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Articles 61 - 71 of 71
Full-Text Articles in Neurosciences
Microglia And Neurons In The Hippocampus Of Migratory Sandpipers., C G Diniz, N G M Magalhães, A A Sousa, C Santos Filho, D G Diniz, C M Lima, M A Oliveira, D C Paulo, P D C Pereira, D F Sherry, C W Picanço-Diniz
Microglia And Neurons In The Hippocampus Of Migratory Sandpipers., C G Diniz, N G M Magalhães, A A Sousa, C Santos Filho, D G Diniz, C M Lima, M A Oliveira, D C Paulo, P D C Pereira, D F Sherry, C W Picanço-Diniz
Brain and Mind Institute Researchers' Publications
The semipalmated sandpiper Calidris pusilla and the spotted sandpiper Actitis macularia are long- and short-distance migrants, respectively. C. pusilla breeds in the sub-arctic and mid-arctic tundra of Canada and Alaska and winters on the north and east coasts of South America. A. macularia breeds in a broad distribution across most of North America from the treeline to the southern United States. It winters in the southern United States, and Central and South America. The autumn migration route of C. pusilla includes a non-stop flight over the Atlantic Ocean, whereas autumn route of A. macularia is largely over land. Because of …
Histological And Behavioral Consequences Of Repeated Mild Traumatic Brain Injury In Mice, Amanda Nicholle Bolton Hall
Histological And Behavioral Consequences Of Repeated Mild Traumatic Brain Injury In Mice, Amanda Nicholle Bolton Hall
Theses and Dissertations--Physiology
The majority of the estimated three million traumatic brain injuries that occur each year are classified as “mild” and do not require surgical intervention. However, debilitating symptoms such as difficulties focusing on tasks, anxiety, depression, and visual deficits can persist chronically after a mild traumatic brain injury (TBI) even if an individual appears “fine”. These symptoms have been observed to worsen or be prolonged when an individual has suffered multiple mild TBIs. To test the hypothesis that increasing the amount of time between head injuries can reduce the histopathological and behavioral consequences of repeated mild TBI, a mouse model of …
Selective Vip Receptor Agonists Facilitate Immune Transformation For Dopaminergic Neuroprotection In Mptp-Intoxicated Mice., Katherine E. Olson, Lisa M. Kosloski-Bilek, Kristi M. Anderson, Breha J. Diggs, Barbara E. Clark, John M. Gledhill, Scott J. Shandler, R. Lee Mosley, Howard Gendelman
Selective Vip Receptor Agonists Facilitate Immune Transformation For Dopaminergic Neuroprotection In Mptp-Intoxicated Mice., Katherine E. Olson, Lisa M. Kosloski-Bilek, Kristi M. Anderson, Breha J. Diggs, Barbara E. Clark, John M. Gledhill, Scott J. Shandler, R. Lee Mosley, Howard Gendelman
Journal Articles: Pharmacology & Experimental Neuroscience
UNLABELLED: Vasoactive intestinal peptide (VIP) mediates a broad range of biological responses by activating two related receptors, VIP receptor 1 and 2 (VIPR1 and VIPR2). Although the use of native VIP facilitates neuroprotection, clinical application of the hormone is limited due to VIP's rapid metabolism and inability to distinguish between VIPR1 and VIPR2 receptors. In addition, activation of both receptors by therapeutics may increase adverse secondary toxicities. Therefore, we developed metabolically stable and receptor-selective agonists for VIPR1 and VIPR2 to improve pharmacokinetic and pharmacodynamic therapeutic end points. Selective agonists were investigated for their abilities to protect mice against MPTP-induced neurodegeneration …
Toll-Like Receptors And Dectin-1, A C-Type Lectin Receptor, Trigger Divergent Functions In Cns Macrophages, John C. Gensel, Yan Wang, Zhen Guan, Kyle A. Beckwith, Kaitlyn J. Braun, Ping Wei, Dana M. Mctigue, Phillip G. Popovich
Toll-Like Receptors And Dectin-1, A C-Type Lectin Receptor, Trigger Divergent Functions In Cns Macrophages, John C. Gensel, Yan Wang, Zhen Guan, Kyle A. Beckwith, Kaitlyn J. Braun, Ping Wei, Dana M. Mctigue, Phillip G. Popovich
Spinal Cord and Brain Injury Research Center Faculty Publications
Spinal cord injury (SCI) activates macrophages, endowing them with both reparative and pathological functions. The mechanisms responsible for these divergent functions are unknown but are likely controlled through stochastic activation of different macrophage receptor subtypes. Various danger-associated molecular patterns released from dying cells in the injured spinal cord likely activate distinct subtypes of macrophage pattern recognition receptors, including bacterial toll-like receptors (TLRs) and fungal C-type lectin receptors (e.g., dectin-1). To determine the in vivo consequences of activating these receptors, ligands specific for TLR2 or dectin-1 were microinjected, alone or in combination, into intact spinal cord. Both ligands elicit a florid …
Role Of Peripheral Immune Response In Microglia Activation And Regulation Of Brain Chemokine And Proinflammatory Cytokine Responses Induced During Vsv Encephalitis, Christina D. Steel, Kimberly Breving, Susan Tavakoli, Woong-Ki Kim, Larry D. Sanford, Richard P. Ciavarra
Role Of Peripheral Immune Response In Microglia Activation And Regulation Of Brain Chemokine And Proinflammatory Cytokine Responses Induced During Vsv Encephalitis, Christina D. Steel, Kimberly Breving, Susan Tavakoli, Woong-Ki Kim, Larry D. Sanford, Richard P. Ciavarra
Biological Sciences Faculty Publications
We report herein that neuroinvasion by vesicular stomatitis virus (VSV) activates microglia and induces a peripheral dendritic cell (DC)-dependent inflammatory response in the central nervous system (CNS). VSV neuroinvasion rapidly induces multiple brain chemokine and proinflammatory cytokine mRNAs that display bimodal kinetics. Peripheral DC ablation or T cell depletion suppresses the second wave of this response demonstrating that infiltrating T cells are primarily responsible for the bimodal characteristics of this response. The robust infiltrate associated with VSV encephalitis likely depends on sustained production of brain CCL19 and CCR7 expression on infiltrating inflammatory cells. © 2013 Elsevier B.V. All rights reserved.
Progress Towards Understanding Of Mechanisms Of Action Of Potent Multifunctional Disease Modifying Therapeutics For Parkinson's Disease & Investigating The Methamphetamine-Induced Striatal Microglia Activation., Mrudang M. Shah
Wayne State University Dissertations
PROGRESS TOWARDS UNDERSTANDING OF MECHANISMS OF ACTION OF POTENT MULTIFUNCTIONAL DISEASE MODIFYING
THERAPEUTICS FOR PARKINSON'S DISEASE.
by
MRUDANG MANOJKUMAR SHAH
December 2013
Advisor: Dr. Aloke Dutta
Major: Pharmaceutical Sciences
Degree: Doctor of Philosophy
Our long term goal is to design and develop potent multifunctional disease modifying therapeutics for Parkinson's disease. The objective of my dissertation was to understand the mechanisms of action of some potent small molecules (synthesized in our lab) as a disease modifying Parkinson's disease therapeutic. The objective was achieved by pursuing the following two specific aims:
1. Investigating anti-oxidant and neuroprotective effects of a lead molecule (D-512) …
Neuron To Microglia Communication; A Study Of Cx3cl1 Signaling Implications In Cognitive Function, Inflammation, And Neurodegeneration, Joshua M. Morganti
Neuron To Microglia Communication; A Study Of Cx3cl1 Signaling Implications In Cognitive Function, Inflammation, And Neurodegeneration, Joshua M. Morganti
USF Tampa Graduate Theses and Dissertations
As a consequence of aging, the brain is subject to chronic neuroinflammatory conditions. The resident immune cells of the brain, microglia, act similarly to peripheral macrophages to protect the brain from insults, infection, and physical trauma. However, without proper regulation of their respective host defense mechanisms, these actions can become neurotoxic. In the healthy brain neurons have several signaling systems that directly interact with microglia in order to maintain a calming influence upon their actions, one of particular interest is the chemokine CX3CL1. This chemokine is found predominantly on neurons, while its cognate receptor CX3CR1 is found exclusively on microglia. …
Effects Of G-Csf On Monocytes And Neurons: In Vitro And In Vivo Studies In A Mouse Model Of Alzheimer's Disease, Amanda Renee Pennington
Effects Of G-Csf On Monocytes And Neurons: In Vitro And In Vivo Studies In A Mouse Model Of Alzheimer's Disease, Amanda Renee Pennington
USF Tampa Graduate Theses and Dissertations
G-CSF is routinely used to treat neutropenia/leukopenia or to increase hematopoietic stem cell generation in bone marrow donors. G-CSF and its receptor, G-CSFR, are produced by various cell types both in the peripheral circulation and within brain. As a consequence, exogenous administration of G-CSF results in a broad spectrum of effects involving hematopoietic, immune and central nervous systems.
G-CSF administration in a mouse model of Alzheimer's disease (AD) has revealed both cognitive benefits and disease modifying effects: a) decreased Aβ plaque burden, b) increased microgliosis, c) increased neurogenesis and d) improved performance in radial arm water maze (RAWM). In clinical …
The Role Of Hiv-1 Proteins In Alzheimer's Disease Pathology, Brian Nelson Giunta
The Role Of Hiv-1 Proteins In Alzheimer's Disease Pathology, Brian Nelson Giunta
USF Tampa Graduate Theses and Dissertations
Prevalence of HIV-associated cognitive impairment is rising, the worst form of which is HIV-associated dementia (HAD). The disease is fuiled by a chronic innate type pro-inflammatory response in the brain which is highly dependent upon the activation of microglia. We first created an in vitro model of HAD composed of cultured microglial cells synergistically activated by the addition of IFN-gamma and the HIV-1 coat glycoprotein, gp120. This activation, as measured by TNF-alpha and NO release, is synergistically attenuated through the alpha7nAChR and p44/42 MAPK system by pretreatment with nicotine, and the cholinesterase inhibitor, galantamine. As these medications have been FDA …
Distinct Macrophage Subpopulations Regulate Viral Encephalitis But Not Viral Clearance In The Cns, Christina D. Steel, Woong-Ki Kim, Larry Sanford, Laurie Wellman, Sandra Burnett, Nico Van Rooijen, Rochard P. Ciavarra
Distinct Macrophage Subpopulations Regulate Viral Encephalitis But Not Viral Clearance In The Cns, Christina D. Steel, Woong-Ki Kim, Larry Sanford, Laurie Wellman, Sandra Burnett, Nico Van Rooijen, Rochard P. Ciavarra
Biological Sciences Faculty Publications
Intranasal application of vesicular stomatitis virus (VSV) induces acute encephalitis characterized by a pronounced myeloid and T cell infiltrate. The role of distinct phagocytic populations on VSV encephalitis was therefore examined in this study. Ablation of peripheral macrophages did not impair VSV encephalitis or viral clearance from the brain, whereas, depletion of splenic marginal dendritic cells impaired this response and enhanced morbidity/mortality. Selective depletion of brain perivascular macrophages also suppressed this response without altering viral clearance. Thus, two anatomically distinct phagocytic populations regulate VSV encephalitis in a non-redundant fashion although neither population is essential for viral clearance in the CNS. …
Immunomodulatory Effects Of Novel Therapies For Stroke, Aaron A. Hall
Immunomodulatory Effects Of Novel Therapies For Stroke, Aaron A. Hall
USF Tampa Graduate Theses and Dissertations
Each year, approximately 795,000 people suffer a new or recurrent stroke. About 610,000 of these are first attacks, and 185,000 are recurrent attacks (Carandang et al. 2006). Currently the only FDA approved treatment for ischemic stroke is recombinant tissue plasminogen activator (Alteplase) (Marler and Goldstein 2003). Unfortunately its use is restricted to a short, 4.5 hour, time window. Two promising therapies in the treatment of stroke at delayed timepoints are human umbilical cord blood cells (HUCBC) and the sigma receptor agonist DTG
The first series of experiments were conducted to characterize the effects of sigma receptors on various aspects of …