Gut Commensals Modulate Siv/Shiv Pathogenesis And Therapeutics,
2022
University of Nebraska Medical Center
Gut Commensals Modulate Siv/Shiv Pathogenesis And Therapeutics, Samuel Johnson
Theses & Dissertations
Despite significant advancements in combination antiretroviral therapy (cART), ongoing inflammation in the brain and gut remain two of the most significant hurdles in the health of people living with human immunodeficiency virus (HIV). Additionally, a viral reservoir in each compartment inhibits cure efforts by allowing rapid viral rebound following cART interruption. Emerging understanding of the gut-brain axis (GBA) implicates each compartment in the modulation of the other in a complex bi-directional interaction mediated by vagus innervation, circulating lymphocytes, and microbiome composition and biproducts. Using multiple models of the simian (and simian-human) immunodeficiency virus (SIV/SHIV) and therapeutic intervention, I present how …
Examining Levels Of Catecholamine Neurotransmitter Regulatory Proteins Within The Prefrontal Cortex Of Rodents Following Traumatic Brain Injury,
2022
Rowan University
Examining Levels Of Catecholamine Neurotransmitter Regulatory Proteins Within The Prefrontal Cortex Of Rodents Following Traumatic Brain Injury, Eleni Papadopoulos, Christopher P. Knapp, Claire M. Corbett, Jessica Loweth, Rachel L. Navarra
Rowan-Virtua Research Day
Traumatic brain injury (TBI) resulting from impact to the head can cause long lasting impairments of cognitive processes that lead to increased risk-taking behavior in clinical populations. Our laboratory has recently shown that female, but not age-matched male, rats increase preference for risky choices after multiple experimentally-induced mild TBI’s. Our overarching goal is to understand the neural mechanisms underlying TBI-induced increases in risk-taking behavior.
The prefrontal cortex (PFC) plays a prominent role in risk-based decision making. Sub[1]regions of the PFC include the medial PFC (mPFC), the orbitofrontal cortex (OFC), and the anterior cingulate cortex (ACC), and these sub[1]regions play specific …
Plasmalogen Deficiency: A Risk Factor For Dementias And Potential Treatment Target,
2022
Rowan University
Plasmalogen Deficiency: A Risk Factor For Dementias And Potential Treatment Target, Mitchel A. Kling, Mallika Mendu, Rima F. Kaddurah-Daouk, Sheldon Jordan, Dayan B. Goodenowe
Rowan-Virtua Research Day
Altered lipid metabolism is implicated in the risk of sporadic Alzheimer’s disease (AD) and related dementias (ADRD); however, the precise mechanisms accounting for findings from observational studies remains to be fully elucidated.
Plasmalogens are a subclass of integral membrane phospholipids with unique properties that appear to play important roles relevant to the pathophysiology of AD and ADRD, including vesicle fusion necessary for synaptic neurotransmitter release, modulation of membrane fluidity and microdomain dynamics, membrane antioxidant functions, and neuroprotection. Like the more familiar phosphatides, plasmalogens are synthesized on a 3-carbon glycerol backbone; however, they differ from phosphatides by the presence of a …
The Neuroprotective Effects Of Estradiol And Genistein In Zebra Finch Cerebellum,
2022
University of Mississippi
The Neuroprotective Effects Of Estradiol And Genistein In Zebra Finch Cerebellum, Renee E. Breaux
Honors Theses
The estradiol (E2) synthetic pathway converts testosterone to E2 via aromatase (AROM) and plays an important role in neuroplasticity. However, exogenous E2 increases cancer risk and interferes with gonadal function. Phytoestrogens, plant-based estrogens, may provide neuroprotection without negative E2 effects. Genistein (GEN), a soy phytoestrogen, preferentially binds to estrogen receptor beta (ER β), which is expressed at a relatively higher concentration than ER α in the cerebellum (CB). The songbird CB is an ideal model for steroid-mediated plasticity. Songbird brains are highly plastic and CB contains all steroid-synthetic enzymes. Previous studies in zebra finches (ZF) have shown that AROM and …
Neurosyphilis: A Monkey Among Men,
2022
Cape Fear Valley Medical Center
Neurosyphilis: A Monkey Among Men, Cameron Rowe Do, Nathan Buckley Do, Bhaskar Chhetri Md, Suresh Paudel Md
Journal of Community Hospital Internal Medicine Perspectives
Neurosyphilis is the progression of the untreated sexually transmitted infection caused by Treponema pallidum. When the initial infection is not adequately treated, progression of primary syphilis can lead to a wide variety of serious health sequelae. While neurosyphilis can appear up to 10-30 years after the initial infection, syphilis can invade the nervous system at any stage of infection and can imitate symptoms of many other diseases. This variety of symptoms is why syphilis has been called “The Great Pretender” or “The monkey among diseases” (12). This is a case report of an 83-year-old female with a history of multiple …
Cross-Species Genetic Screens Identify Transglutaminase 5 As A Regulator Of Polyglutamine-Expanded Ataxin-1,
2022
The Texas Medical Center Library
Cross-Species Genetic Screens Identify Transglutaminase 5 As A Regulator Of Polyglutamine-Expanded Ataxin-1, Won-Seok Lee, Ismael Al-Ramahi, Hyun-Hwan Jeong, Youjin Jang, Tao Lin, Carolyn J Adamski, Laura A Lavery, Smruti Rath, Ronald Richman, Vitaliy V Bondar, Elizabeth Alcala, Jean-Pierre Revelli, Harry T Orr, Zhandong Liu, Juan Botas, Huda Y Zoghbi
Duncan NRI Faculty and Staff Publications
Many neurodegenerative disorders are caused by abnormal accumulation of misfolded proteins. In spinocerebellar ataxia type 1 (SCA1), accumulation of polyglutamine-expanded (polyQ-expanded) ataxin-1 (ATXN1) causes neuronal toxicity. Lowering total ATXN1, especially the polyQ-expanded form, alleviates disease phenotypes in mice, but the molecular mechanism by which the mutant ATXN1 is specifically modulated is not understood. Here, we identified 22 mutant ATXN1 regulators by performing a cross-species screen of 7787 and 2144 genes in human cells and Drosophila eyes, respectively. Among them, transglutaminase 5 (TG5) preferentially regulated mutant ATXN1 over the WT protein. TG enzymes catalyzed cross-linking of ATXN1 in a polyQ-length–dependent manner, …
Effective Therapies And Nursing Approaches: Improving Cognition In Older Adult Stroke Patients,
2022
Dominican University of California
Effective Therapies And Nursing Approaches: Improving Cognition In Older Adult Stroke Patients, Selyna Baltazar
Nursing | Senior Theses
Background
Ischemic stroke occurs in thousands of older adults throughout the year. Due to the lack of oxygen entering the brain, many patients experience a decline in cognitive function due to ischemic stroke. Cognition is the ability to understand, learn, and remember information which is needed for completing daily tasks. Modern technology has allowed for patients to survive ischemic strokes but has yet to provide proper screening tools and methods for stroke-related cognitive impairment.
Objective
To investigate the best practices for identifying, treating, and caring for patients with a cognitive injury related to a stroke. A review of the research …
Safety Measures In The Epilepsy Monitoring Unit: An Organizational Assessment,
2022
Otterbein University
Safety Measures In The Epilepsy Monitoring Unit: An Organizational Assessment, Tina Yates
Doctor of Nursing Practice Scholarly Projects
Long-term video-electroencephalography (EEG) monitoring in the epilepsy monitoring unit (EMU) is an elective procedure and generally safe. Clinical experts determined the EMU protocols at a level-4 comprehensive epilepsy center were not followed correctly. The project is a retrospective chart audit incorporating Ray’s Bureaucratic Caring theoretical framework with Donabedian’s conceptual model. The project objective is to evaluate if safety measures protocols are implemented appropriately in the EMU and determine whether a need exists for quality improvements.
The project reviewed patients admitted to the EMU from September 2021 through November 2021 who developed a generalized tonic clonic (GTCs) seizure with electrographic epileptiform …
The Effects Of Executive Function Between Anxiety And Math Achievement In Adolescents,
2022
University of Nevada, Las Vegas
The Effects Of Executive Function Between Anxiety And Math Achievement In Adolescents, Mckenzie Hall
UNLV Theses, Dissertations, Professional Papers, and Capstones
Anxiety in Children can develop into pervasive disorders in adulthood if not treated. Research shows dysfunctional Executive Function (EF) and anxiety are both shown to have a negative impact on math achievement in children and adolescents (Trezise & Reeve, 2018; Kalaycioglu, 2015; Owens, Stevenson, Hadwin & Norgate, 2012). Chung, Weyandt, and Swentosky (2014) found biological and neuropsychological support for EF as a unitary and multifaceted processor for regulating our emotional states as well as our daily procedures. Anderson’s (2002) model of Executive Control System (ECS) allows the factors of EF to be examined using a developmental approach towards EF processes. …
Extracellular Vesicles Released After Cranial Radiation: An Insight Into An Early Mechanism Of Brain Injury,
2022
University of Kentucky
Extracellular Vesicles Released After Cranial Radiation: An Insight Into An Early Mechanism Of Brain Injury, Suriyan Sukati, Jenni Ho, Luksana Chaiswing, Pradoldej Sompol, Harshul Shreekant Pandit, Wendy Wei, Tadahide Izumi, Quan Chen, Heidi Weiss, Teresa Noel, Subbarao Bondada, D. Allan Butterfield, Daret K. St. Clair
Sanders-Brown Center on Aging Faculty Publications
Cranial radiation is important for treating both primary brain tumors and brain metastases. A potential delayed side effect of cranial radiation is neurocognitive function decline. Early detection of CNS injury might prevent further neuronal damage. Extracellular vesicles (EVs) have emerged as a potential diagnostic tool because of their unique membranous characteristics and cargos. We investigated whether EVs can be an early indicator of CNS injury by giving C57BJ/6 mice 10 Gy cranial IR. EVs were isolated from sera to quantify: 1) number of EVs using nanoparticle tracking analysis (NTA); 2) Glial fibrillary acidic protein (GFAP), an astrocyte marker; and 3) …
A D2 To D1 Shift In Dopaminergic Inputs To Midbrain 5-Ht Neurons Causes Anorexia In Mice,
2022
The Texas Medical Center Library
A D2 To D1 Shift In Dopaminergic Inputs To Midbrain 5-Ht Neurons Causes Anorexia In Mice, Xing Cai, Hailan Liu, Bing Feng, Meng Yu, Yang He, Hesong Liu, Chen Liang, Yongjie Yang, Longlong Tu, Nan Zhang, Lina Wang, Na Yin, Junying Han, Zili Yan, Chunmei Wang, Pingwen Xu, Qi Wu, Qingchun Tong, Yanlin He, Yong Xu
Faculty, Staff and Students Publications
Midbrain dopamine (DA) and serotonin (5-HT) neurons regulate motivated behaviors, including feeding, but less is known about how these circuits may interact. In this study, we found that DA neurons in the mouse ventral tegmental area bidirectionally regulate the activity of 5-HT neurons in the dorsal raphe nucleus (DRN), with weaker stimulation causing DRD2-dependent inhibition and overeating, while stronger stimulation causing DRD1-dependent activation and anorexia. Furthermore, in the activity-based anorexia (ABA) paradigm, which is a mouse model mimicking some clinical features of human anorexia nervosa (AN), we observed a DRD2 to DRD1 shift of DA neurotransmission on 5-HT
A Neurophysiological Investigation Of Listening Effort In Normal Hearing Adults Using Fnirs And Pupillometry,
2022
University of Tennessee Health Science Center
A Neurophysiological Investigation Of Listening Effort In Normal Hearing Adults Using Fnirs And Pupillometry, Jessica Defenderfer
Theses and Dissertations (ETD)
Real-world conversations are often accompanied by some sort of interference that challenges the clarity of the speaker’s message, causing listeners to exert more effort to understand speech. Previous research has demonstrated that when listening to speech becomes difficult, various regions of the brain are recruited beyond those which engage during optimal listening conditions. However, the neural correlates that underly listening effort are not fully understood. Importantly, the pupillary response can be used to index listening effort, such that pupil size increases with increasing cognitive demand. I proposed that pupillometry can be used to characterize the cortical response, such that changes …
An Evaluation Of Oral Anticoagulation Initiation After Ischemic Stroke In Patients With Atrial Fibrillation/Atrial Flutter At Hospital Discharge,
2022
Providence
An Evaluation Of Oral Anticoagulation Initiation After Ischemic Stroke In Patients With Atrial Fibrillation/Atrial Flutter At Hospital Discharge, Jessica Zhao, Meri Slavica, Vanessa Jenkins, Natalie Swearingen
Providence Pharmacy PGY1 Program at Providence Portland and Providence St. Vincent Medical Centers 2022
No abstract provided.
Tenecteplase Implementation For Ischemic Stroke At A Large Tertiary Medical Center,
2022
Providence
Tenecteplase Implementation For Ischemic Stroke At A Large Tertiary Medical Center, Laura Kays, Bryce Winn, Aimee Doyle
Providence Pharmacy PGY1 Program at Providence Portland and Providence St. Vincent Medical Centers 2022
No abstract provided.
Hdac6 Inhibition Reverses Long-Term Doxorubicin-Induced Cognitive Dysfunction By Restoring Microglia Homeostasis,
2022
The Texas Medical Center Library
Hdac6 Inhibition Reverses Long-Term Doxorubicin-Induced Cognitive Dysfunction By Restoring Microglia Homeostasis, Blake Mcalpin
Dissertations and Theses (Open Access)
One in 8 women in the US will be diagnosed with breast cancer. Currently, doxorubicin is one of the most effective chemotherapies for breast cancer. Unfortunately, up to 60% of survivors report long-term chemotherapy-induced cognitive dysfunction (CICD) characterized by deficits in working memory, processing speed, and executive functioning. Currently, no interventions for CICD have been approved by the US Food and Drug Administration. I show here that a 14-day treatment with a blood-brain barrier permeable histone deacetylase 6 (HDAC6) inhibitor successfully reverses long-term CICD following a therapeutic doxorubicin dosing schedule in female mice, as assessed by the puzzle box test …
Author Correction: Short Amylin Receptor Antagonist Peptides Improve Memory Deficits In Alzheimer’S Disease Mouse Model,
2022
University of Alberta
Author Correction: Short Amylin Receptor Antagonist Peptides Improve Memory Deficits In Alzheimer’S Disease Mouse Model, Rania Soudy, Ryoichi Kimura, Aarti Patel, Wen Fu, Kamaljit Kaur, David Westaway, Jing Yang, Jack Jhamandas
Pharmacy Faculty Articles and Research
Correction to: Scientific Reports https://doi.org/10.1038/s41598-019-47255-9, published online 29 July 2019
The original Article contained an error in Figure 1A where the control trace for both the HEK-AMY3 and HEKWT cells was duplicated...
The original Article has been corrected.
Ameliorative Effects Of Minor Cannabinoids Over Hiv-1 Tat-Mediated Visceral Pain,
2022
University of Mississippi
Ameliorative Effects Of Minor Cannabinoids Over Hiv-1 Tat-Mediated Visceral Pain, Charlie Worth
Honors Theses
As the total number of people living with HIV continues to rise across the world, an effective HIV treatment is still sought after. While modern-day advanced therapies exist for mitigating much of the negative effects of HIV, the virus remains evasive and problematic in the central nervous system. Thus, even with treatment, many people living with HIV continue to suffer from a plethora of symptoms. However, a large proportion of HIV-positive patients claim to feel a reduction in those persevering symptoms after cannabis usage. This anecdotal evidence has sparked interest in the efficacy of cannabis constituents for HIV therapy. This …
The Relationship Between Pro-Stress And Anti-Stress Receptors In The Stress-Learning Brain Regions Of Female Mice,
2022
University of South Dakota
The Relationship Between Pro-Stress And Anti-Stress Receptors In The Stress-Learning Brain Regions Of Female Mice, Nathan Popp
Honors Thesis
Human men and women react to stress in different ways, both biologically and psychologically (Verma et al., 2011). Orexins (or hypocretins) are neuropeptides involved in eliciting a stress response and have been shown to have opposing actions via two different receptors. Activation of the Orx1 receptor promotes stress, while activation of the Orx2 receptor relieves stress (Staton et al., 2018). Using the Stress Alternatives Model (a four-day paradigm in which small female mice are in an open arena with a larger aggressor mouse), distinct phenotypic behaviors can be observed after the second day: anxiety-prone and stress-resilient. After the second day, …
Computational Modeling Of Threat Learning Reveals Links With Anxiety And Neuroanatomy In Humans,
2022
The University of Texas Rio Grande Valley
Computational Modeling Of Threat Learning Reveals Links With Anxiety And Neuroanatomy In Humans, Rany Abend, Diana Burk, Sonia G. Ruiz, Andrea L. Gold, Julia L. Napoli, Jennifer C. Britton, Kalina J. Michalska, Tomer Shechner, Anderson M. Winkler, Ellen Leibenluft
School of Medicine Publications
Influential theories implicate variations in the mechanisms supporting threat learning in the severity of anxiety symptoms. We use computational models of associative learning in conjunction with structural imaging to explicate links among the mechanisms underlying threat learning, their neuroanatomical substrates, and anxiety severity in humans. We recorded skin-conductance data during a threat-learning task from individuals with and without anxiety disorders (N=251; 8-50 years; 116 females). Reinforcement-learning model variants quantified processes hypothesized to relate to anxiety: threat conditioning, threat generalization, safety learning, and threat extinction. We identified the best-fitting models for these processes and tested associations among latent learning parameters, whole-brain …
Selective Axonal Transport Through Branch Junctions Is Directed By Growth Cone Signaling And Mediated By Kif1/Kinesin-3 Motors.,
2022
Thomas Jefferson University
Selective Axonal Transport Through Branch Junctions Is Directed By Growth Cone Signaling And Mediated By Kif1/Kinesin-3 Motors., Stephen R. Tymanskyj, Bridget M. Curran, Le Ma
Department of Neuroscience Faculty Papers
Development and function of nerve cells rely on the orchestration of microtubule-based transport from the cell body into distal axonal terminals. Neurons often have highly elaborate branches innervating multiple targets, but how protein or membrane cargos navigate through branch junctions to specific branch targets is unknown. Here, we demonstrate that anterograde transport of membrane vesicles through axonal branch junctions is highly selective, which is influenced by branch length and more strongly by growth cone motility. Using an optogenetic tool, we demonstrate that signaling from the growth cone can rapidly direct transport through branch junctions. We further demonstrate that such transport …
