30 research outputs found

    Las comunidades terapéuticas como tratamiento para las drogodependencias: una revisión sistemática del seguimiento a corto plazo

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    Objetivo. Las comunidades terapéuticas (CT) constituyen uno de los tratamientos más extensos para las drogodependencias; sin embargo, su investigación es escasa. El objetivo fue realizar una revisión sistemática para conocer los elementos metodológicos de los estudios de seguimiento a corto plazo y, a su vez, describir las consecuencias de las CT. Material y método. Se aplicó el "Preferred Reporting Items for Systematic reviews and meta- Analyses" (PRISMA) para la búsqueda en Medline, PsycINFO, PsycARTICLES y PsycCRITIQUES de estudios de seguimiento a corto plazo de CT entre 1980 y 2010. Resultados. El seguimiento consiste en un registro inicial y, al menos, otro al medio año de tratamiento; la muestra mínima contiene 60 usuarios con una mayor prevalencia de hombres solteros;el 50% continúa en seguimiento y/o alcanza la abstinencia. Conclusión. Las CT parecen ser beneficiosas para el ajuste del consumo y otros aspectos psicosociales, aunque la falta de información dificulta garantizar la comparación de estos hallazgos. © 2013 Elsevier España, S.L. y SET. Todos los derechos reservados

    Nitrate modulates stem cell dynamics in Arabidopsis shoot meristems through cytokinins

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    The shoot apical meristem (SAM) is responsible for the generation of all the aerial parts of plants. Given its critical role, dynamical changes in SAM activity should play a central role in the adaptation of plant architecture to the environment. Using quantitative microscopy, grafting experiments, and genetic perturbations, we connect the plant environment to the SAM by describing the molecular mechanism by which cytokinins signal the level of nutrient availability to the SAM. We show that a systemic signal of cytokinin precursors mediates the adaptation of SAM size and organogenesis rate to the availability of mineral nutrients by modulating the expression of WUSCHEL, a key regulator of stem cell homeostasis. In time-lapse experiments, we further show that this mechanism allows meristems to adapt to rapid changes in nitrate concentration, and thereby modulate their rate of organ production to the availability of mineral nutrients within a few days. Our work sheds light on the role of the stem cell regulatory network by showing that it not only maintains meristem homeostasis but also allows plants to adapt to rapid changes in the environment

    Set optimization - a rather short introduction

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    Recent developments in set optimization are surveyed and extended including various set relations as well as fundamental constructions of a convex analysis for set- and vector-valued functions, and duality for set optimization problems. Extensive sections with bibliographical comments summarize the state of the art. Applications to vector optimization and financial risk measures are discussed along with algorithmic approaches to set optimization problems

    XLF and APLF bind Ku80 at two remote sites to ensure DNA repair by non-homologous end joining

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    International audienceThe Ku70-Ku80 (Ku) heterodimer binds rapidly and tightly to the ends of DNA double-strand breaks and recruits factors of the non-homologous end-joining (NHEJ) repair pathway through molecular interactions that remain unclear. We have determined crystal structures of the Ku-binding motifs (KBM) of the NHEJ proteins APLF (A-KBM) and XLF (X-KBM) bound to a Ku-DNA complex. The two KBM motifs bind remote sites of the Ku80 alpha/beta domain. The X-KBM occupies an internal pocket formed by an unprecedented large outward rotation of the Ku80 alpha/beta domain. We observe independent recruitment of the APLF-interacting protein XRCC4 and of XLF to laser-irradiated sites via binding of A- and X-KBMs, respectively, to Ku80. Finally, we show that mutation of the X-KBM and A-KBM binding sites in Ku80 compromises both the efficiency and accuracy of end joining and cellular radiosensitivity. A- and X-KBMs may represent two initial anchor points to build the intricate interaction network required for NHEJ

    Cernunnos, a novel V(D)J recombination /non homologus end-joining factor, is mutated in human T and B cell immunodeficiency associated with microcephaly.

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    DNA double-strand breaks (DSBs) occur at random upon genotoxic stresses and represent obbligatory intermediates during physiological DNA rearrangement events such as the V(D)J recombination in the immune system. DSBs, which are among the most toxic DNA lesions, are preferentially repaired by the nonhomologous end-joining (NHEJ) pathway in higher eukaryotes. Failure to properly repair DSBs results in genetic instability, developmental delay, and various forms of immunodeficiency. Here we describe five patients with growth retardation, microcephaly, and immunodeficiency characterized by a profound T + B lymphocytopenia. An increased cellular sensitivity to ionizing radiation, a defective V(D)J recombination, and an impaired DNA-end ligation process both in vivo and in vitro are indicative of a general DNA repair defect in these patients. All five patients carry mutations in the Cernunnos gene, which was identified through cDNA functional complementation cloning. Cernunnos/XLF represents a novel DNA repair factor essential for the NHEJ pathway
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