964 resultados para Strategies for


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A systematic study for the production of porous poly(vinylidene fluoride-trifluoroethylene), P(VDF-TrFE), films using solvent evaporation and non-solvent induced phase separation techniques is presented. Processing parameters such as copolymer volume fraction, solvent, preset exposure time to air before immersion, and non-solvent and temperature of the coagulation bath were varied and the corresponding sample morphology, hydrophobicity, thermal and mechanical properties were determined. Film morphologies including homogeneous pore distributions, micropores, microvoids, spherulites and non-porous films were obtained. The morphology variations strongly influence sample hydrophobicity and mechanical properties. All samples crystallize in the electroactive β-phase with a degree of crystallinity around 30 %.

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Buildings are one of the major consumers of energy in Europe. This makes them an important target when aiming to reduce the energy consumptions and carbon emissions. The majority of the European building stock has already some decades and so it needs renovation in order to keep its functionality. Taking advantage of these interventions, the energy performance of the buildings may also be improved. In Portugal the renovation techniques, both regarding energy efficiency measures as well as measures for the use of renewable energy sources, are normally planned at the building scale. It is important to explore the possibility of having large scale interventions, has it has been done in other countries, namely at neighbourhood scale with district energy system in order to optimize the results in terms of costs and environmental impact.

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Purpose: Higher myopic refractive errors are associated with serious ocular complications that can put visual function at risk. There is respective interest in slowing and if possible stopping myopia progression before it reaches a level associated with increased risk of secondary pathology. The purpose of this report was to review our understanding of the rationale(s) and success of contact lenses (CLs) used to reduce myopia progression. Methods: A review commenced by searching the PubMed database. The inclusion criteria stipulated publications of clinical trials evaluating the efficacy of CLs in regulating myopia progression based on the primary endpoint of changes in axial length measurements and published in peerreviewed journals. Other publications from conference proceedings or patents were exceptionally considered when no peer-review articles were available. Results: The mechanisms that presently support myopia regulation with CLs are based on the change of relative peripheral defocus and changing the foveal image quality signal to potentially interfere with the accommodative system. Ten clinical trials addressing myopia regulation with CLs were reviewed, including corneal refractive therapy (orthokeratology), peripheral gradient lenses, and bifocal (dual-focus) and multifocal lenses. Conclusions: CLs were reported to be well accepted, consistent, and safe methods to address myopia regulation in children. Corneal refractive therapy (orthokeratology) is so far the method with the largest demonstrated efficacy in myopia regulation across different ethnic groups. However, factors such as patient convenience, the degree of initial myopia, and non-CL treatments may also be considered. The combination of different strategies (i.e., central defocus, peripheral defocus, spectral filters, pharmaceutical delivery, and active lens-borne illumination) in a single device will present further testable hypotheses exploring how different mechanisms can reinforce or compete with each other to improve or reduce myopia regulation with CLs.

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Dissertação de mestrado integrado em Engenharia Biomédica (área de especialização em Eletrónica Médica)

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Dissertação de mestrado integrado em Engenharia Biomédica (área de especialização em Engenharia Clínica)

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Cartilage tissue is a complex nonlinear, viscoelastic, anisotropic, and multiphasic material with a very low coefficient of friction, which allows to withstand millions of cycles of joint loading over decades of wear. Upon damage, cartilage tissue has a low self-reparative capacity due to the lack of neural connections, vascularization, and a latent pool of stem/chondroprogenitor cells. Therefore, the healing of articular cartilage defects remains a significant clinical challenge, affecting millions of people worldwide. A plethora of biomaterials have been proposed to fabricate devices for cartilage regeneration, assuming a wide range of forms and structures, such as sponges, hydrogels, capsules, fibers, and microparticles. In common, the fabricated devices were designed taking in consideration that to fully achieve the regeneration of functional cartilage it is mandatory a well-orchestrated interplay of biomechanical properties, unique hierarchical structures, extracellular matrix (ECM), and bioactive factors. In fact, the main challenge in cartilage tissue engineering is to design an engineered device able to mimic the highly organized zonal architecture of articular cartilage, specifically its spatiomechanical properties and ECM composition, while inducing chondrogenesis, either by the proliferation of chondrocytes or by stimulating the chondrogenic differentiation  of stem/chondro-progenitor cells. In this chapter we present the recent advances in the development of innovative and complex biomaterials that fulfill the required structural key elements for cartilage regeneration. In particular, multiphasic, multiscale, multilayered, and hierarchical strategies composed by single or multiple biomaterials combined in a welldefined structure will be addressed. Those strategies include biomimetic scaffolds mimicking the structure of articular cartilage or engineered scaffolds as models of research to fully understand the biological mechanisms that influence the regeneration of cartilage tissue.

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In the last few years, many reports have been describing promising biocompatible and biodegradable materials that can mimic in a certain extent the multidimensional hierarchical structure of bone, while are also capable of releasing bioactive agents or drugs in a controlled manner. Despite these great advances, new developments in the design and fabrication technologies are required to address the need to engineer suitable biomimetic materials in order tune cells functions, i.e. enhance cell-biomaterial interactions, and promote cell adhesion, proliferation, and differentiation ability. Scaffolds, hydrogels, fibres and composite materials are the most commonly used as biomimetics for bone tissue engineering. Dynamic systems such as bioreactors have also been attracting great deal of attention as it allows developing a wide range of novel in vitro strategies for the homogeneous coating of scaffolds and prosthesis with ceramics, and production of biomimetic constructs, prior its implantation in the body. Herein, it is overviewed the biomimetic strategies for bone tissue engineering, recent developments and future trends. Conventional and more recent processing methodologies are also described.

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Tese de Doutoramento em Ciências da Saúde

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Personalized tissue engineering and regenerative medicine (TERM) therapies propose patient-oriented effective solutions, considering individual needs. Cell-based therapies, for example, may benefit from cell sources that enable easier autologous set-ups or from recent developments on IPS cells technologies towards effective personalized therapeutics. Furthermore, the customization of scaffold materials to perfectly fit a patientâ s tissue defect through rapid prototyping technologies, also known as 3D printing, is now a reality. Nevertheless, the timing to expand cells or to obtain functional in vitrotissue substitutes prior to implantation prevents advancements towards routine use upon patient´s needs. Thus, personalized therapies also anticipate the importance of creating off-the-shelf solutions to enable immediately available tissue engineered products. This paper reviews the main recent developments and future challenges to enable personalized TERM approaches and to bring these technologies closer to clinical applications.

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The occurrence of mycotoxigenic moulds such as Aspergillus, Penicillium and Fusarium in food and feed has an important impact on public health, by the appearance of acute and chronic mycotoxicoses in humans and animals, which is more severe in the developing countries due to lack of food security, poverty and malnutrition. This mould contamination also constitutes a major economic problem due the lost of crop production. A great variety of filamentous fungi is able to produce highly toxic secondary metabolites known as mycotoxins. Most of the mycotoxins are carcinogenic, mutagenic, neurotoxic and immunosuppressive, being ochratoxin A (OTA) one of the most important. OTA is toxic to animals and humans, mainly due to its nephrotoxic properties. Several approaches have been developed for decontamination of mycotoxins in foods, such as, prevention of contamination, biodegradation of mycotoxins-containing food and feed with microorganisms or enzymes and inhibition or absorption of mycotoxin content of consumed food into the digestive tract. Some group of Gram-positive bacteria named lactic acid bacteria (LAB) are able to release some molecules that can influence the mould growth, improving the shelf life of many fermented products and reducing health risks due to exposure to mycotoxins. Some LAB are capable of mycotoxin detoxification. Recently our group was the first to describe the ability of LAB strains to biodegrade OTA, more specifically, Pediococcus parvulus strains isolated from Douro wines. The pathway of this biodegradation was identified previously in other microorganisms. OTA can be degraded through the hydrolysis of the amide bond that links the L-β-phenylalanine molecule to the ochratoxin alpha (OTα) a non toxic compound. It is known that some peptidases from different origins can mediate the hydrolysis reaction like, carboxypeptidase A an enzyme from the bovine pancreas, a commercial lipase and several commercial proteases. So, we wanted to have a better understanding of this OTA degradation process when LAB are involved and identify which molecules where present in this process. For achieving our aim we used some bioinformatics tools (BLAST, CLUSTALX2, CLC Sequence Viewer 7, Finch TV). We also designed specific primers and realized gene specific PCR. The template DNA used came from LAB strains samples of our previous work, and other DNA LAB strains isolated from elderberry fruit, silage, milk and sausages. Through the employment of bioinformatics tools it was possible to identify several proteins belonging to the carboxypeptidase family that participate in the process of OTA degradation, such as serine type D-Ala-D-Ala carboxypeptidase and membrane carboxypeptidase. In conclusions, this work has identified carboxypeptidase proteins being one of the molecules present in the OTA degradation process when LAB are involved.

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Biofilms in food processing plants represent not only a problem to human health but also cause economic losses by technical failure in several systems. In fact, many foodborne outbreaks have been found to be associated with biofilms. Biofilms may be prevented by regular cleaning and disinfection, but this does not completely prevent biofilm formation. Besides, due to their diversity and to the development of specialized phenotypes, it is well known that biofilms are more resistant to cleaning and disinfection than planktonic microorganisms. In recent years, a considerable effort has been made in the prevention of microbial adhesion and biofilm formation on food processing surfaces and novel technologies have been introduced. In this context, this chapter discusses the main conventional and emergent strategies that have been employed to prevent bacterial adhesion to food processing surfaces and thus to efficiently maintain good hygiene throughout the food industries.

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Dissertação de mestrado em Bioengenharia

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La alta incidencia del Síndrome Urémico Hemolítico(SUH) en Argentina conjuntamente con la severidad de esta patología en niños, han motivado la investigación de numerosos grupos. Si bien se ha reconocido la participación de apoptósis a nivel renal y de leucocitos, aun no se ha profundizado el posible rol del estrés oxidativo en el daño a estas células y otras que son afectadas durante esta patología, ni la relación con el estímulo de especies reactivas del oxígeno(ERO) y del nitrógeno (ERN). Hipótesis: El daño sufrido por el organismo durante el SUH se debe a más de un factor de virulencia incluyendo la Shiga toxina (Stx) o Vero toxina (VT), los que en conjunto causan injuria oxidativa principalmente en células sanguíneas y renales; siendo más sensibles al estrés los niños con falencias en las defensas antioxidantes, que serían los que derivan a fallas renales severas. Es posible que un tratamiento protector antiestrés oxidativo después de la detección del SUH prevenga el curso hacia el daño renal crónico y otras graves secuelas de éste síndrome. Obj.general: Efectuar aportes al conocimiento y tratamiento del SUH, investigando el mecanismo de acción de los principales factores de virulencia de E.coli Entero Hemorrágica (EHEC), planteando estrategias terapéuticas futuras para contrarrestar el estrés oxidativo que pudiese estar involucrado. Obj.específicos: Investigar si la Stx y/o la hemolisina (Hly) de E.coli estimulan la producción de ERO y ERN en células del huésped, causando oxidación de proteínas y lípidos. Estudiar si la respuesta de los eritrocitos ante injurias oxidativas se podría utilizar como parámetro para detectar mayor susceptibilidad a Stx y Hly. Investigar si las defensas antioxidantes intracelulares y plasmáticas se incrementan con secuestrantes de radicales y antioxidantes naturales; estabilizando el potencial de membrana e impidiendo el incremento de biomarcadores de estrés oxidativo. Esclarecer aspectos que involucran al estrés oxidativo en la acción de antibióticos sobre células sanguíneas, líneas celulares y E.coli en estado planctónico o en biofilms, investigando qué antimicrobianos aumentan la liberación de Stx y Hly. Estudiar sustancias antioxidantes naturales y alimentos que puedan ser aplicados en terapia y prevención del SUH. Mat.y Met.: Se trabajará con cepas de bacterias que fueron obtenidas de pacientes con SUH. Stx y Hly serán purificadas por cromatografía afinidad y de intercambio iónico, respectivamente. Ensayos de quimioluminiscencia serán aplicados para determinar el estímulo de ERO, mientras que ERN se cuantificarán por Griess. Los niveles de marcadores de daño oxidativo se estudiarán para oxidación de lípidos, proteínas y otros productos avanzados de oxidación proteica. Rdos esperados: Se espera encontrar acción estresante de Stx y/o Hly sobre eritrocitos y otras células, así como biomarcadores de oxidación en diferentes macromoléculas sanguíneas. Es probable que exista diferente nivel de defensa contra esta injuria en niños con SUH; de ser así estos pacientes son susceptibles de recaídas y cronicidad en el proceso por falta de niveles adecuados de antioxidantes. Es necesario entonces encontrar terapias a largo plazo que aumenten las defensas contra el estrés oxidativo causado por E.coli u otras noxas con que se enfrente el niño predispuesto. Se cuenta con antecedentes en el laboratorio que indican conveniente una dieta rica en antioxidantes, así como otros probables fármacos en estudio. Importancia del proyecto. Este proyecto permitirá continuar con investigaciones propias que muestran acción estresante de ERO en eritrocitos por parte de cepas causantes de SUH. La continuidad de estos estudios puede representar un avance en la terapia de una patología cada vez más frecuente en Argentina. Los avances que se consigan podrían posibilitar un tratamiento preventivo en niños en general, así como una mejor evolución de los casos que derivan actualmente en diálisis.

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Numerosas investigaciones han desarrollado estrategias para la remoción de micotoxinas en alimentos por diferentes métodos, aunque muchos de ellos no han llegado a ser utilizados debido a los elevados costos o a las dificultades prácticas involucradas en el proceso de detoxificación. Estos argumentos estimulan a los investigadores a desarrollar nuevas estrategias de decontaminación que eviten el uso de agentes químicos y que reduzcan las pérdidas en el valor nutritivo y la palatabilidad de los alimentos decontaminados. Una de las alternativas promisorias es la detoxificación biológica. Las levaduras capaces de adsorber micotoxinas y con habilidades probióticas o prebióticas son promisorias para reducir la exposición humana a las micotoxinas. En el tracto gastrointestinal se encuentra normalmente un gran número de especies de bacterias comensales y patógenas; sin embargo, cuando se incrementa la cantidad de microorganismos patógenos se pueden producir alteraciones de la salud y muerte. La industria argentina de alimentos destinados a animales necesita reducir los niveles de micotoxinas presentes en ingredientes o en insumos terminados. Si bien los resultados obtenidos en el mundo en la temática son preliminares y promisorios, en nuestro país aún no se han desarrollado estrategias biológicas de decontaminación de micotoxinas aplicadas a estos alimentos. Estudios de incidencia de micoflora y detección de micotoxinas en alimentos balanceados para aves, llevados a cabo por nuestro grupo de investigación en la región del sur de Córdoba demostraron la presencia de los principales géneros toxicogénicos (Aspergillus, Penicillium y Fusarium) y sus micotoxinas asociadas (aflatoxinas, zearalenona y fumonisinas). En relación a porcinotecnia, la zona sur de la provincia de Córdoba es considerada una de las tres zonas de mayor densidad porcina en Argentina. Sin embargo, la contaminación de los granos con micotoxinas representa un serio problema debido a que producen rechazo del alimento, disminución de la tasa de crecimiento y reducción inmunológica. Si consideramos la evolución en la producción lechera en los últimos años ha seguido una línea de intensificación que ha conllevado un cambio en la utilización de los alimentos, evolucionando del simple pastoreo a los sistemas de alimentación única, basados en la formulación de alimentos balanceados que constituyen la clave de la alimentación de los animales. Diferentes estudios epidemiológicos usando técnicas moleculares han demostrado que con frecuencia la infección por A. fumigatus ocurre como consecuencia de la adquisición exógena del hongo. La magnitud del problema se manifiesta en la continua búsqueda de medidas de prevención y control de estas micotoxicosis. Debido a este impacto negativo que ejercen las toxinas fúngicas lo cual, afecta los parámetros productivos como ganancia de peso y conversión alimenticia con graves pérdidas a la industria animal tanto en el mercado interno como externo.