907 resultados para NATIVE DEFECTS


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Dissertation presented to obtain the Ph.D degree in Biochemistry

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Dissertação apresentada para cumprimento dos requisitos necessários à obtenção do grau de Mestre em Línguas, Literaturas e Culturas

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Describes the case of a 6-year-old girl who was stung by a Centruroides testaceus, a scorpion native to the Lesser Antilles, in the Guarulhos International Airport, São Paulo, Brazil, as she disembarked from a flight coming from the Caribbean. The patient presented only local symptoms (a small area of erythema and pain at the sting site), which were resolved after a few hours with analgesics, without the need for antivenom. Physicians who treat patients stung by scorpions should be alert to the possibility of such accidents being caused by non native species, especially those cases that occur near airports or ports.

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 In orthopaedics, the management and treatment of osteochondral (OC) defects remains an ongoing clinical challenge. Autologous osteochondral mosaicplasty has been used as a valid option for OC treatments although donor site morbidity remains a source of concern [1]. Engineering a whole structure capable of mimicking different tissues (cartilage and subchondral bone) in an integrated manner could be a possible approach to regenerate OC defects. In our group we have been proposing the use of bilayered structures to regenerate osteochondral defects [2,3]. The present study aims to investigate the pre-clinical performance of bilayered hydrogels and spongy-like hydrogels in in vivo  models (mice and rabbit, respectively), in both subcutaneous and orthotopic models. The bilayered structures were produced from Low Acyl Gellan Gum (LAGG) from Sigma-Aldrich, USA. Cartilage-like layers were obtained from a 2wt% LAGG solution. The bone-like layers were made of 2wt% LAGG with incorporation of hydroxyapatite at 20% and 30% (w/v). Hydrogels and spongy-like were subcutaneouly implanted in mice to evaluate the inflammatory response. Then, OC defects were induced in rabbit knee to create a critical size defect (4 mm diameter and 5 mm depth), and then hydrogels and sponges implanted. Both structures followed different processing methods. The hydrogels were injected allowing in situ  crosslinking. Unlike, the spongy-like were pre-formed by freeze-drying. The studies concerning subcutaneous implantation and critical size OC defect were performed for 2 and 4 weeks time, respectively. Cellular behavior and inflammatory responses were assessed by means of histology staining and biochemical function and matrix deposition by immunohistochemistry. Additionally, both OC structures stability and new cartilage and bone formation were evaluated by using vivo- computed tomography (Scanco 80). The results showed no acute inflammatory response for both approaches. New tissue formation and integration in the adjacent tissues were also observed, which present different characteristic behaviors when comparing hydrogels and sponges response. As future insights, a novel strategy for regeneration of OC defects can be designed encompassing both, hydrogels and spongy-like structures and cellular approaches. References: 1. Espregueira-Mendes J. et al. Osteochondral transplantation using autografts from the upper tibio-fibular joint for the treatment of knee cartilage lesions. Knee Surgery, Sports Traumatology, Arthroscopy 20,1136, 2012. 2. Oliveira JM. et al, Novel hydroxyapatite/chitosan bilayered scaffold for osteochondral tissue-engineering applications: Scaffold design and its performance when seeded with goat bone marrow stromal cells. Biomaterials 27, 6123, 2006. 3. Pereira D R. et al. Gellan Gum-Based Hydrogel Bilayered Scaffolds for Osteochondral Tissue Engineering. Key Engineering Materials 587, 255, 2013.

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Bioactive glass nanoparticles (BGNPs) promote an apatite surface layer in physiologic conditions that lead to a good interfacial bonding with bone.1 A strategy to induce bioactivity in non-bioactive polymeric biomaterials is to incorporate BGNPs in the polymer matrix. This combination creates a nanocomposite material with increased osteoconductive properties. Chitosan (CHT) is a polymer obtained by deacetylation of chitin and is biodegradable, non-toxic and biocompatible. The combination of CHT and the BGNPs aims at designing biocompatible spheres promoting the formation of a calcium phosphate layer at the nanocomposite surface, thus enhancing the osteoconductivity behaviour of the biomaterial. Shape memory polymers (SMP) are stimuli-responsive materials that offer mechanical and geometrical action triggered by an external stimulus.2 They can be deformed and fixed into a temporary shape which remains stable unless exposed to a proper stimulus that triggers recovery of their original shape. This advanced functionality makes such SMPs suitable to be implanted using minimally invasive surgery procedures. Regarding that, the inclusion of therapeutic molecules becomes attractive.  We propose the synthesis of shape memory bioactive nanocomposite spheres with drug release capability.3   1.  L. L. Hench, Am. Ceram. Soc. Bull., 1993, 72, 93-98. 2.  A. Lendlein and S. Kelch, Angew Chem Int Edit, 2002, 41, 2034-2057. 3.  Ã . J. Leite, S. G. Caridade and J. F. Mano, Journal of Non-Crystalline Solids (in Press)

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We investigate the low-energy electronic transport across grain boundaries in graphene ribbons and infinite flakes. Using the recursive Green’s function method, we calculate the electronic transmission across different types of grain boundaries in graphene ribbons. We show results for the charge density distribution and the current flow along the ribbon. We study linear defects at various angles with the ribbon direction, as well as overlaps of two monolayer ribbon domains forming a bilayer region. For a class of extended defect lines with periodicity 3, an analytic approach is developed to study transport in infinite flakes. This class of extended grain boundaries is particularly interesting, since the K and K0 Dirac points are superposed.

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Theobroma species have economic importance due to their use in the cosmetic and food industries, mainly in the production of chocolate. However, the anatomy of their vegetative structures remains poorly studied. The goal of this study was to describe the anatomical features of Theobroma grandiflorum, T. speciosum and T. subincanum to contribute to the biological knowledge of these species, as well as provide support to the biotechnological studies of native fruit plants of the Amazon. Leaves at different developmental stages were collected and analyzed under light microscopy and scanning electron microscopy. Sessile and stalked stellate trichomes and digitiform glandular trichomes were observed in the expanded leaves of T. grandiflorum and T. subincanum. These species were also similar in the morphology of the midrib, the organization of the mesophyll and the presence of starch grains in the midrib pith cells. Claviform glandular trichomes and mucilage cells in the epidermis occurred only in the expanded leaves of T. speciosum. The presence of mucilage secretory trichomes in shoot apices (colleters) of all species is a new finding for the genus Theobroma.

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The stem cell niche organization and dynamics provide valuable cues for the development of mimetic environments that could have potential to stimulate the regenerative process. We propose the use of biodegradable biomaterials to produce closed miniaturised structures able to encapsulate different cell types or bioactive molecules. In particular, capsules are fabricated using the so-called layer-by-layer technology, where the consecutive (nano-sized) layers are well stabilized by electrostatic interactions or other weak forces. Using alginate-based spherical templates containing cells or other elements (e.g. proteins, magnetic nanoparticles, microparticles) it is possible to produce liquefied capsules that may entrap the entire cargo under mild conditions. The inclusion of liquefied micropcapsules may be used to produce hierarchical compartmentalised systems for the delivery of bioactive agents. The presence of solid microparticles inside such capsules offers adequate surface area for adherent cell attachment increasing the biological performance of these hierarchical systems, while maintain both permeability and injectability. We demonstrated that the encapsulation of distinct cell types (including mesenchymal stem cells and endothelial cells) enhances the osteogenic capability of this system, that could be useful in bone tissue engineering applications.

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PURPOSE: Evaluation of the role of transesophageal echocardiography in percutaneous closure of atrial septal defects (ASD) with the Amplatzer septal occluder. METHODS: Patients were selected for percutaneous closure of ASD by transesophageal echocardiography (TEE), which was also used to monitor the procedure, helping to select the appropriate size of the Amplatzer device, to verify its position, and to access the immediate results of the procedure. During the follow-up, TEE was used to evaluate the presence and magnitude of residual shunt (RS), device position, and right cardiac chamber diameters. RESULTS: Twenty-two (40%) of a total of 55 studied patients were selected. Thirteen underwent Amplatzer device implantation, eight are still waiting for it, and one preferred the conventional surgical treatment. All procedures were successful, which was mainly due to proper patient selection. Six (23%) patients acutely developed RS, which spontaneously disapeared at the three-month follow-up examination in three patients. There was a significant reduction in the right ventricle diastolic diameter, from 27mm (average) to 24mm and 20mm, one and three months after the procedure, respectively (p<0.0076). CONCLUSION: With the aid of TEE, percutaneous closure of ASD can be successfully, safely, and effectively performed.

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OBJECTIVE: To analyze the frequency and prevalence of congenital heart defects in a tertiary care center for children with heart diseases. METHODS: We carried out an epidemiological assessment of the first medical visit of 4,538 children in a pediatric hospital from January 1995 to December 1997. All patients with congenital heart defects had their diagnoses confirmed at least on echocardiography. The frequency and prevalence of the anomalies were computed according to the classification of sequential analysis. Age, weight, and sex were compared between the groups of healthy individuals and those with congenital heart defects after distribution according to the age group. RESULTS: Of all the children assessed, 2,017 (44.4%) were diagnosed with congenital heart disease, 201 (4.4%) with acquired heart disease, 52 (1.2%) with arrhythmias, and 2,268 (50%) were healthy children. Congenital heart diseases predominated in neonates and infants, corresponding to 71.5% of the cases. Weight and age were significantly lower in children with congenital heart defects. Ventricular septal defect was the most frequent acyanotic anomaly, and tetralogy of Fallot was the most frequent cyanotic anomaly. CONCLUSION: Children with congenital heart defects are mainly referred during the neonatal period and infancy with impairment in gaining weight. Ventricular septal defect is the most frequent heart defect.

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OBJECTIVE: To evaluate the initial clinical experience with the Helex septal occluder for percutaneous closure of atrial septal defects. METHODS: Ten patients underwent the procedure, 7 patients with ostium secundum atrial septal defects (ASD) with hemodynamic repercussions and 3 patients with pervious foramen ovale (PFO) and a history of stroke. Mean age was 33.8 years and mean weight was 55.4 kg. Mean diameter by transesophageal echocardiography and mean stretched ASD diameter were 11.33 ± 3.3mm, and 15.2 ± 3.8mm, respectively. The Qp/Qs ratio was 1.9 ± 0.3 in patients with ASD. RESULTS: Eleven occluders were placed because a patient with 2 holes needed 2 devices. It was necessary to retrieve and replace 4 devices in 3 patients. We observed immediate residual shunt (< 2mm) in 4 patients with ASD, and in those with patent foramen ovale total occlusion of the defect occurred. No complications were noted, and all patients were discharged on the following day. After 1 month, 2 patients with ASD experienced trivial residual shunts (1mm). In 1 patient, we observed mild prolapse in the proximal disk in the right atrium, without consequences. CONCLUSION: The Helex septal occluder was safe and effective for occluding small to moderate atrial septal defects. Because the implantation technique is demanding, it requires specific training of the operator. Even so, small technical failures may occur in the beginning of the learning curve, but they do not involve patient safety.

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Numerosas áreas de las sierras chicas han experimentado una gran pérdida de vegetación natural y de germoplasma nativo como consecuencia del crecimiento urbano y de la extracción de plantas sin criterios conservacionistas. El valle de Paravachasca presenta una riqueza florística con muchas especies autóctonas de un valioso potencial ornamental. Para poder proteger la vegetación nativa es necesario conocerla y evaluarla en todos los aspectos incluyendo sus posibles usos. Esta propuesta de trabajo se fundamenta en que las especies nativas constituyen un valioso recurso natural. Por lo tanto, nuestro objetivo principal es evaluar especies autóctonas herbáceas promisorias como ornamentales para establecer parámetros de reproducción y favorecer la innovación productiva, la conservación del paisaje natural y la protección del patrimonio germoplásmico. Para cumplir con dicho objetivo se realizarán viajes en distintas estaciones del año para evaluar in situ, las especies que resulten atractivas por su follaje o floración. Se recolectará material vegetal para determinarlo, caracterizarlo y formar un banco de germoplasma. Se elaborarán fichas técnicas con las cuales evaluar la viabilidad de las semillas y se realizarán pruebas de multiplicación vegetativa. Finalmente, se seleccionarán cuatro especies para su domesticación a campo o cultivo en macetas. Todos los trabajos serán documentados con ilustraciones, fotos y gráficos. Como resultado se espera generar y proveer información sobre plantas nativas, estrategias de conservación, reproducción y cultivo de especies autóctonas; además, transferir la tecnología para estimular una producción regional. Alcanzados los niveles de conocimiento necesarios se intentará establecer vínculos de intercambio de información con otros proyectos nacionales o extranjeros. Por su parte, la transferencia, validación y difusión de los resultados obtenidos se realizará mediante cursos, seminarios, talleres -en el marco educativo- de capacitación laboral, recreativo y productivo, siendo los destinatarios directos las comunas en general y los viveristas, diseñadores de parques, inversores de turismo y aficionados a las plantas, en particular. El impacto del proyecto en el ámbito científico se reflejará en publicaciones que presenten información innovadora en relación con las ciencias agropecuarias; y, en lo social, mediante la generación de posibles fuentes de trabajo.

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El presente proyecto retoma los interrogantes acerca de los movimientos de población humana que se sucedieron en el area central de Argentina (actual territorio de Córdoba y parte de San Luis), desde los primeros asentamientos hasta la Conquista, valiéndose de la información proporcionada por la arqueología, la antropología física y la genética molecular, de manera interdisciplinaria. Con base en investigaciones previas realizadas por nuestro grupo y otros autores, se aplicarán nuevas metodologías y enfoques teóricos para echar luz sobre interrogantes acerca de las probables vías de poblamiento de la región y la evolución local de esas poblaciones. Se someterán a prueba hipótesis migratorias y de colonización, incluyendo estos eventos locales en un contexto más general sobre los procesos ocurridos a nivel regional y continental. Para los datos biológicos moleculares y morfológicos se emplearán técnicas de filogeografía (distribución espacial de linajes mitocondriales y del cromosoma Y) y genética del paisaje (autocorrelación espacial, kriging, barreras genéticas). La perspectiva arqueológica del proyecto intenta desde los análisis de diseño y función en instrumentos líticos discutir expectativas en cuanto a la permanencia o no de ciertas formas de diseño a través del tiempo, comparando conjuntos tempranos (asociados a tecnología "Fell 1") con otros de épocas posteriores. Esta línea se llevará a cabo utilizando la comparación entre los materiales provenientes de excavaciones estratigráficas para realizar análisis tecno-morfológicos sensu Aschero (1975-1983) y análisis de microhuellas de uso que nos permiten hablar de la función en los filos líticos. Esta línea se complementa con el desarrollo de programas experimentales de estudio sobre las diversas materias primas líticas utilizadas en el pasado en ambas áreas (Chert, vulcanita, cuarzo y calcedonia, entre las principales). Ambos enfoques nos permitirán evaluar la posible existencia de variaciones tecnológicas locales producto de procesos adaptativos o modos de producción o uso diferenciales. Una segunda línea propone el estudio del paisaje y los recursos líticos en la región utilizando SIG. Con respecto a esta perspectiva de investigación se postula analizar la forma en la cual los cazadores-recolectores utilizaron el espacio desde fines del Pleistoceno/Holoceno Temprano hasta el Holoceno Tardío partiendo de un conocimiento profundo de la distribución de los recursos líticos. En particular, conocer y discutir distintos aspectos de la disponibilidad, tipo, calidad y accesibilidad a las rocas. Este enfoque es fundamental para entender los procesos de elección y uso de estos recursos en el pasado logrando entender las diversas formas de organización de la tecnología.