5 resultados para Musculos - Hipertrofia

em SAPIENTIA - Universidade do Algarve - Portugal


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A Diabetes Mellitus é uma doença metabólica com uma distribuição mundial cada vez mais acentuada, acarretando consigo, elevada morbilidade e mortalidade. Deste modo, é de suma importância a compreensão e estudo em fases precoces desta doença. Nos últimos anos a saliva tem sido usada como fonte de biomarcadores para detecção e monitorização de doenças. Para além disso, há referencia a alterações na secreção salivar e percepção dos alimentos em indivíduos diabéticos, tornando-se importante um maior conhecimento da função salivar associada a esta patologia. O objectivo geral deste trabalho é estudar a função salivar num modelo de roedores intolerantes à glicose, avaliando-se a concentração proteica total da saliva, morfologia e morfometria das glândulas salivares maiores e expressão da amilase na saliva e glândulas salivares. Não se observam diferenças entre os grupos, para a concentração em proteína total, nem para a expressão de α-amilase, na saliva. Na análise histológica das glândulas salivares maiores é possível observar dimensões significativamente maiores dos ácinos das glândulas analisadas (parótida, submandibular e sublingual), em relação aos animais normoglicémicos, sugerindo o que pode ser o início de uma patologia comum em diabéticos, a sialose (hipertrofia e hiperplasia das glândulas salivares). Através de imunomarcação para a actina observa-se um aumento da expressão de células mioepiteliais na seguinte ordem: parótida, submandibular e sublingual. Não se observam diferenças entre os grupos. A imunomarcação para a α-amilase é mais intensa nos ácinos da parótida, nos ductos granulares da submandibular e nas meias luas serosas da sublingual, em ambos os grupos. Verifica-se uma sobre-expressão nos ductos intralobulares da parótida e nos ductos granulares da sumandibular, nos animais pré-diabéticos, sugerindo alguma endocitose da enzima por parte das células dos ductos. Os resultados obtidos sugerem alterações na função salivar, numa fase prévia ao desenvolvimento da Diabetes Mellitus, as quais merecem ser exploradas.

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Gilthead seabream is the most important farmed species in the Mediterranean, and knowledge on how common farming practices impact its quality is limited. As such, this Thesis aimed to evaluate how gilthead seabream flesh quality is affected by some of these practices. In Chapter 2, the influence of nutritional factors was evaluated, specifically the high replacement of traditional marine-derived ingredients, both fishmeal and fish oil, with vegetable sources. We have seen that the vegetable-based diets tested did not greatly impact seabream flesh quality, although some alterations were seen in the fatty acid profile of the muscle. However, and despite having caused no alterations in flesh texture, vegetable ingredients reduced the amount of sulphated glycosaminoglycans in the extracellular matrix, affected muscle pH and reduced the activity of proteolytic enzymes. Throughout this Thesis, we measured for the first time the activity of proteolytic enzymes in seabream muscle, and cathepsin B was found to play a pivotal role in post-mortem muscle degradation. In Chapter 3, we evaluated the effect of harvesting and slaughter stress on seabream quality, and contrary to what is seen in most farmed species, our results show that gilthead seabream muscle structure is highly resistant to changes caused by stressful events. Nonetheless, considering that welfare is an increasingly important quality criterion, the use of a zero-withdrawal anaesthetic as a rested harvest technique or even slaughter method could prove valuable to the industry. In Chapter 4, we used maslinic acid as a dietary supplement, to modulate the muscle’s energetic status pre-mortem. As a finishing strategy, maslinic acid failed to increase levels of glycogen and ATP in the muscle. However, supplementation resulted in higher muscle fibre diameter and lower cathepsin B activity, and maslinic acid is likely to be useful to promote growth in this species. In general our Thesis has generated new knowledge to a major challenge facing the aquaculture industry, which is to find a compromise between the trends towards intensive rearing and consumer demand for healthy, high quality seafood being ethically acceptable and having a low impact on the environment.

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Cardiogenesis is a delicate and complex process that requires the coordination of an intricate network of pathways and the different cell types. Therefore, understanding heart development at the morphogenetic level is an essential requirement to uncover the causes of congenital heart disease and to provide insight for disease therapies. Mouse Cerberus like 2 (Cerl2) has been defined as a Nodal antagonist in the node with an important role in the Left-Right (L/R) axis establishment, at the early embryonic development. As expected, Cerl2 knockout mice (Cerl2-/-) showed multiple laterality defects with associated cardiac failure. In order to identify the endogenous role of Cerl2 during heart formation independent of its described functions in the node, we accurately analyzed animals where laterality defects were not present. We thereby unravel the consequences of Cerl2 lossof- function in the heart, namely increased left ventricular thickness due to hyperplasia of cardiomyocytes and de-regulated expression of cardiac genes. Furthermore, the Cerl2 mutant neonates present impaired cardiac function. Once that the cardiac expression of Cerl2 is mostly observed in the left ventricle until around midgestration, this result suggest a specific regulatory role of Cerl2 during the formation of the left ventricular myoarchitecture. Here, we present two possible molecular mechanisms underlying the cardiac Cerl2 function, the regulation of Cerl2 antagonist in activation of the TGFßs/Nodal/Activin/Smad2 signaling identified by increased Smad2 phosphorilation in Cerl2-/- hearts and the negative feedback between Cerl2 and Wnt/ß-catenin signaling in heart formation. In this work and since embryonic stem cells derived from 129 mice strain is extensively used to produce targeted mutants, we also present echocardiographic reference values to progressive use of juveniles and young adult 129/Sv strain in cardiac studies. In addition, we investigate the cardiac physiology of the surviving Cerl2 mutants in 129/Sv background over time through a follow-up study using echocardiographic analysis. Our results revealed that Cerl2-/- mice are able to improve and maintain the diastolic and most of systolic cardiac physiologic parameters as analyzed until young adult age. Since Cerl2 is no longer expressed in the postnatal heart, we suggest that an intrinsic and compensatory mechanism of adaptation may be active for recovering the decreased cardiac function found in Cerl2 mutant neonates. Altogether, these data highlight the role of Cerl2 during embryonic heart development in mice. Furthermore, we also suggest that Cerl2-/- may be an interesting model to uncover the molecular, cellular and physiological mechanisms behind the improvement of the cardiac function, contributing to the development of therapeutic approaches to treat heart failures.

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Dissertação de Mestrado, Ciências Biomédicas, Departamento de Ciências Biomédicas e Medicina, Universidade do Algarve, 2014

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Através de uma análise histórico-formal este artigo propõe-se analisar a influência do peplum, um conjunto de filmes de aventuras produzidos na Europa mediterrânea entre 1958 e 1964, no cinema de Hollywood contemporâneo, em particular num ciclo de filmes que denominámos de neo-peplums pois, tal como o peplum europeu, estes caraterizam-se pela recriação fantasiosa do Mundo Antigo e pela hipertrofia do trabalho formal, utilizando os novos recursos tecnológicos na criação de uma mise-en-scène altamente estilizada.