Open Access. Powered by Scholars. Published by Universities.®
Molecular and Cellular Neuroscience Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Medicine and Health Sciences (21)
- Biochemistry, Biophysics, and Structural Biology (13)
- Cell and Developmental Biology (12)
- Cell Biology (11)
- Behavioral Neurobiology (10)
-
- Genetics and Genomics (9)
- Molecular Biology (8)
- Biology (7)
- Medical Sciences (7)
- Diseases (6)
- Nervous System Diseases (6)
- Physiology (6)
- Systems Neuroscience (6)
- Biochemistry (5)
- Cellular and Molecular Physiology (5)
- Laboratory and Basic Science Research (5)
- Medical Specialties (5)
- Neurosciences (5)
- Developmental Neuroscience (3)
- Engineering (3)
- Medical Neurobiology (3)
- Molecular Genetics (3)
- Physical Sciences and Mathematics (3)
- Bioinformatics (2)
- Biophysics (2)
- Chemicals and Drugs (2)
- Chemistry (2)
- Institution
-
- University of Kentucky (11)
- The Texas Medical Center Library (7)
- City University of New York (CUNY) (6)
- Virginia Commonwealth University (5)
- University of Nebraska Medical Center (4)
-
- Rowan University (2)
- University of Texas at El Paso (2)
- Western University (2)
- Brigham Young University (1)
- Claremont Colleges (1)
- Dartmouth College (1)
- Dominican University of California (1)
- Embry-Riddle Aeronautical University (1)
- Illinois Math and Science Academy (1)
- Illinois State University (1)
- James Madison University (1)
- Montclair State University (1)
- Murray State University (1)
- Otterbein University (1)
- Parkland College (1)
- San Jose State University (1)
- Seton Hall University (1)
- The University of Southern Mississippi (1)
- University of Arkansas, Fayetteville (1)
- University of Central Florida (1)
- University of Missouri, St. Louis (1)
- University of Nebraska - Lincoln (1)
- University of Rhode Island (1)
- Washington University in St. Louis (1)
- Western Michigan University (1)
- Keyword
-
- Brain (3)
- Dopamine (3)
- Humans (3)
- Neurodegenerative Diseases (3)
- Alzheimer's disease (2)
-
- Amyloid beta (2)
- Aplysia (2)
- Autonomic (2)
- Diabetes (2)
- Drug abuse (2)
- ESCRT (2)
- Gene expression (2)
- Hindbrain (2)
- Hippocampus (2)
- Immune system (2)
- Memory (2)
- Microarray (2)
- Neurobiology (2)
- Neurodegeneration (2)
- Neurons (2)
- Oxidative Stress (2)
- Parkinson's Disease (2)
- 3' Tailed mirtron (1)
- 3’ end formation (1)
- 5-Methylcytosine (1)
- 5-bisphosphate (PIP2) (1)
- 5-hydroxymethylcytosine (1)
- AC1 (1)
- AGING (1)
- AMPAR (1)
- Publication
-
- Dissertations and Theses (Open Access) (7)
- Dissertations, Theses, and Capstone Projects (6)
- Theses and Dissertations (5)
- Theses & Dissertations (4)
- Chemistry Faculty Publications (2)
-
- Dissertations (2)
- Graduate School of Biomedical Sciences Theses and Dissertations (2)
- Otolaryngology--Head & Neck Surgery Faculty Publications (2)
- Western Research Forum (2)
- Annual Symposium on Biomathematics and Ecology Education and Research (1)
- Biomedical Engineering Undergraduate Honors Theses (1)
- Biomedical Engineering Western Regional Conference (1)
- Dartmouth Scholarship (1)
- Department of Biology Faculty Scholarship and Creative Works (1)
- Departmental Papers (Biology) (1)
- Dissertations, Masters Theses, Capstones, and Culminating Projects (1)
- Faculty Publications, Chemistry (1)
- Honors Undergraduate Theses (1)
- Independent Study (1)
- KGI Theses and Dissertations (1)
- Master's Theses (1)
- Molecular Modeling and Biopharmaceutical Center Faculty Publications (1)
- Molecular and Cellular Biochemistry Faculty Publications (1)
- PRECS student projects (1)
- Pharmaceutical Sciences Faculty Publications (1)
- Pharmacology and Nutritional Sciences Faculty Publications (1)
- Physiology Faculty Publications (1)
- Posters-at-the-Capitol (1)
- Publications (1)
- Sanders-Brown Center on Aging Faculty Publications (1)
- Publication Type
- File Type
Articles 31 - 60 of 61
Full-Text Articles in Molecular and Cellular Neuroscience
Osteopontin Facilitates West Nile Virus Neuroinvasion Via Neutrophil “Trojan Horse” Transport, Amber M. Paul, Dhiraj Acharya, Laurel Duty, E. Ashley Thompson, Linda Le, Dobrivoje S. Stokic, A. Arturo Leis, Fengwei Bai
Osteopontin Facilitates West Nile Virus Neuroinvasion Via Neutrophil “Trojan Horse” Transport, Amber M. Paul, Dhiraj Acharya, Laurel Duty, E. Ashley Thompson, Linda Le, Dobrivoje S. Stokic, A. Arturo Leis, Fengwei Bai
Publications
West Nile virus (WNV) can cause severe human neurological diseases including encephalitis and meningitis. The mechanisms by which WNV enters the central nervous system (CNS) and host factors that are involved in WNV neuroinvasion are not completely understood. The proinflammatory chemokine osteopontin (OPN) is induced in multiple neuroinflammatory diseases and is responsible for leukocyte recruitment to sites of its expression. In this study, we found that WNV infection induced OPN expression in both human and mouse cells. Interestingly, WNV-infected OPN deficient (Opn−/−) mice exhibited a higher survival rate (70%) than wild type (WT) control mice (30%), suggesting OPN plays a …
Neuroanatomical Tracing Of The Gut -- Brain Axis, Ricardo P. Torres, Elizabeth A. Davis, Coltan G. Parker, Megan J. Dailey
Neuroanatomical Tracing Of The Gut -- Brain Axis, Ricardo P. Torres, Elizabeth A. Davis, Coltan G. Parker, Megan J. Dailey
PRECS student projects
This poster summarizes a variety of methods to further characterize the gut-brain axis by tracing motor and sensory nerves between the gut and brain and identifying cell bodies in the sensory ganglia. Determines the meth method to trace the sensory and motor nerves was through fluorescence and the best method to identify sensory neuron cell bodies was the Nissi stain.
Allosteric Modulatory Effects Of Sri-20041 And Sri-30827 On Cocaine And Hiv-1 Tat Protein Binding To Human Dopamine Transporter, Wei-Lun Sun, Pamela M. Quizon, Yaxia Yuan, Wei Zhang, Subramaniam Ananthan, Chang-Guo Zhan, Jun Zhu
Allosteric Modulatory Effects Of Sri-20041 And Sri-30827 On Cocaine And Hiv-1 Tat Protein Binding To Human Dopamine Transporter, Wei-Lun Sun, Pamela M. Quizon, Yaxia Yuan, Wei Zhang, Subramaniam Ananthan, Chang-Guo Zhan, Jun Zhu
Molecular Modeling and Biopharmaceutical Center Faculty Publications
Dopamine transporter (DAT) is the target of cocaine and HIV-1 transactivator of transcription (Tat) protein. Identifying allosteric modulatory molecules with potential attenuation of cocaine and Tat binding to DAT are of great scientific and clinical interest. We demonstrated that tyrosine 470 and 88 act as functional recognition residues in human DAT (hDAT) for Tat-induced inhibition of DA transport and transporter conformational transitions. Here we investigated the allosteric modulatory effects of two allosteric ligands, SRI-20041 and SRI-30827 on cocaine binding on wild type (WT) hDAT, Y470 H and Y88 F mutants. Effect of SRI-30827 on Tat-induced inhibition of [3H]WIN35,428 …
Microarray Analysis Of Aging-Associated Immune System Alterations In The Rostral Ventrolateral Medulla Of F344 Rats, Sivasai Balivada, Chanran Ganta, Yongqing Zhang, Hitesh Pawar, Richard Ortiz, Kevin Becker, Arshad Khan, Michael Kenney
Microarray Analysis Of Aging-Associated Immune System Alterations In The Rostral Ventrolateral Medulla Of F344 Rats, Sivasai Balivada, Chanran Ganta, Yongqing Zhang, Hitesh Pawar, Richard Ortiz, Kevin Becker, Arshad Khan, Michael Kenney
Selected Works Temporary Series
The rostral ventrolateral medulla (RVLM) is an area of the brain stem that contains diverse neural substrates that are involved in systems critical for physiological function. There is evidence that aging affects some neural substrates within the RVLM, although age-related changes in RVLM molecular mechanisms are not well established. The goal of the present study was to characterize the transcriptomic profile of the aging RVLM and to test the hypothesis that aging is associated with altered gene expression in the RVLM, with an emphasis on immune system associated gene transcripts. RVLM tissue punches from young, middle-aged, and aged F344 rats …
Microarray Analysis Of Aging-Associated Immune System Alterations In The Rostral Ventrolateral Medulla Of F344 Rats, Balivada, Chanran Ganta, Yongqing Zhang, Hitesh Pawar, Richard Ortiz, Kevin Becker, Arshad Khan, Michael Kenney
Microarray Analysis Of Aging-Associated Immune System Alterations In The Rostral Ventrolateral Medulla Of F344 Rats, Balivada, Chanran Ganta, Yongqing Zhang, Hitesh Pawar, Richard Ortiz, Kevin Becker, Arshad Khan, Michael Kenney
Departmental Papers (Biology)
The rostral ventrolateral medulla (RVLM) is an area of the brain stem that contains diverse neural substrates that are involved in systems critical for physiological function. There is evidence that aging affects some neural substrates within the RVLM, although age-related changes in RVLM molecular mechanisms are not well established. The goal of the present study was to characterize the transcriptomic profile of the aging RVLM and to test the hypothesis that aging is associated with altered gene expression in the RVLM, with an emphasis on immune system associated gene transcripts. RVLM tissue punches from young, middle-aged, and aged F344 rats …
Igf-1 Mediated Neurogenesis Involves A Novel Rit1/Akt/Sox2 Cascade, Sajad Mir, Weikang Cai, Shaun W. Carlson, Kathryn E. Saatman, Douglas A. Andres
Igf-1 Mediated Neurogenesis Involves A Novel Rit1/Akt/Sox2 Cascade, Sajad Mir, Weikang Cai, Shaun W. Carlson, Kathryn E. Saatman, Douglas A. Andres
Molecular and Cellular Biochemistry Faculty Publications
Insulin-like growth factor 1 (IGF-1) is known to have diverse effects on brain structure and function, including the promotion of stem cell proliferation and neurogenesis in the adult dentate gyrus. However, the intracellular pathways downstream of the IGF-1 receptor that contribute to these diverse physiological actions remain relatively uncharacterized. Here, we demonstrate that the Ras-related GTPase, RIT1, plays a critical role in IGF-1-dependent neurogenesis. Studies in hippocampal neuronal precursor cells (HNPCs) demonstrate that IGF-1 stimulates a RIT1-dependent increase in Sox2 levels, resulting in pro-neural gene expression and increased cellular proliferation. In this novel cascade, RIT1 stimulates Akt-dependent phosphorylation of …
Hypothesis Of K+-Recycling Defect Is Not A Primary Deafness Mechanism For Cx26 (Gjb2) Deficiency, Hong-Bo Zhao
Hypothesis Of K+-Recycling Defect Is Not A Primary Deafness Mechanism For Cx26 (Gjb2) Deficiency, Hong-Bo Zhao
Otolaryngology--Head & Neck Surgery Faculty Publications
K+-recycling defect is a long-standing hypothesis for deafness mechanism of Connexin26 (Cx26, GJB2) mutations, which cause the most common hereditary deafness and are responsible for >50% of nonsyndromic hearing loss. The hypothesis states that Cx26 deficiency may disrupt inner ear gap junctions and compromise sinking and recycling of expelled K+ ions after hair cell excitation, causing accumulation of K+-ions in the extracellular space around hair cells producing K+-toxicity, which eventually induces hair cell degeneration and hearing loss. However, this hypothesis has never been directly evidenced, even though it has been widely referred …
Rat Hind Limb Nociceptive Withdrawal Response To Heat And Mechanical Stimuli Depends On Initial Position Of The Paw But Not Stimulus Location, Giavanna Verdi
Rat Hind Limb Nociceptive Withdrawal Response To Heat And Mechanical Stimuli Depends On Initial Position Of The Paw But Not Stimulus Location, Giavanna Verdi
Senior Honors Projects, 2010-2019
Mammals rapidly withdraw their hind limb in response to noxious stimulation, which is a protective movement known as the nociceptive withdrawal response (NWR). The NWR has been previously studied in spinalized, decerebrated and anesthetized non-human and human mammals; however, there is minimal information on the NWR in intact, unanesthetized non-human mammals.
The first specific aim was to identify the factors that determine the direction and magnitude of the NWR in intact, unanesthetized rats. Based on previous studies, we hypothesized that the location of stimulation and the initial position of the paw preceding the NWR will influence the direction and magnitude …
Basal And Experience Dependent Ampar And Synapse Dynamics: Alterations In A Mouse Model Of Fragile X Syndrome, Anand Suresh
Basal And Experience Dependent Ampar And Synapse Dynamics: Alterations In A Mouse Model Of Fragile X Syndrome, Anand Suresh
Theses & Dissertations
Dendritic spines are the principal sites of excitatory synapses in the neurons of mammalian central nervous system. Spine are plastic, undergoing structural and functional changes under basal and experience dependent conditions. Spine properties are altered in a number of neurodevelopmental disorders including the Fragile X syndrome (FXS) which is the most common inherited form of intellectual disability. The structural reorganization of dendritic spines is thought to be associated with synaptic plasticity mechanisms that are deficient in FXS. A number of synaptic plasticity mechanisms involve modulation of synaptic strength via insertion or removal of α-amino-3-hydroxy-5-methyl-4-isoxazolepropionic acid receptors (AMPAR). However, the link …
Major Neurotransmitters In The Brain, Amy S. Yu '17
Major Neurotransmitters In The Brain, Amy S. Yu '17
Independent Study
Arguably the most important and powerful organ in the human body, the brain controls virtually everything one does. From chewing gum to running a marathon, the brain dictates one’s physical responses and actions, while also mediating learning, memory, and emotions. These functions are all regulated by neurotransmitter activity in the brain. While the brain works in complex ways, recent discoveries about neurotransmitters allow us to better understand the underlying mechanisms of brain operation. Each neurotransmitter fulfills a distinct role, but they rely on one another to perform certain activities in the brain as well. The purpose of this review is …
A Behavioral Prerequisite For The Genetic Analysis Of Auditory Feature Detection Mechanisms In Female Crickets, Rebecca L. Blisko
A Behavioral Prerequisite For The Genetic Analysis Of Auditory Feature Detection Mechanisms In Female Crickets, Rebecca L. Blisko
Senior Honors Projects
Sexual dimorphism is exhibited across all cricket species and is a central aspect of the mating processes of these insects. Only male crickets possess wing structures and pattern generators in the central nervous system that allow them to produce a mating call that is unique to their species in order to attract conspecific females. Conspecific females possess an auditory feature detection circuit in the central nervous system that is capable of detecting the species-specific frequency and temporal pattern of sound pulses within a male call. In order for dimorphic differences in mating behavior to result in successful continuation of a …
Modeling 3d Retinogenesis In Mouse Embryonic Stem Cells Following Crispr-Mediated Crx Knockdown, Pooja Prasad
Modeling 3d Retinogenesis In Mouse Embryonic Stem Cells Following Crispr-Mediated Crx Knockdown, Pooja Prasad
Dissertations, Masters Theses, Capstones, and Culminating Projects
An emerging technology known as three-dimensional (3D) tissue engineering has allowed scientists to mimic tissues found in vivo. Previous studies indicate that it is possible to differentiate dissociated mouse embryonic stem cells (mESCs) into 3D retinal tissues in vitro (Bertacchi, 2015; Eiraku, 2012). The newly differentiated retinal tissues are said to encompass all of the major components found in retinal tissues. The generation of in vitro 3D tissues holds great potential in terms of patient-specific disease modeling. Although various diseases have been well-studied in animal models, there are limitations with regards to patient-specificity. The generation of animal models to study …
Investigating Localization And Activity-Dependent Translation Of Astrocyte Mrna, Rohan Khazanchi
Investigating Localization And Activity-Dependent Translation Of Astrocyte Mrna, Rohan Khazanchi
Senior Honors Papers / Undergraduate Theses
Over the past two and a half years, I have studied fundamental aspects of astrocyte biology by investigating the existence and mechanism of astrocyte local translation peripherally around tripartite synapses consisting of pre- and post-synaptic neuron terminals and an associated astrocyte. Astrocytes are critical components of central nervous system synapses (which are predominately tripartite in nature); thus, it is important to consider how astrocyte dysregulation and dysfunction could contribute to the pathogenesis of diseases of synaptic connectivity such as autism spectrum disorders, Alzheimer’s disease, seizure disorders, and more. Overall, my projects involved the development of novel methods to identify astrocyte-specific …
Role Of Trpv4 In Astrocyte Extracellular Matrix Production, Abby Terlouw
Role Of Trpv4 In Astrocyte Extracellular Matrix Production, Abby Terlouw
Biomedical Engineering Undergraduate Honors Theses
Traumatic Brain Injury (TBI) is an alteration of brain pathology following damage of the central nervous system (CNS) by an external force. In the CNS, glial scar formation often occurs following TBI, and astrocytes are widely believed to contribute to this scar formation. While the role of astrocytes in extracellular matrix (ECM) production is known, the exact mechanism(s) for this event remain unclear. One possible method is the activation of transient receptor potential vanilloid 4 (TRPV4). TRPV4 is a channel protein found in the astrocyte membrane which has been shown to generate intracellular calcium ions following mechanical stimulation. Previous research …
Molecular Mechanisms Of Inward And Outward Budding From Multivesicular Endosomes, Monica Gireud Goss
Molecular Mechanisms Of Inward And Outward Budding From Multivesicular Endosomes, Monica Gireud Goss
Dissertations and Theses (Open Access)
Regulating the residence time of membrane proteins (e.g. transporters, ion channels, receptors) on the cell surface can modify their response to extracellular cues and allow for cellular adaptation to environmental conditions. The fate of membrane proteins that are internalized from the plasma membrane and arrive at the limiting membrane of the late endosome/multivesicular body (MVB) is dictated by whether they remain on the limiting membrane, bud into internal MVB vesicles, or bud outwardly from the membrane. The molecular details underlying the disposition of membrane proteins that transit this pathway and the mechanisms regulating these trafficking events are unclear. We established …
Characterization And Reversal Of Doxorubicin-Mediated Changes In Sensory Neurons, Brittany L. Coughlin
Characterization And Reversal Of Doxorubicin-Mediated Changes In Sensory Neurons, Brittany L. Coughlin
Dissertations and Theses (Open Access)
Chemotherapeutic agents impair memory in humans as well as in animal models. Such memory impairments can be persistent, lasting years after exposure to chemotherapy. Doxorubicin (DOX), a common chemotherapeutic agent, has been associated with memory impairments in humans and induces memory deficits in rodent models. DOX also impairs serotonin (5-HT)-induced long-term synaptic facilitation (LTF) in Aplysia sensorimotor co-cultures, a cellular analog of long-term memory formation. In addition, DOX leads to dynamic activation of extracellular signal-regulated kinase (ERK), consisting of an immediate and a delayed phase of activation, and to transient activation of p38 mitogen-activated protein kinase (p38 MAPK) in Aplysia …
Expression Of Mammalian Dna In A Non-Native Cell System, Taylor Hyatt
Expression Of Mammalian Dna In A Non-Native Cell System, Taylor Hyatt
Undergraduate Honors Thesis Projects
In this study, we aimed to investigate the interaction between glucocorticoid receptors and calcium channels. To begin our research, we began to optimize the transfection efficiency of a glucocorticoid receptor within human embryonic kidney cells. Results found that this non-native cell was able to be transfected with pK7-GR-GFP DNA. Although it was unexpected, we were unable to obtain a transfection efficiency of 10% to move forward with other planned experiments. However, through our efforts, we were able to achieve a transfection efficiency of 0.04% and troubleshoot many difficulties that prevented obtaining a higher transfection efficiency. It was found that the …
Oxidation Of Substituted Catechols At The Air-Water Interface: Production Of Carboxylic Acids, Quinones, And Polyphenols, Elizabeth A. Pillar, Marcelo I. Guzman
Oxidation Of Substituted Catechols At The Air-Water Interface: Production Of Carboxylic Acids, Quinones, And Polyphenols, Elizabeth A. Pillar, Marcelo I. Guzman
Chemistry Faculty Publications
Anthropogenic activities contribute benzene, toluene, and anisole to the environment, which in the atmosphere are converted into the respective phenols, cresols, and methoxyphenols by fast gas-phase reaction with hydroxyl radicals (HO(•)). Further processing of the latter species by HO(•) decreases their vapor pressure as a second hydroxyl group is incorporated to accelerate their oxidative aging at interfaces and in aqueous particles. This work shows how catechol, pyrogallol, 3-methylcatechol, 4-methylcatechol, and 3-methoxycatechol (all proxies for oxygenated aromatics derived from benzene, toluene, and anisole) react at the air-water interface with increasing O3(g) during τc ≈ 1 μs contact time and contrasts their …
Human Neuroblastoma Adaptation To Cobalt Chloride-Induced Hypoxia, Conor Mcauliffe
Human Neuroblastoma Adaptation To Cobalt Chloride-Induced Hypoxia, Conor Mcauliffe
Seton Hall University Dissertations and Theses (ETDs)
Hypoxia is a frequent characteristic of the solid tumor microenvironment, which occurs when cancer cells lack adequate access to oxygen. By selecting for cells that can adapt to and grow in low oxygen conditions, tumor hypoxia contributes to a more aggressive and invasive cancer phenotype that portends a poor clinical outcome. While many aspects of the cellular response to hypoxia have been explored, the roles of some factors have not been fully explained. Cell signaling factors, including signal transducer and activator of transcription 3 (STAT3), the mu opioid receptor (MOR), and the delta opioid receptor (DOR), as well as changes …
P32. Altered Sensory Processing In Response To Novel Dreadd-Induced Inactivation Of Gaba In Pedunculopontine Tegmental Nucleus, Niveen Fulcher
P32. Altered Sensory Processing In Response To Novel Dreadd-Induced Inactivation Of Gaba In Pedunculopontine Tegmental Nucleus, Niveen Fulcher
Western Research Forum
Niveen Fulcher1, Cleusa De Oliveira2, & Susanne Schmid1,2
1Schulich School of Medicine & Dentistry, University of Western Ontario
2Anatomy and Cell Biology, University of Western Ontario
Altered sensory processing in response to novel DREADD-induced inactivation of GABA in pedunculopontine tegmental nucleus
Background: Sensory processing deficits are associated with certain psychiatric illnesses, such as schizophrenia and autism spectrum disorder (ASD). Sensory filtering and sensorimotor gating are evolutionarily conserved preattentive responses that filter and block redundant sensory stimuli that would otherwise overwhelm our brains. To date, underlying mechanisms of these deficits are undefined. Prepulse …
P35. Investigating The Effect Of Maternal Immune Activation On Sensory Filtering, Social Behaviour And Attention, Faraj Haddad
P35. Investigating The Effect Of Maternal Immune Activation On Sensory Filtering, Social Behaviour And Attention, Faraj Haddad
Western Research Forum
Background
Altered brain development is associated with many neuropsychiatric disorders like Autism Spectrum Disorder (ASD) and schizophrenia. Environmental insults can interfere with neurodevelopment, and a prominent example is maternal infection during pregnancy. Epidemiological studies show that children born to mothers who were infected during pregnancy display a higher risk of developing ASD and schizophrenia, and this effect is mainly due to the maternal immune response. Polyinosinic-polycytidilic acid (Poly I:C) is a double stranded RNA molecule that mimics viral markers and elicits an immune response. When injected in pregnant rodents, this model produces offspring that exhibit core symptoms of ASD and …
Diabetic Peripheral Neuropathy, Michael Bradshaw, Jeffrey Brown, Kyril Cole, Whitney Harris, Kody Hasebi, Ysabella Del Rosario, Sara Werner, Bryan Witt, Alonzo Cook
Diabetic Peripheral Neuropathy, Michael Bradshaw, Jeffrey Brown, Kyril Cole, Whitney Harris, Kody Hasebi, Ysabella Del Rosario, Sara Werner, Bryan Witt, Alonzo Cook
Biomedical Engineering Western Regional Conference
No abstract provided.
Physical Mechanisms And Biological Consequences Of Voltage-Gated Sodium Channel Modulation By Fhf Proteins, Yue Liu
Dissertations, Theses, and Capstone Projects
Purpose: FHFs are cytosolic proteins that bind to voltage-gated sodium channels (NaVs) and modulate their functions to control membrane excitability. FHFs raise the voltage dependence of NaV fast inactivation to promote excitability, while A isoforms FHF (A-FHFs) also capture open sodium channels into a long-term inactivated (LTI) state to limit excitability. My research has addressed how FHFs balance membrane excitability as it relates to normal and pathological brain functions. Part of this work stemmed from the discovery of a missense FHF1 mutation in patients with severe early onset epilepsy. Methods and Results: Wild-type FHF1A and FHF1B were …
Adaptor Protein 2 (Ap-2) Complex Is Essential For Functional Axogenesis In Hippocampal Neurons, Jae Won Kyung, In Ha Cho, Sukmook Lee, Woo Keun Song, Timothy A. Ryan, Michael B. Hoppa, Sung Hyun Kim
Adaptor Protein 2 (Ap-2) Complex Is Essential For Functional Axogenesis In Hippocampal Neurons, Jae Won Kyung, In Ha Cho, Sukmook Lee, Woo Keun Song, Timothy A. Ryan, Michael B. Hoppa, Sung Hyun Kim
Dartmouth Scholarship
The complexity and diversity of a neural network requires regulated elongation and branching of axons, as well as the formation of synapses between neurons. In the present study we explore the role of AP-2, a key endocytic adaptor protein complex, in the development of rat hippocampal neurons. We found that the loss of AP-2 during the early stage of development resulted in impaired axon extension and failed maturation of the axon initial segment (AIS). Normally the AIS performs two tasks in
concert, stabilizing neural polarity and generating action potentials. In AP-2 silenced axons polarity is established, however there is a …
Alpha-Synuclein: Insight Into The Hallmark Of Parkinson's Disease As A Target For Quantitative Molecular Diagnostics And Therapeutics, Baggio A. Evangelista
Alpha-Synuclein: Insight Into The Hallmark Of Parkinson's Disease As A Target For Quantitative Molecular Diagnostics And Therapeutics, Baggio A. Evangelista
Honors Undergraduate Theses
Parkinson’s disease (PD) is the second-most common neurodegenerative disease after Alzheimer’s disease. With 500,000 individuals currently living with Parkinson’s and nearly 60,000 new cases diagnosed each year, this disease causes significant financial burden on the healthcare system - amassing to annual expenditures totaling 200 billion dollars; predicted to increase through 2050. The disease phenotype is characterized by a combination of a resting tremor, bradykinesia, muscular rigidity, and depression due to dopaminergic neuronal death in the midbrain. The cause of the neurotoxicity has been largely discussed, with strong evidence suggesting that the protein, alpha-Synuclein, is a key factor. Under native conditions, …
N-Alkyl 4-Methylamphetamine Enantiomers And The Implication For Potential Modulation Of Abuse Liability And Enhancement Of Psychoactive Drug Targeting., Ramsey Sitta
Theses and Dissertations
Drugs of abuse have a long history in humanity. Currently however, a subject of great interest is the phenylalkylamine family of drugs. Not only is the abuse liability of interest but also the potential therapeutic expansion of the capabilities of this family of drugs by utilizing the unique stereospecific effects of the newly discovered hybrid compounds. Based upon prior data of N-Alkyl 4-MA the enantiomers of N-Methyl, N-Ethyl, and N-Propyl were analyzed in hDAT, hNET, and hSERT. It was found that there was a negative correlation between chain length and potency and dopaminergic component. In agreement with the currently established …
The Effects Of The Hiv-1 Tat Protein And Morphine On The Structure And Function Of The Hippocampal Ca1 Subfield, William D. Marks
The Effects Of The Hiv-1 Tat Protein And Morphine On The Structure And Function Of The Hippocampal Ca1 Subfield, William D. Marks
Theses and Dissertations
HIV is capable of causing a set of neurological diseases collectively termed the HIV Associated Neurocognitive Disorders (HAND). Worsening pathology is observed in HIV+ individuals who use opioid drugs. Memory problems are often observed in HAND, implicating HIV pathology in the hippocampus, and are also known to be exacerbated by morphine use. HIV-1 Tat was demonstrated to reduce spatial memory performance in multiple tasks, and individual subsets of CA1 interneurons were found to be selectively vulnerable to the effects of Tat, notably nNOS+/NPY- interneurons of the pyramidal layer and stratum radiatum, PV+ neurons of the pyramidal layer, and SST+ neurons …
Hydrogen Sulfide Regulation Of Kir Channels, Junghoon Ha
Hydrogen Sulfide Regulation Of Kir Channels, Junghoon Ha
Theses and Dissertations
Inwardly rectifying potassium (Kir) channels establish and regulate the resting membrane potential of excitable cells in the heart, brain and other peripheral tissues. Phosphatidylinositol- 4,5-bisphosphate (PIP2) is a key direct activator of ion channels, including Kir channels. Gasotransmitters, such as carbon monoxide (CO), have been reported to regulate the activity of Kir channels by altering channel-PIP2 interactions. We tested, in a model system, the effects and mechanism of action of another important gasotransmitter, hydrogen sulfide (H2S) thought to play a key role in cellular responses under ischemic conditions. Direct administration of sodium hydrogen sulfide (NaHS), as an exogenous H2S source, …
Structural And Functional Alterations In Neocortical Circuits After Mild Traumatic Brain Injury, Michal Vascak
Structural And Functional Alterations In Neocortical Circuits After Mild Traumatic Brain Injury, Michal Vascak
Theses and Dissertations
National concern over traumatic brain injury (TBI) is growing rapidly. Recent focus is on mild TBI (mTBI), which is the most prevalent injury level in both civilian and military demographics. A preeminent sequelae of mTBI is cognitive network disruption. Advanced neuroimaging of mTBI victims supports this premise, revealing alterations in activation and structure-function of excitatory and inhibitory neuronal systems, which are essential for network processing. However, clinical neuroimaging cannot resolve the cellular and molecular substrates underlying such changes. Therefore, to understand the full scope of mTBI-induced alterations it is necessary to study cortical networks on the microscopic level, where neurons …
Oxidative Stress And Proteomic Studies Of Mammalian Models Of Age-Related Metabolic Dysfunction In Neurodegenerative Disorders, Aaron M. Swomley
Oxidative Stress And Proteomic Studies Of Mammalian Models Of Age-Related Metabolic Dysfunction In Neurodegenerative Disorders, Aaron M. Swomley
Theses and Dissertations--Chemistry
Expression proteomics is the field of science wherein proteins that make up the cellular proteome are identified both by name and by fold-change. Depending on the application of proteomics, this change in level could be due to internal cellular stressors or introduction of xenobiotics. Global oxidative stress measures use immunohistochemistry to determine the relative level of oxidative stress of macromolecules within the cell. In this dissertation, both global oxidative stress measures and expression proteomics were used in a variety of mammalian models in order to determine the effects of protein upregulation, intranasal insulin administration, and resveratrol supplementation on the cellular …