61 resultados para Dextransucrase assays


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The main objective of this thesis was the development of polymeric structures from the dissolution of FucoPol, a bacterial exopolysaccharide (EPS), in a biocompatible ionic liquid, choline acetate. The FucoPol was produced by the bacteria Enterobacter A47 using glycerol as carbon source at controlled temperature and pH (30ºC and 7, respectively). At the end of 3 days it was produced 7 g/L of FucoPol. The net yield of Fucopol in glycerol (YP/S) was 0.22 g/g and the maximum productivity 2.37 g/L.d This polymer was characterized about its composition in sugars and acyl groups (by High-Performance Liquid Chromatography - HPLC), containing fucose (35 % mol), galactose (21 % mol), glucose (29 % mol), rhamnose (3% mol) and glucuronic acid (12% mol) as well as acetate (14.28 % mol), pyruvate (2.15 % mol) and succinate (1.80 % mol). Its content of water and ash was 15% p/p and 2% p/p, respectively, and the chemical bonds (determined by Infrared Spectroscopy - FT-IR) are consistent to the literature reports. However, due to limitations in Differential Scanning Calorimetry (DSC) equipment it was not possible to determine the glass transition temperature. In turn, the ionic liquid showed the typical behavior of a Newtonian fluid, glass transition temperature (determined by DSC) -98.03ºC and density 1.1031 g/cm3. The study of chemical bonds by FT-IR showed that amount of water (8.80%) influenced the visualization of the bands predicted to in view of their chemical structure. After the dissolution of the FucoPol in the ionic liquid at different temperatures (50, 60, 80 and 100 ° C) it was promoted the removal of this by the phase inversion method using deionized water as a solvent, followed by drying in an oven at 70 ° C. The mixtures before and after the phase inversion method were characterized through the studies mentioned above. In order to explore possible application field’s biocompatibility assays and collage on balsa wood tests were performed. It was found that the process of washing with water by the phase inversion method was not totally effective in removing the biocompatible ionic liquid, since all FucoPol – IL mixtures still contained ionic liquid in their composition as can be seen by the DSC results and FT-IR. In addition, washing the mixtures with water significantly altered the composition of FucoPol. However, these mixtures, that developed a viscous behavior typical of a non-Newtonian fluid (shear-thinning), have the potential to be applied in the biomedical field as well as biological glues.

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With the projection of an increasing world population, hand-in-hand with a journey towards a bigger number of developed countries, further demand on basic chemical building blocks, as ethylene and propylene, has to be properly addressed in the next decades. The methanol-to-olefins (MTO) is an interesting reaction to produce those alkenes using coal, gas or alternative sources, like biomass, through syngas as a source for the production of methanol. This technology has been widely applied since 1985 and most of the processes are making use of zeolites as catalysts, particularly ZSM-5. Although its selectivity is not especially biased over light olefins, it resists to a quick deactivation by coke deposition, making it quite attractive when it comes to industrial environments; nevertheless, this is a highly exothermic reaction, which is hard to control and to anticipate problems, such as temperature runaways or hot-spots, inside the catalytic bed. The main focus of this project is to study those temperature effects, by addressing both experimental, where the catalytic performance and the temperature profiles are studied, and modelling fronts, which consists in a five step strategy to predict the weight fractions and activity. The mind-set of catalytic testing is present in all the developed assays. It was verified that the selectivity towards light olefins increases with temperature, although this also leads to a much faster catalyst deactivation. To oppose this effect, experiments were carried using a diluted bed, having been able to increase the catalyst lifetime between 32% and 47%. Additionally, experiments with three thermocouples placed inside the catalytic bed were performed, analysing the deactivation wave and the peaks of temperature throughout the bed. Regeneration was done between consecutive runs and it was concluded that this action can be a powerful means to increase the catalyst lifetime, maintaining a constant selectivity towards light olefins, by losing acid strength in a steam stabilised zeolitic structure. On the other hand, developments on the other approach lead to the construction of a raw basic model, able to predict weight fractions, that should be tuned to be a tool for deactivation and temperature profiles prediction.

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DNA may fold into a diversity of structures and topologies such as duplexes and triplexes. Some specific guanine-rich DNA sequences may even fold into a higher order structures denominated guanine G-quadruplexes (G4). These G-quadruplex forming sequences have shown biological interest since were found in telomeres and in promoter region of oncogenes. Thus, these G4 forming sequences have been explored as therapeutic targets for cancer therapy, since G4 formation was demonstrated to inhibit RNA-polymerase and telomerase activity. However, the G4 structures are transient and are only formed under specific conditions. Hence the main objective of this work is to develop new G4-specific ligands which may potentially find applications in the therapeutic area. Several potential G4-binding ligands were synthesized and characterized. The synthesis of these compounds consisted on a procedure based on van Leusen chemistry and a cross-coupling reaction through C-H activation, affording phenanthroline compounds (Phen-1, 50%; Phen-2, 20%), phenyl (Iso-1, 61%; Iso-2, 21%; Ter-1, 85%; Ter-2, 35%), and quinolyl (Quin-1, 85%; Quin-2, 45%) compounds. Screening assays for selecting the potential G4 compounds were performed by FRET-melting, G4-FID, CD-melting and DSF. Qualitative biophysical studies were performed by fluorescence and CD spectroscopy. Two high-specific G-quadruplex ligands, Phen-1 and Phen-2, were found to effectively bind telomeric and c-myc G4 structures. Phen-1 was found to stabilize parallel telomeric 22AG and c-myc sequence by 4.1 and 4.3 ˚C, respectively. Phen-2 also displayed high affinity towards 22AG (

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RESUMO:A artrite psoriática (AP) é uma doença inflamatória crónica caracterizada por várias manifestações nas articulações, nas enteses e na pele. A formação de novo osso após inflamação nas enteses é um dos aspetos mais intrigantes desta doença. Os mecanismos celulares e moleculares deste processo ainda não são completamente conhecidos. Este estudo tem como objetivo compreender melhor os mecanismos subjacentes à formação e reabsorção óssea, bem como o efeito de anti-inflamatórios não esteroides (AINEs) nestes processos. Para atingir este objetivo foram quantificados biomarcadores do metabolismo ósseo e citocinas inflamatórias em doentes AP, antes e após terapêutica com AINEs. Os biomarcadores selecionados foram marcadores de remodelação óssea como CTX-I e P1NP, fatores de diferenciação e ativação de osteoclastos como o RANKL e a OPG, inibidores da via de sinalização Wnt, nomeadamente o DKK-1 e a SOST e ainda citocinas pro-inflamatórias como a IL-22 e a IL-23 e a prostaglandina PGE2. Neste contexto foram também estabelecidas culturas celulares de monócitos, isoladas de doentes AP e de controlos saudáveis. Os monócitos foram cultivados in vitro em condições não estimuladas e estimuladas e realizados dois ensaios funcionais: coloração com TRAP e ensaio de reabsorção. Foi observada uma diminuição nos níveis séricos de CTX-I e OPG em doentes AP em relação aos controlos. De igual forma os níveis séricos de SOST encontram-se significativamente mais baixos, em comparação com os controlos saudáveis. Estes valores de SOST são semelhantes aos dos doentes com espondilite anquilosante (EA), documentados anteriormente. Os ensaios com osteoclastos confirmaram a necessidade da presença de RANKL para estimulação da osteoclastogénese e que o celecoxib parece ter um papel inibitório neste processo. Os resultados obtidos sugerem que a população de doentes com AP analisados têm baixos níveis de reabsorção óssea e alguma atividade na formação óssea. --------------------------- ABSTRACT: Psoriatic arthritis (PsA) is a chronic inflammatory disease characterized by several manifestations involving the joints, enthesis and the skin. New bone formation after inflammation at enthesis site has been one of the most intriguing aspects of the disease. Cellular and molecular mechanisms in this process are still not completely understood. This study aims to understand better the mechanisms underlying bone formation and resorption and the effect of non-steroid anti-inflammatory drugs (NSAIDs) in these processes. To access that, biomarkers of bone metabolism and inflammatory cytokines were measured in PsA patients’ serum before and after NSAID therapy. These selected biomarkers were bone turnover markers such as CTX-I and P1NP, osteoclast differentiation and activation factors RANKL and OPG, Wnt pathway inhibitors DKK-1 and SOST and pro-inflammatory cytokines IL-22, IL-23 and prostaglandin PGE2. In this context monocyte cell culture was also established after PBMC isolation from PsA patients and healthy controls. Monocytes were cultured in vitro under unstimulated and stimulated conditions and two functional assays were performed: TRAP staining and resorption pit assay. It was demonstrated that CTX-I and OPG serum levels in PsA patients were lower than controls. SOST levels were extremely decreased in comparison with controls, resembling the ankylosing spondylitis patients results already documented. Osteoclast assays confirmed the need of RANKL in stimulating osteoclastogenesis and that celecoxib seems to have an inhibitor role in this process. The results obtained suggest that PsA patient population analyzed in this study have low bone resorption levels and some bone formation activity.

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RESUMO: O cancro do pulmão (LC), uma das principais causas de mortalidade relacionada com cancro em Portugal, pode levar à formação de metástases hematogénicas. A adesão das células tumorais ao endotélio é considerada um dos passos fundamentais envolvidos na metástase. Em células sanguíneas, esta adesão é mediada por ligandos de E-selectina (E-SL), glicoproteínas ou glicolípidos decorados principalmente com sialyl-Lewis x (sLex) e sialyl-Lewis a (sLea). Tem sido descrito a expressão destes antigénios em LC, contudo o seu papel funcional em permitir a adesão das células de LC ao endotélio é ainda pouco compreendido. Foram analisadas amostras emparelhadas normais e tumorais de pacientes com cancro de pulmão de não-pequenas células (NSCLC) e três linhas celulares de LC. Immunoblotting assays com anti-sLex/sLea e molécula quimérica de E-selectina demonstraram que tecidos tumorais de LC sobreexpressam significativamente E-SL e resultados de citometria de fluxo demonstraram uma expressão elevada de E-SL nas linhas celulares. Para compreender o mecanismo da sobreexpressão de E-SL em tecidos tumorais e linhas celulares de LC, foi analisada a expressão de genes envolvidos na biossíntese de E-SL, nomeadamente FUT3, FUT4, FUT6, FUT7, ST3GAL3, ST3GAL4, ST3GAL6, β4GALT1, GCNT1 e GALNT3. Observou-se a sobreexpressão das fucosiltransferases FUT3, FUT6 e FUT7 em tecidos tumorais de LC e FUT3 em linhas celulares de LC, sendo que neste último, esta expressão é correlacionada com um aumento da adesão das células de LC às selectinas endoteliais. Foi observado que uma baixa expressão de FUT4 em tecidos tumorais está associada com estadios menos avançados de NSCLC. Foram analisadas ainda proteínas decoradas com sLex/sLea, tendo-se identificado como E-SL o antigénio carcinoembrionário em NSCLC. Em resumo, esta tese contribuiu para uma melhor compreensão das alterações glicosídicas e moléculas que podem influenciar a progressão tumoral do LC, podendo permitir identificar futuramente novos biomarcadores de diagnóstico/prognóstico e potenciais alvos terapêuticos para o NSCLC.--------------------------ABSTRACT: Lung cancer (LC), one of the major causes of mortality related to cancer in Portugal, may lead to hematogenous metastasis. Adhesion of cancer cells to endothelium is considered one of the crucial steps involved in metastasis. In blood cells, this adhesion is initiated by endothelial selectin ligands (E-SL) that are glycoproteins or glycolipids decorated mostly with sialyl-Lewis x (sLex) and sialyl-Lewis a (sLea). While LC has been described as expressing these sialyl Lewis antigens, its functional role in allowing LC adhesion to endothelium is still poorly understood. We analyzed paired tumor and normal tissues samples from non-small cell lung cancer (NSCLC) patients and three LC cell lines. Immunoblotting assays with anti-sLex/sLea and E-selectin chimera demonstrated that LC tumor tissues significantly overexpress E-SL and flow cytometry results indicated that E-SL are also abundantly expressed in LC cell lines. To understand the mechanism behind the overexpression of E-SL in LC tissues and cell lines, we analyzed the expression of genes involved in its biosynthesis, namely FUT3, FUT4, FUT6, FUT7, ST3GAL3, ST3GAL4, ST3GAL6, β4GALT1, GCNT1 and GALNT3. It was observed the overexpression of fucosyltransferases FUT3, FUT6 and FUT7 in LC tumor tissues and FUT3 in LC cell lines, being this last one correlated with an increased reactivity of the LC cells to endothelial selectins. It was described that low expression of FUT4 in tumor tissues is correlated with early stages of NSCLC. We also analyzed scaffolds proteins of sLex/sLea and it was identified the carcinoembryonic antigen as an E-SL in NSCLC. In summary, this thesis contributed to a better understanding of the glycosidic changes and molecules that can influence tumor progression of LC, allowing identifying in the future new diagnosis/prognosis biomarkers and potential therapeutic targets for NSCLC.

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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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Acrylic bone cement (BC) is widely used as an anchor of artificial joints. Bacterial infection due to biofilm formation and inflammation are common and difficult to treat problems associated with commercial available BC formulations. Research on novel BC compositions is urgently needed. The main objective of this thesis was to develop a new biocompatible antibiotic-loaded BC with improved release profile. To achieve that aim several additives were incorporated, as an antibiotic (levofloxacin) to combat bacterial growth, an anti-inflammatory drug (diclofenac) to decrease the inflammatory process and two well-known and broadly used biopolymers, alginate and chitosan in order to increase matrix porosity, and in this way to intensify the amount of released drug. Novel BC formulations were tested in order to find the most suitable one that had potential to proceed to clinical application. Numerous tests were conducted as: a) evaluation of drug release profiles in different biomimetic media, b) mechanical and surface studies, c) microbiological activity testing against Staphylococcus aureus and d) in vitro biocompatibility assays (fibroblasts and osteoblasts). In general, the addition of biopolymers increased drug release, didn’t compromised BC mechanical properties and increased BC hydrophilicity. Microbiological testing revealed that Lev[BC]Chi was the only matrix that reduced significantly biofilm formation. On the contrary, alginate and diclofenac loading into BC seemed to increase biofilm growth. Biocompatibility studies showed some decrease in cell viability, in particularly on osteoblasts, mainly due to the high amounts of released drugs. In conclusion, the present work has shown that the matrix with more potential to proceed in further investigations was Lev[BC]Chi. Other conditions (namely additives and drugs concentrations) should be evaluated with the other tested BC matrices before being discharged.

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The world energy consumption is expected to increase strongly in coming years, because of the emerging economies. Biomass is the only renewable carbon resource that is abundant enough to be used as a source of energy Grape pomace is one of the most abundant agro-industrial residues in the world, being a good biomass resource. The aim of this work is the valorization of grape pomace from white grapes (WWGP) and from red grapes (RWGP), through the extraction of phenolic compounds with antioxidant activity, as well as through the extraction/hydrolysis of carbohydrates, using subcritical water, or hot compressed water (HCW). The main focus of this work is the optimization of the process for WWGP, while for RWGP only one set of parameters were tested. The temperatures used were 170, 190 and 210 °C for WWGP, and 180 °C for RWGP. The water flow rates were 5 and 10 mL/min, and the pressure was always kept at 100 bar. Before performing HCW assays, both residues were characterized, revealing that WWGP is very rich in free sugars (around 40%) essentially glucose and fructose, while RWGP has higher contents of structural sugars, lignin, lipids and protein. For WWGP the best results were achieved at 210 °C and 10 mL/min: higher yield in water soluble compounds (69 wt.%), phenolics extraction (26.2 mg/g) and carbohydrates recovery (49.3 wt.% relative to the existing 57.8%). For RWGP the conditions were not optimized (180 °C and 5 mL/min), and the values of the yield in water soluble compounds (25 wt.%), phenolics extraction (19.5 mg/g) and carbohydrates recovery (11.4 wt.% relative to the existing 33.5%) were much lower. The antioxidant activity of the HCW extracts from each assay was determined, the best result being obtained for WWGP, namely for extracts obtained at 210 °C (EC50=20.8 μg/mL; EC50 = half maximum effective concentration; EC50 = 22.1 μg/mL for RWGP, at 180 ºC).

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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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Staphylococcus aureus is an important opportunistic pathogen that can cause a wide variety of diseases from mild to life-threatening conditions. S. aureus can colonize many parts of the human body but the anterior nares are the primary ecological niche. Its clinical importance is due to its ability to resist almost all classes of antibiotics available together with its large number of virulence factores. MRSA (Methicillin-Resistant S. aureus) strains are particularly important in the hospital settings, being the major cause of nosocomial infections worldwide. MRSA resistance to β-lactam antibiotics involves the acquisition of the exogenous mecA gene, part of the SCCmec cassette. Fast and reliable diagnostic techniques are needed to reduce the mortality and morbidity associated with MRSA infections, through the early identification of MRSA strains. The current identification techniques are time-consuming as they usually involves culturing steps, taking up to five days to determine the antibiotic resistance profile. Several amplification-based techniques have been developed to accelerate the diagnosis. The aim of this project was to develop an even faster methodology that bypasses the DNA amplification step. Gold-nanoprobes were developed and used to detect the presence of mecA gene in S. aureus genome, associated with resistance traits, for colorimetric assays based on non-crosslinking method. Our results showed that the mecA and mecA_V2 gold-nanoprobes were sensitive enough to discriminate the presence of mecA gene in PCR products and genomic DNA (gDNA) samples for target concentrations of 10 ng/μL and 20 ng/μL, respectively. As our main objective was to avoid the amplification step, we concluded that the best strategy for the early identification of MRSA infection relies on colorimetric assays based on non-crosslinking method with gDNA samples that can be extracted directly from blood samples.

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ABSTRACT: Objectives: This study aimed to confirm whether 15 single nucleotide polymorphisms (SNPs) of selected genes are also associated with susceptibility for Juvenile idiopathic Arthritis (JIA) in thePortuguese population. Methods: Our study was conducted on Reuma.pt, the Rheumatic Diseases Portuguese Register, which includes patients with JIA receiving biological therapies and synthetic Disease Modifying Anti Rheumatic Drugs (DMARDs) since June 2001. Fifteen SNPs were investigated using Taqman® SNP genotyping assays in 291 Portuguese patients with JIA and 300 ethnically matched healthy controls. Results: Prior to Bonferroni correction for multiple testing, significant genotype association between one SNP and overall group of JIA was observed (PTPN22 rs2476601). In subgroup analysis, associations between six SNPs and the subgroup of patients with rheumatoid factor (RF)-positive Polyarticular (PTPN2 rs7234029), Extended oligoarticular (PTPN22 rs2476601), Systemic (PTPRC rs10919563, ANGPT1 rs7151781 and TNF rs361525) and Psoriatic JIA (IL2RA/CD25 rs2104286) were found. After Bonferroni correction for multiple testing, 3 genotype associations remained significant in the subgroup of patients with RF-positive polyarticular JIA (PTPN2 rs7234029 [corrected P 0.026]), extended oligoarticular (PTPN22 rs2476601 [corrected P 0.026]) and systemic JIA (ANGPT1 rs7151781 [corrected P 0.039]). Conclusion: Our results provide additional evidence for an association between polymorphisms in genes PTPN2, PTPN22 and ANGPT1 and the risk of RF-positive polyarticular, extended oligoarticular and systemic JIA, respectively, in a Portuguese population.

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Widely used in cancer treatment, chemotherapy still faces hindering challenges, ranging from severe induced toxicity to drug resistance acquisition. As means to overcome these setbacks, newly synthetized compounds have recently come into play with the basis of improved pharmacokinetic/pharmacodynamic properties. With this mind-set, this project aimed towards the antiproliferative potential characterization of a group of metallic compounds. Additionally the incorporation of the compounds within a nanoformulation and within new combination strategies with commercial chemotherapeutic drugs was also envisaged. Cell viability assays presented copper (II) compound (K4) as the most promising, presenting an IC50 of 6.10 μM and 19.09 μM for HCT116 and A549 cell line respectively. Exposure in fibroblasts revealed a 9.18 μM IC50. Hoechst staining assays further revealed the compound’s predisposition to induce chromatin condensation and nuclear fragmentation in HCT116 upon exposure to K4 which was later demonstrated by flow cytometry and annexin V-FITC/propidium iodide double staining analysis (under 50 % cell death induction). The compound further revealed the ability to interact with major macromolecules such as DNA (Kb = 2.17x105 M-1), inducing structural brakes and retardation, and further affecting cell cycle progression revealing delay in S-phase. Moreover BSA interactions were also visible however not conclusive. Proteome profiling revealed overexpression of proteins involved in metabolic activity and underexpression of proteins involved in apoptosis thus corroborating Hoechst and apoptosis flow cytometry data. K4 nanoformulation suffered from several hindrances and was ill succeeded in part due to K4’s poor solubility in aqueous buffers. Other approaches were considered in this regard. Combined chemotherapy assays revealed high cytotoxicity for afatinib and lapatinib strategies. Lapatinib and K4 proteome profiling further revealed high apoptosis rates, high metabolic activity and activation of redundant proteins as part of compensatory mechanisms.

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The immune system comprises of different cell types whose role is to protect us against pathogens. This thesis investigates a very important mechanism for our organism protection in a specific disorder: cross-presentation in Wiskott-Aldrich Syndrome (WAS). WAS is caused by loss-of-function mutations in the cytoskeletal regulator WASp and WAS patients suffer from eczema, thrombocytopenia, and immunodeficiency. X-linked neutropenia (XLN) is caused by gain-of-function mutations in WASp and XLN patients suffer from severe congenital neutropenia and immunodeficiency. This thesis was focused on the role of B and T lymphocytes and dendritic cells (DCs). This work will be divided into two main topics: 1) In the first part I studied the capacity of B cells to take up, degrade and present antigen. Moreover I studied the capacity of B cells to induce T cell proliferation. 2) In the second part, I studied T cell proliferation induced by dendritic cells. To increase our understanding about this mechanism, additional experiments were performed, including acidification capacity of CD8+ and CD8- DCs, reactive oxygen species (ROS) production since it is directly connected to acidification. These assays were measured by flow cytometry. Localization of Rac1 and Rac2 GTPases was assessed by confocal microscopy. Proliferation, acidification and ROS production assays were performed also with cells from X-linked neutropenia (XLN) mice. From this study we concluded that B cells cannot induce CD8+ T cell proliferation however they take up and present antigen. Moreover I have shown that increased cross-presentation by WASp KO DCs with ovalbumin is associated with decreased capacity to acidify endosomal compartment; and WASp KO CD8- DCs have increased Rac2 localization to the phagosome. XLN dendritic cells have similar acidification and ROS production capacity than wildtype cells. In conclusion, our data suggests that WASp regulates antigen processing and presentation in DCs.

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Neurological disorders are a major concern in modern societies, with increasing prevalence mainly related with the higher life expectancy. Most of the current available therapeutic options can only control and ameliorate the patients’ symptoms, often be-coming refractory over time. Therapeutic breakthroughs and advances have been hampered by the lack of accurate central nervous system (CNS) models. The develop-ment of these models allows the study of the disease onset/progression mechanisms and the preclinical evaluation of novel therapeutics. This has traditionally relied on genetically engineered animal models that often diverge considerably from the human phenotype (developmentally, anatomically and physiologically) and 2D in vitro cell models, which fail to recapitulate the characteristics of the target tissue (cell-cell and cell-matrix interactions, cell polarity). The in vitro recapitulation of CNS phenotypic and functional features requires the implementation of advanced culture strategies that enable to mimic the in vivo struc-tural and molecular complexity. Models based on differentiation of human neural stem cells (hNSC) in 3D cultures have great potential as complementary tools in preclinical research, bridging the gap between human clinical studies and animal models. This thesis aimed at the development of novel human 3D in vitro CNS models by integrat-ing agitation-based culture systems and a wide array of characterization tools. Neural differentiation of hNSC as 3D neurospheres was explored in Chapter 2. Here, it was demonstrated that human midbrain-derived neural progenitor cells from fetal origin (hmNPC) can generate complex tissue-like structures containing functional dopaminergic neurons, as well as astrocytes and oligodendrocytes. Chapter 3 focused on the development of cellular characterization assays for cell aggregates based on light-sheet fluorescence imaging systems, which resulted in increased spatial resolu-tion both for fixed samples or live imaging. The applicability of the developed human 3D cell model for preclinical research was explored in Chapter 4, evaluating the poten-tial of a viral vector candidate for gene therapy. The efficacy and safety of helper-dependent CAV-2 (hd-CAV-2) for gene delivery in human neurons was evaluated, demonstrating increased neuronal tropism, efficient transgene expression and minimal toxicity. The potential of human 3D in vitro CNS models to mimic brain functions was further addressed in Chapter 5. Exploring the use of 13C-labeled substrates and Nucle-ar Magnetic Resonance (NMR) spectroscopy tools, neural metabolic signatures were evaluated showing lineage-specific metabolic specialization and establishment of neu-ron-astrocytic shuttles upon differentiation. Chapter 6 focused on transferring the knowledge and strategies described in the previous chapters for the implementation of a scalable and robust process for the 3D differentiation of hNSC derived from human induced pluripotent stem cells (hiPSC). Here, software-controlled perfusion stirred-tank bioreactors were used as technological system to sustain cell aggregation and dif-ferentiation. The work developed in this thesis provides practical and versatile new in vitro ap-proaches to model the human brain. Furthermore, the culture strategies described herein can be further extended to other sources of neural phenotypes, including pa-tient-derived hiPSC. The combination of this 3D culture strategy with the implemented characterization methods represents a powerful complementary tool applicable in the drug discovery, toxicology and disease modeling.

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RESUMO - Os nanomateriais manufaturados (NMs), isto é, fabricados deliberadamente para fins específicos, apresentam propriedades físico-químicas únicas como a dimensão, área superficial ou funcionalização, que lhes conferem caraterísticas mecânicas, óticas, elétricas e magnéticas muito vantajosas para aplicações industriais e biomédicas. Efetivamente, a tecnologia baseada nos NMs, ou nanotecnologia, foi identificada como uma key enabling technology, impulsionadora do crescimento económico dos países industrializados, devido ao seu potencial para melhorar a qualidade e desempenho de muitos tipos de produtos e de processos. Contudo, a expansão da utilização de NMs contrasta com a insuficiente avaliação de risco para a saúde humana e para o ambiente, sendo considerados como um risco emergente para a saúde pública. As incertezas sobre a segurança dos NMs para a saúde pública advêm sobretudo de estudos epidemiológicos em humanos expostos a nanomateriais produzidos como consequência dos processos e atividades humanas e da poluição. Uma das principais preocupações relativamente aos efeitos adversos dos NMs na saúde humana é o seu potencial efeito carcinogénico, que é sugerido por alguns estudos experimentais, como no caso dos nanomateriais de dióxido de titânio ou dos nanotubos de carbono. Para avaliar em curto termo as propriedades carcinogénicas de um composto, utilizam-se frequentemente ensaios de genotoxicidade em linhas celulares de mamífero ou ensaios em modelos animais, em que se analisa uma variedade de lesões genéticas potencialmente relacionados com o processo de carcinogénese. No entanto, a investigação sobre as propriedades genotóxicas dos NMs não foi, até hoje, conclusiva. O presente estudo tem por objectivo principal caracterizar os efeitos genotóxicos associados à exposição a nanomateriais manufaturados, de forma a contribuir para a avaliação da sua segurança. Constituíram objectivos específicos deste estudo: i) avaliar a genotoxicidade dos NMs em três tipos de células humanas expostas in vitro: linfócitos humanos primários, linha celular de epitélio brônquico humano (BEAS-2B) e linha celular de adenocarcinoma epitelial de pulmão humano (A549); ii) avaliar a sua genotoxicidade num modelo de ratinho transgénico; iii) investigar alguns mecanismos de acção que poderão contribuir para a genotoxicidade dos nanomateriais, como a contribuição de lesões oxidativas para a genotoxicidade induzida pelos NMs in vitro, e a investigação da sua bioacumulação e localização celular in vivo. Foram analisados os efeitos genotóxicos associados à exposição a duas classes de NMs, dióxido de titânio e nanotubos de carbono de parede múltipla, bem como a um NM de óxido de zinco, candidato a ser utlilizado como controlo positivo de dimensão nanométrica. Os xx NMs utilizados foram previamente caracterizados com detalhe relativamente às suas características físico-químicas e também relativamente à sua dispersão em meio aquoso e no meio de cultura. A metodologia incluiu ensaios de citotoxicidade e de genotoxicidade in vitro, designadamente, ensaios de quebras no DNA (ensaio do cometa) e nos cromossomas (ensaio do micronúcleo) em células humanas expostas a várias concentrações de NMs, por comparação com células não expostas. Também foram realizados ensaios in vivo de quebras no DNA, quebras cromossómicas e ainda um ensaio de mutações em vários órgãos de grupos de ratinhos transgénicos LacZ, expostos por via intravenosa a duas doses de dióxido de titânio. Foi investigada a existência de uma relação dose-resposta após exposição das células humanas ou dos animais a NMs. A contribuição de lesões oxidativas para a genotoxicidade após exposição das células aos NMs in vitro foi explorada através do ensaio do cometa modificado com enzima. Realizaram-se estudos histológicos e citológicos para deteção e localização celular dos NMs nos órgãos-alvo dos ratinhos expostos in vivo. Os resultados demonstraram efeitos genotóxicos em alguns dos NMs analisados em células humanas. No entanto, os efeitos genotóxicos, quando positivos, foram em níveis reduzidos, ainda que superiores aos valores dos controlos, e a sua reprodutibilidade era dependente do sistema experimental utilizado. Para outros NMs, a evidência de genotoxicidade revelou-se equívoca, conduzindo à necessidade de esclarecimento através de ensaios in vivo. Para esse fim, recorreu-se a uma análise integrada de múltiplos parâmetros num modelo animal, o ratinho transgénico baseado em plasmídeo contendo o gene LacZ exposto a um NM de dióxido de titânio, NM-102. Embora tenha sido demonstrada a exposição e a acumulação do NM no fígado, não se observaram efeitos genotóxicos nem no fígado, nem no baço nem no sangue dos ratinhos expostos a esse NM. Neste estudo concluiu-se que algumas formas de dióxido de titânio e nanotubos de carbono de parede múltipla produzem efeitos genotóxicos em células humanas, contribuindo para o conjunto de evidências sobre o efeito genotóxico desses NMs. As diferenças observadas relativamente à genotoxicidade entre NMs do mesmo tipo, mas distintos em algumas das suas características físico-quimicas, aparentemente não são negligenciáveis, pelo que os resultados obtidos para um NM não devem ser generalizados ao grupo correspondente. Para além disso, a genotoxicidade equívoca verificada para o NM-102 em células humanas expostas in vitro, não foi confirmada no modelo in vivo, pelo que o valor preditivo da utilização dos ensaios in vitro para a identificação de NMs com efeitos genotóxicos (e portanto potencialmente carcinogénicos) ainda tem de ser esclarecido antes de ser possível extrapolar as conclusões para a saúde humana. Por sua vez, como a informação aqui produzida pelas metodologias in vitro e in vivo não reflete os efeitos de exposição continua ou prolongada, que poderá conduzir a efeitos genotóxicos distintos, esta xxi deverá ser complementada com outras linhas de evidência relativamente à segurança dos NMs. Perante a incerteza dos níveis de exposição real do organismo humano e do ambiente, a segurança da utilização dos NMs não pode ser garantida a longo prazo e, tendo em conta a elevada produção e utilização destes NMs, são prementes futuros estudos de monitorização ambiental e humana.