76 resultados para production functions


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RESUMO: As células dendríticas (CDs) são fundamentais na imunomodulação e iniciação de respostas imunes adaptativas, enquanto os ácidos siálicos (Sias) são potenciais imunomoduladores. Estas células expressam níveis elevados da sialiltransferase ST6Gal-1, que transfere Sias para a posição terminal de oligossacáridos. De facto, a maturação de CDs está associada a uma diminuição da sialilação na sua superfície celular. Apesar de ter função biológica desconhecida, a forma solúvel, extracelular de ST6Gal-1 aumenta em cancros e inflamação. Ainda assim, esta foi recentemente identificada como moduladora da hematopoiese. Considerando o importante papel das CDs na iniciação de respostas anticancerígenas, uma ligação entre a sialilação extrínseca induzida por ST6Gal-1 extracelular e o seu papel na modulação de CDs deve ser identificada. Neste trabalho hipotetizou-se que a sialilação α2,6 extrínseca de CDs diminui o seu perfil de maturação mediante ativação por lipopolissacarídeo (LPS). O objetivo principal foi sialilar extrinsecamente em α2,6 CDs da medula óssea de murganhos, avaliando os seus perfis de maturação e de libertação de citocinas, após estimulação com LPS (por Citometria de Fluxo e ELISA, respetivamente). Ao contrário da hipótese, o perfil celular não foi modulado, usando várias abordagens. Por outro lado, a consequência da falta de α2,6 Sias na maturação de CDs foi avaliada analisando: 1) CDs da medula óssea de murganhos tratadas com sialidase, 2) CDs da medula óssea e 3) CDs das vias aéreas, ambas de murganhos deficientes em ST6Gal-1, comparando com a estirpe selvagem. Estes resultados sugerem que a perta total de α2,6 Sias se relaciona com o aumento da expressão do complexo de histocompatibilidade principal de classe II. Apesar de controverso, é provável existirem mecanismos inerentes à ativação por LPS, reduzindo a eficácia de ST6Gal-1 extracelular. Por outro lado, a modificação no perfil de CDs de murganhos deficientes em ST6Gal-1 poderá relacionar-se com uma predisposição para um estado inflamatório severo. Com isto, o trabalho desenvolvido abriu futuras linhas de investigação, nomeadamente explorar outros fatores envolvidos na (de)sialilação α2,6 de CDs, podendo ter impacto em imunoterapia com uso de CDs.--------------------------ABSTRACT: Dendritic cells (DCs) are vital for immunomodulation and the initiation of adaptive immune responses, whereas sialic acids (Sias) are potential immunomodulators. These cells express high levels of sialyltransferase ST6Gal-1, responsible for transferring Sias to the terminal position of oligosaccharide chains. Indeed, DCs’ maturation is associated with decreased cell surface sialylation. Although its biological significance is unknown, the soluble, extracellular form of ST6Gal-1 increases in cancers and inflammation. However, extracellular ST6Gal-1 was recently identified as modulator of hematopoiesis. Considering that DCs play a crucial role in the initiation of a productive anti-cancer immune response, a link between extrinsic sialylation by the extracellular ST6Gal-1 on DC function needs to be investigated. We hypothesize that extrinsic α2,6 sialylation of DCs diminishes their maturation features upon lipopolysaccharide (LPS) stimulation. The main goal was to extrinsically α2,6 sialylate mice bone marrow derived DCs (BMDCs) and to evaluate their maturation and cytokine profiles upon LPS stimulation (by Flow Cytometry and ELISA, respectively). Unlike the hypothesis, we observed that BMDCs’ profile is not modulated, even using several approaches. In contrast, the consequence of lacking cell surface α2,6 Sias in DC maturation was assessed by analysing: 1) sialidase treated BMDCs, 2) BMDCs from mice lacking ST6Gal-1 and 3) DCs from mice airways, comparing wild type with ST6Gal-1 knockout mice. These results suggest that overall lack in α2,6 Sias is related with increased expression of major histocompatibility class II (MHC-II). Although appearing to be controversial findings, other intracellular mechanisms might be occurring upon LPS-induced BMDC activation, probably reducing extracellular ST6Gal-1 effect. In opposite, the modification observed in DC profile of ST6Gal-1 knockout mice might be related to its predisposition to a more severe inflammatory status. With this, the developed work opened future lines of investigation, namely exploring other factors involved in α2,6 (de)sialylation of DC, which might have influence in immunotherapy using DCs.

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Polyhydroxyalkanoates (PHA) production using mixed microbial cultures (MMC) requires a multi-stage process involving the microbial selection of PHA-storing microorganisms, typically operated in sequencing batch reactors (SBR), and an accumulation reactor. Since low-cost renewable feedstocks used as process feedstock are often nitrogen-deficient, nutrient supply in the selection stage is required to allow for microbial growth. In this context, the possibility to uncouple nitrogen supply from carbon feeding within the SBR cycle has been investigated in this study. Moreover, three different COD:N ratios (100:3.79, 100:3.03 and 100:2.43) were tested in three different runs which also allowed the study of COD:N ratio on the SBR performance. For each run, a synthetic mixture of acetic and propionic acids at an overall organic load rate of 8.5 gCOD L-1 d-1 was used as carbon feedstock, whereas ammonium sulfate was the nitrogen source in a lab-scale sequence batch reactor (SBR) with 1 L of working volume. Besides, a sludge retention time (SRT) of 1 d was used as well as a 6 h cycle length. The uncoupled feeding strategy significantly enhanced the selective pressure towards PHA-storing microorganisms, resulting in a two-fold increase in the PHA production (up to about 1.3 gCOD L-1). A high storage response was observed for the two runs with the COD:N ratios (gCOD:gN) of 100:3.79 and 100:3.03, whereas the lowest investigated nitrogen load resulted in very poor performance in terms of polymer production. In fact, strong nitrogen limitation caused fungi to grow and a very poor storage ability by microorganisms that thrived in those conditions. The COD:N ratio also affected the polymer composition, indeed the produced poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) showed a variable HV content (1-20 %, w/w) among the three runs, lessening as the COD:N increased. This clearly suggests the possibility to use the COD:N ratio as a tool for tuning polymer properties regardless the composition of the feedstock.

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RESUMO: A prevalência das doenças atópicas tem vindo a aumentar, em especial ao nível dos países ocidentalizados. Vários fatores têm sido apontados para justificar este aumento de prevalência,destacando-se o reduzido tamanho das famílias, o elevado uso de antibióticos, a melhoria das condições sanitárias, bem como a diminuição quer das infeções de helmintas, quer da contaminação orofecal. Alguns estudos têm também avaliado a influência do ambiente pré-natal no desenvolvimento de atopia e asma. Da análise da literatura, parece inegável a importância deste período para o desenvolvimento do sistema imunitário. Neste âmbito, a transmissão de atopia à descendência em mulheres atópicas, e concretamente com asma alérgica, poderá ser moldada desde este período. A possibilidade de identificar marcadores de risco precoces para o desenvolvimento de atopia poderá ser o primeiro passo para o desenvolvimento de estratégias de prevenção para os indivíduos em risco. Este trabalho pretendeu abordar o sistema imunitário materno de forma a enriquecer a sua caraterização desde o terceiro trimestre da gravidez até ao fim do puerpério. Para além da exploração de perfis celulares e citocínicos maternos (nos quais se incluiu sobretudo a avaliação de diferentes populações de células T e B, com funções efetoras e reguladoras), foi também considerada a sua eventual relação com o desenvolvimento de atopia nas crianças. Foram recrutadas 135 mulheres com critérios para serem incluídas num dos 4 grupos do estudo: grávidas atópicas – GA (n=24), não grávidas atópicas – NGA (n=32), grávidas saudáveis – GS (n=44) e não grávidas saudáveis – NGS (n=35). Foram caraterizadas por Citometria de Fluxo populações de leucócitos e linfócitos, com particular interesse nos perfis maturativos de linfócitos T e B, bem como nas subpopulações de células T e B reguladoras. Foi ainda efetuada uma análise funcional, para avaliar a capacidade de produção de citocinas pelos linfócitos T e B. Foram igualmente avaliadas as concentrações de citocinas séricas por ensaios imunoenzimáticos. Estes parâmetros imunológicos maternos foram acompanhados desde o terceiro trimestre de gestação, até depois do puerpério (primeiras 6 semanas pós parto), e aos seis meses de idade, foi efetuada uma avaliação clínica das crianças. As mulheres não grávidas atópicas apresentaram contagens celulares mais elevadas para a generalidade das populações leucocitárias e linfocitárias (em relação a mulheres não grávidas saudáveis). Destaca-se ainda uma maior presença de eosinófilos nas mulheres NGA (p=0,0009; teste de Mann-Whitney U), que tinham igualmente os seus compartimentos linfocitários T e B mais ricos em células de memória, em relação às mulheres NGS. Para os perfis de regulação, verificou-se que as células T reguladoras se encontravam percentualmente aumentadas (p≤0,003; teste de Mann-Whitney U), tal omo as células T produtoras de IL10 após estimulação (p≤0,03; teste de Mann-Whitney U) em mulheres NGA. Também se observou uma maior expressão de Foxp3 (p=0,0002; teste de Mann-Whitney U), e ainda a diminuição dos níveis séricos de IFN-γ nas mulheres NGA (p=0,0019; teste de Mann-Whitney U), em relação a mulheres NGS. De um modo geral, as alterações verificadas nos parâmetros imunológicos de mulheres grávidas atópicas no terceiro trimestre da gravidez foram semelhantes às observadas em mulheres grávidas saudáveis. Comparadas com mulheres NGA, nas mulheres grávidas atópicas ocorreu uma alteração substancial da fórmula leucocitária, com um importante incremento de neutrófilos (p<0,0001; teste de Mann-Whitney U) e diminuição dos valores das restantes populações leucocitárias. A diminuição nas contagens de linfócitos totais estendeu-se a grande parte das subpopulações linfocitárias caraterizadas. Nos compartimentos linfocitários T e B foi possível observar uma diminuição das subpopulações de células de memória. Verificou-se igualmente na gravidez uma menor expressão de Foxp3 em mulheres GA (p<0,0001; teste de Mann-Whitney U) e ainda menos células B CD24HiCD38Hi circulantes (p=0,0012; teste de Mann-Whitney U). Ocrreu ainda uma diminuição relativa das células T CD4 produtoras de IFN-γ em mulheres GA (p≤0,024; teste de Mann-Whitney U), e uma maior presença de células T CD8 produtoras de IL17 (p=0,0172; teste de Mann-Whitney U), em relação ao observado em mulheres NGA. Depois do puerpério, no compartimento T de mulheres do grupo GA, verificou-se um aumento das populações de células de memória. Em comparação com a gravidez, após o puerpério o compartimento B, apresentou nas mulheres GA um aumento significativo da subpopulação de células B de transição (p<0,0001; teste de Wilcoxon). Verificou-se, igualmente em mulheres GA após o puerpério, uma maior expressão de Foxp3 nas células T reguladoras (p<0,0001; teste de Wilcoxon) e o aumento das populações de células T circulantes produtoras de IFN-γ (p≤0,0234; teste de Wilcoxon). As modulações das populações T e B desde a gravidez até depois do puerpério ocorreram de forma semelhante nas mulheres dos grupos GA e GS. Apesar de as mulheres GA manterem um perfil imunológico próximo do das mulheres GS depois do puerpério, aconteceu também neste período um processo de reaproximação ao perfil observado nas mulheres NGA. As mulheres GA com manifestações de risco para atopia na descendência (comparadas com mulheres GA sem manifestações de risco para atopia na descendência até aos 6 meses de vida) apresentaram uma maior proporção de células T e menor proporção de células B, percentagens mais elevadas de células T CD8 de memória efetoras, de células B de transição e de células B CD24HiCD38Hi, e contagens mais baixas de células B de memória. Na avaliação destes parâmetros como marcadores de risco para o desenvolvimento de atopia verificou-se que o parâmetro com melhor desempenho foi a percentagem de células B de transição, com uma Odds-Ratio de 54,0 [IC 95%: 4,2-692,9; (p=0,0005)], sensibilidade de 90,0% [IC 95%: 55,5 – 99,8] e especificidade de 85,7% [IC 95%: 57,2 – 98,2]. Este estudo foi pioneiro em Portugal, e no mundo, no que se refere ao acompanhamento do compartimento linfocitário B circulante, abordando o seu perfil de maturação, e em particular as células B com funções reguladoras, desde a gravidez até ao fim do puerpério, em mulheres atópicas e não atópicas. A este nível, encontram-se estudos na literatura a documentar a alteração do compartimento B durante a gravidez. O presente trabalho reporta agora que alterações, como a diminuição do número de células B em circulação, são impostas também na mulher atópica. Em suma, demonstrou-se a existência de um perfil imunológico caraterístico em mulheres atópicas, que sofre alterações significativas durante a gravidez, tendendo os parâmetros imunológicos a normalizar após o puerpério. O compartimento T, para o qual a literatura é mais rica em estudos e abordagens, demonstrou também neste trabalho oscilações caraterísticas entre o período pré e pós-natal. Verificaram-se sobretudo variações nos compartimentos de células T de memória, sem grandes alterações ao nível das células Treg no que se refere à sua presença em circulação. Apenas a registar a menor expressão de Foxp3 nas células Treg durante a gestação observada em mulheres atópicas, tal como em mulheres saudáveis (como também já foi relatado em estudos anteriores). Apesar de muitos dos dados se encontrarem em concordância com a literatura, quer no que se refere às subpopulações de células de memória, quer no que se refere às células Treg, também se encontram resultados discordantes, por exemplo documentando variações numéricas nas células Treg em circulação em mulheres atópicas e mulheres atópicas grávidas. A importância de harmonizar protocolos e fenótipos, parece crucial na abordagem de estudos futuros. Ao nível do risco para a atopia na descendência de mulheres atópicas, acrescentou-se ainda a possibilidade de definir marcadores não invasivos para a criança, em particular as células B de transição. Estas células, cuja maior presença em circulação no recém-nascido foi recentemente associada com manifestações alérgicas subsequentes, são agora apontadas já na mulher atópica, grávida do terceiro trimestre, como um elemento de risco para o desenvolvimento de atopia. Os marcadores de risco descritos, para além de facilmente poderem vir a ser englobados no âmbito dos normais rastreios maternos durante a gravidez, apresentam ainda a vantagem da precocidade do diagnóstico, permitindo não só a possibilidade de prevenção pós-natal, mas estendendo esta possibilidade ao período gestacional.----------------------------ABSTRACT: The prevalence of atopic diseases has been increasing, especially in Westernized countries. Several factors have been suggested to justify this increase in prevalence, as the small size of families, the high use of antibiotics, the improvement in sanitation conditions, as well as the reduction of both helminth infections, and orofecal contamination. A few studies have adressed the influence of prenatal environment on the development of atopy and asthma. From literature, it seems undeniable the importance of the prenatal period for the development of the immune system. In this context, the transmission of atopy to the progeny in atopic women, and specifically in women with allergic asthma, can be modulated from this period on. The ability to detect early risk markers for the development of atopic diseases may be the first step in the development of prevention strategies for individuals at risk. This study aimed to approach the maternal immune system in order to enrich its characterization from the third trimester of pregnancy until the end of the puerperium period. In addition to the evaluation of the maternal cellular profiles (in which, mostly, diferente populations of T and B cells with effector and regulatory functions were included) and citokines, the relation between these profiles and the development of atopy in the progeny was also assessed. 135 women were recruited for this study, and fullfiled the inclusion criteria necessary to be included in one of the four groups preset: atopic pregnant women - GA (n = 24), atopic nonpregnant women - NGA (n = 32), healthy pregnant women - GS (n = 44) and healthy nonpregnant women - NGS (n = 35). Populations of leukocytes and lymphocytes, and particularty maturation profiles of T and B lymphocytes, as well as subpopulations of T and B cells with regulatory functions, were characterized by flow cytometry. Functional assays were also performed, to assess the ability of cytokine production by T and B lymphocytes. Serum cytokine concentrations were assessed as well by enzymatic immunoassays. These maternal imune parameters were monitored since the third trimester of pregnancy until the end of the puerperium period (first six weeks after delivery). A clinical evaluation of all the newborn children was performed at the age of six months. Non-atopic pregnant women presented higher cell counts for most leukocyte and lymphocyte populations (compared to healthy non-pregnant women). We should also highlight the increased presence of eosinophils in NGA women (p = 0,0009; Mann-Whitney U test). Again compared to NGS women, NGA women showed increased memory cells within the circulating T and B lymphocyte compartments. Considering the regulatory profiles, NGA women presented higher percentages of regulatory T cells (p≤0,003; Mann-Whitney U test) and IL10 producing T cells after stimulation (p≤0,03; Mann Whitney U), as well as increased expression of Foxp3 (p = 0,0002; Mann-Whitney U test), and also decreased serum levels of IFN-γ (p = 0,0019; test Mann-Whitney U test) compared to NGS women. In general, the changes observed in immune parameters of atopic pregnant women in the third trimester of gestation were similar to those observed in healthy pregnant women. Comparing pregnant and non-pregnant atopic women, an important change in leukocyte subsets was observed, with a significant increase of neutrophils (p <0,0001; Mann-Whitney U test) and the consequent diminution of the remaining leukocyte populations in the GA group. The decrease in total lymphocyte counts was extended to most of the lymphocyte subsets characterized. It was possible to detect a decrease in memory cell subsets within the T and B lymphocyte compartments, also. During pregnancy, a lower expression of Foxp3 was reported in GA women (p <0,0001; Mann-Whitney U test) and, besides, lesser CD24HiCD38Hi B cells were present in circulation in these women, compared to NGA women (p = 0,0012; Mann-Whitney U test). There was still a decrease in the percentages of IFN-γ-producing CD4 T cells in GA women (p≤0,024; Mann-Whitney U test) and a greater presence of IL17-producing CD8 T cells (p = 0,0172; Mann-Whitney U test), compared to the levels observed in NGA women. At the end of the puerperium, there was an increase in memory cell subpopulations within the T cell compartment of GA women. Compared with the pregnancy evaluation, after puerperium, the B cell compartment showed a significant increase in the transitional subpopulation (p<0,0001; Wilcoxon test), in GA women. Moreover, after puerperium, GA women exhibited a greater expression of Foxp3 in Treg cells (p <0,0001; Wilcoxon test) and there was an increase in circulating IFN-γ-producing T cells (p≤0,0234; Test Wilcoxon). The modulations of T and B cell subpopulations from pregnancy until the end of puerperium were similar in women of GA and GS groups. Although at the end of puerperium, GA women still kept an immune profile close the one observed in GS women, at this time point, there were also signs of rapprochement between the immune profiles observed in women of GA and NGA groups. GA women with atopic manifestations in the offspring (compared to GA women without atopic manifestations in the offspring at the age of 6 months) presented higher proportions of T cells and lower proportions of B cells, higher percentages of effector memory CD8 T cells, transitional B cells and CD24HiCD38Hi B cells, and, finally, lower absolute counts of memory B cells. In the evaluation of these parameters as risk markers for the development of atopy, the parameter which presented the best performance was the percentage of transitional B cells, with an Oddsratio of 54,0 [95% CI: 4,2 to 692,9; (p = 0,0005)], sensitivity of 90,0% [95% CI: 55,5 to 99,8] and a specificity of 85,7% [95% CI: 57,2 to 98,2]. This study was a pioneer in Portugal, and in the world, in what concerns the monitoring of the circulating B cell compartment, addressing not only the maturation profile, but, in particular, B cells with regulatory functions, from pregnancy untill after puerperium, in atopic and non-atopic women. Literature presents evidence of a typical change in circulating B cells during pregnancy. This study now reports that changes, such as the decrease in the number of circulating B cells,/ are also imposed by pregnancy in atopic woman. In brief, it demonstrated the existence of a characteristic immune profile in atopic women, which undergoes significant alterations during pregnancy, tending to normalize after the puerperium. As for the T cell compartment, for which the literature is richer in studies and approaches, this study also showed characteristic fluctuations between the pre- and postnatal periods. There were variations mostly in the memory subsets within the T cell compartment, without major changes in regulatory T cells regarding their presence in circulation. Only the expression of Foxp3 in Treg cells presented lower levels during pregnancy, in both atopic and healthy women (as previously reported in other studies). Although much of the data now reported are in agreement with literature, regarding either memory cell subsets or regulatory T cells, there are also conflicting results, for example documenting changes in the numbers of regulatory T cells circulating in atopic pregnant and atopic non-pregnant women. The importance of harmonizing protocols and phenotypes seems crucial for the establishement of future studies. Considering the risk for atopy in the offspring of atopic women, this study added the possibility to define non-invasive markers for the child, in particular transitional B cells. These cells, whose greater presence in circulation in newborns has recently been associated with subsequent allergy development, are here identified in atopic pregnant women in the third trimester of gestation as a risk factor in the development of atopy in their progeny. The risk factors described, besides having the capacity to easily become integrated within the normal maternal screening protocols during pregnancy, also have the advantage of an early diagnosis, allowing not only the possibility of postnatal prevention but extending this possibility to the prenatal period.

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RESUMO: Clostridium difficile é presentemente a principal causa de doença gastrointestinal associada à utilização de antibióticos em adultos. C. difficile é uma bactéria Gram-positiva, obrigatoriamente anaeróbica, capaz de formar endósporos. Tem-se verificado um aumento dos casos de doença associada a C. difficile com sintomas mais severos, elevadas taxas de morbilidade, mortalidade e recorrência, em parte, devido à emergência de estirpes mais virulentas, mas também devido à má gestão do uso de antibióticos. C. difficile produz duas toxinas, TcdA e TcdB, que são os principais fatores de virulência e responsáveis pelos sintomas da doença. Estas são codificadas a partir do Locus de Patogenicidade (PaLoc) que codifica ainda para um regulador positivo, TcdR, uma holina, TcdE, e um regulador negativo, TcdC. Os esporos resistentes ao oxigénio são essenciais para a transmissão do organismo e recorrência da doença. A expressão dos genes do PaLoc ocorre em células vegetativas, no final da fase de crescimento exponencial, e em células em esporulação. Neste trabalho construímos dois mutantes de eliminação em fase dos genes tcdR e tcdE. Mostrámos que a auto-regulação do gene tcdR não é significativa. No entanto, tcdR é sempre necessário para a expressão dos genes presentes no PaLoc. Trabalho anterior mostrou que, com a exceção de tcdC, os demais genes do PaLoc são expressos no pré-esporo. Mostrámos aqui que TcdA é detectada à superfície do esporo maduro e que a eliminação do tcdE não influencia a acumulação de TcdA no meio de cultura ou em associação às células ou ao esporo. Estas observações têm consequências para o nosso entendimento do processo infecioso: sugeremque o esporo possa ser também um veículo para a entrega da toxina nos estágios iniciais da infecção, que TcdA possa ser libertada durante a germinação do esporo, e que o esporo possa utilizar o mesmo receptor reconhecido por TcdA para a ligação à mucosa do cólon.---------------------------ABSTRACT: Clostridium difficile is currently the major cause of antibiotic-associated gastrointestinal diseases in adults. This is a Gram-positive bacterium, endospore-forming and an obligate anaerobe that colonizes the gastrointestinal tract. Recent years have seen a rise in C. difficile associated disease (CDAD) cases, associated with more severe disease symptoms, higher rates of morbidity, mortality and recurrence, which were mostly caused due to the emergence of “hypervirulent” strains but also due to changing patterns of antibiotics use. C. difficile produces two potent toxins, TcdA and TcdB, which are the main virulence factors and the responsible for the disease symptoms. These are codified from a Pathogenicity Locus (PaLoc), composed also by the positive regulator, TcdR, the holin-like protein, TcdE, and a negative regulator, TcdC. Besides the toxins, the oxygen-resistant spores are also essential for transmission of the organism through diarrhea; moreover, spores can accumulate in the environment or in the host, which will cause disease recurrence. The expression of the PaLoc genes occurs in vegetative cells, at the end of the exponential growth phase, and in sporulating cells. In this work, we constructed two in-frame deletion mutants of tcdR and tcdE. We showed that the positive auto regulation of tcdR is not significant. However, tcdR is always necessary for the expression of the PaLoc genes. A previous work showed that, except tcdC, all the PaLoc genes are expressed in the forespore. Here, we detected TcdA at the spore surface. Furthermore, we showed that the in-frame deletion of tcdE does not affect the accumulation of TcdA in the culture medium or in association with cells or spores. This data was important for us to conclude about the infeccious process: it suggests that the spore may be the vehicle for the delivery of TcdA in early stages of infection, that TcdA may be released during spores germination and that this spore may use the same receptor recognized by TcdA to bind to the colonic mucosa.

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This thesis was focused on the production, extraction and characterization of chitin:β-glucan complex (CGC). In this process, glycerol byproduct from the biodiesel industry was used as carbon source. The selected CGC producing yeast was Komagataella pastoris (formerly known as Pichia pastoris), due the fact that to achieved high cell densities using as carbon source glycerol from the biodiesel industry. Firstly, a screening of K. pastoris strains was performed in shake flask assays, in order to select the strain of K. pastoris with better performance, in terms of growth, using glycerol as a carbon source. K. pastoris strain DSM 70877 achieved higher final cell densities (92-97 g/l), using pure glycerol (99%, w/v) and in glycerol from the biodiesel industry (86%, w/v), respectively, compared to DSM 70382 strain (74-82 g/l). Based on these shake flask assays results, the wild type DSM 70877 strain was selected to proceed for cultivation in a 2 l bioreactor, using glycerol byproduct (40 g/l), as sole carbon source. Biomass production by K. pastoris was performed under controlled temperature and pH (30.0 ºC and 5.0, respectively). More than 100 g/l biomass was obtained in less than 48 h. The yield of biomass on a glycerol basis was 0.55 g/g during the batch phase and 0.63 g/g during the fed-batch phase. In order to optimize the downstream process, by increasing extraction and purification efficiency of CGC from K. pastoris biomass, several assays were performed. It was found that extraction with 5 M NaOH at 65 ºC, during 2 hours, associated to neutralization with HCl, followed by successive washing steps with deionised water until conductivity of ≤20μS/cm, increased CGC purity. The obtained copolymer, CGCpure, had a chitin:glucan molar ratio of 25:75 mol% close to commercial CGC samples extracted from A. niger mycelium, kiOsmetine from Kitozyme (30:70 mol%). CGCpure was characterized by solid-state Nuclear Magnetic Resonance (NMR) spectroscopy and Differential Scanning Calorimetry (DCS), revealing a CGC with higher purity than a CGC commercial (kiOsmetine). In order to optimize CGC production, a set of batch cultivation experiments was performed to evaluate the effect of pH (3.5–6.5) and temperature (20–40 ºC) on the specific cell growth rate, CGC production and polymer composition. Statistical tools (response surface methodology and central composite design) were used. The CGC content in the biomass and the volumetric productivity (rp) were not significantly affected within the tested pH and temperature ranges. In contrast, the effect of pH and temperature on the CGC molar ratio was more pronounced. The highest chitin: β-glucan molar ratio (> 14:86) was obtained for the mid-range pH (4.5-5.8) and temperatures (26–33 ºC). The ability of K. pastoris to synthesize CGC with different molar ratios as a function of pH and temperature is a feature that can be exploited to obtain tailored polymer compositions.(...)

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Different oil-containing substrates, namely, used cooking oil (UCO), fatty acids-byproduct from biodiesel production (FAB) and olive oil deodorizer distillate (OODD) were tested as inexpensive carbon sources for the production of polyhydroxyalkanoates (PHA) using twelve bacterial strains, in batch experiments. The OODD and FAB were exploited for the first time as alternative substrates for PHA production. Among the tested bacterial strains, Cupriavidus necator and Pseudomonas resinovorans exhibited the most promising results, producing poly-3-hydroxybutyrate, P(3HB), form UCO and OODD and mcl-PHA mainly composed of 3-hydroxyoctanoate (3HO) and 3-hydroxydecanoate (3HD) monomers from OODD, respectively. Afterwards, these bacterial strains were cultivated in bioreactor. C. necator were cultivated in bioreactor using UCO as carbon source. Different feeding strategies were tested for the bioreactor cultivation of C. necator, namely, batch, exponential feeding and DO-stat mode. The highest overall PHA productivity (12.6±0.78 g L-1 day-1) was obtained using DO-stat mode. Apparently, the different feeding regimes had no impact on polymer thermal properties. However, differences in polymer‟s molecular mass distribution were observed. C. necator was also tested in batch and fed-batch modes using a different type of oil-containing substrate, extracted from spent coffee grounds (SCG) by super critical carbon dioxide (sc-CO2). Under fed-batch mode (DO-stat), the overall PHA productivity were 4.7 g L-1 day-1 with a storage yield of 0.77 g g-1. Results showed that SCG can be a bioresource for production of PHA with interesting properties. Furthermore, P. resinovorans was cultivated using OODD as substrate in bioreactor under fed-batch mode (pulse feeding regime). The polymer was highly amorphous, as shown by its low crystallinity of 6±0.2%, with low melting and glass transition temperatures of 36±1.2 and -16±0.8 ºC, respectively. Due to its sticky behavior at room temperature, adhesiveness and mechanical properties were also studied. Its shear bond strength for wood (67±9.4 kPa) and glass (65±7.3 kPa) suggests it may be used for the development of biobased glues. Bioreactor operation and monitoring with oil-containing substrates is very challenging, since this substrate is water immiscible. Thus, near-infrared spectroscopy (NIR) was implemented for online monitoring of the C. necator cultivation with UCO, using a transflectance probe. Partial least squares (PLS) regression was applied to relate NIR spectra with biomass, UCO and PHA concentrations in the broth. The NIR predictions were compared with values obtained by offline reference methods. Prediction errors to these parameters were 1.18 g L-1, 2.37 g L-1 and 1.58 g L-1 for biomass, UCO and PHA, respectively, which indicates the suitability of the NIR spectroscopy method for online monitoring and as a method to assist bioreactor control. UCO and OODD are low cost substrates with potential to be used in PHA batch and fed-batch production. The use of NIR in this bioprocess also opened an opportunity for optimization and control of PHA production process.

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Materials engineering focuses on the assembly of materials´ properties to design new products with the best performance. By using sub-micrometer size materials in the production of composites, it is possible to obtain objects with properties that none of their compounds show individually. Once three-dimensional materials can be easily customized to obtain desired properties, much interest has been paid to nanostructured poly-mers in order to build biocompatible devices. Over the past years, the thermosensitive microgels have become more common in the framework of bio-materials with potential applicability in therapy and/or diagnostics. In addition, high aspect ratio biopolymers fibers have been produced using the cost-effective method called electrospinning. Taking advantage of both microgels and electrospun fibers, surfaces with enhanced functionalities can be obtained and, therefore employed in a wide range of applications. This dissertation reports on the confinement of stimuli-responsive microgels through the colloidal electro-spinning process. The process mainly depends on the composition, properties and patterning of the precur-sor materials within the polymer jet. Microgels as well as the electrospun non-woven mats were investigated to correlate the starting materials with the final morphology of the composite fibers. PNIPAAm and PNIPAAm/Chitosan thermosensitive microgels with different compositions were obtained via surfactant free emulsion polymerization (SFEP) and characterized in terms of chemical structure, morphology, thermal sta-bility, swelling properties and thermosensitivity. Finally, the colloidal electrospinning method was carried out from spinning solutions composed of the stable microgel dispersions (up to a concentration of about 35 wt. % microgels) and a polymer solution of PEO/water/ethanol mixture acting as fiber template solution. The confinement of microgels was confirmed by Scanning Electron Microscopy (SEM). The electrospinning process was statistically analysed providing the optimum set of parameters aimed to minimize the fiber diameter, which give rise to electrospun nanofibers of PNIPAAm microgels/PEO with a mean fiber diameter of 63 ± 25 nm.

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Cancer remains as one of the top killing diseases in first world countries. It’s not a single, but a set of various diseases for which different treatment approaches have been taken over the years. Cancer immunotherapy comes as a “new” breath on cancer treatment, taking use of the patients’ immune system to induce anti-cancer responses. Dendritic Cell (DC) vaccines use the extraordinary capacity of DCs’ antigen presentation so that specific T cell responses may be generated against cancer. In this work, we report the ex vivo generation of DCs from precursors isolated from clinical-grade cryopreserved umbilical cord blood (UCB) samples. After the thawing protocol for cryopreserved samples was optimized, the generation of DCs from CD14+ monocytes, i.e., moDCs, or CD34+ hematopoietic stem cells (HSCs), i.e, CD34-derived DCs, was followed and their phenotype and function evaluated. Functional testing included the ability to respond to maturation stimuli (including enzymatic removal of surface sialic acids), Ovalbumin-FITC endocytic capacity, cytokine secretion and T cell priming ability. In order to evaluate the feasibility of using DCs derived from UCB precursors to induce immune responses, they were compared to peripheral blood (PB) moDCs. We observed an increased endocytosis capacity after moDCs were differentiated from monocyte precursors, but almost 10-fold lower than that of PB moDCs. Maturation markers were absent, low levels of inflammatory cytokines were seen and T cell stimulatory capacity was reduced. Sialidase enzymatic treatment was able to mature these cells, diminishing endocytosis and promoting higher T cell stimulation. CD34-derived DCs showed higher capacity for both maturation and endocytic capacity than moDCs. Although much more information was acquired from moDCs than from CD34-derived DCs, we conclude the last as probably the best suited for generating an immune response against cancer, but of course much more research has to be performed.

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Nowadays manufacturing companies are facing a more challenging environment due to the unpredictability of the markets in order to survive. Enterprises need to keep innovating and deliver products with new internal or external characteristics. There are strategies and solutions, to different organisational level from strategic to operational, when technology is growing faster in operational level, more specifically in manufacturing system. This means that companies have to deal with the changes of the emergent manufacturing systems while it can be expensive and not easy to be implement. An agile manufacturing system can help to cope with the markets changeability. Evolvable Production Systems (EPS) is an emergent paradigm which aims to bring new solutions to deal with changeability. The proposed paradigm is characterised by modularity and intends to introduce high flexibility and dynamism at shop floor level through the use of the evolution of new computational devices and technology. This new approach brings to enterprises the ability to plug and unplug new devices and allowing fast reformulation of the production line without reprogramming. There is no doubt about the advantages and benefits of this emerging technology but the feasibility and applicability is still under questioned. Most researches in this area are focused on technical side, explaining the advantages of those systems while there are no sufficient works discussing the implementation risks from different perspective, including business owner. The main objective of this work is to propose a methodology and model to identify, classify and measure potential risk associated with an implementation of this emergent paradigm. To quantify the proposed comprehensive risk model, an Intelligent Decision system is developed employing Fuzzy Inference System to deal with the knowledge of experts, as there are no historical data and sufficient research on this area. The result can be the vulnerability assessment of implementing EPS technology in manufacturing companies when the focus is more on SMEs. The present dissertation used the experts’ knowledge and experiences, who were involved in FP7 project IDEAS, which is one of the leading projects in this area.

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Due to the prospective partial replacement of fossil fuels by biodiesel, its production has continuously grown in the last decade. The increase in global biodiesel production demands the development of sustainable applications of its main by-product, crude glycerol. In this thesis the feasibility of producing polyhydroxyalkanoates (PHA) by a mixed microbial community using crude glycerol as feedstock was investigated. Several incubation conditions were studied in order to maximize PHA production. The microbial population selected under aerobic dynamic feeding conditions had the ability to consume both major carbon fractions present in the crude, glycerol and methanol. Two biopolymers were stored, poly-3-hydroxybutyrate (PHB) and glucose biopolymer (GB), apparently using glycerol as the only carbon source for their production. The microbial enrichment obtained was able to accumulate up to 47% PHB of cell dry weight with a productivity of 0.24 g HA/L d. The overall PHA yield on total substrate consumed (0.32 g COD HB/g COD crude glycerol) was in the middle range of those reported in literature (0.08–0.58 g COD PHA/g COD real waste). The increase of temperature from 23ºC to 30ºC favored the culture fraction that accumulates glucose biopolymer with a maximum accumulation value of 25% of cell dry weight, which is an interesting value but not the main goal of this thesis. The fact that crude glycerol can be used to produce PHA without any pre-treatment step, makes the overall production process economically more competitive, reducing polymer final cost. This was the first study that demonstrates the valorization of the glycerol fraction present in the crude glycerol into PHA using an aerobic mixed microbial consortium.

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Polysaccharides are gaining increasing attention as potential environmental friendly and sustainable building blocks in many fields of the (bio)chemical industry. The microbial production of polysaccharides is envisioned as a promising path, since higher biomass growth rates are possible and therefore higher productivities may be achieved compared to vegetable or animal polysaccharides sources. This Ph.D. thesis focuses on the modeling and optimization of a particular microbial polysaccharide, namely the production of extracellular polysaccharides (EPS) by the bacterial strain Enterobacter A47. Enterobacter A47 was found to be a metabolically versatile organism in terms of its adaptability to complex media, notably capable of achieving high growth rates in media containing glycerol byproduct from the biodiesel industry. However, the industrial implementation of this production process is still hampered due to a largely unoptimized process. Kinetic rates from the bioreactor operation are heavily dependent on operational parameters such as temperature, pH, stirring and aeration rate. The increase of culture broth viscosity is a common feature of this culture and has a major impact on the overall performance. This fact complicates the mathematical modeling of the process, limiting the possibility to understand, control and optimize productivity. In order to tackle this difficulty, data-driven mathematical methodologies such as Artificial Neural Networks can be employed to incorporate additional process data to complement the known mathematical description of the fermentation kinetics. In this Ph.D. thesis, we have adopted such an hybrid modeling framework that enabled the incorporation of temperature, pH and viscosity effects on the fermentation kinetics in order to improve the dynamical modeling and optimization of the process. A model-based optimization method was implemented that enabled to design bioreactor optimal control strategies in the sense of EPS productivity maximization. It is also critical to understand EPS synthesis at the level of the bacterial metabolism, since the production of EPS is a tightly regulated process. Methods of pathway analysis provide a means to unravel the fundamental pathways and their controls in bioprocesses. In the present Ph.D. thesis, a novel methodology called Principal Elementary Mode Analysis (PEMA) was developed and implemented that enabled to identify which cellular fluxes are activated under different conditions of temperature and pH. It is shown that differences in these two parameters affect the chemical composition of EPS, hence they are critical for the regulation of the product synthesis. In future studies, the knowledge provided by PEMA could foster the development of metabolically meaningful control strategies that target the EPS sugar content and oder product quality parameters.

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This study investigates three questions related to medical practice variation. First, it tests whether average length of stay across Portuguese National Health Service hospitals varies when controlling for differences in patients’ characteristics. Second, it looks at hospital-level characteristics in order to find out whether these are able to explain differences in average length of stay across hospitals. Finally, it proposes a best practice average length of stay for each of the six episodes of care analyzed. To perform the analysis, administrative data from the Diagnosis-Related groups’ data set for the year of 2012 was used. A replication of a hierarchical two-stage model with hospital fixed effects was carried out. The results show that after taking patients’ characteristics into account, variation in average length of stay across hospitals exists. This variation cannot be explained by hospital-level characteristics.

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Polyhydroxyalkanoates (PHAs) are natural biologically synthesized polymers that have been the subject of much interest in the last decades due to their biodegradability. Thus far, its microbial production is associated with high operational costs, which increases PHA prices and limits its marketability. To address this situation, this thesis’ work proposes the utilization of photosynthetic mixed cultures (PMC) as a new PHA production system that may lead to a reduction in operational costs. In fact, the operational strategies developed in this work led to the selection of PHA accumulating PMCs that, unlike the traditional mixed microbial cultures, do not require aeration, thus permitting savings in this significant operational cost. In particular, the first PHA accumulating PMC tested in this work was selected under non-aerated illuminated conditions in a feast and famine regime, being obtained a consortium of bacteria and algae, where photosynthetic bacteria accumulated PHA during the feast phase and consumed it for growth during the famine phase, using the oxygen produced by algae. In this symbiotic system, a maximum PHA content of 20% cell dry weight (cdw) was reached, proving for the first time, the capacity of a PMC to accumulate PHA. During adaptation to dark/light alternating conditions, the culture decreased its algae content but maintained its viability, achieving a PHA content of 30% cdw. Also, the PMC was found to be able to utilize different volatile fatty acids for PHA production, accumulating up to 20% cdw of a PHA co-polymer composed of 3-hydroxybutyrate (3HB) and 3-hydroxyvalerate (HV) monomers. Finally, a new selective approach for the enrichment of PMCs in PHA accumulating bacteria was tested. Instead of imposing a feast and famine regime, a permanent feast regime was used, thus selecting a PMC that was capable of simultaneously growing and accumulating PHA, being attained a maximum PHA content of 60% cdw, the highest value reported for a PMC thus far. The results presented in this thesis prospect the utilization of cheap, VFA-rich fermented wastes as substrates for PHA production, which combined with this new photosynthetic technology opens up the possibility for direct sunlight illumination, leading to a more cost-effective and environmentally sustainable PHA production process.

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Microbial electrolysis cells (MECs) are an innovative and emerging technique based on the use of solid-state electrodes to stimulate microbial metabolism for wastewater treatment and simultaneous production of value-added compounds (such as methane). This research studied the performance of a two-chamber MEC in terms of organic matter oxidation (at the anode) and methane production (at the cathode). MEC‟s anode had been previously inoculated with an activated sludge, whereas the cathode chamber inoculum was an anaerobic sludge (containing methanogenic microorganisms). During the experimentation, the bioanode was continuously fed with synthetic solutions in anaerobic basal medium, at an organic load rate (OLR) of around 1 g L-1 d-1, referred to the chemical oxygen demand (COD). At the beginning (Run I), the feeding solution contained acetate and subsequently (Run II) it was replaced with a more complex solution containing soluble organic compounds other than acetate. For both conditions, the anode potential was controlled at -0.1 V vs. standard hydrogen electrode, by means of a potentiostat. During Run I, over 80% of the influent acetate was anaerobically oxidized at the anode, and the resulting electric current was recovered as methane at the cathode (with a cathode capture efficiency, CCE, accounting around 115 %). The average energy efficiency of the system (i.e., the energy captured into methane relative to the electrical energy input) under these conditions was over 170%. However, reactor‟s performance decreased over time during this run. Throughout Run II, a substrate oxidation over 60% (on COD basis) was observed. The electric current produced (57% of coulombic efficiency) was also recovered as methane, with a CCE of 90%. For this run the MEC‟s average energy efficiency accounted for almost 170 %. During all the experimentation, a very low biomass growth was observed at the anode whereas ammonium was transferred through the cationic membrane and concentrated at the cathode. Tracer experiments and scanning electron microscopy analyses were also carried out to gain a deeper insight into the reactor performance and also to investigate the possible reasons for partial loss of performance. In conclusion, this research suggests the great potential of MEC to successfully treat low-strength wastewaters, with high energy efficiency and very low sludge production.