• Refine Query
  • Source
  • Publication year
  • to
  • Language
  • 25
  • 11
  • 6
  • 5
  • 3
  • 2
  • 2
  • 1
  • 1
  • 1
  • Tagged with
  • 64
  • 42
  • 21
  • 12
  • 9
  • 8
  • 8
  • 8
  • 7
  • 6
  • 5
  • 5
  • 5
  • 4
  • 4
  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
61

Modulación de vías de señalización celular que controlan el metabolismo energético por compuestos bioactivos presentes en soja y té verde: Implicaciones para la prevención del síndrome metabólico

Gonzalo Benito, Hugo 15 June 2012 (has links)
L’estil de vida que durant les últimes dècades s’està imposant a la nostra societat afavoreix el desequilibri del balanç energètic i en conseqüència l’aparició de la síndrome metabòlica, amb les implicacions que suposa no només en salut pública sinó també a nivell socioeconòmic. Malgrat que existeixen treballs que evidencien afectes beneficiosos sobre paràmetres de la síndrome metabòlica atribuïts al consum de soja i te verd, les vies moleculars d’actuació dels seus principals biocompostos no han estat encara totalment caracteritzades. En aquesta tesi s’ha descrit que les vies d’actuació i els mecanismes en els que participen les isoflavones genisteïna, daidzeïna i el seu metabòlit equol, contribuirien a una millora de la hiperglucèmia, la hiperlipidèmia, la inflamació i l’esteatosi hepàtica, importants components de la fisiopatologia de la síndrome metabòlica en humans. Per altra banda, s’ha demostrat que la principal catequina del te verd, el gal•lat d’epigal•locatequina, actua mitjançant la seva autooxidació, com a senyalitzador cel•lular, induint un desacoblament mitocondrial compensat per un augment de l’activació d’AMPK. Aquestes troballes contribueixen a una descripció dels mecanismes d’acció que podrien explicar els efectes beneficiosos sobre les alteracions del metabolisme energètic associats al consum de soja i te verd. / El estilo de vida que durante las últimas décadas se está imponiendo en nuestra sociedad favorece el desequilibrio del balance energético y con ello el desarrollo del síndrome metabólico, cuyas patologías asociadas son la principal causa de muerte en los países desarrollados. Aunque existen trabajos que evidencian efectos beneficiosos sobre parámetros del síndrome metabólico atribuidos al consumo de soja y té verde, las vías moleculares de actuación de sus principales biocompuestos no han sido aún caracterizadas. En esta tesis se ha descrito no sólo las vías sino también los mecanismos mediados por las isoflavonas genisteína, daidzeína y su metabolito equol, en modelos in vitro insulinorresistentes de los principales tejidos diana de la acción insulínica. Por su parte, se ha demostrado que la principal catequina del té verde, el galato de epigalocatequina, actúa mediante su autooxidación, como señalizador celular, induciendo un desacoplamiento mitocondrial, que se compensa por un incremento de la activación de AMPK. Estos hallazgos contribuyen a la descripción más de los mecanismos de acción que podrían explicar los efectos beneficiosos sobre los desajustes del metabolismo energético asociados al consumo de soja y té verde / Changes in Life style during the last decades in our society has lead to a shift of the energy balance directly associated to the development of metabolic syndrome that nowadays are the main cause of death in developed countries. Although beneficial effects of soy and green tea ingestion have been described previously, the molecular mechanisms of their main biocompounds have not been completely characterized yet. The aim of this thesis is to provide knowledge to help dilucidate them. In this context, the mechanism of action of the isoflavones genistein, daidzein and its metabolite equol have been described with potential interest to improve hyperglycemia, hyperlipidemia, inflammation and hepatic steatosis. On the other hand, it has been demonstrated that the main catechin of green tea, epigallocatequin gallate, through its autooxidation products, modifies cell signalling, leading to a mitochondrial uncoupling compensated by activation of AMPK. In conclusion, these findings offer a more detailed description of the action mechanisms that justify part of the beneficial effects of soy and green tea ingestion on alterations of energy metabolism.
62

Renoprotektive Effekte von (-)-Epigallocatechin-3-Gallat bei extrakorporaler Zirkulation mittels Herz-Lungen-Maschine in einem Ferkelmodell

Twal, Miriam 10 June 2013 (has links)
In dieser Dissertation wurden am Ferkelmodell (8-15 kg, drei Gruppen: „Kontrolle“ n=7, „Herz-Lungen-Maschine (HLM)“ n=10, „(-)-Epigallocatechin-3-Gallat (EGCG)“ n=6, die Kontrollgruppe wurde thorakotomiert, die HLM- und die EGCG-Gruppe wurden thorakotomiert und für 90 Minuten an eine HLM angeschlossen, die EGCG-Gruppe erhielt vor und nach der HLM-Zeit EGCG) drei Fragestellungen behandelt: Erstens wurde untersucht, ob die Verwendung einer HLM während eines kardiochirurgischen Eingriffes unter hypothermen Bedingungen mit nicht-pulsatilem Blutfluss und Kardioplegie die Niere schädigte. Dafür wurden Paraffinschnitte der Niere aus der Kontroll- und der HLM-Gruppe mit Hämatoxylin-Eosin (HE) angefärbt und unterschiedliche Strukturen betrachtet, wobei histopathologische Veränderungen in der HLM-Gruppe auffielen. Paraklinisch fanden sich erhöhte nierenspezifische Blutwerte (Serumkreatinin und -harnstoff) in der HLM-Gruppe. Diese Ergebnisse waren hinweisend für eine funktionell relevante Schädigung der Niere durch die HLM. Unterstützend kam ein Absinken des Gesamteiweißes im Serum der HLM-Gruppe hinzu, was auf eine generelle Schädigung des Organismus durch die HLM hindeutete. Zweitens wurde betrachtet, ob die gesetzten Schäden die Merkmale eines Ischämie-Reperfusionsschadens aufwiesen. Hierzu wurden Paraffinschnitte der Niere aus der Kontroll- und der HLM-Gruppe immunhistochemisch (Hypoxie-induzierter-Faktor-1-alpha-Tyramide- Signal-Amplification (HIF-1-alpha-TSA)-, Nitrotyrosin-3-Amino-9-Ethylcarbazol (Nitrotyrosin-AEC)- und Apoptose-induzierender-Faktor-Tyramide-Signal-Amplification (AIF-TSA)-Färbung) angefärbt. Dabei zeigte sich, dass sich die HLM-Gruppe in einer hypoxischen Situation befand (HIF-1-alpha Akkumulation in den Zellkernen), nitrosativem Stress ausgesetzt war (Nitrotyrosin in den Tubuli) und dass sie teilweise so stark geschädigt wurde, dass Apoptose induziert wurde (AIF in Zellkernen) – alle drei Färbungsergebnisse waren hinweisend für einen ischämischen Zustand, in dem sich die HLM-Gruppe befunden hat. Auch die Ergebnisse der durchgeführten renalen Reversed Phase High Performance Liquid Chromatography (RP-HPLC) deuteten auf ebendies hin. Unterstützend wirkten die Ergebnisse des arteriellen Laktats – die HLM-Gruppe zeigte eine Hyperlaktämie – und die Tatsache, dass einige der histologischen Merkmale für eine frühe Schockniere (welche ischämischen Ursprungs sein kann) in der HLM-Gruppe gefunden wurden. Dies alles zeigte, dass der HLM-assoziierte Nierenschaden vorrangig die Natur eines Ischämie-Reperfusionsschadens aufwies. Drittens wurde untersucht, ob EGCG diese HLM-assoziierte Schädigung abmildern konnte. Dafür wurden bei der EGCG-Gruppe alle oben genannten Untersuchungen durchgeführt. Die Ergebnisse zeigten, dass EGCG in der Dosierung 10 mg/kg eine renoprotektive Wirkung gegen die HLM-assoziierten Schäden hatte, und diese abmildern bzw. ihnen entgegenwirken konnte. Diese Ergebnisse sind für die pädiatrische Kardiochirurgie interessant, welche zum Beispiel bei der Korrektur angeborener Herzdefekte auf die Verwendung der HLM angewiesen ist. Komplikationen wie eine Nierenschädigung post operationem sind nicht selten und verkomplizieren den Verlauf. Die vorliegende Dissertation zeigt das renoprotektive Potential des in grünem Tee vorkommenden Katechins EGCG im Umfeld eines kardiochirurgischen Eingriffes mit Verwendung einer HLM. Die Wirksamkeit dieser Substanz ist wahrscheinlich darin begründet, dass sie mehr als ein Antioxidans ist. Neben seiner Radikalfänger- und Stickstoffmonoxidscavenger-Fähigkeiten ist EGCG außerdem antiapoptotisch wirksam. Derzeit wird die Kardiochirurgie mit Verwendung einer HLM in der Veterinärmedizin nur in wenigen Zentren angewendet. Es besteht für die Zukunft jedoch die Hoffnung, dass gerade für Kleintierbesitzer, die ihre Tiere als Familienmitglied betrachten, und auch für zoologische Einrichtungen bei der Diagnose eines Herzfehlers die Kardiochirurgie mit Verwendung einer HLM als Therapiemöglichkeit eine interessante und realistische Alternative zur bislang angewandten palliativen medikamentösen Therapie darstellen kann. / In this dissertation a piglet model (8-15 kg, three groups: “control” n=7, “extracorporeal circulation (EC)” n=10, “EGCG” n=6, the control-group was thoracotomized, the EC- and the EGCG-group were thoracotomized and underwent cardiopulmonary bypass (CPB) for 90 minutes, and the EGCG-group received EGCG before and after the CPB) is presented. Three questions were raised and answered: Firstly, it was investigated if the use of a CPB during cardiac surgery with hypothermia, non-pulsatile blood flow and cardioplegia caused damage to the kidney. In order to answer this question, paraffin slices of the kidney of the control- and the EC-group were stained with hematoxylin-eosin (HE), and different structures were evaluated – this staining showed histopathological changes in the EC-group. Paraclinical, the EC-group showed elevated kidney-specific blood parameters (serumcreatinine and -urea). These findings indicated a functionally relevant impairment of the kidney caused by the CPB. Supporting this, the EC-group also showed a decline of the total amount of proteins in the serum, which was suggestive of a generalized injury of the body by the CPB. Secondly, it was investigated whether the injury of the kidney might have been caused by an ischemia/reperfusion injury. Therefore, paraffin slices of the kidney of the control- and the EC-group were immunhistochemically stained (hypoxia-induced-factor-1-alpha-tyramidesignal-amplification (HIF-1-alpha-TSA)-, nitrotyrosine-3-amino-9-ethylcarbazole (nitrotyrosine-AEC)- and apoptosis-inducing-factor-tyramide-signal-amplification (AIF-TSA)-staining). These stainings revealed, that the EC-group had suffered from a hypoxemic situation (accumulation of HIF-1-alpha in the nuclei), from nitrosative stress (presence of nitrotyrosine in the tubuli), and that the kidney was partly damaged to the point of an induction of apoptosis (presence of AIF in the nuclei) – all three of these findings indicated, that the kidneys of the EC-group were put into an ischemic situation. The findings of the renal reversed phase high performance liquid chromatography (RP-HPLC) indicated the same thing. This was also supported by the blood parameter of lactate – the EC-group showed a hyperlactemia – and by some histological findings in the EC-group, which were characteristical for an early shock-kidney (which may be caused by ischemia). Taken together, these findings showed that the CPB-associated kidney injury was primarily caused by an ischemia/reperfusion injury. Thirdly, it was investigated, whether EGCG might attenuate the CPB-associated kidney injury. For that purpose, all of the investigation methods mentioned above were carried out with the samples of the EGCG-group. The findings showed that EGCG (dose: 10 mg/kg) had a protective effect on the kidney, protecting it against the damage caused by the CPB, and was able to partly attenuate this damage and partly even fully counteract it. These findings are of interest for pediatric cardiac surgery, which for example for the correction of innate heart defects depends on the use of CPB. Complications – like acute renal injury post operationem – occur frequently and complicate the recovery. This dissertation demonstrates the renoprotective potential of the natural compound EGCG in the setting of cardiac surgery with the use of CPB. The reason for the effectiveness of EGCG in this situation probably is that EGCG is more than an antioxidant. EGCG not only works as a radical- and nitric-oxide-scavenger, but also is antiapoptotic. In veterinary medicine cardiac surgery with CPB is done by few centers only. However for the future there is hope that people – especially pet owners who view their companion animals as family members, and zoos – become more and more willing to and interested in having an animal diagnosed with a heart defect treated with cardiac surgery including the use of an CPB, instead of – like its usually done nowadays – only giving palliative medication to the animal.
63

Einfluss von (-)-Epigallocatechin-3-gallat auf den Lungenschaden im Rahmen des kardiopulmonalen Bypasses mittels Herz-Lungen-Maschine in einem Schweinemodell: Einfluss von (-)-Epigallocatechin-3-gallat auf den Lungenschaden im Rahmen des kardiopulmonalen Bypasses mittels Herz-Lungen-Maschinein einem Schweinemodell

Kasper, Bernhard 18 October 2016 (has links)
Background: Lung dysfunction constitutes a severe complication after major cardiac surgery with cardiopulmonary bypass (CPB), substantially contributing to postoperative morbidity and mortality. The current possibilities of preventive and therapeutic interventions, however, remain insufficient. We, therefore, investigated the effects of intraoperative application of the antioxidant and anti-inflammatory green tea polyphenol epigallocatechin-3-gallate (EGCG) on CPB-associated lung injury. Materials and methods: Thirty piglets (8 - 15 kg) were divided into four groups: sham-operated and saline-treated control group (n = 7); sham-operated and EGCG-treated control group (EGCG-control group; n = 7); CPB group (n = 10); and CPB + EGCG group (n = 6). The CPB groups underwent 120 min of CPB followed by 90 min of recovery time. In the CPB + EGCG group, EGCG (10 mg/kg body weight) was administered intravenously before and after CPB. Hemodynamic monitoring, blood gas analysis, hematoxylin-eosin staining, and immunohistochemistry of lung tissue were performed. Results: Histologic examination revealed thickening of the alveolar wall and enhanced alveolar neutrophil infiltration in the CPB group (P < 0.05) compared with those in the control group, which was prevented by EGCG (P < 0.05). In the CPB group, higher formation of poly(ADP-ribose) and nuclear translocation of apoptosis-inducing factor were detected in comparison with those in the control group (P < 0.001), which were both reduced in the CPB + EGCG group (P < 0.001). Compared with the control group, the EGCG-control group showed thickening of the alveolar wall and increased neutrophil infiltration (P < 0.05). Conclusions: CPB leads to lung edema, pulmonary neutrophil infiltration, and presumably initiation of poly(ADP-ribose) polymerase-dependent cell death signaling in the lung. EGCG appears to attenuate CPB-associated lung injury, suggesting that this may provide a novel pharmacologic approach.
64

Effect of Epigallocatechin-3-gallate on a pattern separation task and hippocampal neurogenesis in a mouse model of Down syndrome

Stringer, Megan Elizabeth January 2015 (has links)
Indiana University-Purdue University Indianapolis (IUPUI) / Down syndrome (DS) is caused by three copies of human chromosome 21 (Hsa21) and results in an array of phenotypes including intellectual disability. Ts65Dn mice, the most extensively studied DS model, have three copies of ~50% of the genes on Hsa21 and display many phenotypes associated with DS, including cognitive deficits. DYRK1A is found in three copies in humans with Trisomy 21 and in Ts65Dn mice, and is involved in a number of critical pathways including CNS development and osteoclastogenesis. Epigallocatechin-3-gallate (EGCG), the main polyphenol in green tea, inhibits Dyrk1a activity. We have shown that a three-week EGCG treatment (~10mg/kg/day) during adolescence normalizes skeletal abnormalities in Ts65Dn mice, yet the same dose did not rescue deficits in the Morris water maze spatial learning task (MWM) or novel object recognition (NOR). Others have reported that An EGCG dose of 2-3 mg per day (90mg/ml) improved hippocampal-dependent task deficits in Ts65Dn mice. The current study investigated deficits in a radial arm maze pattern separation task in Ts65Dn mice. Pattern separation requires differentiation between similar memories acquired during learning episodes; distinguishing between these similar memories is thought to depend on distinctive encoding in the hippocampus. Pattern separation has been linked to functional activity of newly generated granule cells in the dentate gyrus. Recent studies in Ts65Dn mice have reported significant reductions in adult hippocampal neurogenesis, and after EGCG treatment, enhanced hippocampal neurogenesis. Thus, it was hypothesized that Ts65Dn mice would be impaired in the pattern separation task, and that EGCG would alleviate the pattern separation deficits seen in trisomic mice, in association with increased adult hippocampal neurogenesis. At weaning, Ts65Dn mice and euploid littermates were randomly assigned to the water control, or EGCG [0.4 mg/mL], with both treatments yielding average daily intakes of ~50 mg/kg/day. Beginning on postnatal day 75, all mice were trained on a radial arm maze-delayed non-matching-to-place pattern separation task. Euploid mice performed significantly better over training than Ts65Dn mice, including better performance at each of the three separations. EGCG did not significantly alleviate the pattern separation deficits in Ts65Dn mice. After the behavioral testing commenced, animals were given ad libitum food access for five days, received a 100mg/kg injection of BrdU, and were perfused two hours later. Coronal sections through the dorsal hippocampus were processed for BrdU labeling, and cells were manually counted throughout the subgranular zone of the dentate gyrus. The euploid controls had significantly more BrdU labeled cells than Ts65Dn mice, however, EGCG does not appear to increase proliferation of the hippocampal neuroprogenitor cells. This is the first report of deficits in Ts65Dn mice on a pattern separation task. To the extent that pattern separation depends on the functional involvement of newly generated neurons in an adult dentate gyrus, this approach in Ts65Dn mice may help identify more targeted pharmacotherapies for cognitive deficits in individuals with DS.

Page generated in 0.0331 seconds