996 resultados para Marine yeast Candida MCCF 101


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As leveduras da espécie Candida albicans são comensais do ser humano, podendo em certos casos, como a toma prolongada de antibióticos de largo espectro, a diminuição da imunidade, ou a quimioterapia, causar infecções severas. Estas infecções classificam-se em superficiais ou sistémicas, consoante a zona anatómica ou os órgãos afectados. As infecções hospitalares por fungos, nomeadamente as causadas por C. albicans, têm vindo a aumentar nos últimos anos, assim como a mortalidade e a morbilidade associadas, e ainda os custos relacionados com os cuidados de saúde. Torna-se por isso importante a implementação de terapêutica de uma forma rápida, eficaz e correcta. Assim, é imperativo que os laboratórios de microbiologia clínica possuam métodos de diagnóstico rápidos, simples e económicos em relação a uma correcta identificação ao nível de espécie e em relação ao estudo da sensibilidade aos antifúngicos. Contudo, esta identificação ao nível de espécie não permite averiguar a origem das infecções, facto importante para a compreensão da evolução das infecções nosocomiais. Para tal, é necessário realizar um estudo ao nível de estirpe através de métodos moleculares que permitam fazer a distinção acurada entre isolados de C. albicans. Os métodos moleculares têm vindo a desenvolver um papel importante no diagnóstico de infecções: são rápidos, sensíveis, precisos e possuem a vantagem de se poder trabalhar pequenas quantidades de amostra. Têm no entanto a desvantagem de ser métodos caros, por vezes demasiado elaborados para serem instituídos num laboratório de microbiologia clínica com grande volume de amostras diárias. O principal objectivo deste trabalho consistiu na diferenciação de estirpes de C. albicans através de uma metodologia molecular inovadora, nunca antes efectuada no ocidente, simples e rápida, por meio de simples amplificações por PCR. Para tal, foram seleccionados 60 isolados clínicos de leveduras obtidas a partir de amostras clínicas de três localidades: Covilhã (Centro Hospitalar Cova de Beira, E.P.E) Lisboa (Instituto Português de Oncologia e Hospital de Santa Maria, E.P.E) e Viseu (Hospital de São Teotónio). O trabalho baseou-se na genotipagem de isolados clínicos de C. albicans por amplificação por PCR com primers dirigidos às sequências 25S rDNA e às regiões ALT das sequências RPS. Foi possível a sua diferenciação e distinção em estirpes, fazendo deste método um bom recurso para estudos epidemiológicos. Realizou-se ainda um estudo de sensibilidade in vitro das estirpes de C. albicans ao antifúngicos Fluconazol e Voriconazol pelo método de difusão em disco, segundo os procedimentos padronizados e publicados pelo CLSI. Através deste estudo foi verificada elevada susceptibilidade aos antifúngicos estudados. Com este trabalho conclui-se que a diferenciação ao nível de estirpe é muito importante para compreender padrões de surtos de infecções e ainda para averiguar a origem, endógena ou exógena, destas infecções nosocomiais. Como tal, este estudo epidemiológico torna-se essencial para definir um controlo mais rigoroso das infecções.

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Estudou-se o comportamento de leveduras do gênero Candida a antifungicos, pela determinação da Concentração Inibitória Mínima (CIM) e da Concentração Fungicida Mínima (CFM) "in vitro"de 30 cepas de Candida frente aos antifungicos: miconazol, cetoconazol e anfotericina B. Empregou-se o método de diluição em meio líquido e os antifungicos foram diluídos visando proporcionar concentrações a partir de 0,06 a 128 μg/mL. O inóculo foi padronizado ajustando-se a suspensão para conter 1X 106 ufc/mL. A concentração para a qual houve maior convergência de cepas foi de 1 μg/mL (26,5%) para anfotericina B. Para miconazol foi de 16 μg/mL (26,0%) e para cetoconazol 32 μg/mL (23,0%). Os valores de CFM foram de 2 μg/mL (23,5%) para anfotericina B, de 16 e 64 μg/mL (26,5%) para miconazol e 32 e 64 μg/mL (30,0%) para cetoconazol. Este imidazólico mostrou os valores de CIM e CFM mais elevados atingindo até 128 μg/mL em algumas espécies. As espécies de Candida mostraram-se mais sensíveis à Anfotericina B, quando comparadas em relação aos antifungicos testados. Sobre o desempenho das espécies de Candida, melhor padrão de comportamento foi verificado para C. albicans com níveis mais baixos de sensibilidade.

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Candida bracarensis is an uncommon Candida species found during an epidemiological study of candidiasis performed in Braga, Portugal. Initially, it was identified as C. glabrata, but recently detailed analyses pointed out their differences. So, little information is still available about C. bracarensis virulence factors and antifungal susceptibilities. Therefore, the main goal of this work is to evaluate the ability of C. bracarensis to form biofilms, to produce hydrolytic enzymes (proteases, phospholipases and hemolysins), as well as its susceptibility to amphotericin B and fluconazole. It was shown, for the first time, that all C. bracarensis strains were able to form biofilms and display proteinase and hemolytic activities. Moreover, although planktonic cells presented antifungal susceptibility, amphotericin B and fluconazole were unable to inhibit biofilm formation and eradicate pre-formed biofilms. Due to the propensity of C. bracarensis to display antifungal resistance and virulence attributes, the control of these emerging pathogens is recommended.

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Doctoral Thesis (PhD Programm on Molecular and Environmental Biology)

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Tese de Doutoramento Biologia Molecular e Ambiental - Especialidade em Biologia Celular e Saúde

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The severity and frequency of opportunistic fungal infections still growing, concomitantly to the increasing rates of antimicrobial drugs resistance. Natural matrices have been used over years due to its multitude of health benefits, including antifungal potential. Thus, the present work aims to evaluate the anti-Candida potential of the phenolic extract and individual phenolic compounds of Glycyrrhiza glabra L. (licorice), by disc diffusion assay, followed by determination of the minimal inhibitory concentration (MIC) and minimal fungicidal concentration (MFC) for both planktonic cells and biofilms. Licorice extract evidenced inhibitory potential against the nineteen tested Candida strains, but no pronounced effect was observed by testing the most abundant individual phenolic compounds. Candida tropicalis strains were the most sensible, followed by Candida glabrata, Candida parapsilosis and, then, Candida albicans. Lower MIC and MFC values were achieved to C. glabrata and C. tropicalis, which confirms its susceptibility to licorice extract; however, for C. tropicalis strains a higher variability was observed. Anti-biofilm potential was also achieved, being most evident in some C. glabrata and C. tropicalis strains. In general, a twice concentration of the MIC was necessary for planktonic cells to obtain a similar potential to that one observed for biofilms. Thus, an upcoming approach for new antifungal agents, more effective and safer than the current ones, is stablished; notwithstanding, further studies are necessary in order to understand its mechanism of action, as also to assess kinetic parameters.

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Objectives: This research work intends to clarify the role of artificial saliva, in particularly the role of mucin, a salivary protein, on the surface properties and adhesion ability of Candida spp. oral clinical isolates to abiotic surfaces. Methods: Four oral clinical isolates of Candida spp. were used: two Candida albicans strains (AC; AM) and two Candida parapsilosis strains (AD; AM2). The strains were isolated from patients using oral prosthesis. The microorganisms were cultured in the absence or presence of mucin and artificial saliva, and their adhesion to an abiotic surface (coated with mucin and artificial saliva) was evaluated. Results: The presence of mucin per se onto the abiotic surface decreased the adhesion of all strains, although the combination of mucin with artificial saliva had reduced this effect. No direct correlation between adhesion and the surface free energies of adhesion of the microorganisms was found. Significance: Candida spp. were human commensal microorganisms that became pathogenic when the host immune defenses were compromised. Medical devices were colonized by Candida spp. particularly, oral prostheses, which might lead to the degradation of the prostheses and systemic infections. The salivary secretions that constantly cover the oral cavity influenced Candida spp. adhesion process. Therefore, it was important to understand the interactions between Candida spp., salivary proteins and the characteristic of oral prosthesis when developing materials for oral prostheses.

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Honeys are described possessing different properties including antimicrobial. Many studies have presented this activity of honeys produced by Apis mellifera bees, however studies including activities of stingless bees honeys are scarce. The aim of this study was to compare the antimicrobial activity of honeys collected in the Amazonas State from Melipona compressipes, Melipona seminigra and Apis mellifera against Staphylococcus aureus, Enterococcus faecalis, Escherichia coli, Chromobacterium violaceum, and Candida albicans. Minimum inhibitory concentrations were determined using the agar dilution method with Müller-Hinton agar (for bacteria) or Saboraud agar (for yeast). Staphylococcus aureus and E. faecalis were inhibited by all honeys at concentrations below 12%, while E. coli and C. violaceum were inhibited by stingless bee honeys at concentrations between 10 and 20%. A. mellifera honey inhibited E. coli at a concentration of 7% and Candida violaceum at 0.7%. C. albicans were inhibited only with honey concentrations between 30 and 40%. All examined honey had antimicrobial activity against the tested pathogens, thus serving as potential antimicrobial agents for several therapeutic approaches.

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

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ABSTRACTIn the Amazon, river navigation is very important due to the length of navigable rivers and the lack of alternative road networks. Boats usually operate in unfavorable conditions, since there is no hydrodynamic relation among propellers, geometry, and the dimensions of the boat hull. Currently, there is no methodology for propeller hydrodynamic optimization with low computational cost and easy implementation in the region. The aim of this work was to develop a mathematical approach for marine propeller design applied to boats typically found on Amazon rivers. We developed an optimized formulation for the chord and pitch angle distributions, taking into account the classical model of Glauert. A theoretical analysis for the thrust and torque relationships on an annular control volume was performed. The mathematical model used was based on the Blade Element Momentum Theory (BEMT). We concluded that the new methodology proposed in this work demonstrates a good physical behavior when compared with the theory of Glauert and the experimental data of the Wageningen B3-50 propeller.

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Dissertação de mestrado em Genética Molecular

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Marine microorganisms possess unique metabolic and physiological features and are an important source of new biomolecules, such as biosurfactants. Some of these surface-active compounds synthesized by marine microorganisms exhibit antimicrobial, anti-adhesive and anti-biofilm activity against a broad spectrum of human pathogens (including multi-drug resistant pathogens), and could be used instead of the existing drugs to treat infections caused by them. In other cases, these biosurfactants show anti-cancer activity, which could be envisaged as an alternative to conventional therapies. However, marine biosurfactants have not been widely explored, mainly due to the difficulties associated with the isolation and growth of their producing microorganisms. Culture-independent techniques (metagenomics) constitute a promising approach to study the genetic resources of otherwise inaccessible marine microorganisms without the requirement of culturing them, and can contribute to discover novel biosurfactants with significant biological activities. This paper reviews the most relevant biosurfactants produced by marine microorganisms with potential therapeutic applications and discusses future perspectives and opportunities to discover novel molecules from marine environments.

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Dissertação de mestrado integrado em Engenharia Civil

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Oceans are a vast source of natural substances. In them, we find various compounds with wide biotechnological and biomedical applicabilities. The exploitation of the sea as a renewable source of biocompounds can have a positive impact on the development of new systems and devices for biomedical applications. Marine polysaccharides are among the most abundant materials in the seas, which contributes to a decrease of the extraction costs, besides their solubility behavior in aqueous solvents and extraction media, and their interaction with other biocompounds. Polysaccharides such as alginate, carrageenan and fucoidan can be extracted from algae, whereas chitosan and hyaluronan can be obtained from animal sources. Most marine polysaccharides have important biological properties such as biocompatibility, biodegradability, and anti-inflammatory activity, as well as adhesive and antimicrobial actions. Moreover, they can be modified in order to allow processing them into various shapes and sizes and may exhibit response dependence to external stimuli, such as pH and temperature. Due to these properties, these biomaterials have been studied as raw material for the construction of carrier devices for drugs, including particles, capsules and hydrogels. The devices are designed to achieve a controlled release of therapeutic agents in an attempt to fight against serious diseases, and to be used in advanced therapies, such as gene delivery or regenerative medicine.