New Insights Into The Genetic Etiology Of Alzheimer’S Disease And Related Dementias,
2022
Université de Lille, France
New Insights Into The Genetic Etiology Of Alzheimer’S Disease And Related Dementias, Céline Bellenguez, Fahri Küçükali, Iris Jansen, Luca Kleineidam, Sonia Moreno-Grau, Najaf Amin, Adam C. Naj, Rafael Campos-Martin, David W. Fardo, Yuriko Kastumata, Erin L. Abner, Radb, Gr@Ace, Degesco, Eadi, Gerad, Demgene, Finngen, Adgc, Charge
Sanders-Brown Center on Aging Faculty Publications
Characterization of the genetic landscape of Alzheimer’s disease (AD) and related dementias (ADD) provides a unique opportunity for a better understanding of the associated pathophysiological processes. We performed a two-stage genome-wide association study totaling 111,326 clinically diagnosed/‘proxy’ AD cases and 677,663 controls. We found 75 risk loci, of which 42 were new at the time of analysis. Pathway enrichment analyses confirmed the involvement of amyloid/tau pathways and highlighted microglia implication. Gene prioritization in the new loci identified 31 genes that were suggestive of new genetically associated processes, including the tumor necrosis factor alpha pathway through the linear ubiquitin chain assembly …
Epigenetic Pathogenesis Of Neurological Disorders In Utero And Considerations For Genetic Counseling,
2022
Liberty University
Epigenetic Pathogenesis Of Neurological Disorders In Utero And Considerations For Genetic Counseling, Lauren Juga
Senior Honors Theses
Epigenetic modifications are a major focus of study in the pathogenesis of many disorders regarding metabolism, aging, neurodevelopment, and neurodegeneration. Epigenetic mechanisms are present throughout life but are especially vital to guiding fetal development. The precise timing of gene activation and deactivation guides stem cell differentiation through each embryonic stage. After exposure to environmental stimuli, gene expression can be altered by transcription factors, resulting in observable phenotypes and even pathology. Here, the epigenetic mechanisms responsible for the pathogenesis of neurodevelopmental and neuropsychiatric disorders are explored in response to environmental perturbations in utero. The present goal is to identify correlations between …
A Rodent Animal Model For Forelimb To Lower Jaw Reorganization In Primary Somatosensory Cortex (Si) Barrel Field,
2022
University of Tennessee Health Science Center
A Rodent Animal Model For Forelimb To Lower Jaw Reorganization In Primary Somatosensory Cortex (Si) Barrel Field, Violeta Pellicer Morata
Theses and Dissertations (ETD)
The goal of this study is to examine mechanisms underlying cortical reorganization in rat primary somatosensory (SI) cortex that follows forelimb deafferentation. The majority of human patients suffering from limb loss or brachial plexus avulsion injury, as well as patients that receive brachial plexus anesthesia, report phantom limb sensations/pain which are often associated with cortical reorganization. Patients with upper-limb deafferentation report sensations of the missing hand during tactile stimulation of the face, and this phenomenon has been termed hand-to-face remapping. We sought to develop a rodent model of deafferentation; our model system is the rat SI cortex barrel field present …
Immunomodulatory Roles Of The Lysosomal Sialidase Neuraminidase 1,
2022
University of Tennessee Health Science Center
Immunomodulatory Roles Of The Lysosomal Sialidase Neuraminidase 1, Leigh Ellen Fremuth
Theses and Dissertations (ETD)
Background Sialic acids are key sugar moieties located at the non-reducing terminals of glycan chains on glycoproteins and glycolipids. By virtue of their location, they influence the functions and biochemical properties of the macromolecules they are bound to. Removal of sialic acids in mammalian cells is carried out by four sialidases, which are differentially expressed and localized in distinct subcellular compartments. Neuraminidase 1 (NEU1), the most abundant and ubiquitous of the four sialidases, functions primarily in the acidic environment of the lysosomes, but can hydrolyze substrates at the plasma membrane, at least in certain cell types. The enzyme initiates the …
Applications And Challenges Of Neural Stem Cell Therapy,
2022
Liberty University
Applications And Challenges Of Neural Stem Cell Therapy, John Brewster
Senior Honors Theses
In response to the many neurological disorders that plague humanity, no treatment shows more promise than stem cell therapy. By using these special cells to regrow damaged neurons and combat sources of disease in affected patients, researchers hope to treat neurological disorders of all kinds. While great strides have been made in laboratory settings, the widespread use of stem cells to treat neurological disorders in humans is still a distant goal. Recent advancements have been made in the area of neural stem cell therapy, but complications arise when using this method to treat neurological disorders.
Determining The Genomic Localization And Binding Partners Of Zinc Finger Protein 410,
2022
Liberty University
Determining The Genomic Localization And Binding Partners Of Zinc Finger Protein 410, Mariko Locke
Senior Honors Theses
The results of a folate deficiency study affecting cognition in mice suggested the altered genes may be controlled by a transcription factor known as Zinc Finger Protein 410 (Zfp410). Due to a lack of literature on Zfp410’s interacting proteins and DNA-binding location, our study aims to further elucidate the role Zfp410 plays in affecting cognition. A custom antibody was used to determine the Zfp410 isoforms present in mouse and rat brains. Moreover, the antibody was used to determine the binding partners of Zfp410 in the brain and locate specific genomic regions/sequences with which it associates in vivo. These results may …
Noninvasive In Vivo Optoacoustic Imaging Of Alcohol Use Disorder Using A Mouse Model Of Alcohol Use Disorder,
2022
University of South Florida
Noninvasive In Vivo Optoacoustic Imaging Of Alcohol Use Disorder Using A Mouse Model Of Alcohol Use Disorder, Augustine Meombe Mbolle
USF Tampa Graduate Theses and Dissertations
This research has two parts. The first part focuses on the use of photoacoustic imaging (PAI) to study alcohol-induced effects in the cerebral vasculature of selectively bred alcohol-preferring mice. Part two extends the application of PAI by developing a novel Photoacoustic imaging guided system for repetitive low intensity focused ultrasound (PAI-LIFU) stimulation treatment for alcohol use disorder in crossed high alcohol preferring (cHAP) mice.
Photoacoustic imaging is an emerging hybrid non-invasive optical imaging modality which relies on optical absorption contrast to visualize deep tissue structures and function. It combines the high contrast associated with pure optical imaging and the high …
Regulatory Aspects Of Mild Cognitive Impairment: Toward A Harmonized Perspective,
2022
Case Western Reserve University
Regulatory Aspects Of Mild Cognitive Impairment: Toward A Harmonized Perspective, Peter J. Whitehouse
Faculty Scholarship
The development of the concept of mild cognitive impairment (MCI) and its practical application have been intimately tied to attempts to produce therapeutic agents. Understanding the regulatory environment and determining the way in which it can be influenced are critical to the development of drugs and their eventual approval. In this article, we review some of the current challenges surrounding the concept of MCI relevant to drug development, summarize activities in various regions of the world, and conclude with some suggested next steps and an alternative framing for approving drugs for MCI and related conditions.
Disrupting The Myc-Tfeb Circuit Impairs Amino Acid Homeostasis And Provokes Metabolic Anergy,
2022
The Texas Medical Center Library
Disrupting The Myc-Tfeb Circuit Impairs Amino Acid Homeostasis And Provokes Metabolic Anergy, Mario R Fernandez, Franz X Schaub, Chunying Yang, Weimin Li, Seongseok Yun, Stephanie K Schaub, Frank C Dorsey, Min Liu, Meredith A Steeves, Andrea Ballabio, Alexandar Tzankov, Zhihua Chen, John M Koomen, Anders E Berglund, John L Cleveland
Duncan NRI Faculty and Staff Publications
MYC family oncoproteins are regulators of metabolic reprogramming that sustains cancer cell anabolism. Normal cells adapt to nutrient-limiting conditions by activating autophagy, which is required for amino acid (AA) homeostasis. Here we report that the autophagy pathway is suppressed by Myc in normal B cells, in premalignant and neoplastic B cells of Eμ-Myc transgenic mice, and in human MYC-driven Burkitt lymphoma. Myc suppresses autophagy by antagonizing the expression and function of transcription factor EB (TFEB), a master regulator of autophagy. Mechanisms that sustained AA pools in MYC-expressing B cells include coordinated induction of the proteasome and increases in AA …
Vestibular Rehabilitation For Peripheral Vestibular Hypofunction: An Updated Clinical Practice Guideline From The Academy Of Neurologic Physical Therapy Of The American Physical Therapy Association,
2022
The Texas Medical Center Library
Vestibular Rehabilitation For Peripheral Vestibular Hypofunction: An Updated Clinical Practice Guideline From The Academy Of Neurologic Physical Therapy Of The American Physical Therapy Association, Courtney D Hall, Susan J Herdman, Susan L Whitney, Eric R Anson, Wendy J Carender, Carrie W Hoppes, Stephen P Cass, Jennifer B Christy, Helen S Cohen, Terry D Fife, Joseph M Furman, Neil T Shepard, Richard A Clendaniel, J Donald Dishman, Joel A Goebel, Dara Meldrum, Cynthia Ryan, Richard L Wallace, Nakia J Woodward
Faculty, Staff and Students Publications
BACKGROUND: Uncompensated vestibular hypofunction can result in symptoms of dizziness, imbalance, and/or oscillopsia, gaze and gait instability, and impaired navigation and spatial orientation; thus, may negatively impact an individual's quality of life, ability to perform activities of daily living, drive, and work. It is estimated that one-third of adults in the United States have vestibular dysfunction and the incidence increases with age. There is strong evidence supporting vestibular physical therapy for reducing symptoms, improving gaze and postural stability, and improving function in individuals with vestibular hypofunction. The purpose of this revised clinical practice guideline is to improve quality of care …
Neuroscience Directed Study/Special Topics Neu 391,
2022
University of Rhode Island
Neuroscience Directed Study/Special Topics Neu 391, Joanna Burkhardt
Library Impact Statements
No abstract provided.
Small Heat Shock Protein 22 Preserves Neuronal Function In A Murine Model Of Tauopathy,
2022
University of South Florida
Small Heat Shock Protein 22 Preserves Neuronal Function In A Murine Model Of Tauopathy, Santiago Rodriguez Ospina
USF Tampa Graduate Theses and Dissertations
Proteinopathies is a family of diseases associated with the pathological aggregation of protein. There are a multitude of proteinopathies, like tauopathy and synucleinopathy that contribute to neurodegenerative diseases like Alzheimer’s disease (AD), Creutzfeldt-Jakob, Pick’s disease, Frontotemporal dementia, and Parkinson’s disease (PD). Currently, one focus of research in the field is mitigating aggregation-prone proteins contributing to disease state. One method of targeting aggregation is the use of chaperones. Chaperones are molecular machinery that help maintain homeostasis in the cells, through various roles and mechanisms, one of those methods is to regulate protein aggregation. Chaperones can achieve this by affecting protein-protein interactions, …
Oleic Acid Is An Endogenous Ligand Of Tlx/Nr2e1 That Triggers Hippocampal Neurogenesis,
2022
The Texas Medical Center Library
Oleic Acid Is An Endogenous Ligand Of Tlx/Nr2e1 That Triggers Hippocampal Neurogenesis, Prasanna Kandel, Fatih Semerci, Rachana Mishra, William Choi, Aleksandar Bajic, Dodge Baluya, Lihua Ma, Kevin Chen, Austin C Cao, Tipwarin Phongmekhin, Nick Matinyan, Alba Jiménez-Panizo, Srinivas Chamakuri, Idris O Raji, Lyra Chang, Pablo Fuentes-Prior, Kevin R Mackenzie, Caroline L Benn, Eva Estébanez-Perpiñá, Koen Venken, David D Moore, Damian W Young, Mirjana Maletic-Savatic
Faculty, Staff and Students Publications
Neural stem cells, the source of newborn neurons in the adult hippocampus, are intimately involved in learning and memory, mood, and stress response. Despite considerable progress in understanding the biology of neural stem cells and neurogenesis, regulating the neural stem cell population precisely has remained elusive because we have lacked the specific targets to stimulate their proliferation and neurogenesis. The orphan nuclear receptor TLX/NR2E1 governs neural stem and progenitor cell self-renewal and proliferation, but the precise mechanism by which it accomplishes this is not well understood because its endogenous ligand is not known. Here, we identify oleic acid (18:1ω9 monounsaturated …
Dissociation Of Tau Pathology And Neuronal Hypometabolism Within The Atn Framework Of Alzheimer’S Disease,
2022
University of Pennsylvania
Dissociation Of Tau Pathology And Neuronal Hypometabolism Within The Atn Framework Of Alzheimer’S Disease, Michael Tran Duong, Sandhitsu R. Das, Xueying Lyu, Long Xie, Hayley Richardson, Sharon X. Xie, Paul A. Yushkevich, Alzheimer’S Disease Neuroimaging Initiative, David A. Wolk, Ilya M. Nasrallah, Charles D. Smith, Gregory A. Jicha, Peter A. Hardy, Partha Sinha, Elizabeth Oates, Gary Conrad, Michael W. Weiner, Paul Aisen, Ronald C. Petersen, Clifford R. Jack Jr.
Sanders-Brown Center on Aging Faculty Publications
Alzheimer’s disease (AD) is defined by amyloid (A) and tau (T) pathologies, with T better correlated to neurodegeneration (N). However, T and N have complex regional relationships in part related to non-AD factors that influence N. With machine learning, we assessed heterogeneity in 18F-flortaucipir vs. 18F-fluorodeoxyglucose positron emission tomography as markers of T and neuronal hypometabolism (NM) in 289 symptomatic patients from the Alzheimer’s Disease Neuroimaging Initiative. We identified six T/NM clusters with differing limbic and cortical patterns. The canonical group was defined as the T/NM pattern with lowest regression residuals. Groups resilient to …
Mutant Lrrk2 In Lymphocytes Regulates Neurodegeneration Via Il-6 In An Inflammatory Model Of Parkinson's Disease,
2022
Thomas Jefferson University
Mutant Lrrk2 In Lymphocytes Regulates Neurodegeneration Via Il-6 In An Inflammatory Model Of Parkinson's Disease, Elena Kozina, Matthew D. Byrne, Richard Jay Smeyne
Department of Neuroscience Faculty Papers
Mutations in a number of genes contribute to development of Parkinson's disease (PD), including several within the LRRK2 gene. However, little is known about the signals that underlie LRRK2-mediated neuronal loss. One clue resides in the finding that the neurodegenerative cascades emanate from signals arising from the peripheral immune system. Here, using two chimeric mouse models, we demonstrate that: 1) the replacement of mutant LRRK2 with wt form of the protein in T- and B-lymphocytes diminishes LPS-mediated inflammation and rescues the SNpc DA neuron loss in the mutant LRRK2 brain; 2) the presence of G2019S or R1441G LRRK2 mutation in …
Cleavage Stimulating Factor 64 Depletion Mitigates Cardiac Fibrosis Through Alternative Polyadenylation,
2022
The Texas Medical Center Library
Cleavage Stimulating Factor 64 Depletion Mitigates Cardiac Fibrosis Through Alternative Polyadenylation, Rahul Neupane, Keith Youker, Hari Krishna Yalamanchili, Katarzyna A Cieslik, Harry Karmouty-Quintana, Ashrith Guha, Rajarajan A Thandavarayan
Duncan NRI Faculty and Staff Publications
Alternative polyadenylation (APA) regulates gene expression by cleavage and addition of poly(A) sequence at different polyadenylation sites (PAS) in 3'UTR, thus, generating transcript isoforms with different lengths. Cleavage stimulating factor 64 (CstF64) is an APA regulator which plays a role in PAS selection and determines the length of 3'UTR. CstF64 favors the use of proximal PAS, resulting in 3'UTR shortening, which enhances the protein expression by increasing the stability of the target genes. The aim of this study is to investigate the role of CstF64 in cardiac fibrosis, a key event leading to heart failure (HF). We determined the expression …
Drosophila Functional Screening Of De Novo Variants In Autism Uncovers Damaging Variants And Facilitates Discovery Of Rare Neurodevelopmental Diseases,
2022
The Texas Medical Center Library
Drosophila Functional Screening Of De Novo Variants In Autism Uncovers Damaging Variants And Facilitates Discovery Of Rare Neurodevelopmental Diseases, Paul C Marcogliese, Samantha L Deal, Jonathan Andrews, J Michael Harnish, V Hemanjani Bhavana, Hillary K Graves, Sharayu Jangam, Xi Luo, Ning Liu, Danqing Bei, Yu-Hsin Chao, Brooke Hull, Pei-Tseng Lee, Hongling Pan, Pradnya Bhadane, Mei-Chu Huang, Colleen M Longley, Hsiao-Tuan Chao, Hyung-Lok Chung, Nele A Haelterman, Oguz Kanca, Sathiya N Manivannan, Linda Z Rossetti, Ryan J German, Amanda Gerard, Eva Maria Christina Schwaibold, Sarah Fehr, Renzo Guerrini, Annalisa Vetro, Eleina England, Chaya N Murali, Tahsin Stefan Barakat, Marieke F Van Dooren, Martina Wilke, Marjon Van Slegtenhorst, Gaetan Lesca, Isabelle Sabatier, Nicolas Chatron, Catherine A Brownstein, Jill A Madden, Pankaj B Agrawal, Boris Keren, Thomas Courtin, Laurence Perrin, Melanie Brugger, Timo Roser, Steffen Leiz, Frederic Tran Mau-Them, Julian Delanne, Elena Sukarova-Angelovska, Slavica Trajkova, Erik Rosenhahn, Vincent Strehlow, Konrad Platzer, Roberto Keller, Lisa Pavinato, Alfredo Brusco, Jill A Rosenfeld, Ronit Marom, Michael F Wangler, Shinya Yamamoto
Duncan NRI Faculty and Staff Publications
Individuals with autism spectrum disorder (ASD) exhibit an increased burden of de novo mutations (DNMs) in a broadening range of genes. While these studies have implicated hundreds of genes in ASD pathogenesis, which DNMs cause functional consequences in vivo remains unclear. We functionally test the effects of ASD missense DNMs using Drosophila through "humanization" rescue and overexpression-based strategies. We examine 79 ASD variants in 74 genes identified in the Simons Simplex Collection and find 38% of them to cause functional alterations. Moreover, we identify GLRA2 as the cause of a spectrum of neurodevelopmental phenotypes beyond ASD in 13 previously undiagnosed …
Impact Of Arginine Metabolism And Sensing In Mouse Models Of Alzheimer’S Disease,
2022
University of South Florida
Impact Of Arginine Metabolism And Sensing In Mouse Models Of Alzheimer’S Disease, Chao Ma
USF Tampa Graduate Theses and Dissertations
Alzheimer’s disease (AD) remains the most common neurodegenerative disease in the central nervous system (CNS), with amyloidosis and tauopathy as their two main hallmarks. Typical AD pathologies include cerebral plaques deposited by amyloid-β, neurofibrillary tangles aggregated by tau, and neuroinflammation caused by activated brain myeloid cells. A critical theme is centered on impaired brain metabolism. Emerging evidence showed that impaired arginine metabolism was a novel biomarker pathway for AD. The manipulation of arginine metabolism by a critical enzyme arginase 1 (ARG1) in neurons indicated therapeutic benefits in alleviating tau pathology. Balanced cellular proteostasis was governed by the mechanistic target of …
Investigations Into The Improvement Of Angelman Syndrome Therapeutics,
2022
University of South Florida
Investigations Into The Improvement Of Angelman Syndrome Therapeutics, Austin W. Nenninger
USF Tampa Graduate Theses and Dissertations
Angelman syndrome (AS) is a rare genetic neurodevelopmental disease caused by interruption of the function of the ubiquitin ligase UBE3A gene. Patients experience an early life onset of symptoms which include pronounced intellectual disability, drastic speech impairmentor inability to speak, severe movement disorders, seizures, aggression, disruptive sleep impairment, and unusual personality traits. Estimates of prevalence show that approximately 1:15000 births are affected.
The disease is severe, and the burden can be devastating to the patients and the caregivers that they require for the duration of their relatively normal lifespan. Current treatments for the disease are lacking. Many are expensive and …
Astrocyte-Secreted Chordin-Like 1 Regulates Spine Density After Ischemic Injury,
2022
Thomas Jefferson University
Astrocyte-Secreted Chordin-Like 1 Regulates Spine Density After Ischemic Injury, Elena Blanco-Suarez, Nicola J Allen
Department of Neuroscience Faculty Papers
Ischemic injury occurs when the brain is deprived of blood flow, preventing cells from receiving essential nutrients. The injury core is the brain region directly deprived and is surrounded by the peri-infarct area, the region with recovery potential. In the peri-infarct area neurons undergo acute loss of dendritic spines, which modifies synaptic plasticity and determines neuronal survival. Astrocytes can be protective or detrimental to the ischemic injury response depending on the specific stage, yet we lack clear understanding of the underlying mechanisms. Chordin-like 1 (Chrdl1) is an astrocyte-secreted protein that promotes synaptic maturation and limits experience-dependent plasticity in the mouse …
