Vanessa D. Enriquez-Rios
Integration Of Atm, Atr, And Dna-Pkcs Signaling Maintains Genome Integrity During Neurogenesis, Vanessa D. Enriquez-Rios
Theses and Dissertations (ETD)
The DNA damage response (DDR) orchestrates a network of cellular processes such as cell cycle progression, DNA repair, and apoptosis when complex DNA lesions arise to maintain genomic integrity. ATM, ATR, and DNA-PKcs (encoded by PRKDC) are related phosphatidylinositol-3-kinase like serine/threonine kinases (PIKK) that collectively regulate the DDR network. Studies have demonstrated these kinases can phosphorylate many of the same substrates, suggesting a significant potential for functional redundancy. However, deficiencies in these kinases have been linked to distinct neural degenerative and developmental disorders, underscoring their unique functions for maintain genomic integrity during nervous system development.
Here we utilized mouse genetic …
The Plight Of The Lucluc: Examining The Deadly Mystery Of Nodding Syndrome, Ethan K. Mcgann
The Plight Of The Lucluc: Examining The Deadly Mystery Of Nodding Syndrome, Ethan K. Mcgann
Senior Honors Theses
Nodding syndrome (NS) is an emerging epidemic neurological disease that is shrouded in mystery. It is currently only found in the post-conflict regions of South Sudan, northern Uganda, and Tanzania. NS occurs in children from the ages of five to fifteen and is characterized by a loss of motor control in the neck muscles. Seizure episodes can range in intensity from atonic to tonic-clonic, and the onset of the first episode generally marks the beginning of a decline in the child’s physical and mental health. NS is a progressive disease that generally results in physical wasting, stunted growth, behavioral difficulties, …
Direct Reprogramming Of Induced Neural Progenitors: A New Promising Strategy For Ad Treatment., Siqiang Lai, Min Zhang, Dongsheng Xu, Yiying Zhang, Lisha Qiu, Changhai Tian, Jialin Charlie Zheng
Direct Reprogramming Of Induced Neural Progenitors: A New Promising Strategy For Ad Treatment., Siqiang Lai, Min Zhang, Dongsheng Xu, Yiying Zhang, Lisha Qiu, Changhai Tian, Jialin Charlie Zheng
Journal Articles: Pharmacology & Experimental Neuroscience
Alzheimer's disease (AD) is a prominent form of dementia, characterized by aggregation of the amyloid β-peptide (Aβ) plaques and neurofibrillary tangles, loss of synapses and neurons, and degeneration of cognitive functions. Currently, although a variety of medications can relieve some of the symptoms, there is no cure for AD. Recent breakthroughs in the stem cell field provide promising strategies for AD treatment. Stem cells including embryonic stem cells (ESCs), neural stem cells (NSCs), mesenchymal stem cells (MSCs), and induced pluripotent stem cells (iPSCs) are potentials for AD treatment. However, the limitation of cell sources, safety issues, and ethical issues restrict …
Is It Ethical To Hold A Person Culpable For His Actions If He Cannot Recognize Right And Wrong, Tabitha E.H. Moses
Is It Ethical To Hold A Person Culpable For His Actions If He Cannot Recognize Right And Wrong, Tabitha E.H. Moses
Student Works
The field of neuroscience has opened up a proverbial can of worms when it comes to questions of free will and culpability. The more we know about the mind the more it appears that no one has any real choice in their actions. The ethical implications of this assumption are astronomical. Guilt and culpability come into question; it would seem unjust to punish a person for a crime if he had no choice but to commit it. While these are interesting questions for an ethicist they are impractical for society as they might affect how society functions. As such, the …
Live Imaging Of The Ependymal Cilia In The Lateral Ventricles Of The Mouse Brain, Alzahra J. Al Omran, Hannah C. Saternos, Tongyu Liu, Surya M. Nauli, Wissam A. Aboualaiwi
Live Imaging Of The Ependymal Cilia In The Lateral Ventricles Of The Mouse Brain, Alzahra J. Al Omran, Hannah C. Saternos, Tongyu Liu, Surya M. Nauli, Wissam A. Aboualaiwi
Pharmacy Faculty Articles and Research
Multiciliated ependymal cells line the ventricles in the adult brain. Abnormal function or structure of ependymal cilia is associated with various neurological deficits. The current ex vivo live imaging of motile ependymal cilia technique allows for a detailed study of ciliary dynamics following several steps. These steps include: mice euthanasia with carbon dioxide according to protocols of The University of Toledo’s Institutional Animal Care and Use Committee (IACUC); craniectomy followed by brain removal and sagittal brain dissection with a vibratome or sharp blade to obtain very thin sections through the brain lateral ventricles, where the ependymal cilia can be visualized. …
Motor Skill Learning Between Selection And Execution., Jörn Diedrichsen, Katja Kornysheva
Motor Skill Learning Between Selection And Execution., Jörn Diedrichsen, Katja Kornysheva
Brain and Mind Institute Researchers' Publications
Learning motor skills evolves from the effortful selection of single movement elements to their combined fast and accurate production. We review recent trends in the study of skill learning which suggest a hierarchical organization of the representations that underlie such expert performance, with premotor areas encoding short sequential movement elements (chunks) or particular component features (timing/spatial organization). This hierarchical representation allows the system to utilize elements of well-learned skills in a flexible manner. One neural correlate of skill development is the emergence of specialized neural circuits that can produce the required elements in a stable and invariant fashion. We discuss …
The Human Motor System Alters Its Reaching Movement Plan For Task-Irrelevant, Positional Forces., Joshua G A Cashaback, Heather R Mcgregor, Paul L Gribble
The Human Motor System Alters Its Reaching Movement Plan For Task-Irrelevant, Positional Forces., Joshua G A Cashaback, Heather R Mcgregor, Paul L Gribble
Brain and Mind Institute Researchers' Publications
The minimum intervention principle and the uncontrolled manifold hypothesis state that our nervous system only responds to force perturbations and sensorimotor noise if they affect task success. This idea has been tested in muscle and joint coordinate frames and more recently using workspace redundancy (e.g., reaching to large targets). However, reaching studies typically involve spatial and or temporal constraints. Constrained reaches represent a small proportion of movements we perform daily and may limit the emergence of natural behavior. Using more relaxed constraints, we conducted two reaching experiments to test the hypothesis that humans respond to task-relevant forces and ignore task-irrelevant …
Seasonal Change In The Avian Hippocampus., David F Sherry, Scott A Macdougall-Shackleton
Seasonal Change In The Avian Hippocampus., David F Sherry, Scott A Macdougall-Shackleton
Brain and Mind Institute Researchers' Publications
The hippocampus plays an important role in cognitive processes, including memory and spatial orientation, in birds. The hippocampus undergoes seasonal change in food-storing birds and brood parasites, there are changes in the hippocampus during breeding, and further changes occur in some species in association with migration. In food-storing birds, seasonal change in the hippocampus occurs in fall and winter when the cognitively demanding behaviour of caching and retrieving food occurs. The timing of annual change in the hippocampus of food-storing birds is quite variable, however, and appears not to be under photoperiod control. A variety of factors, including cognitive performance, …
Developmental Specialization Of The Left Parietal Cortex For The Semantic Representation Of Arabic Numerals: An Fmr-Adaptation Study, Stephan E. Vogel, Celia Goffin, Daniel Ansari
Developmental Specialization Of The Left Parietal Cortex For The Semantic Representation Of Arabic Numerals: An Fmr-Adaptation Study, Stephan E. Vogel, Celia Goffin, Daniel Ansari
Brain and Mind Institute Researchers' Publications
The way the human brain constructs representations of numerical symbols is poorly understood. While increasing evidence from neuroimaging studies has indicated that the intraparietal sulcus (IPS) becomes increasingly specialized for symbolic numerical magnitude representation over developmental time, the extent to which these changes are associated with age-related differences in symbolic numerical magnitude representation or with developmental changes in non-numerical processes, such as response selection, remains to be uncovered. To address these outstanding questions we investigated developmental changes in the cortical representation of symbolic numerical magnitude in 6- to 14-year-old children using a passive functional magnetic resonance imaging adaptation design, thereby …
Certain General Anesthetics Used In Pediatrics Hinder Neurological Development In Infants, Michael R. Hirschi
Certain General Anesthetics Used In Pediatrics Hinder Neurological Development In Infants, Michael R. Hirschi
Selected Honors Theses
General anesthetics act by either blocking N-methyl-d-aspartate (NMDA) receptors or over stimulating γ-aminobutyric acid (GABA) receptors.1–3 The actions of these receptors are responsible for the anesthetized state and are also crucial in the neurological development of infants.2,4–8 Animal studies, although limited, provide vital information about general anesthesia’s neurotoxicity its hindrance of neurological development. Exposure to general anesthesia can severely hinder proper neuronal migration, synaptogenesis, and can drastically increase neuronal apoptosis in infant animals.9–16 General anesthetics are more neurotoxic to infant animals in combination compared to individually.10,16,17 Additionally, multiple exposures to general anesthesia tend to have compounding …
The Therapeutic Role Of Turmeric In Treatment And Prevention Of Alzheimer’S Disease, Rylan M. Mcquade
The Therapeutic Role Of Turmeric In Treatment And Prevention Of Alzheimer’S Disease, Rylan M. Mcquade
Selected Honors Theses
As a devastating neurological condition that expends millions of lives each year, Alzheimer’s disease (AD) is a subject of intense investigation.1 Although AD has been known for over a century, the precise mechanisms that underlie AD pathogenesis and development are still poorly understood. The Alzheimer phenotype is typified by extracellular amyloid-beta (Aβ) plaques and intracellular neurofibrillary tangles (NFTs), causing researchers to notice several key enzymes implicated in this process.1 Most notable are β and γ secretases (which drive Aβ plaque production) and phospholipase
A2 (which stimulates major cascade activation through the specific cleavage of fatty acyl esters). …
Different Neural Mechanisms For Causal Processing In Language And Perception: An Fmri Study, Brett B. Bankson, Dirk B. Den Ouden
Different Neural Mechanisms For Causal Processing In Language And Perception: An Fmri Study, Brett B. Bankson, Dirk B. Den Ouden
Communication Sciences and Disorders Faculty Articles and Research
Information that is used to establish and evaluate causal relationships between objects and events can be gleaned from many sources, especially those that rely on language and perception. For example, sentences with a verb structure using change of state verbs such as “to break” or “to freeze” imply sequential events that express understood causal relationships. At this time, little research has examined the neural correlates of causal verb processing or has compared them to the more well researched brain activity involved in perceptual causal processing. This study investigated the extent to which the evaluation of causal verbs and causal image …
Brain Blast 2015 Speakers Poster, Annie Leslie
Brain Blast 2015 Speakers Poster, Annie Leslie
Brain Blast
Poster from UNE's Brain Blast 2015 listing the expected presenters at this event.*
Developing Burrowing As A Non-Evoked Readout Assessment For Novel Analgesic Drug Efficacy, Kayla Lindros, Denise Giuvelis, Ed Bilsky
Developing Burrowing As A Non-Evoked Readout Assessment For Novel Analgesic Drug Efficacy, Kayla Lindros, Denise Giuvelis, Ed Bilsky
Neuroscience Student Research Posters
Traditional drug development efforts to diminish the problem of chronic pain rely heavily on pain-evoked assays that can yield false positives, leading to confounding assessments of novel drugs. To avoid this, we are looking at burrowing as a novel readout assessment of analgesic efficacy. Preliminary data shows that induction of post-surgical pain reduces this innate behavior by about 35%. In attempt to increase this number, we tested a variety of additional parameters. Blue pads, placed at the bottom of each chamber in order to reduce the sound made when gravel is displaced, increased baseline amounts roughly 40%. Conversely, neither sex …
Mitochondria-Associated Micrornas In Rat Hippocampus Following Traumatic Brain Injury, Wang-Xia Wang, Nishant P. Visavadiya, Jignesh D. Pandya, Peter T. Nelson, Patrick G. Sullivan, Joe E. Springer
Mitochondria-Associated Micrornas In Rat Hippocampus Following Traumatic Brain Injury, Wang-Xia Wang, Nishant P. Visavadiya, Jignesh D. Pandya, Peter T. Nelson, Patrick G. Sullivan, Joe E. Springer
Sanders-Brown Center on Aging Faculty Publications
Traumatic brain injury (TBI) is a major cause of death and disability. However, the molecular events contributing to the pathogenesis are not well understood. Mitochondria serve as the powerhouse of cells, respond to cellular demands and stressors, and play an essential role in cell signaling, differentiation, and survival. There is clear evidence of compromised mitochondrial function following TBI; however, the underlying mechanisms and consequences are not clear. MicroRNAs (miRNAs) are small non-coding RNA molecules that regulate gene expression post-transcriptionally, and function as important mediators of neuronal development, synaptic plasticity, and neurodegeneration. Several miRNAs show altered expression following TBI; however, the …
The Dissociable Effects Of Punishment And Reward On Motor Learning, Joseph M. Galea, Elizabeth Mallia, John Rothwell, Jorn Diedrichsen
The Dissociable Effects Of Punishment And Reward On Motor Learning, Joseph M. Galea, Elizabeth Mallia, John Rothwell, Jorn Diedrichsen
Brain and Mind Institute Researchers' Publications
A common assumption regarding error-based motor learning (motor adaptation) in humans is that its underlying mechanism is automatic and insensitive to reward- or punishment-based feedback. Contrary to this hypothesis, we show in a double dissociation that the two have independent effects on the learning and retention components of motor adaptation. Negative feedback, whether graded or binary, accelerated learning. While it was not necessary for the negative feedback to be coupled to monetary loss, it had to be clearly related to the actual performance on the preceding movement. Positive feedback did not speed up learning, but it increased retention of the …
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 …
The Role Of Parental Cognitive, Behavioral, And Motor Profiles In Clinical Variability In Individuals With Chromosome 16p11.2 Deletions, Andres Moreno-De-Luca, David W. Evans, K B. Boomer, Ellen Hanson, R Bernier, R. P. Goin-Kochel, S. M. Myers, Thomas D. Challman, Daniel Moreno-De-Luca, Mylissa M. Slane, Abby E. Hare, W K. Chung, J. Spiro, W. A. Faucett, C. L. Martin, David H. Ledbetter
The Role Of Parental Cognitive, Behavioral, And Motor Profiles In Clinical Variability In Individuals With Chromosome 16p11.2 Deletions, Andres Moreno-De-Luca, David W. Evans, K B. Boomer, Ellen Hanson, R Bernier, R. P. Goin-Kochel, S. M. Myers, Thomas D. Challman, Daniel Moreno-De-Luca, Mylissa M. Slane, Abby E. Hare, W K. Chung, J. Spiro, W. A. Faucett, C. L. Martin, David H. Ledbetter
Faculty Journal Articles
Importance Most disorders caused by copy number variants (CNVs) display significant clinical variability, often referred to as incomplete penetrance and variable expressivity. Genetic and environmental sources of this variability are not well understood.
Objectives To investigate the contributors to phenotypic variability in probands with CNVs involving the same genomic region; to measure the effect size for de novo mutation events; and to explore the contribution of familial background to resulting cognitive, behavioral, and motor performance outcomes in probands with de novo CNVs.
Design, Setting, and Participants Family-based study design with a volunteer sample of 56 individuals with de novo 16p11.2 …
Opposing Regulation Of Endolysosomal Pathways By Long-Acting Nanoformulated Antiretroviral Therapy And Hiv-1 In Human Macrophages., Mariluz Araínga, Dongwei Guo, Jayme Wiederin, Pawel Ciborowski, Joellyn Mcmillan, Howard Gendelman
Opposing Regulation Of Endolysosomal Pathways By Long-Acting Nanoformulated Antiretroviral Therapy And Hiv-1 In Human Macrophages., Mariluz Araínga, Dongwei Guo, Jayme Wiederin, Pawel Ciborowski, Joellyn Mcmillan, Howard Gendelman
Journal Articles: Pharmacology & Experimental Neuroscience
BACKGROUND: Long-acting nanoformulated antiretroviral therapy (nanoART) is designed to improve patient regimen adherence, reduce systemic drug toxicities, and facilitate clearance of human immunodeficiency virus type one (HIV-1) infection. While nanoART establishes drug depots within recycling and late monocyte-macrophage endosomes, whether or not this provides a strategic advantage towards viral elimination has not been elucidated.
RESULTS: We applied quantitative SWATH-MS proteomics and cell profiling to nanoparticle atazanavir (nanoATV)-treated and HIV-1 infected human monocyte-derived macrophages (MDM). Native ATV and uninfected cells served as controls. Both HIV-1 and nanoATV engaged endolysosomal trafficking for assembly and depot formation, respectively. Notably, the pathways were deregulated …
Opposing Regulation Of Endolysosomal Pathways By Long-Acting Nanoformulated Antiretroviral Therapy And Hiv-1 In Human Macrophages., Mariluz Araínga, Dongwei Guo, Jayme Wiederin, Pawel Ciborowski, Joellyn Mcmillan, Howard Gendelman
Opposing Regulation Of Endolysosomal Pathways By Long-Acting Nanoformulated Antiretroviral Therapy And Hiv-1 In Human Macrophages., Mariluz Araínga, Dongwei Guo, Jayme Wiederin, Pawel Ciborowski, Joellyn Mcmillan, Howard Gendelman
Journal Articles: Pharmacology & Experimental Neuroscience
BACKGROUND: Long-acting nanoformulated antiretroviral therapy (nanoART) is designed to improve patient regimen adherence, reduce systemic drug toxicities, and facilitate clearance of human immunodeficiency virus type one (HIV-1) infection. While nanoART establishes drug depots within recycling and late monocyte-macrophage endosomes, whether or not this provides a strategic advantage towards viral elimination has not been elucidated.
RESULTS: We applied quantitative SWATH-MS proteomics and cell profiling to nanoparticle atazanavir (nanoATV)-treated and HIV-1 infected human monocyte-derived macrophages (MDM). Native ATV and uninfected cells served as controls. Both HIV-1 and nanoATV engaged endolysosomal trafficking for assembly and depot formation, respectively. Notably, the pathways were deregulated …
Effects Of (R)-(-)-5-Methyl-1-Nicotinoyl-2-Pyrazoline On Glutamate Transporter 1 And Cysteine/Glutamate Exchanger As Well As Ethanol Drinking Behavior In Male, Alcohol-Preferring Rats, Munaf Aal-Aaboda, Hasan Alhaddad, Francis Osowik, Surya M. Nauli, Youssef Sari
Effects Of (R)-(-)-5-Methyl-1-Nicotinoyl-2-Pyrazoline On Glutamate Transporter 1 And Cysteine/Glutamate Exchanger As Well As Ethanol Drinking Behavior In Male, Alcohol-Preferring Rats, Munaf Aal-Aaboda, Hasan Alhaddad, Francis Osowik, Surya M. Nauli, Youssef Sari
Pharmacy Faculty Articles and Research
Alcohol consumption is largely associated with alterations in the extracellular glutamate concentrations in several brain reward regions. We recently showed that glutamate transporter 1 (GLT-1) is downregulated following chronic exposure to ethanol for 5 weeks in alcohol-preferring (P) rats and that upregulation of the GLT-1 levels in nucleus accumbens and prefrontal cortex results, in part, in attenuating ethanol consumption. Cystine glutamate antiporter (xCT) is also downregulated after chronic ethanol exposure in P rats, and its upregulation could be valuable in attenuating ethanol drinking. This study examines the effect of a synthetic compound, (R)-(−)-5-methyl-1-nicotinoyl-2-pyrazoline (MS-153), on ethanol drinking and expressions of …