1000 resultados para DENV-4


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Knowledge of T(1) relaxation times can be important for accurate relative and absolute quantification of brain metabolites, for sensitivity optimizations, for characterizing molecular dynamics, and for studying changes induced by various pathological conditions. (1)H T(1) relaxation times of a series of brain metabolites, including J-coupled ones, were determined using a progressive saturation (PS) technique that was validated with an adiabatic inversion-recovery (IR) method. The (1)H T(1) relaxation times of 16 functional groups of the neurochemical profile were measured at 14.1T and 9.4T. Overall, the T(1) relaxation times found at 14.1T were, within the experimental error, identical to those at 9.4T. The T(1)s of some coupled spin resonances of the neurochemical profile were measured for the first time (e.g., those of gamma-aminobutyrate [GABA], aspartate [Asp], alanine [Ala], phosphoethanolamine [PE], glutathione [GSH], N-acetylaspartylglutamate [NAAG], and glutamine [Gln]). Our results suggest that T(1) does not increase substantially beyond 9.4T. Furthermore, the similarity of T(1) among the metabolites (approximately 1.5 s) suggests that T(1) relaxation time corrections for metabolite quantification are likely to be similar when using rapid pulsing conditions. We therefore conclude that the putative T(1) increase of metabolites has a minimal impact on sensitivity when increasing B(0) beyond 9.4T.

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Cell adhesion to the extracellular matrix proteins occurs through interactions with integrins that bind to Arg-Gly-Asp (RGD) tripeptides, and syndecan-4, which recognizes the heparin-binding domain of other proteins. Both receptors trigger signaling pathways, including those that activate RhoGTPases such as RhoA and Rac1. This sequence of events modulates cell adhesion to the ECM and cell migration. Using a neuron-astrocyte model, we have reported that the neuronal protein Thy-1 engages αVβ3 integrin and syndecan-4 to induce RhoA activation and strong astrocyte adhesion to their underlying substrate. Thus, because cell-cell interactions and strong cell attachment to the matrix are considered antagonistic to cell migration, we hypothesized that Thy-1 stimulation of astrocytes should preclude cell migration. Here, we studied the effect of Thy-1 expressing neurons on astrocyte polarization and migration using a wound-healing assay and immunofluorescence analysis. Signaling molecules involved were studied by affinity precipitation, western blotting and the usage of specific antibodies. Intriguingly, Thy-1 interaction with its two receptors was found to increase astrocyte polarization and migration. The latter events required interactions of these receptors with both the RGD-like sequence and the heparin-binding domain of Thy-1. Additionally, prolonged Thy-1-receptor interactions inhibited RhoA activation while activating FAK, PI3K and Rac1. Therefore, sustained engagement of integrin and syndecan-4 with the neuronal surface protein Thy-1 induces astrocyte migration. Interestingly we identify here, a cell-cell interaction that despite initially inducing strong cell attachment, favors cell migration upon persistent stimulation by engaging the same signaling receptors and molecules as those utilized by the extracellular matrix proteins to stimulate cell movement.

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Murine macrophages activated by interferon-gamma and lipopolysaccharide become leishmanicidal through a process involving L-arginine-derived nitrogen oxidation products. Both nitrite secretion and parasite killing by activated macrophages were inhibited by 3-amino-1,2,4-triazole as well as the related compound, 3-amino-1,2,4-triazine. Moreover, NO synthase activity in cytosolic extracts of activated cells was inhibited by both compounds. 4-amino-1,2,4-triazole, an isomer of 3-amino-1,2,4-triazole, was without effect. Our results suggest that besides its known inhibitory effect on catalases and peroxidases, 3-amino-1,2,4-triazole is an inhibitor of NO synthase. The resemblance between the tautomeric form of 3-amino-1,2,4-triazole and the guanidino group of L-arginine, the natural substrate for NO synthase, might be responsible for the observed inhibition.

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Objectius generals: Diagnosi de l’estat actual del riu Esteli. Avaluar la metodologia i proposar en el protocol del monitoreig.Estudiar si les comunitats de macroinvertebrats aquatics es veu afectades pel grau de pressió humana.Objectius específics: Comparar les mostres preses en dos mesos consecutius, per conèixer si les comunitats varien prou com per, agafar mostres cada mes en comptes de cada dos mesos. Determinar la qualitat de l’estació en diversos punts del riu Esteli considerant tant els resultats obtinguts a partir de les variables físicoquimiques de l’aigua, com les variables biològiques. Avaluar si la pressió humana afecta de manera diferent els diversos grups taxonòmics de macroinvertebrats de l’aigua.Avaluar amb quin índex biòtic es posa mes de manifest la pressió antròpica. Estudiar quines son les relacions de les diverses famílies de macroinvertebrats amb els paràmetres físicoquimics de l’aigua, i determinar si aquestes relacions varien en funcio del mes de mostreig o de l’ús del sòl.

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Référence bibliographique : Rol, 56973

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Référence bibliographique : Rol, 57493

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El siguiente proyecto está pensado para trabajar en las tutorías de 3º y 4º de la E.S.O. Se trata de un proyecto para incluir dentro del plan tutorial del centro. El planteamiento inicial es proponer una herramienta para trabajar temas relacionados con la salud, más explícitamente con la salud psicológica. Nos centraremos en trabajar temas relacionados con las habilidades sociales y temas relacionados con la afectividad y la salud de los alumnos/as del centro.

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Entregable del convenio C-08197 con la empresa B&J adaptaciones