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Articles 1 - 15 of 15
Full-Text Articles in Pharmacology
Impact Of Ashwagandha Treatment On Cytokine Production And Macrophage Differentiation Into Thp-1 Cells, Betsi Diaz Chavarin, Aditi Kumar
Impact Of Ashwagandha Treatment On Cytokine Production And Macrophage Differentiation Into Thp-1 Cells, Betsi Diaz Chavarin, Aditi Kumar
Posters - 2026
Inflammation is a critical biological response that enables the immune system to react to infections, injuries, or stressful situations. However, chronic or excessive inflammation can lead to tissue damage and contribute to a wide range of diseases, including neurodegenerative disorders, metabolic syndromes, and immune dysregulation. 3,4 Interleukin-1 beta (IL-1β) is a key pro-inflammatory cytokine that plays a central role in initiating and amplifying the immune response. 1,2 It is primarily produced by activated monocytes and macrophages in response to stimuli such as pathogens or stress signals. In addition, IL-1β acts on the hypothalamus to induce fever, which creates an environment …
"I Need Help!": Can Ashwagandha Reduce Inflammation-Driven Oxidative Stress Without Inducing Cytotoxicity In Macrophages?, Caitlyn Pinaga
"I Need Help!": Can Ashwagandha Reduce Inflammation-Driven Oxidative Stress Without Inducing Cytotoxicity In Macrophages?, Caitlyn Pinaga
Posters - 2026
Ashwagandha has been shown to reduce inflammation in humans by lowering pro-inflammatory cytokines and oxidative stress markers, helping regulate immune responses. It is commonly used to support conditions linked to chronic inflammation, such as stress-related disorders, arthritis, and metabolic imbalance. THP-1 macrophages are a part of the body's immune response to inflammation. While they produce a lot of different responses to inflammation, one of them is the production of Reactive Oxygen Species (ROS). N-acetylcysteine (NAC) is established to be a powerful antioxidant and is used as a positive control. My study aims to understand how ashwagandha, a popular supplement, affects …
Molecular Mechanisms And Metabolic Consequences Of Glucocorticoid Resistance, Genesee J. Martinez
Molecular Mechanisms And Metabolic Consequences Of Glucocorticoid Resistance, Genesee J. Martinez
Theses and Dissertations--Pharmacology and Nutritional Sciences
Glucocorticoids are vital steroid hormones that govern metabolism, stress responses, and immune functions through intricate, tissue-specific mechanisms, both genomic and non-genomic. These hormones bind to the glucocorticoid receptor (GR), which then acts as a transcription factor to modulate gene expression. Chronic elevation of glucocorticoid levels may lead to glucocorticoid resistance, resulting in adiposity, inflammation, and insulin resistance, thereby adversely affecting multiple metabolic tissues. Whether produced endogenously or administered exogenously, excessive, chronic glucocorticoid concentrations impair glucocorticoid signaling. Although there are two primary isoforms of the receptor, GR⍺ and GRβ, only GR⍺ interacts with glucocorticoids.Through the research conducted in this dissertation, we …
Investigating The Impact Of Chronic Inflammatory Pain On Ethanol Consumption In Mouse Models., Joshua L. Hunt
Investigating The Impact Of Chronic Inflammatory Pain On Ethanol Consumption In Mouse Models., Joshua L. Hunt
Theses and Dissertations
Chronic pain affects nearly 20% of Americans annually and for many alcohol provides a convenient and legally acquired palliative. Population-based studies have suggested a link between increased alcohol use and reduced pain, but chronic or excessive alcohol use potentiates the risk to develop alcohol dependence and neuropathy. However, sex differences in chronic pain and alcohol abuse are still not well understood. In the present study, we investigated whether chronic inflammatory pain using the inflammatory agent Complete Freund’s Adjuvant (CFA) model could alter ethanol consumption in male and female C57BL/6J mice. We observed that only CFA-treated male mice increased their ethanol …
Age-Associated Increase Of Gamma Delta T Cells In Visceral Adipose Tissue And Mechanisms Of Their Accumulation, Sujata Mukherjee
Age-Associated Increase Of Gamma Delta T Cells In Visceral Adipose Tissue And Mechanisms Of Their Accumulation, Sujata Mukherjee
Theses and Dissertations--Pharmacology and Nutritional Sciences
Chronic systemic inflammation, known as inflammaging is considered a hallmark of aging and associated diseases. While adipose tissue has long been considered only as a caloric reservoir regulating systemic energy homeostasis, research in the past couple of decades substantiate its endocrine function to secrete an array of inflammatory mediators and hormones, which have physiological effects on multiple organ systems, and contribute to inflammaging. Redistribution of adipose tissue from subcutaneous to visceral depots, changes in the immune profile and the chronic inflammatory state are among the major sources of adipose tissue dysfunction with aging.
This dissertation is focused on identifying and …
Alzheimer’S Disease Drug Development Pipeline: 2021, Jeffrey Cummings, Garam Lee, Kate Zhong, Jorge Fonseca, Kazem Taghva
Alzheimer’S Disease Drug Development Pipeline: 2021, Jeffrey Cummings, Garam Lee, Kate Zhong, Jorge Fonseca, Kazem Taghva
Brain Health Faculty Research
Introduction The number of individuals worldwide with Alzheimer's disease (AD) is growing at a rapid rate. New treatments are urgently needed. We review the current pipeline of drugs in clinical trials for the treatment of AD. Methods We interrogated ClinicalTrials.gov, the federal registry of clinical trials to identify drugs in trials. Results There are 126 agents in 152 trials assessing new therapies for AD: 28 treatments in Phase 3 trials, 74 in Phase 2, and 24 in Phase 1. The majority of drugs in trials (82.5%) target the underlying biology of AD with the intent of disease modification; 10.3% are …
Conditioned Medium Of Lipopolysaccharide-Treated Embryonic Stem Cell-Derived Mesenchymal Stem Cells Modulates In Vitro Secretion Of Inflammatory Cytokines, Faezeh Maghsood, Behrooz Johari, Nastaran Mohammadi Ghahhari, Mohammad Moradi, Mehdi Kadivar
Conditioned Medium Of Lipopolysaccharide-Treated Embryonic Stem Cell-Derived Mesenchymal Stem Cells Modulates In Vitro Secretion Of Inflammatory Cytokines, Faezeh Maghsood, Behrooz Johari, Nastaran Mohammadi Ghahhari, Mohammad Moradi, Mehdi Kadivar
The Thai Journal of Pharmaceutical Sciences
Background: The immunomodulatory properties of mesenchymal stem cells (MSCs) secretome have been considered by many investigators, and several preconditioning strategies such as pharmaceutical preconditioning have shown to strengthen the immunomodulatory.
Critical Physicochemical Properties For Nanoparticle Toxicity: Impact Of Surface Coating And Size On Particle-Induced Cell Transformation And Inflammatory Response, Tiffany Kornberg
Graduate Theses, Dissertations, and Problem Reports (ETD)
Nanoparticles, which measure 100 nm in at least one dimension, have surged in development, production, and use for a wide range of applications. However, the rapid pace of development for these emerging materials with unclear/unknown toxicity profiles makes it difficult to adequately assess health risk associated with exposure. One critical obstacle which limits scientific research to fill these critical knowledge gaps is the lack of accurate and predictive models for nanotoxicology studies, particularly those which involve occupationally relevant exposure scenarios (pulmonary exposure to low dose of particles in the circulating air). Typically, animal models are used to assess potential systemic …
Complexities Of Chronic Opioid Exposure, Maciej Gonek
Complexities Of Chronic Opioid Exposure, Maciej Gonek
Theses and Dissertations
Studies on repeated exposure to opioids have been carried out for decades yet the mechanisms for certain phenomena such as tolerance are still not fully understood. Furthermore, different medications, such as frequently prescribed benzodiazepines, or different disease states, such as HIV, have their own effects and interactions with chronic opioid exposure that are not fully understood. The overall objective of this dissertation was to investigate the complexities of chronic opioid exposure and how different disease states and medications may modulate the effects of chronic opioids. Our findings demonstrate that the administration of diazepam, at doses that are not antinociceptive or …
Sustained Sensitizing Effects Of Tumor Necrosis Factor Alpha On Sensory Nerves In Lung And Airways, Ruei-Lung Lin, Qihai Gu, Mehdi Khosravi, Lu-Yuan Lee
Sustained Sensitizing Effects Of Tumor Necrosis Factor Alpha On Sensory Nerves In Lung And Airways, Ruei-Lung Lin, Qihai Gu, Mehdi Khosravi, Lu-Yuan Lee
Physiology Faculty Publications
Tumor necrosis factor alpha (TNFα) plays a significant role in the pathogenesis of airway inflammatory diseases. Inhalation of aerosolized TNFα induced airway hyperresponsiveness accompanied by airway inflammation in healthy human subjects, but the underlying mechanism is not fully understood. We recently reported a series of studies aimed to investigate if TNFα elevates the sensitivity of vagal bronchopulmonary sensory nerves in a mouse model; these studies are summarized in this mini-review. Our results showed that intratracheal instillation of TNFα induced pronounced airway inflammation 24 hours later, as illustrated by infiltration of eosinophils and neutrophils and the release of inflammatory mediators and …
A Plant-Made Cholera Toxin B Subunit Enhances Mucosal Wound Healing And Protects Against Ulcerative Colitis And Colon Cancer., Keegan J Baldauf
A Plant-Made Cholera Toxin B Subunit Enhances Mucosal Wound Healing And Protects Against Ulcerative Colitis And Colon Cancer., Keegan J Baldauf
Electronic Theses and Dissertations
This dissertation describes the previously unidentified effects of a plant-produced recombinant cholera toxin B subunit (CTBp) on the gastrointestinal (GI) tract and its ability to protect against inflammation in a mouse model of colonic injury and ulcerative colitis (UC). To comprehensively analyze CTBp’s impacts on the GI tract, we employed global analysis methodologies based on multi-color flow cytometry to analyze immune cell populations in GI and systemic lymphatic compartments, gene expression microarray to decipher transcript-level changes in the colon and small intestine, and 16S rRNA sequencing to characterize fecal microbiota. Based on a drastic shift observed in the immune cell …
Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function, Enbo Zhan
Adenosine A2b Receptor Effects On Post-Mi Remodeling And Cardiac Fibroblast Function, Enbo Zhan
Wayne State University Dissertations
Adenosine A2B receptor (A2BR) appear to contribute to chronic inflammation. This receptor is highly expressed in macrophages and cardiac fibroblasts, cells which play key roles in inflammation and healing following myocardial infarction (MI). A2BR have been shown to induce collagen production and promote organ fibrosis, although the reports of A2BR role on MI are limited and conflicting. The results of cardiac fibroblast (CF) studies however suggest that non-selective A2BR stimulation inhibits collagen expression. The hypothesis of the present study was that deletion of A2BR reduces adverse remodeling in post-MI, …
Maternal Immune Dysregulation In The Pathogenesis Of Neurodevelopmental Disorders: Interleukin-6 As A Central Mechanism And Therapeutic Target Of Flavonoids, Ellisa Carla Parker-Athill
Maternal Immune Dysregulation In The Pathogenesis Of Neurodevelopmental Disorders: Interleukin-6 As A Central Mechanism And Therapeutic Target Of Flavonoids, Ellisa Carla Parker-Athill
USF Tampa Graduate Theses and Dissertations
Activation of the maternal immune system and resultant maternal cytokine expression due to prenatal infection has been implicated as a significant contributor to the pathology of neuropsychiatric and neurodevelopmental disorders such as schizophrenia and Autism Spectrum Disorder (ASD). Increased maternal interleukin-6 (IL-6) expression, observed clinically and in animal models of prenatal infection, and resultant activation of key signaling pathways, has been shown to be a biological indicator of pathology, and a central component of the pathological mechanism. In animal models of prenatal infection and clinically in pregnancy disorders hallmarked by immunological irregularities and increased IL-6 expression, inhibition of IL-6 has …
In Vitro And In Vivo Pharmacodynamic Characterization Of The Novel Plasma Kallikrein Inhibitor Pf-04886847, Dhaval Sanjeev Kolte
In Vitro And In Vivo Pharmacodynamic Characterization Of The Novel Plasma Kallikrein Inhibitor Pf-04886847, Dhaval Sanjeev Kolte
Electronic Theses and Dissertations
Plasma kallikrein plays an important role in the pathogenesis of inflammation and thrombosis. Kallikrein cleaves high molecular weight kininogen (HK) to liberate the potent pro-inflammatory peptide bradykinin (BK). BK upon activation of its constitutive B2 receptors on endothelial cells leads to an increase in intracellular Ca2+ level and subsequent production of nitric oxide (NO) and prostacyclin (PGI2), ultimately leading to vasodilation, hypotension, increased vascular permeability and vascular leakage. Further, kallikrein activates the complement system and stimulates neutrophil chemotaxis, aggregation and elastase release. Furthermore, kallikrein mediates the conversion of factor XII (FXII) to activated factor XII (FXIIa) thereby potentiating the intrinsic …
Altered Platelet Activating Factor Metabolism In Insulin Dependent Diabetes Mellitus, R A. Memon, S A. Saeed, A Jabbar, A Jafri, A H. Gilani, S Saleem, H Akbani
Altered Platelet Activating Factor Metabolism In Insulin Dependent Diabetes Mellitus, R A. Memon, S A. Saeed, A Jabbar, A Jafri, A H. Gilani, S Saleem, H Akbani
Department of Biological & Biomedical Sciences
Diabetes mellitus is associated with several abnormalities of platelet function. Recent studies have shown that the blood level of platelet activating factor (PAF), a potent inducer of platelet aggregation, is elevated in insulin dependent diabetes mellitus (IDDM) and remains unchanged in non-insulin dependent diabetes mellitus (NIDDM) patients. However, the mechanism of this increase in PAF levels has not been determined. In this study we have measured the activity of plasma PAF acetylhydrolase (an enzyme that regulates PAF levels) and lipoprotein levels in control subjects and diabetic patients. The data presented show that plasma PAF acetylhydrolase activity is significantly decreased in …