947 resultados para Stimulation [beta]3-adrénergique


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Dissertação de mestrado em Ciências – Formação Contínua de Professores (área de especialização em Física e Química)

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OBJETIVO: Avaliar a segurança e eficácia da braquiterapia intracoronariana usando o sistema Beta-CathTM na prevenção da recorrência de restenose intra-stent (RIS), por meio da análise dos resultados clínicos, angiográficos e pelo ultra-som intracoronariano (USIC). MÉTODO: Foram submetidos à angioplastia com cateter-balão, seguida de beta-radiação intracoronariana com o sistema Beta-CathTM (90Sr/Y) 30 pacientes com RIS em artérias coronárias nativas e, posteriormente, avaliados. RESULTADOS: Incluíram-se lesões reestenóticas complexas (77% do tipo difuso-proliferativo) com extensão elevada (18,66±4,15 mm). O sucesso da braquiterapia foi de 100%. A dose média utilizada foi de 20,7±2,3 Gy, liberada em um período médio de 3,8±2,1 min. No seguimento tardio, o diâmetro luminal mínimo (DLM) intra-stent diminuiu discretamente (1,98±0,30mm para 1,84±0,39 aos 6 meses, p=0,13), com uma perda tardia de 0,14±0,18 mm. O DLM intra-segmentar foi significativamente menor do que o intra-stent (1,55±0,40mm vs.1,84±0,39mm, p=0,008), associando-se à perda tardia (0,40±0,29mm vs. 0,14±0,18mm; p=0,0001). No USIC, observou-se discreto incremento do tecido neointimal em 6,8±14,3 mm³ aos 6 meses (p=0,19) e a percentagem de obstrução volumétrica aumentou em 4,7±7,5%. A reestenose binária e a revascularização do vaso-alvo recorreram em 17% dos casos; houve 1 caso (3%) de oclusão tardia, associada a infarto do miocárdio. A sobrevida livre de eventos foi de 80%. CONCLUSÃO: O manejo da reestenose intra-stent com a beta-radiação intracoronariana mostrou-se procedimento seguro e eficaz, com alta taxa de sucesso imediato, representando uma opção terapêutica para a inibição da hiperplasia neointimal.

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La enfermedad del Alzheimer (EA) específico, como la causa más común de demencia en la población adulta, uno de los problemas médicos más importantes de la actualidad. Aún no existen tratamientos eficaces para esta patología, debido en parte a que su origen desconocido. La hipótesis más aceptada por la mayoría de los estudiosos de la EA, propone que el bamiloide (bA) cumpliría un rol protagónico en la génesis de la patología. El bA específico un péptido de entre 40 y 43 aminoácidos que se origina normalmente durante el procesamiento metabólico de la proteína precursora de bAmiloide (APP) y por tanto puede encontrarse en los fluidos corporales. En la EA el bA se agrega y deposita dando lugar a las placas seniles, heterogéneos depósitos extracelulares que caracterizan la lesión de la EA. Numerosos estudios han demostrado que el bA es neurotóxico y que su toxicidad depende de la formación de agregados fibrilares similares a los que componen las placas seniles. Si bien la toxicidad de bA ha sido intensamente caracterizada in vitro, los estudios in vivo realizados hasta el presente han arrojado resultados contradictorios e incompletos, siendo aún necesario un mejor y más completo análisis del efecto del bA in vivo para poder inferir conclusiones más firmes respecto de su potencial rol en la patología. El objetivo del presente trabajo es analizar el efecto de la depositación del bA in vivo. Se utilizará la técnica de microinyecciones intracerebrales para determinar: 1. El efecto de las diferentes dosis de bA en relación al grado de deposición, permanencia en el tejido y toxicidad. 2. El efecto del tiempo de sobrevida del animal luego de la aplicación del bA, respecto de la evolución del depósito de ßA y la del tejido circundante. 3. El efecto de la agregación del bA respecto de su capacidad para formar agregados estables en el tejido. Con esta serie de experimentos se espera conseguir información relevante sobre la potencial participación del bA en la patogénesis de la EA.

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FUNDAMENTO: O papel do sistema adrenérgico na remodelação induzida pelo tabagismo é desconhecido. OBJETIVO: Investigar a influência do propranolol na remodelação induzida pela exposição à fumaça de cigarro. MÉTODOS: Ratos foram alocados em três grupos: 1) C, n=10 - animais controle; 2) F, n=10 - animais expostos à fumaça de cigarro; 3) BB, n=10 - animais expostos à fumaça de cigarro e que receberam propranolol (40 mg/kg/dia). Após dois meses, os animais foram submetidos a estudo ecocardiográfico e morfométrico. Utilizou-se análise de variância (ANOVA) de uma via (média ± desvio padrão) ou Kruskal-Wallis (mediana e intervalo interquartil). RESULTADOS: O Grupo BB apresentou menor frequência cardíaca que o Grupo F (C = 358 ± 74 btm, F = 374 ± 53 bpm, BB = 297 ± 30; P = 0,02). O Grupo F apresentou maiores diâmetros diastólicos (C = 18,6 ± 3,4 mm/kg, F = 22,8 ± 1,8 mm/kg, BB = 21,7 ± 1,8 mm/kg; P = 0,003) e sistólicos (C = 8,6 ± 2,1 mmkg, F = 11,3 ± 1,3 mm/kg, BB = 9,9 ± 1,2 mm/kg; P = 0,004) do ventrículo esquerdo (VE), ajustado ao peso corporal (PC) e tendência de menor fração de ejeção (C = 0,90 ± 0,03, F = 0,87 ± 0,03, BB =0,90 ± 0,02; P = 0,07) que o Grupo C. O Grupo BB apresentou tendência de menor relação VE/PC que o Grupo F (C = 1,94 (1,87 - 1,97), F = 2,03 (1,9-2,1) mg/g, BB = 1,89 (1,86-1,94); P = 0,09). CONCLUSÃO: A administração de propranolol atenuou algumas variáveis da remodelação ventricular induzida pela exposição à fumaça do cigarro em ratos.

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Alzheimer ist eine neurodegenerative Erkrankung deren molekulare Ursache, die Anhäufung von Amyloid-Plaques im Gehirn und die Bildung von Neurofibrillen in den Nervenzellen ist. Grund für diese molekularen Ursachen ist das Peptid Amylois beta, welches sich im Gehirn von Alzheimer Patienten anhäuft und zu Fibrillen aggregiert. In der Arbeit wurde untersucht, ob es Unterschiede bezüglich des proteolytischen Abbaus zwischen Abetafibrillen 1-40, 3-40 und pE3-40 gibt und ob die Fibrillen von unterschiedlichen Enzymen abgebaut werden können. Zudem wurden die Spaltprodukte, die bei diesem Abbau entstanden, miteinander verglichen und analysiert. Es wurde also untersucht, ob die Enzyme eine abbauende Wirkung auf aggregierte Aβ-Peptide haben und wie sich diese im Vergleich zu den gelösten Abeta-Peptiden verhalten. Die Untersuchungen fanden mit den Enzymen Neprilysin, Neprilysin 2, Insulysin, Matrix-Metalloproteinasen 2, 3, 9, 13, Plasmin, Plasma Kallikrein, Tissue Kallikrein und Meprin A statt und wurden Mittels MALDO-TOF analysiert.

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Estudi elaborat a partir d’una estada al Royal Brompton Hospital, Londres, Regne Unit, durant octubre i novembre del 2006.Els beneficis de la estimulació beta-adrenèrgica en pacients amb lesió pulmonar aguda (LPA) són coneguts, però no es disposa de dades sobre el possible efecte antiinflamatori. El condensat d'aire exhalat (CAE) és una tècnica no-invasiva de recollida de mostres del tracte respiratori inferior, podent ser útil en la monitorització de patologies respiratòries. S’ha usat marcadors biològics en el CAE de pacients ventilats mecànicament amb LPA per estudiar el possible efecte antiinflamatori que el salbutamol hi podria exercir. El CAE va ser recollit abans i després de l'administració de salbutamol inahalat. Inmediatament després es va mesurar la conductivitat i el pH abans i després de la desgasificació amb heli. Es va mesurar la concentració de nitrits i nitrats. Les mostres varen ser liofilitzades i guardades a -80ºC. La concentració de leucotriè B4 es va mesurar després de la reconstitució de la mostra. Els resultats s'expressen com a mitjana (error estàndard de la mostra). No s'han detectat diferències entre els valors de CAE basals dels pacients amb LPA i els de referència de la població sana de Barcelona. Es conclou doncs que el CAE és una tècnica no invasiva que pot ser usada en la monitorització de paceints ventilats mecànicament. El salbutamol inhalat incrementa de manera significativa el pH del CAE dels paceints amb LPA, tot i que un efecte directe de la inhalació de slabutamol no pot ser desestimat.

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Macrophage migration inhibitory factor (MIF), originally identified as a cytokine secreted by T lymphocytes, was found recently to be both a pituitary hormone and a mediator released by immune cells in response to glucocorticoid stimulation. We report here that the insulin-secreting beta cell of the islets of Langerhans expresses MIF and that its production is regulated by glucose in a time- and concentration-dependent manner. MIF and insulin colocalize by immunocytochemistry within the secretory granules of the pancreatic islet beta cells, and once released, MIF appears to regulate insulin release in an autocrine fashion. In perifusion studies performed with isolated rat islets, immunoneutralization of MIF reduced the first and second phase of the glucose-induced insulin secretion response by 39% and 31%, respectively. Conversely, exogenously added recombinant MIF was found to potentiate insulin release. Constitutive expression of MIF antisense RNA in the insulin-secreting INS-1 cell line inhibited MIF protein synthesis and decreased significantly glucose-induced insulin release. MIF is therefore a glucose-dependent, islet cell product that regulates insulin secretion in a positive manner and may play an important role in carbohydrate metabolism.

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Polyhydroxyalkanoate (PHA) is a family of polymers composed primarily of R-3-hydroxyalkanoic acids. These polymers have properties of biodegradable thermoplastics and elastomers. Medium-chain-length PHAs (MCL-PHAs) are synthesized in bacteria by using intermediates of the beta-oxidation of alkanoic acids. To assess the feasibility of producing MCL-PHAs in plants, Arabidopsis thaliana was transformed with the PhaC1 synthase from Pseudomonas aeruginosa modified for peroxisome targeting by addition of the carboxyl 34 amino acids from the Brassica napus isocitrate lyase. Immunocytochemistry demonstrated that the modified PHA synthase was appropriately targeted to leaf-type peroxisomes in light-grown plants and glyoxysomes in dark-grown plants. Plants expressing the PHA synthase accumulated electron-lucent inclusions in the glyoxysomes and leaf-type peroxisomes, as well as in the vacuole. These inclusions were similar to bacterial PHA inclusions. Analysis of plant extracts by GC and mass spectrometry demonstrated the presence of MCL-PHA in transgenic plants to approximately 4 mg per g of dry weight. The plant PHA contained saturated and unsaturated 3-hydroxyalkanoic acids ranging from six to 16 carbons with 41% of the monomers being 3-hydroxyoctanoic acid and 3-hydroxyoctenoic acid. These results indicate that the beta-oxidation of plant fatty acids can generate a broad range of R-3-hydroxyacyl-CoA intermediates that can be used to synthesize MCL-PHAs.

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Fatty acid degradation in most organisms occurs primarily via the beta-oxidation cycle. In mammals, beta-oxidation occurs in both mitochondria and peroxisomes, whereas plants and most fungi harbor the beta-oxidation cycle only in the peroxisomes. Although several of the enzymes participating in this pathway in both organelles are similar, some distinct physiological roles have been uncovered. Recent advances in the structural elucidation of numerous mammalian and yeast enzymes involved in beta-oxidation have shed light on the basis of the substrate specificity for several of them. Of particular interest is the structural organization and function of the type 1 and 2 multifunctional enzyme (MFE-1 and MFE-2), two enzymes evolutionarily distant yet catalyzing the same overall enzymatic reactions but via opposite stereochemistry. New data on the physiological roles of the various enzymes participating in beta-oxidation have been gathered through the analysis of knockout mutants in plants, yeast and animals, as well as by the use of polyhydroxyalkanoate synthesis from beta-oxidation intermediates as a tool to study carbon flux through the pathway. In plants, both forward and reverse genetics performed on the model plant Arabidopsis thaliana have revealed novel roles for beta-oxidation in the germination process that is independent of the generation of carbohydrates for growth, as well as in embryo and flower development, and the generation of the phytohormone indole-3-acetic acid and the signal molecule jasmonic acid.

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BACKGROUND: Invasive fungal infections (IFIs) are life-threatening complications in patients with hemato-oncological malignancies, and early diagnosis is crucial for outcome. The compound 1,3-β-D-glucan (BG), a cell wall component of most fungal species, can be detected in blood during IFI. Four commercial BG antigenemia assays are available (Fungitell, Fungitec-G, Wako, and Maruha). This meta-analysis from the Third European Conference on Infections in Leukemia (ECIL-3) assessed the performance of BG assays for the diagnosis of IFI in hemato-oncological patients. METHODS: Studies reporting the performance of BG antigenemia assays for the diagnosis of IFI (European Organization for Research and Treatment of Cancer and Mycoses Study Group criteria) in hemato-oncological patients were identified. The analysis was focused on high-quality cohort studies with exclusion of case-control studies. Meta-analysis was performed by conventional meta-analytical pooling and bivariate analysis. RESULTS: Six cohort studies were included (1771 adult patients with 414 IFIs of which 215 were proven or probable). Similar performance was observed among the different BG assays. For the cutoff recommended by the manufacturer, the diagnostic performance of the BG assay in proven or probable IFI was better with 2 consecutive positive test results (diagnostic odds ratio for 2 consecutive vs one single positive results, 111.8 [95% confidence interval {CI}, 38.6-324.1] vs 16.3 [95% CI, 6.5-40.8], respectively; heterogeneity index for 2 consecutive vs one single positive results, 0% vs 72.6%, respectively). For 2 consecutive tests, sensitivity and specificity were 49.6% (95% CI, 34.0%-65.3%) and 98.9% (95% CI, 97.4%-99.5%), respectively. Estimated positive and negative predictive values for an IFI prevalence of 10% were 83.5% and 94.6%, respectively. CONCLUSIONS: Different BG assays have similar accuracy for the diagnosis of IFI in hemato-oncological patients. Two consecutive positive antigenemia assays have very high specificity, positive predictive value, and negative predictive value. Because sensitivity is low, the test needs to be combined with clinical, radiological, and microbiological findings.

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B cells are the primary targets of infection for mouse mammary tumor virus (MMTV). However, for productive retroviral infection, T cell stimulation through the virally-encoded superantigen (SAG) is necessary. It activates B cells and leads to cell division and differentiation. To characterize the role of B cell differentiation for the MMTV life cycle, we studied the course of infection in transgenic mice deficient for CD28/CTLA4-B7 interactions (mCTLA4-H gamma 1 transgenic mice). B cell infection occurred in CTLA4-H gamma 1 transgenic mice as integrated proviral DNA could be detected in draining lymph node cells early after infection by polymerase chain reaction analysis. In mice expressing I-E, B cells were able to present the viral SAG efficiently to V beta 6+ T cells. These cells expanded specifically and were triggered to express the activation marker CD69. Further stages of progression of infection appeared to be defective. Kinetics experiments indicated that T and B cell stimulation stopped more rapidly than in control mice. B cells acquired an activated CD69+ phenotype, were induced to produce IgM but only partially switched to IgG secretion. Finally, the dissemination of infected cells to other lymph nodes and spleen was reduced and the peripheral deletion of V beta 6+ T cells was minimal. In contrast, in mice lacking I-E, T cell stimulation was also impaired and B cell activation undetectable. These data implicate B7-dependent cellular interactions for superantigenic T cell stimulation by low-affinity TCR ligands and suggest a role of B cell differentiation in viral dissemination and peripheral T cell deletion.

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PURPOSE: To present the light and electron microscopic findings of a unique corneal dystrophy never before described in a German family carrying the Gly623Asp Mutation of the TGFBI gene with late clinical onset. DESIGN: Experimental study. PARTICIPANTS: Four affected and 6 nonaffected family members. METHODS: Slit-lamp examination, photographic documentation, and isolation of genomic DNA from peripheral blood leucocytes obtained from each family member examined. Exons 3, 4, 5, and 11 to 14 of the TGFBI gene were amplified and sequenced in these family members. Five corneal buttons of 3 affected siblings were excised at the time of penetrating keratoplasty. Light and electron microscopic examination were performed including immunohistochemistry with antibodies against keratoepithelin (KE) 2 and 15. MAIN OUTCOME MEASURES: Clinical and histologic characteristics of corneal opacification in affected patients and presence of coding region changes in the TGFBI gene. RESULTS: The specimens showed destructive changes in Bowman's layer and the adjacent stroma. Patchy Congo red-positive amyloid deposits were found within the epithelium in 1 cornea, in Bowman's layer and in the anterior stroma of all specimens also showing KE2, but not KE15, immunostaining. Electron microscopy revealed deposits mainly located in the anterior stroma and Bowman's layer and in small amounts in the basal area of some epithelial cells. The destroyed areas were strongly Alcian blue-positive, the Masson Trichrome stain proved mainly negative for the deposits. All affected but none of the unaffected family members had a heterozygous missense mutation in exon 14 of the TGFBI gene (G-->A transition at nucleotide 1915) replacing glycin by aspartic acid amino acid (Gly623Asp) at position 623 of the KE protein. CONCLUSIONS: In contrast with the patient carrying the Gly623Asp mutation of the TGFBI gene described by Afshari et al, our cases presented with Salzmann's nodular degeneration-like clinical features and their specimens contained KE2-positive amyloid. The reason for this now "meeting the expectation histologic phenotype" is unclear. The histologic findings emphasize that this is a unique corneal dystrophy, which shares no clinical characteristics with Reis-Bücklers' dystrophy and should be treated as a distinct entity. FINANCIAL DISCLOSURE(S): The authors have no proprietary or commercial interest in any materials discussed in this article.

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The transmembrane water movements during cellular processes and their relationship to ionic channel activity remain largely unknown. As an example, in epithelial cells it was proposed that the movement of water could be directly linked to cystic fibrosis transmembrane conductance regulator (CFTR) protein activity through a cAMP-stimulated aqueous pore, or be dependent on aquaporin. Here, we used digital holographic microscopy (DHM) an interferometric technique to quantify in situ the transmembrane water fluxes during the activity of the epithelial chloride channel, CFTR, measured by patch-clamp and iodide efflux techniques. We showed that the water transport measured by DHM is fully inhibited by the selective CFTR blocker CFTRinh172 and is absent in cells lacking CFTR. Of note, in cells expressing the mutated version of CFTR (F508del-CFTR), which mimics the most common genetic alteration encountered in cystic fibrosis, we also show that the water movement is profoundly altered but restored by pharmacological manipulation of F508del-CFTR-defective trafficking. Importantly, whereas activation of this endogenous water channel required a cAMP-dependent stimulation of CFTR, activation of CFTR or F508del-CFTR by two cAMP-independent CFTR activators, genistein and MPB91, failed to trigger water movements. Finally, using a specific small-interfering RNA against the endogenous aquaporin AQP3, the water transport accompanying CFTR activity decreased. We conclude that water fluxes accompanying CFTR activity are linked to AQP3 but not to a cAMP-stimulated aqueous pore in the CFTR protein.

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Insulin-dependent diabetes mellitus is an autoimmune disease in which pancreatic islet beta cells are destroyed by a combination of immunological and inflammatory mechanisms. In particular, cytokine-induced production of nitric oxide has been shown to correlate with beta cell apoptosis and/or inhibition of insulin secretion. In the present study, we investigated whether the interleukin (IL)-1beta intracellular signal transduction pathway could be blocked by overexpression of dominant negative forms of the IL-1 receptor interacting protein MyD88. We show that overexpression of the Toll domain or the lpr mutant of MyD88 in betaTc-Tet cells decreased nuclear factor kappaB (NF-kappaB) activation upon IL-1beta and IL-1beta/interferon (IFN)-gamma stimulation. Inducible nitric oxide synthase mRNA accumulation and nitrite production, which required the simultaneous presence of IL-1beta and IFN-gamma, were also suppressed by approximately 70%, and these cells were more resistant to cytokine-induced apoptosis as compared with parental cells. The decrease in glucose-stimulated insulin secretion induced by IL-1beta and IFN-gamma was however not prevented. This was because these dysfunctions were induced by IFN-gamma alone, which decreased cellular insulin content and stimulated insulin exocytosis. These results demonstrate that IL-1beta is involved in inducible nitric oxide synthase gene expression and induction of apoptosis in mouse beta cells but does not contribute to impaired glucose-stimulated insulin secretion. Furthermore, our data show that IL-1beta cellular actions can be blocked by expression of MyD88 dominant negative proteins and, finally, that cytokine-induced beta cell secretory dysfunctions are due to the action of IFN-gamma.