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- Corticotropin-releasing hormone (CRH); Circadian transcription factors (Bmal1 and Per2); Tumor necrosis factor-alpha (TNFα); corticolimbic regions; chemokine ligand 2 (CCL2). (1)
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Articles 1 - 14 of 14
Full-Text Articles in Molecular and Cellular Neuroscience
Rhythms Of Hippocampal Function And Memory After Moderate Prenatal Alcohol Exposure, Lilliana May Sanchez
Rhythms Of Hippocampal Function And Memory After Moderate Prenatal Alcohol Exposure, Lilliana May Sanchez
Psychology ETDs
Fetal Alcohol Spectrum Disorders involve morphologic and neurobiological abnormalities in offspring subjected to prenatal alcohol exposure. Although not as well studied as high exposure, moderate prenatal alcohol exposure represents the most common and undetected form in humans. While learning and memory deficits have been well characterized at the behavioral level in humans with Fetal Alcohol Spectrum Disorders and in animal models of moderate prenatal alcohol exposure, few studies have determined the circuit or systems level mechanisms of the behavioral deficits. A complete understanding of the neural bases of memory deficits after moderate prenatal alcohol exposure is needed to ultimately identify …
Stress During Adolescence: A Characterization Of Anxiety-Like Behavior, And The Mrna Expression Of Neuroimmune Factors, Clock And Stress Genes In Corticolimbic Areas., Annette Fernandez Oropeza, Annette K. Fernandez Oropeza
Stress During Adolescence: A Characterization Of Anxiety-Like Behavior, And The Mrna Expression Of Neuroimmune Factors, Clock And Stress Genes In Corticolimbic Areas., Annette Fernandez Oropeza, Annette K. Fernandez Oropeza
Biomedical Sciences ETDs
Adolescence represents a critical window of frontal cortex (FC) maturation and corticolimbic circuit refinement that supports stress and emotion regulation. Disruption of these processes by early-life insults such as prenatal alcohol exposure (PAE) or adolescent stress increases vulnerability to anxiety and mood disorders, in part through circadian–immune dysregulation. The circadian transcription factor Bmal1 and the proinflammatory cytokine tumor necrosis factor-alpha (TNFα) have emerged as key regulators of neuroimmune signaling and synaptic communication, yet their interactions across developmental risk contexts remain poorly understood. This dissertation examined the effects of mild adolescent isolation stress, with and without PAE, on anxiety-like behaviors and …
Peripheral Neuroimmune Mechanisms Of Chronic Back Pain, Aleyah Esther Goins
Peripheral Neuroimmune Mechanisms Of Chronic Back Pain, Aleyah Esther Goins
Biomedical Sciences ETDs
Chronic back pain (CBP) affects 1 in 10 people worldwide, reducing mobility, productivity, and quality of life. Despite its prevalence, non-addictive treatments remain limited due to an incomplete understanding of chronic pain mechanisms. This dissertation examines peripheral neuroimmune interactions in CBP using a urokinase-type plasminogen activator (uPA)-induced mouse model (uPA-CBP). uPA, a pro-inflammatory serine protease, was injected into the L2/L3 lumbar spinous ligament, inducing prolonged mechanical and cold hypersensitivity. Flow cytometry of dorsal root ganglia (DRG) showed increased CD45+CD11b+ myeloid cells in males and CD45+CD3+CD4+ lymphocytes in females. DRG neurons from male uPA-CBP mice exhibited heightened action potential firing. Pharmacological …
Determinants Of Neuronal Viability Following Spreading Depolarization, Michael C. Bennett
Determinants Of Neuronal Viability Following Spreading Depolarization, Michael C. Bennett
Biomedical Sciences ETDs
Spreading depolarizations (SDs) are massive, slowly propagating waves that cause near-complete neuroglial depolarization and are energetically demanding for the brain. Past studies have established SDs as key contributors to secondary injury in tissue that lacks the metabolic supply to meet the energetic burden of repolarization after SD. Efforts to identify the mechanisms that cause deleterious consequences following SD have been ongoing, with significant results showing that blocking excitotoxic levels of Ca2+ from entering neurons through NMDA receptors prevents detrimental outcomes. While these studies have advanced the field, other mechanisms may also contribute to the metabolic burden of SD. This …
Host-Microbiome Interactions In The Teleost Brain, Amir Mani Varnoosfaderani
Host-Microbiome Interactions In The Teleost Brain, Amir Mani Varnoosfaderani
Biology ETDs
This dissertation investigates host-microbial interactions within the teleost brain, previously considered sterile. Reviewing current literature highlights significant gaps in understanding teleost brain immunity, despite prevalent neurotropic diseases. We mapped the immune profiles of rainbow trout brains and meninges, revealing the olfactory bulbs as the immune effector part of the brain and the optic tectum as a nod2 expression hub. High il6 and il10 levels were noted in the telencephalon. A persistent bacterial community within healthy salmonid brains shares diversity with gut and blood microbiota. Brain bacterial isolates exhibit genomic signatures for brain colonization and polyamine biosynthesis. The microbiota shifts across …
The Role Of Spreading Depolarizations In Mild Traumatic Brain Injuries, Natalie J. Pinkowski
The Role Of Spreading Depolarizations In Mild Traumatic Brain Injuries, Natalie J. Pinkowski
Biomedical Sciences ETDs
Mild traumatic brain injuries (mTBIs) often lead to acute symptoms like disorientation and discoordination, but the underlying mechanisms are unknown. Although most patients recover quickly from a single mTBI, repeated injuries can be debilitating. After an mTBI, a neurometabolic cascade produces metabolic burden and vulnerability. Spreading depolarizations (SDs) have been observed after mTBIs. Here we investigated SDs’ role in short-term motor behavioral deficits post-mTBI. We hypothesized that SDs contribute to the deficits, and exacerbated symptoms after repeated mTBIs. To test this, we used acute motor behavioral tests and long-term behavioral and cognitive tests after initiating SDs by mTBI, chemical, or …
Transcriptional Regulation Of Stem Cell Function In The Drosophila Central Nervous System, Amalia S. Parra
Transcriptional Regulation Of Stem Cell Function In The Drosophila Central Nervous System, Amalia S. Parra
Biology ETDs
Development of multicellular organisms depends on coordination of various molecular mechanisms to ensure proper tissue size and structure. This is accomplished through intrinsic and extrinsic cues that regulate cell growth and proliferation both spatially and temporally. These well-coordinated signals are present from early developmental stages and remain active throughout development to ensure tissue structure is appropriate for function. This is particularly important in early cell types that form specialized lineages such as stem cells or those found throughout the body such as epithelia. While much progress has been made in understanding growth regulatory mechanisms, several fundamental aspects remain unknown. This …
Effects Of Neuronal Activation And Psychiatric Drug Treatment On Circhomer1 Biogenesis, Grigorios Papageorgiou
Effects Of Neuronal Activation And Psychiatric Drug Treatment On Circhomer1 Biogenesis, Grigorios Papageorgiou
Biomedical Sciences ETDs
There are currently only very few efficacious drug treatments for SCZ and BD, none of which target and improve cognitive symptoms. Thus, there is an emerging need to develop novel therapeutics targeting molecular pathways linked to cognitive function and antipsychotic treatment. Circular RNAs (circRNAs) are stable non-coding RNAs, derived from the covalent back-splicing of precursor mRNA molecules. CircHomer1is a neuronal-enriched, activity-dependent circRNA, derived from the precursor of the long HOMER1B mRNA isoform, which is abundantly expressed in the adult frontal cortex and significantly downregulated in the prefrontal cortex of subjects with psychosis. Even though its relevance to psychiatric disorders …
Molecular Characterization Of A Unique Population Of Human Cortical Interneurons; Implications For Primate-Specific Development, Crina Peterson
Molecular Characterization Of A Unique Population Of Human Cortical Interneurons; Implications For Primate-Specific Development, Crina Peterson
Biomedical Sciences ETDs
The human brain consists of 86 billion neurons compared to rodent brain, which consists of 75 million neurons, and the underlying mechanisms for the increased complexity of the primate cortex are not fully elucidated. However, an increase in specific cell populations, including calretinin-expressing (CALB2/CR) interneurons (INs), has been identified. In my thesis work, I demonstrate that human pluripotent stem cells (hPSCs) differentiated to neurons by default patterning give rise to this CR population in vitro, providing a method to study their development.
Chapter I reviews cortical development and hPSCs as an appropriate proxy for studying human cortical development. Chapter …
Prenatal Alcohol Exposure Alters Transcriptional Expression Of Stress And Tlr4-Related Immune Signaling Factors In The Brain Following Early Life Stress, Chaselyn D. Ruffaner-Hanson
Prenatal Alcohol Exposure Alters Transcriptional Expression Of Stress And Tlr4-Related Immune Signaling Factors In The Brain Following Early Life Stress, Chaselyn D. Ruffaner-Hanson
Biomedical Sciences ETDs
Background: Depression and anxiety disorders, believed to be caused by stress-related neuropeptides and pro-inflammatory molecules in the brain, are prevalent comorbidities of fetal alcohol spectrum disorders (FASD).
Methods: Brain tissue was collected following a 4-hour maternal separation stress during the early postnatal period, postnatal days 10 and 12, from mice subjected to 1st and 2nd trimester prenatal alcohol exposure (PAE).
Hypothesis: We hypothesized that PAE leads to glucocorticoid receptor insensitivity, stress molecule overexpression, and potentiated toll-like receptor 4 (TLR4) pathway inflammatory responses in the brain following early life stress.
Results: PAE and stress increased mRNA expression of TLR4 …
The Role Of Anti-Inflammatory Cytokine Interleukin-10 (Il-10) In Tauopathies, Lea L. Weston
The Role Of Anti-Inflammatory Cytokine Interleukin-10 (Il-10) In Tauopathies, Lea L. Weston
Biomedical Sciences ETDs
Tauopathies are neurodegenerative diseases, including Alzheimer’s disease, that are associated with pathological accumulation of the microtubule associated protein tau (MAPT, or tau) (Lee et al., 2001). Abnormal hyperphosphorylated tau (pTau) strongly correlate with cognitive impairment (Nelson et al., 2012). Neuroinflammation is also associated with tauopathies (Gerhard et al., 2006b; Edison et al., 2008) and is implicated in driving tau pathology (Yoshiyama et al., 2007, Maphis et al., 2015b). Therefore, it is compelling to understand the role of anti-inflammatory cytokines in limiting neuroinflammation and tau pathology. Interleukin-10 (IL-10) is a well-established anti-inflammatory cytokine with roles in limiting inflammation in the central …
Characterization Of And Cellular Mechanisms Underlying Spinal Non-Viral Interleukin-10 Gene Therapy Formulated With D-Mannose For Treatment Of Peripheral Neuropathic Pain, Arden Grace Vanderwall
Characterization Of And Cellular Mechanisms Underlying Spinal Non-Viral Interleukin-10 Gene Therapy Formulated With D-Mannose For Treatment Of Peripheral Neuropathic Pain, Arden Grace Vanderwall
Biomedical Sciences ETDs
Anti-inflammatory intrathecal non-viral interleukin-10 (IL-10) gene therapy provides enduring relief of chronic pain in numerous animal pain models. Co-administration of the mannose receptor (MR) ligand D-mannose (DM) improves non-viral IL-10 gene therapeutic efficacy, but questions remain regarding which pain-relevant tissues are critical for non-viral transgene expression resulting in long-lasting pain relief. Additionally, the role of endogenous IL-10 in non-viral IL-10 therapeutic effects is completely unknown.
Chapter I is an Introduction to the studies detailed in this dissertation, providing a historical perspective of the field of neuroinflammation and a framework upon which neuroimmune processes intersect with mechanisms underlying pathological pain. The …
Altered Proteasome Expression And Nuclear Factor (Erythroid-Derived 2)-Like Signaling In Experimental Autoimmune Encephalomyelitis, Kara Leasure Shanley
Altered Proteasome Expression And Nuclear Factor (Erythroid-Derived 2)-Like Signaling In Experimental Autoimmune Encephalomyelitis, Kara Leasure Shanley
Biomedical Sciences ETDs
Multiple sclerosis (MS) is a complex neurological disorder characterized by the interactions between heightened inflammation, oxidative stress and neurodegeneration. We and others have previously demonstrated that proteasome dysfunction and its consequences are also important factors in the pathology of both MS and its rodent model, experimental autoimmune encephalomyelitis (EAE). While proteasome subunit alterations in EAE have been observed, the underlying mechanisms are poorly understood. The first goal of this dissertation was to characterize the mechanisms that regulate proteasome expression and composition in neural cells in EAE and in vitro.
Immunohistochemical analysis of the EAE spinal cord shows changes in …
Factors That Determine Spreading Depolarization Propagation In Brain Slices, Linday Selters
Factors That Determine Spreading Depolarization Propagation In Brain Slices, Linday Selters
Biomedical Engineering ETDs
In the US alone, more than 750,000 people had a stroke in 2017, more than 1.7 million reported a traumatic brain injury, and more than 9 million suffered from migraines with aura. While all three of these neurological conditions have vastly different causes and possible outcomes they all have a common phenomenon occurring within the brain. A wave that slowly propagates through grey matter, hitting neurons with a large burst of energy, opening them up to a flood of ions and silencing them for an extended period of time. These waves are known as spreading depolarizations (SD). Within well-nourished tissue, …