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Role of Inducible Nitric Oxide Synthase and Melatonin in Regulation of β-cell Sensitivity to CytokinesAndersson, Annika K. January 2003 (has links)
The mechanisms of β-cell destruction leading to type 1 diabetes are complex and not yet fully understood, but infiltration of the islets of Langerhans by autoreactive immune cells is believed to be important. Activated macrophages and T-cells may then secrete cytokines and free radicals, which could selectively damage the β-cells. Among the cytokines, IL-1β, IFN-γ and TNF-α can induce expression of inducible nitric synthase (iNOS) and cyclooxygenase-2. Subsequent nitric oxide (NO) and prostaglandin E2 (PGE2) formation may impair islet function. In the present study, the ability of melatonin (an antioxidative and immunoregulatory hormone) to protect against β-cell damage induced by streptozotocin (STZ; a diabetogenic and free radical generating substance) or IL-1β exposure was examined. In vitro, melatonin counteracted STZ- but not IL-1β-induced islet suppression, indicating that the protective effect of melatonin is related to interference with free radical generation and DNA damage, rather than NO synthesis. In vivo, non-immune mediated diabetes induced by a single dose of STZ was prevented by melatonin. Furthermore, the effects of proinflammatory cytokines were examined in islets obtained from mice with a targeted deletion of the iNOS gene (iNOS -/- mice) and wild-type controls. The in vitro data obtained show that exposure to IL-1β or (IL-1β + IFN-γ) induce disturbances in the insulin secretory pathway, which were independent of NO or PGE2 production and cell death. Initially after addition, in particular IL-1β seems to be stimulatory for the insulin secretory machinery of iNOS –/- islets, whereas IL-1β acts inhibitory after a prolonged period. Separate experiments suggest that the stimulatory effect of IL-1β involves an increased gene expression of phospholipase D1a/b. In addition, the formation of new insulin molecules appears to be affected, since IL-1β and (IL-1β + IFN-γ) suppressed mRNA expression of both insulin convertase enzymes and insulin itself.
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Systemic sclerosis : vascular, pulmonary and immunological aspectsNeumann Andersen, Grethe January 2008 (has links)
In systemic sclerosis (SSc), interstitial lung disease (ILD) and engagement of the vascular system lead to increased morbidity and mortality. The aim of this thesis was to elucidate, in a consecutively included cohort of SSc (limited and diffuse) patients (n = 33), the T cell cytokine profile driving the disease in ILD and to explore the role of matrix metalloproteinase 9 (MMP-9) and its inhibitor: tissue inhibitor of metalloproteinase 1 (TIMP-1) in the extracellular matrix (ECM) degrading process leading to fibrous scarring and honey combing. Moreover, to characterize the role of nitric oxide (NO) in vascular engagement. Peripheral arterial changes cause Raynaud’s phenomenon and digital ulcers. Nitric oxide (NO) a main inducer of vasodilation is produced by endothelial nitric oxide synthase (eNOS) in response to changes in blood flow or by inflammatory cytokine inducible (i) NOS. In the vascular smooth muscle cell (VSMC) NO activates guanylate cyclase to produce cGMP, causing relaxation. We showed elevated plasma nitrate, a degradation product of NO, and increased urinary excretion of nitrate and cGMP. Plasma nitrate correlated with elevated levels of endothelial adhesion molecules: endothelial (E) selectin and vascular adhesion molecule 1, indicating that the activated endothelium is the site of NO synthesis by iNOS. Endothelial staining for E-selectin and the finding of iNOS and eNOS in SSc skin biopsies supported this notion. In SSc increased vascular stiffness may limit the NO vasodilatory effects. We found normal endothelium-dependent (i.e. flow mediated (FMD%)) and endothelium-independent (i.e. nitroglycerin-induced (NTG%)) vasodilation in the brachial artery. Radial arterial wall stiffness measured as maximum increase in pulse pressure (dP/dtmax) was increased. FMD% and especially NTG% correlated negatively and dP/dtmax positively to measures of endothelial inflammation: plasma- nitrate and adhesion molecule levels. Thus inflammatory vascular wall changes may interfere with dilation as may the presence of nitrate tolerance. We found elevated alveolar MMP-9 in both its pro- and active form in ILD. The levels correlated to decline in lung capacity, pointing at a causal relation. We suggest that neutrophils secrete MMP-9, which may degrade collagen IV, (the main constituent of basal membranes), collagen V, gelatins, proteoglycans and elastin. MMP-9 activity is partly regulated by the binding of pro- and active form to TIMP-1. Alveolar TIMP-1, which even stimulates fibroblast ECM synthesis, was increased independent of ILD. The inflammatory process in ILD is orchestrated by activated T helper (h) lymphocytes. We found a mixed Th1/Th2 reaction in SSc alveolar T cells expressing messenger for interferon gamma (Th1), IL-6 and IL-10 (both Th2). No particular cytokine mRNA profile distinguished alveolar T cells in ILD. Neutrophils invaded the bronchial epithelium, which seemed otherwise inert as levels of inflammatory cytokine sensitive transcription factors and their nuclear translocation tended to be low. The neutrophil recruitment pathway is uncertain as chemoattractants and endothelial adhesion molecules were normally expressed. In conclusion, MMP-9 probably causes degradation of lung tissue in ILD and may represent a future therapeutic target. Alveolar T cells show a mixed Th1/Th2 cytokine profile independent of ILD. Neutrophils invade the bronchial epithelium. Activated endothelium produces increased amounts of NO and adhesion molecules and the level of activation influences brachial arterial FMD% and NTG% and radial arterial compliance. Nitrate tolerance may be present.
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Caracterización funcional de mecanismos que regulan el factor de transcripción NFAT5Minguillón Pedreño, Jordi 04 January 2008 (has links)
El NFAT5 es un factor de transcripción de la familia Rel, la cual incluye a los NFATc y los NF-[kappa]B. Hasta ahora, el NFAT5 había sido caracterizado principalmente como un factor de respuesta a estrés osmótico ya que regula la expresión de genes osmoprotectores y citoquinas en respuesta a hipertonicidad. En este trabajo hemos identificado y caracterizado una nueva función del NFAT5, la regulación de genes (TNF[alfa], IL6, iNOS) activados por la vía de los receptores de tipo Toll (TLR), importantes para la respuesta inmunitaria innata y adaptativa a una amplia variedad de estímulos patogénicos. Nuestros resultados muestran que el NFAT5 es un regulador importante en la ruta de los TLR, jugando un papel en la actividad de varios miembros de esta familia de receptores, tal y como lo hacen los factores de transcripción NF[kappa]B e IRF5. / NFAT5 is a transcription factor of the Rel family, which includes NFATc and NF-[kappa]B. NFAT5 has been mainly characterized as a hypertonicity responsive factor, since it regulates the expression of osmoprotective genes and cytokines in response to osmotic stress. In this work we have identified and characterized a novel role for NFAT5, the regulation of genes (TNF[alfa], IL6, iNOS) activated by the Toll-like receptor pathway (TLR), important for innate and adaptive immunity responses to a wide variety of pathogenic molecules. Our results show that NFAT5 is an important transcription factor of the TLR pathway, playing a role in the activity of several members of this receptor family, like other transcription factors such as NF-[kappa]B and IRF5.
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Exploration of a mammary epithelial cell model for the study of inflammation and mechanisms of anti-inflammatory activity in medicinal plantsAl-Maalouf, Samar Wadih 05 January 2007 (has links)
No description available.
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Molecular Regulation of Inducible Nitric Oxide SynthaseWang, Tingting 18 December 2012 (has links)
No description available.
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Isolement et caractérisation de saponosides extraits de deux plantes médicinales : Cyclamen africanum, Zygophyllum cornutum et évalution de leur activité anti-inflammatoire / Isolation and characterization of two saponosides extracts herbs Cyclamen africanum, Zygophyllum cornutum and assessment of their anti-inflammatory activityBetina-Bencharif, Soumeya 13 October 2014 (has links)
L’apparition de plusieurs maladies, telles que le cancer, le diabète, l'hypertension artérielle et la propagation d'infections de type virus mutagènes peuvent être liées à la qualité et au mode de vie que nous menons aujourd’hui. En effet, plusieurs études sur les facteurs déclenchant ces maladies dites "morbides" à long ou à court terme, sont liées au stress et à la qualité des aliments consommés, qu'ils soient d'origine végétale ou animale. Ces maladies deviennent un phénomène courant, elles touchent différentes races et toutes les catégories de la société. D'après les recherches ethnobotaniques, les substances d’origine naturelle, ont permis à des civilisations de survivre à des maladies mortelles. A titre d'exemple, on retrouve ainsi des références à des périodes de fièvre paludique en Chine et à des symptômes de cette maladie dans le «Huangdi Neijiang» Le Canon de Médecine datant des environs du premier siècle avant notre ère, plus de 2000 ans, qui relate de l'emploi de plantes médicinales, pour soulager les fièvres (Desgrouas et al., 2014).Vers 186 avant J.-C. apparaît, dans certaines régions de Chine, l'utilisation en tisane, du Qing hao su, appelé plus tard artémisinine en Occident et extrait d'une plante médicinale utilisée comme antipyrétique appelée "Qing hao", Artemisia annua ou Armoise annuelle. L'artemisinine bloque une enzyme qui permet au parasite de pomper le calcium et l'empêche ainsi de se développer. Au jour d'aujourd'hui l’Artemisinin-based combination therapy, en français Thérapie combinée à base d'artémisinine et en sigle ACT, est une thérapie et une prévention tertiaire dans les cas de paludisme simple.Dans cette optique notre étude vient s'ajouter à une longue série d'études menées sur les plantes médicinales et les substances naturelles extraites. Elle a pour objectif de révéler de nouvelles biomolécules, de mettre en évidence leurs activités biologiques grâce à des techniques de biotechnologies d'une part. D'autre part ces investigations permettront de valoriser les ressources naturelles qui se distinguent par leur endémicité.Pour se faire, notre choix s'est porté sur deux plantes médicinales endémiques à l'Algérie Cyclamen africanum Boiss. & Reuter et Zygophyllum cornutum Coss. , après une recherche ethnobotanique sur la pharmacopée traditionnelle du Nord de l'Afrique, et qui a révélé l’efficacité de ces plantes dans les problèmes inflammatoires minimes chez les autochtones, nous avons entrepris des investigations pharmaco- biochimiques.Ces dernières nous ont permis d'isoler : cinq composés à partir de l'extrait méthanolique des racines de l'espèce Cyclamen africanum Boiss. & Reuter, deux nouvelles saponines triterpéniques de type Oleanane, Afrocyclamin A et B (1, 2), ainsi que trois saponines triterpénoïdes connus sous le nom de lysikokianoside (3), deglucocyclamin I (4) et de son dérivé d'acide dicrotalique (5); et Sept saponosides connus à partir de l'extrait méthanolique de la plante entière de Zygophyllum cornutum Coss., ces saponosides sont de type ursane, ce type de triterpène est rapporté dans cette espèce pour la première fois et peuvent être considérés comme un marqueur chimio-taxonomique (chemotype) du genre Zygophyllum. Les structures ont été élucidées, sur la base de l'analyse des spectres de l'expérience RMN-1D et RMN- 2D (COSY, TOCSY, NOESY, HMBC et HSQC) et spectrométrie de masse en source FAB mode ion négatif. Des activités biologiques, des fractions saponosidiques Fr.1 et Fr.2, ont été testées sur des lignées de Rats mâles et femelles, de la race Winstar pour évaluer l'activité anti inflammatoire.La fraction saponosidique Fr.1 de Cyclamen africanum à la dose 5 mg, a montré un effet significatif sur l'inflammation causé par la carragénine, en réduisant l'oedème et la réponse immunitaire, qui s'est traduite par la concentration des protéines de la réponse inflammatoire (PRI) à travers leurs action sur les pro-médiateurs de l'inflammation (COX-2, PGE2, TNF -α, iNOS). / The appearance of several diseases, such as cancer, diabetes, high blood pressure and spread of infections mutagenic virus type can be linked to the quality and lifestyle that we lead today. Indeed, several studies on the factors triggering these so-called "morbid" long-or short-term illnesses are related to stress and quality of food consumed, whether of plant and animal origin. These diseases are becoming a common occurrence, they affect different races and all classes of society. According ethnobotanical research, naturally occurring substances, allowed civilizations to survive deadly diseases. For example, we thus find references to periods of malarial fever in China and one of the symptoms of this disease in the "Huangdi Neijiang" The Canon of Medicine dating from around the first century BC, more than 2000 years, which relates to the use of herbal medicines to relieve fevers (Desgrouas et al., 2014).Around 186 BC appears, in some parts of China, the use in herbal tea, Qing hao su, later known as artemisinin in the West and extracted from a medicinal plant used as antipyretic called "Qing hao" Artemisia annua or annual wormwood. Artemisinin blocks an enzyme which enables the parasite to pump calcium and prevents it from developing. As of today the Artemisinin-based combination therapy in French Combination therapy of artemisinin and ACT acronym, is a therapy and tertiary prevention in cases of uncomplicated malaria.From this perspective our study adds to a long series of studies on medicinal plants and natural substances extracted. It aims to reveal new biomolecules, highlighting their biological activities through techniques of biotechnology on the one hand. Moreover, these investigations will develop natural resources that are characterized by endemic.To do this, our choice is focused on two endemic medicinal plants in Algeria Cyclamen africanum Boiss. & Reuter and Zygophyllum cornutum Coss. After an ethnobotanical research on traditional medicine in Northern Africa, which showed the effectiveness of these plants in minimal inflammatory problems among Aboriginal, we undertook biochemical pharmacological investigations.The latter allowed us to isolate, five compounds from the methanol extract of the roots of the species Cyclamen africanum Boiss. Reuter & two new oleanane triterpene saponins type, Afrocyclamin A and B (1, 2) and three triterpenoid saponins known lysikokianoside of (3), deglucocyclamin I (4) and its derivative dicrotalique acid (5) September and known from the methanol extract saponins from the whole plant of Zygophyllum cornutum Coss. these saponins are ursane type, type triterpenes are reported in this species for the first time and can be considered a chemotherapy marker Taxonomic (chemotype) of Zygophyllum kind. The structures were elucidated on the basis of the analysis of NMR spectra of the experience-1D and 2D-NMR (COSY, TOCSY, NOESY, HSQC and HMBC) and mass spectrometry method negative ion FAB source. The biological activities of saponosidiques FR.1 and Fr.2 fractions were tested on lines of male and female rats of the Winstar rats to evaluate the anti-inflammatory activity. The saponosidique fraction FR.1 Cyclamen africanum the 5 mg dose, showed a significant effect on inflammation caused by carrageenan, reducing edema and immune response, which resulted in the concentration of protein the inflammatory response (PRI) through their action on the pro-inflammatory mediators (COX-2, PGE2, TNF -α, iNOS). The fraction of Fr.2 saponosidique Zygophyllum dose 20 mg did not show a significant effect on inflammation in general.
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Einfluß von Genen der MHC-Klasse II und anderer polymorpher Gene auf Epidemiologie und klinische Manifestationen der PlasmodieninfektionMay, Jürgen 04 December 2001 (has links)
Die Infektion mit dem Erreger der Malaria tropica, Plasmodium falciparum, verläuft individuell unterschiedlich. Während manche der Infizierten rasch an einer komplizierten Malaria versterben, zeigen andere keinerlei Symptomatik, obwohl jahrelang eine Parasitämie besteht. Was diese Individuen voneinanderen unterscheidet, ist weitgehend unbekannt. Morbidität und Mortalität der Erkrankung sind von der Auseinandersetzung zwischen Wirt und Parasit abhängig, die von exogenen und endogenen Faktoren beeinflußt wird. Unter den endogenen Faktoren spielen die genetischen Determinanten, die sowohl an angeborenen als auch an erworbenen Resistenz- und Immunmechanismen beteiligt sind, eine besondere Rolle. In den hier zusammengefaßten Arbeiten wurden als Determinanten der angeborenen Resistenz gegenüber Malaria die Sichelzellanämie, Alpha-Thalassämie, G6PD-Mangel und der HLA-Klasse-II-Polymorphismus und als genetische Einflußfaktoren von erworbenen Immunmechanismen Varianten des TNF-Promotors, von ICAM-1 und iNOS untersucht. Die Arbeiten unterstützen die Hypothese, daß die Interaktion von Mensch und Plasmodien zu einer ständigen gegenseitigen Beeinflussung und Anpassung geführt hat. Die koevolutonäre Veränderung der Genome der beiden Organismen ist wahrscheinlich mitverantwortlich für die unterschiedliche geographische Verteilung von Genvarianten sowohl des Menschen als auch der Plasmodien und scheint auch heute noch Teil einer komplexen und dynamischen Anpassung von Wirt und Parasit zu sein. / The manifestation of an infection with Plasmodium falciparum, the pathogen of malaria, is individually different. Some indiviuals have a high risk of developing severe malaria, whereas others remain asymptomatic despite a long-lasting parasitemia. The basis of these differences is unknown. Morbidity and mortality of malaria are dependent on the interaction between the host and the parasite which is influenced by exogenic and endogenic factors. The latter are determined by genetic elements involved in innate and acquired mechanisms of resistance and immunity. The studies summerized here address genetic determinants of innate resistance against malaria (sickle cell trait, alpha-thalassemia, G6PD deficiency, blood groups and HLA class II alleles) and those of acquired immunity (variants of the TNF promoter, ICAM-1, and iNOS). The results support the view that the interaction between humans and plasmodia has led to continuous mutual influences and adaptations. Probably, the co-evolution of the genomes of both organisms is jointly responsible for the different geographical distribution of parasitic and human gene variants. This process seems to be part of an ongoing complex and dynamic adaptation of the host and the parasite.
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Study of reactive oxygen species (ROS) and nitric oxide (NO) as molecular mediators of the sepsis-induced diaphragmatic contractile dysfunction : protective effect of heme oxygenasesBarreiro Portela, Esther 18 June 2002 (has links)
Protein nitration is considered as a marker of reactive nitrogen species formation. Heme oxygenases (HOs) are important for the defence against oxidative stress. We evaluated the involvement of the neuronal (nNOS), the endothelial (eNOS), and the inducible (iNOS) in nitrotyrosine formation and localitzation, and both the expression and funcional significance (HO inhibition and contractility studies) of HOs in sepsis-induced muscle contractile dysfunction. Sepsis was elicited by injecting rats and transgenic mice deficient in either nNOS, eNOS, or iNOS isoforms with E.Coli lipolysaccharide (LPS). Nitrotyrosine formation and HO expressions were assessed by immunoblotting. Oxidative stress was assessed measuring protein oxidation, lipid peroxidation, and muscle glutathione. We conclude that protein tyrosine nitration occurs in normal muscles, and sepsis-mediated increase in nitrotyrosine formation is limited to the mitochondria and membrane muscle fractions. The iNOS isoform is mostly involved in nitrotyrosine formation. HOs protect normal and septic muscles from the deleterious effects of oxidants. / En un model de sepsi de disfunció diafragmàtica, s´ha avaluat el paper de les sintetases de l'òxid nítric (NOS) en la formació i localitzacio de 3-nitrotirosina, i l´expressió i significat biològic de les hemo oxigenases (HOs) (inhibidor de les HOs i estudis de contractilitat) davant l' estrès oxidatiu. La sepsi s'induí mitjançant injecció de 20 mg/kg del lipolisacàrid (LPS) d´Escherichia Coli a rates, i a ratolins deficients en les NOS induïble (iNOS), neuronal (nNOS) i endotelial (eNOS). Les proteïnes nitrificades i les HOs es van detectar amb anticossos específics. L' estrès oxidatiu s' avaluà mitjançant l' oxidació proteica, la peroxidació lipídica i el glutation muscular. Concloem que hi han proteïnes nitrificades en el múscul normal i aquestes s'incrementen durant la sepsi en les fraccions mitocondrial i membranar. L'isoforma iNOS és majorment responsable de la formació de nitrotirosina. Les HOs protegirien el múscul normal i sèptic dels efectes deleteris dels oxidants.
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Makrophageninfiltration, Hypoxie und Stickstoffmonoxidsynthasen im humanen Nierenzellkarzinom / Makrophageninfiltration, Hypoxie und Stickstoffmonoxidsynthasen im humanen NierenzellkarzinomHümmer, Tanja Melanie 05 December 2011 (has links)
No description available.
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Molekulare Zellstressmechanismen bei der hereditären Einschlusskörpermyopathie / Molecular cell stress mechanisms in hereditary inclusion body myopathyFischer, Charlotte Viola 05 June 2012 (has links)
No description available.
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