17 resultados para Milagros
em Universidad Politécnica de Madrid
Resumo:
Twelve commercially available edible marine algae from France, Japan and Spain and the certified reference material (CRM) NIES No. 9 Sargassum fulvellum were analyzed for total arsenic and arsenic species. Total arsenic concentrations were determined by inductively coupled plasma atomic emission spectrometry (ICP-AES) after microwave digestion and ranged from 23 to 126 μg g−1. Arsenic species in alga samples were extracted with deionized water by microwave-assisted extraction and showed extraction efficiencies from 49 to 98%, in terms of total arsenic. The presence of eleven arsenic species was studied by high performance liquid chromatography–ultraviolet photo-oxidation–hydride generation atomic–fluorescence spectrometry (HPLC–(UV)–HG–AFS) developed methods, using both anion and cation exchange chromatography. Glycerol and phosphate sugars were found in all alga samples analyzed, at concentrations between 0.11 and 22 μg g−1, whereas sulfonate and sulfate sugars were only detected in three of them (0.6-7.2 μg g−1). Regarding arsenic toxic species, low concentration levels of dimethylarsinic acid (DMA) (<0.9 μg g−1) and generally high arsenate (As(V)) concentrations (up to 77 μg g−1) were found in most of the algae studied. The results obtained are of interest to highlight the need to perform speciation analysis and to introduce appropriate legislation to limit toxic arsenic species content in these food products.
Resumo:
Agricultural wastes are a source of renewable raw materials (RRM), with structures that can be tailored for the use envisaged. Here, they have proved to be good replacement candidates for use as biomaterials for the growth of osteoblasts in bone replacement therapies. Their preparation is more cost effective than that of materials presently in use with the added bonus of converting a low-cost waste into a value-added product. Due to their origin these solids are ecomaterials. In this study, several techniques, including X-ray diffraction (XRD), chemical analysis, mercury intrusion porosimetry (MIP), scanning electron microscopy (SEM), and bioassays, were used to compare the biocompatibility and cell growth of scaffolds produced from beer bagasse, a waste material from beer production, with a control sample used in bone and dental regenerative processes.
Resumo:
The Bioinstrumentation Laboratory belongs to the Centre for Biomedical Technology (CTB) of the Technical University of Madrid and its main objective is to provide the scientific community with devices and techniques for the characterization of micro and nanostructures and consequently finding their best biomedical applications. Hyperthermia (greek word for “overheating”) is defined as the phenomenon that occurs when a body is exposed to an energy generating source that can produce a rise in temperature (42-45ºC) for a given time [1]. Specifically, the aim of the hyperthermia methods used in The Bioinstrumentation Laboratory is the development of thermal therapies, some of these using different kinds of nanoparticles, to kill cancer cells and reduce the damage on healthy tissues. The optical hyperthermia is based on noble metal nanoparticles and laser irradiation. This kind of nanoparticles has an immense potential associated to the development of therapies for cancer on account of their Surface Plasmon Resonance (SPR) enhanced light scattering and absorption. In a short period of time, the absorbed light is converted into localized heat, so we can take advantage of these characteristics to heat up tumor cells in order to obtain the cellular death [2]. In this case, the laboratory has an optical hyperthermia device based on a continuous wave laser used to kill glioblastoma cell lines (1321N1) in the presence of gold nanorods (Figure 1a). The wavelength of the laser light is 808 nm because the penetration of the light in the tissue is deeper in the Near Infrared Region. The first optical hyperthermia results show that the laser irradiation produces cellular death in the experimental samples of glioblastoma cell lines using gold nanorods but is not able to decrease the cellular viability of cancer cells in samples without the suitable nanorods (Figure 1b) [3]. The generation of magnetic hyperthermia is performed through changes of the magnetic induction in magnetic nanoparticles (MNPs) that are embedded in viscous medium. The Figure 2 shows a schematic design of the AC induction hyperthermia device in magnetic fluids. The equipment has been manufactured at The Bioinstrumentation Laboratory. The first block implies two steps: the signal selection with frequency manipulation option from 9 KHz to 2MHz, and a linear output up to 1500W. The second block is where magnetic field is generated ( 5mm, 10 turns). Finally, the third block is a software control where the user can establish initial parameters, and also shows the temperature response of MNPs due to the magnetic field applied [4-8]. The Bioinstrumentation Laboratory in collaboration with the Mexican company MRI-DT have recently implemented a new research line on Nuclear Magnetic Resonance Hyperthermia, which is sustained on the patent US 7,423,429B2 owned by this company. This investigation is based on the use of clinical MRI equipment not only for diagnosis but for therapy [9]. This idea consists of two main facts: Magnetic Resonance Imaging can cause focal heating [10], and the differentiation in resonant frequency between healthy and cancer cells [11]. To produce only heating in cancer cells when the whole body is irradiated, it is necessary to determine the specific resonant frequency of the target, using the information contained in the spectra of the area of interest. Then, special RF pulse sequence is applied to produce fast excitation and relaxation mechanism that generates temperature increase of the tumor, causing cellular death or metabolism malfunction that stops cellular division
Resumo:
Los nanomateriales han adquirido recientemente un gran interés debido a la gran con el diagnóstico como con la terapia de enfermedades muy variadas. Dentro de los nanomateriales utilizados en biomedicina, concretamente las nanopartículas magnéticas (NPMs) muestran un interés especial por las como agente de contraste en imagen de resonancia magnética (RM) y por tanto ser de gran utilidad en el diagnóstico de diferentes patologías. Otra de las aplicaciones potenciales de las NPMs en biomedicina se encuentra en el ámbito de la terapia, por ejemplo, la destrucción de tumores mediante hipertermia al aprovecharse la capacidad que poseen las partículas para producir calor en respuesta a la aplicación de campos magnéticos externos.
Resumo:
Understanding the molecular programs of the generation of human dopaminergic neurons (DAn) from their ventral mesencephalic (VM) precursors is of key importance for basic studies, progress in cell therapy, drug screening and pharmacology in the context of Parkinson's disease. The nature of human DAn precursors in vitro is poorly understood, their properties unstable, and their availability highly limited. Here we present positive evidence that human VM precursors retaining their genuine properties and long-term capacity to generate A9 type Substantia nigra human DAn (hVM1 model cell line) can be propagated in culture. During a one month differentiation, these cells activate all key genes needed to progress from pro-neural and prodopaminergic precursors to mature and functional DAn. For the first time, we demonstrate that gene cascades are correctly activated during differentiation, resulting in the generation of mature DAn. These DAn have morphological and functional properties undistinguishable from those generated by VM primary neuronal cultures. In addition, we have found that the forced expression of Bcl-XL induces an increase in the expression of key developmental genes (MSX1, NGN2), maintenance of PITX3 expression temporal profile, and also enhances genes involved in DAn long-term function, maintenance and survival (EN1, LMX1B, NURR1 and PITX3). As a result, Bcl-XL anticipates and enhances DAn generation.
Resumo:
En los últimos años se ha producido un significativo avance en el área de la gestión de las emergencias nucleares y radiológicas y la rehabilitación. Proyectos de alcance europeo como EURANOS han contribuido a mejorar los procesos de gobernanza participativa iniciados durante los anteriores Programas Marco Europeos y el desarrollo de técnicas y metodologías en todos los niveles operativos en materia nuclear y radiológica. El sistema de ayuda a la decisión (SAD) RODOS es uno de los productos desarrollados durante este periodo y que ha ido siendo mejorado hasta convertirse en un sistema de uso operacional ampliamente difundido y asumido en todo el ámbito europeo y que empieza a extenderse también a otras zonas del mundo. En España, ha sido implementado y adaptado a las características nacionales en el contexto del Proyecto ISIDRO, patrocinado por el CSN, con la participación del CIEMAT y la UPM. El objetivo de este trabajo es dar a conocer la última versión de este sistema, denominado JRODOS, centrándose en su adaptación al entorno nacional y su aplicación como herramienta operacional en la gestión y preparación de las emergencias y la rehabilitación de zonas contaminadas.
Resumo:
Este trabajo presenta los resultados preliminares asociados con la investigación y acompañamiento de las experiencias de participación directa por parte de trabajadores de la industria metalúrgica pesada venezolana. Forma parte de un estudio mayor sobre participación y aprendizaje tecnológico. Su objetivo es presentar los hallazgos y lecciones aprendidas en cuanto a la socialización de la tecnología en la empresa mediante el incremento de los espacios de participación. El enfoque metodológico se soporta en la investigación acción participativa bajo la modalidad de sistematización de experiencias con grupos focales que participaron en talleres de formación - investigación. La información y los datos provienen de experiencias en una siderúrgica y una reductora de aluminio con trabajadores que impulsan procesos de participación y se vinculan a proyectos para cambios de equipos, recuperación de instalaciones y adopción tecnológica. Los primeros resultados confirman a la participación como un camino para la difusión de la tecnología en la organización social y del trabajo de la empresa en los espacios naturales de desempeño de trabajadores y trabajadoras. Esta socialización les ha empoderado, capacitado y organizado en función de aumentar su incidencia en la toma de decisiones de la empresa, relativas a la tecnología.
Resumo:
The elaboration of a generic decision-making strategy to address the evolution of an emergency situation, from the stages of response to recovery, and including a planning stage, can facilitate timely, effective and consistent decision making by the response organisations at every level within the emergency management structure and between countries, helping to ensure optimal protection of health, environment, and society. The degree of involvement of stakeholders in this process is a key strategic element for strengthening the local preparedness and response and can help a successful countermeasures strategy. A significant progress was made with the multi-national European project EURANOS (2004-2009) which brought together best practice, knowledge and technology to enhance the preparedness for Europe's response to any radiation emergency and long term contamination. The subsequent establishment of a European Technology Platform and the recent launch of the research project NERIS-TP ("Towards a self sustaining European Technology Platform (NERIS-TP) on Preparedness for Nuclear and Radiological Emergency Response and Recovery") are aimed to continue with the remaining tasks for gaining appropriate levels of emergency preparedness at local level in most European countries. One of the objectives of the NERIS-TP project is: Strengthen the preparedness at the local/national level by setting up dedicated fora and developing new tools or adapting the tools developed within the EURANOS projects (such as the governance framework for preparedness, the handbooks on countermeasures, the RODOS system, and the MOIRA DSS for long term contamination in catchments) to meet the needs of local communities. CIEMAT and UPM in close interaction with the Nuclear Safety Council will explore, within this project, the use and application in Spain of such technical tools, including other national tools and information and communication strategies to foster cooperation between local, national and international stakeholders. The aim is identify and involve relevant stakeholders in emergency preparedness to improve the development and implementation of appropriate protection strategies as part of the consequence management and the transition to recovery. In this paper, an overview of the "state of the art" on this area in Spain and the methodology and work Plan proposed by the Spanish group within the project NERIS to grow the stakeholder involvement in the preparedness to emergency response and recovery is presented.
Resumo:
The low frequency modulation of the laser source (menor que30KHz) allows the generation of a pulsed signal that intermittently excites the gold nanorods. The temperature curves obtained for different frequencies and duty cycles of modulation but with equal average power and identical laser parameters, show that the thermal behavior in continuous wave and modulation modes is the same. However, the cell death experiments suggest that the percentage of death is higher in the cases of modulation. This observation allows us to conclude that there are other effects in addition to temperature that contribute to the cellular death. The mechanical effects like sound or pressure waves are expected to be generated from thermal expansion of gold nanorods. In order to study the behavior and magnitude of these processes we have developed a measure device based on ultrasound piezoelectric receivers (25KHz) and a lock-in amplifier that is able to detect the sound waves generated in samples of gold nanorods during laser irradiation providing us a voltage result proportional to the pressure signal. The first results show that the pressure measurements are directly proportional to the concentration of gold nanorods and the laser power, therefore, our present work is focused on determine the real influence of these effects in the cell death process.
Resumo:
This is an exploratory study about technology democracy and technology inclusion from workers perspectives. We are interested in answers questions like how is workers' participation and their inclusion in technology in companies under cooperative management or participatory management of the direct producers? The research was conducted under participatory action research combined with multiple case of study considering Venezuelan an Argentinean companies where there are workers' participation experiences. Results were grouped in participatory categories and modalities for the technological inclusion developed by another authors. It was found that technology democracy and inclusion emerges from those experiences in four modalities: use, appropriation, method of working adjustment and technological revitalizing. In both, Venezuela and Argentina cases, there is not a massive inclusion of workers and that is related to the way technology democracy has been encouraged in those companies.
Resumo:
Los nanomateriales han adquirido recientemente un gran interés debido a la gran variedad de aplicaciones que pueden llegar a tener en el ámbito de la biomedicina. Este trabajo recoge las posibilidades tanto diagnósticas como terapéuticas que presentan dos modalidades de nanomateriales: nanopartículas de óxido de hierro y nanopartículas de oro. Para ello, en una primera aproximación se ha llevado a cabo la caracterización de las nanopartículas desde el punto de vista de la biocompatibilidad asociada a su tamaño y al tiempo de contacto o circulación en células y tejidos, ensayada tanto in vitro como in vivo así como la cinética de acumulación de dichas nanopartículas en el organismo vivo. Posteriormente se ha realizado la biofuncionalización de los dos tipos de nanopartículas para reconocer dianas moleculares específicas y poder ser utilizadas en el futuro en dos aplicaciones biomédicas diferentes: diagnóstico de enfermedad de Alzheimer mediante imagen de resonancia magnética y destrucción selectiva de células tumorales mediante hipertermia óptica. ABSTRACT Nanomaterials have recently gained a great interest due to the variety of applications that can have in the field of biomedicine. This work covers both diagnostic and therapeutic possibilities that present two types of nanomaterials: iron oxide nanoparticles and gold nanoparticles. Therefore, in a first approximation it has performed the characterizing of nanoparticles from the standpoint of biocompatibility associated with their size and time of contact or movement in cells and tissues, tested both in vitro and in vivo as well as the kinetics of accumulation of the nanoparticles into the living organism. Subsequently the biofunctionalization of two types of nanoparticles was made to recognize specific molecular targets and can be used in the future in two different biomedical applications: diagnosis of Alzheimer's disease by magnetic resonance imaging and selective destruction of tumor cells by optical hyperthermia.
Resumo:
En el presente proyecto se redacta un estudio sobre la resistencia al corte de escolleras en cajón de 1x1m2.Con este estudio se intentará valores aproximados al ángulo de rozamiento. Estos parámetros se distinguirán en función si las escolleras son directamente vertidas o si han sufrido una previa compactación. Para ello se han realizado una serie de ensayos, con materias traído de varias zonas de España al Laboratorio de Geotecnia de CEDEX. Los datos obtenidos se han interpretado de varias formas. Primero se ha analizado las curvas resultantes de la tensión tangencial en función del desplazamiento. Después se ha aplicado un análisis de la relación entre el ángulo de rozamiento y la tensión normal. Por otra parte se han utilizado dos modelos, uno de hiperbólico y otro modelo rotura. Dentro del modelo de rotura se han tomado dos criterios. Un primer criterio según el criterio de rotura de Morh-Coulomb y un segundo criterio no lineal sino parabólico. Con los resultados obtenidos de las interpretaciones, se ha realizado una comparativa. Por una parte se han comparada con los datos que dieron otros autores y por otra parte con los resultados obtenidos en los ensayos de corte directo en caja de 30x30 cm2. Las conclusiones obtenidas, un valor del ángulo de rozamiento sería de 42° para escolleras que no han sido compactadas y de 47° para escolleras que hayan sido compactadas.
Resumo:
Desde el pasado mes de diciembre, un catedrático de la Escuela Superior de Ingenieros de Telecomunicación tiene la responsabilidad de confeccionar, desde la Caicyt, el Plan Nacional de Investigación Científica y Desarrollo Tecnológico que prevé la Ley de la Ciencia, recientemente aprobada por el Congreso de los Diputados. Se trata de José Antonio Martín Pereda, que también es, junto a Fernando López, Subdirector General de Industrias Informáticas, representante español en el Programa Esprit. En la siguiente entrevista, Actualidad Electrónica ha hablado con Martín Pereda sobre la viabilidad del Plan, el futuro tecnológico de nuestro país y las oportunidades que se le presentan a España en la segunda fase del Esprit.
Resumo:
This work presents the first application of total-reflection X-ray fluorescence (TXRF) spectrometry, a new and powerful alternative analytical method, to evaluation of the bioaccumulation kinetics of gold nanorods (GNRs) in various tissues upon intravenous administration in mice. The analytical parameters for developed methodology by TXRF were evaluated by means of the parallel analysis of bovine liver certified reference material samples (BCR-185R) doped with 10 μg/g gold. The average values (n = 5) achieved for gold measurements in lyophilized tissue weight were as follows: recovery 99.7%, expanded uncertainty (k = 2) 7%, repeatability 1.7%, detection limit 112 ng/g, and quantification limit 370 ng/g. The GNR bioaccumulation kinetics was analyzed in several vital mammalian organs such as liver, spleen, brain, and lung at different times. Additionally, urine samples were analyzed to study the kinetics of elimination of the GNRs by this excretion route. The main achievement was clearly differentiating two kinds of behaviors. GNRs were quickly bioaccumulated by highly vascular filtration organs such as liver and spleen, while GNRs do not show a bioaccumulation rates in brain and lung for the period of time investigated. In parallel, urine also shows a lack of GNR accumulation. TXRF has proven to be a powerful, versatile, and precise analytical technique for the evaluation of GNRs content in biological systems and, in a more general way, for any kind of metallic nanoparticles.
Participación directa de los trabajadores en la Siderúrgica del Orinoco 'Alfredo Maneiro', Venezuela
Resumo:
Esta investigación, en progreso, se propone caracterizar la participación de los trabajadores promovida en la industria siderúrgica de la región Guayana, Venezuela. Los referentes que sustentan esta investigación se orientan a las categorías de participación de los trabajadores en la toma de decisiones en empresas bajo dos vertientes principales en estudio: la democracia industrial y la gestión o dirección participativa. La investigación se desarrolla bajo una estrategia de acompañamiento a los trabajadores de las mesas de trabajo, en el marco de la Investigación Acción Participativa (IAP), en particular la Sistematización de Experiencias. La ejecución de talleres de formación – investigación con la estrategia de grupos focales facilitó el intercambio de información. El período considerado, para esta fase, se refiere a los encuentros e intercambios entre octubre 2011 y marzo 2012. Los resultados de la sistematización de experiencias de participación en la Siderúrgica del Orinoco (SIDOR) se enmarcan en dimensiones asociadas al origen de la participación, las formas de participación y niveles alcanzados, distinguiendo la participación directa de la indirecta. Los productos de la sistematización comprenden el diseño del taller sobre Participación Directa, un documento síntesis y una presentación para comunicar la experiencia.