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  • About
  • The Global ETD Search service is a free service for researchers to find electronic theses and dissertations. This service is provided by the Networked Digital Library of Theses and Dissertations.
    Our metadata is collected from universities around the world. If you manage a university/consortium/country archive and want to be added, details can be found on the NDLTD website.
261

Design & Fabrication of Bio-responsive Drug Carriers Based on Protamine & Chondroitin Sulphate Biopolymers

Radhakrishnan, Krishna January 2014 (has links) (PDF)
The present thesis focuses on the fabrication of bio-stimuli responsive micro- and nano-carriers for drug delivery applications. In particular, the objective of this work is to investigate the possibility of using polypeptide drug protamine and glycosaminoglycan drug, chondroitin sulphate as stimuli responsive components in the design of bioresponsive carriers. These biopolymers are biocompatible, biodegradable and clinically used for various applications. Two designs that incorporate these stimuli responsive components have been studied in this thesis. The first design involves hollow micro and nanocapsules that have been fabricated by incorporating the stimuli responsive biopolymers as wall components. Upon exposure to biological triggers, these hollow capsules disintegrate releasing the encapsulated drug. The second design consists of mesoporous silica nanoparticles-biopolymer hybrids. The mesoporous silica nanoparticles act as a gated scaffold that carries the drug molecules. The mesopores of these drug loaded nanoparticles are then blocked with the bioresponsive polymers. Upon exposure to the bio-triggers which consist of enzymes over-expressed in conditions such as cancer and inflammation, these “molecular gates” disintegrate allowing the drug trapped in the mesoporous silica nanoparticles to escape into the surroundings. The thesis has been divided into five chapters: Chapter 1 is an introduction to bio-responsive drug delivery. The broad classification of stimuli used in responsive drug delivery systems are visited. A brief discussion on the various types of bio-stimuli that can be utilized in designing bio-responsive systems is also included in this chapter. Chapter 2 defines the aims and scope of the thesis which is followed by an overview of the various design parameters involved in the fabrication of systems presented in this work. The major stimuli responsive components and the architectures incorporating these elements are discussed in detail here. A literature review of the various carrier designs involved in the study is provided , with special emphasis on stimuli responsive drug delivery. Chapter 3 gives an overview of the various materials and methods involved in this work. A summary of the various characterisation techniques used in the thesis is also included along with the details of the experiments that has been carried out. Chapter 4 provides an overview of the results and discussions of the thesis. The chapter has been divided into six sections: Chapter 4.1 deals with the fabrication of a hollow microcapsule system incorporated with protamine as the stimuli responsive element for bio-responsive drug delivery. The hollow microcapsules that were fabricated by Layer by Layer assembly of protamine and heparin display pH responsive variations in permeability and disintegrate in the presence of the enzyme trypsin that degrades protamine. The biologically triggered enzyme responsive drug release from these microcapsules is also demonstrated using enzymes secreted by colorectal cancer cells. Chapter 4.2 presents nanocapsules fabricated from protamine and heparin. The pH and enzyme responsive drug release of this systems is evaluated in vitro. A wall crosslinking strategy has been tested to control the rate of drug release under physiological pH conditions in the absence of the trigger. The cellular interactions of these nanocapsules loaded with an anticancer drug, doxorubicin was studied using cancer cell lines. Bioavailability studies of doxorubicin encapsulated in these nanocapsules were performed using a BALB/c mice model. Chapter 4.3 discusses the fabrication of a hollow microcapsule system that can disintegrate in response to dual biological stimuli. These carriers have been fabricated by incorporating protamine and chondroitin sulphate as the wall components. Due to the incorporation of two separate stimuli responsive components in the walls, these capsules are expected to be sensitive to the enzymes trypsin or hyaluronidase I. Chapter 4.4 deals with the fabrication of dual enzyme responsive hollow nanocapsule which can be targeted to deliver anticancer agents specifically inside cancer cells. The enzyme responsive elements integrated in the hollow nanocapsule walls can undergo degradation in presence of either of the enzymes trypsin or hyaluronidase I leading to the release of encapsulated drug molecules. The drug release from these nanocapsules which were crosslinked and functionalised with folic acid, is evaluated under varying conditions. The cellular uptake and intracellular drug delivery by these nanocapsules were evaluated in cervical cancer cell lines. Chapter 4.5 introduces a mesoporous silica nanoparticle − protamine hybrid system. The system consists of a mesoporous silica nanoparticle support whose mesopores are capped with protamine which effectively blocks the outward diffusion of the drug molecules from the mesopores of the mesoporous silica nanoparticles. Upon exposure to the enzyme trigger, the protamine cap disintegrates opening up the molecular gates and releasing the entrapped drug molecules. The drug release from this system is evaluated in different release conditions in the presence and absence of the enzyme trigger. The ability of these particles to deliver hydrophobic anticancer drugs and induce cell death in colorectal cancer cells has also been demonstrated. Chapter 4.6 discusses the fabrication of another mesoporous silica nanoparticles based bio-responsive drug delivery system consisting of mesoporous silica and chondroitin sulphate hybrid nanoparticles. The ability of the system to modulate drug release in response to hyaluronidase I is demonstrated. By utilizing a cervical cancer cell line, we have demonstrated the cellular uptake and intracellular delivery of hydrophobic drugs encapsulated in these particles. Interestingly, the system showed ability to enhance the anticancer activity of hydrophobic drug curcumin in these cancer cells. Chapter 5 gives a summary of the general conclusions drawn from the thesis work.
262

The purine world: experimental investigations into the prebiotic synthesis of purine nucleobases and intercalation of homopurine DNA duplexes

Buckley, Ragan 13 June 2012 (has links)
Formamide is a solvent of great interest to prebiotic chemists because it is liquid over a wide range, it is less volatile than either water or HCN, and it possesses a versatile reactivity. When formamide is heated in the presence of minerals or inorganic catalysts, a variety of products including purine nucleobases are generated. Irradiation of formamide reaction solutions with ultraviolet light increases the yield and diversity of products, and eliminates the need for a mineral catalyst. We have also performed formamide reactions in the presence of pyrite, a mineral which is likely to have been available on the primordial Earth, under a variety of atmospheric conditions. Our results indicate the greatest yield and diversity of products result from the combination of a pyrite mineral catalyst, heat, UV irradiation, and a carbon dioxide atmosphere. Purine nucleobases are simple to synthesize in model reactions and they stack well in aqueous solution; it has been hypothesized that the first nucleic acids were composed of only purine bases, and that water-soluble, cationic, aromatic molecules with large stacking surfaces (“”molecular midwives””) may have aided the assembly of the earliest nucleic acid analogs. We have characterized the interactions of various intercalators with a standard DNA duplex as well as with an antiparallel homopurine DNA duplex and have determined that molecules which possess four or more rings and a curved shape interact selectively with all-purine DNA; such molecules can serve as models for putative prebiotic midwives.
263

Ingénierie tissulaire du ligament : association de copolymères dégradables et de cellules souches mésenchymateuses / Ligament tissue engineering : association of degradable copolymers and mesenchymal stem cells

Leroy, Adrien 12 December 2013 (has links)
L'ingénierie tissulaire est une discipline récente aux enjeux ambitieux et prometteurs : la régénération de tissus ou d'organes lésés voire détruits en mettant à profit des connaissances et compétences dans différents domaines à l'interface de la chimie et de la biologie. Pour répondre à la demande d'alternatives aux techniques chirurgicales actuelles de réparation du ligament antérieur croisé, nous avons décidé d'appliquer l'ingénierie tissulaire à ce tissu en associant matrices en polymères dégradables et cellules souches mésenchymateuses (CSM). Dans un premier temps, nous avons donc travaillé à la synthèse de polymères adaptés à l'application en cherchant à mettre l'accent sur l'obtention de propriétés élastiques. De nouveaux élastomères dégradables obtenus par des approches originales de photoréticulation chimique de poly(lactide) (PLA) et de poly(ε-caprolactone) (PCL) par voie nitrène ou thiol-yne ont notamment été développés avec des résultats prometteurs. En parallèle, des copolymères thermoplastiques multiblocs à base de PLA et poloxamine ou poloxamère nous ont permis de mener une étude plus appliquée. Ces copolymères ont en effet montré, en particulier au cours d'une étude de dégradation in vitro de 7 semaines, des propriétés, notamment thermiques et mécaniques, qui en font d'eux des candidats intéressants pour le conception d'une matrice ligamentaire. C'est pourquoi ils ont été utilisés pour la conception de prototypes de matrices de régénération textiles dont les propriétés mécaniques se sont révélées être très proches de celles du ligament. Après avoir démontré l'excellente cytocompatibilité de ces matrices avec des CSM, nous avons finalement mené des expériences de différenciation in vitro de ces CSM et sommes parvenus à favoriser leur orientation vers un phénotype ligamentocytaire, notamment grâce à un procédé de stimulation mécanique cyclique des cellules ensemencées sur les matrices textiles. / Tissue engineering is a recent discipline with ambitious and promising stakes: the regeneration of wounded or destroyed tissues or organs by taking advantage of knowledge and skills in various fields at the interface of chemistry and biology. In order to meet the need for alternatives to current surgical techniques of anterior cruciate ligament repair, we decided to apply the tissue engineering approach to this tissue by associating degradable polymer scaffolds and mesenchymal stem cells (MSCs). At first we worked on the synthesis of biodegradable polymers suitable for the application and focused on getting elastic properties. New degradable elastomers obtained by chemical photocrosslinking of poly(lactide) (PLA) and poly(ε-caprolactone) (PCL) were developed by following nitrene or thiol-yne strategies and yielded promising results. In parallel, a more in depth and practical study was performed with PLA based thermoplastic multiblock copolymers embedding poloxamer or poloxamine. These copolymers exhibited properties that make them attractive candidates for the design of ligament regeneration scaffolds, and especially their thermal and mechanical properties during a 7 week in vitro degradation test. That is why they were used to design prototypes of textile scaffolds whose mechanical properties were found to be very close to the ligament's ones. After demonstrating the excellent cytocompatibility of these scaffolds with MSCs, we finally carried out in vitro differentiation experiments on these MSCs and managed to induce their orientation towards a ligamentocyte phenotype, particularly through a process of cyclic mechanical stimulation of cells seeded on the textile scaffolds.
264

Caracterização de bactérias halotolerantes isoladas do bioma caatinga e avaliação da produção de biopolímeros. / Characterization of halotolerant bacteria isolated from Caatinga and evaluation of biopolymers production.

Pinilla, Maria Paula Parada 06 December 2016 (has links)
Os organismos extremófilos são considerados atualmente reservatórios de novas biomoléculas de interesse biotecnológico. Dentro deste grupo encontram-se os microrganismos que requerem altas concentrações de sal para crescer, denominados halófilos. Também existem os halotolerantes que são aqueles microrganismos que não precisam de sal para proliferar, mas toleram altas concentrações de NaCl. Os ambientes salinos provaram ser uma fonte rica de microrganismos halotolerantes produtores de novos compostos naturais e, portanto, a pesquisa nestes ambientes torna-se de grande importância. No Brasil, na região salina de Areia Branca no bioma caatinga, foram isoladas bactérias halotolerantes que foram estudadas com o objetivo de avaliar a produção de novos biopolímeros de interesse biotecnológico. Acredita-se que os polímeros naturais desses microrganismos extremos podem ter aplicações inovadoras ou características diferentes às tradicionais. Neste estudo, os isolados foram identificados em nível de gênero com base na análise da sequência do gene 16s rRNA. Os isolados foram principalmente bactérias Gram-positivas atribuídas às famílias Bacillaceae, Staphylococcaceae, Microbacteriaceae e uma bactéria Incertae Sedis do filo firmicutes, afiliadas aos gêneros Bacillus, Staphylococcus, Curtobacterium e Exiguobacterium, respectivamente. Apenas um isolado Gram-negativo foi identificado e atribuído como membro da família Pseudomonadaceae, incluso no gênero Pseudomonas. Avaliou-se a tolerância ao sal dos isolados em meio TSB suplementado com 5, 35, 60 e 120 g/L de NaCl. Todos os isolados apresentaram a capacidade de crescer nas quatro concentrações de NaCl avaliadas, com exceção do isolado Exiguobacterium sp. sac36 que não cresceu na concentração de 120 g/L de NaCl no meio. Realizaram-se ensaios de acúmulo de polihidroxialcanoatos (PHA) e evidenciou-se que quatro isolados do gênero Bacillus são capazes de acumular 3-hidroxibutirato (3HB) a partir de glicose, xilose, e alguns destes em glicerol. Adicionalmente, confirmou-se que quando há altas concentrações de NaCl no meio, o acúmulo de 3HB dos isolados produtores diminui. Observou-se também que doze isolados halotolerantes são produtores de exopolissacarídeos (EPS). Testes realizados indicaram que os mesmos podem ter efeitos imunoestimulantes em macrófagos. Finalmente, avaliou-se a produção de ácido hialurônico (AH) pelos isolados halotolerantes. Segundo sugere o método de Alcian blue, todos os isolados foram capazes de produzir AH, mostrando que a maior parte deles acumulou o biopolímero em concentrações maiores ou semelhantes ao controle. Os resultados obtidos evidenciam que os isolados halotolerantes avaliados são uma fonte rica em compostos com atividades promissoras para as diferentes indústrias. O presente trabalho contribui no estudo do potencial biotecnológico de microrganismos isolados no bioma caatinga, destacando sua biodiversidade, versatilidade e a necessidade de continuar explorando esses ambientes extremos pouco estudados. / Extremophile organisms are considered reservoirs of new biomolecules of biotechnological interest. In this group there are microorganisms that require high salt concentration to grow, called halophiles, and halotolerant microorganisms, that do not need salt to proliferate but can tolerate high concentrations of NaCl. Saline environments proved to be a rich source of new natural compounds by halotolerant producers and therefore, research in these environments becomes of great importance. In Brazil, in the saline region of Areia Branca in the caatinga biome, halotolerant bacteria were isolated and studied in order to evaluate the production of new biopolymers of biotechnological interest. It is believed that the natural polymers of those extreme microorganisms could have innovative applications or different characteristics from the traditional biopolymers. In this study, the isolates were identified at the genus level based on 16S rRNA gene sequence analysis. Isolates were mainly Gram-positive bacteria from Bacillaceae, Staphylococcaceae and Microbacteriaceae families, and Bacillus, Exiguobacterium, Staphylococcus and Curtobacterium genera. One of the Gram-negative isolate was identified as member of the Pseudomonadaceae family, genus Pseudomonas. The evaluation of salt tolerance of the bacterial isolates on TSB medium supplemented with 5, 35, 60 and 120 g / L NaCl was performed. All the isolates showed the ability to grow in the four concentrations evaluated, except for Exiguobacterium sp. sac36, that did not grow at 120 g / L NaCl. Polyhydroxyalkanoate (PHA) accumulation assays were performed using glucose, xylose and glycerol as carbon source. The results showed that four strains of the genus Bacillus were able to accumulate 3-hydroxybutyrate (3HB) in all conditions. Additionally, it was confirmed that the presence of high concentrations of NaCl in the medium causes a decrease in 3HB accumulation in the cells. It was observed that twelve halotolerant bacteria produced exopolysaccharides (EPS). Tests performed indicated that those EPS could have immunostimulatory effects on macrophages. Finally, hyaluronic acid (HA) production was evaluated. According to Alcian blue method, all strains were able to produce HA, showing that most of the isolates accumulated the biopolymer in higher or similar concentrations to the control. The results showed that the halotolerant isolates are a rich source of compounds with promising activities for different industries. This study contributes to the knowledge of microorganisms from the caatinga biome and their biotechnological potential, highlighting their biodiversity, versatility and the need to continue exploring these poorly studied extreme environments.
265

Efeito da radiação ionizante de feixe de elétrons em propriedades de biopolímeros comestíveis a base de proteína isolada de soja e fécula de mandioca / Effect of ionizing electron beam radiation on properties of edible biopolymers based on isolated soybean protein and cassava starch

Uehara, Vanessa Bernardo 24 May 2017 (has links)
Nas últimas décadas, têm aumentado substancialmente a quantidade de pesquisas focando no desenvolvimento e caracterização de materiais biodegradáveis, particularmente, filmes comestíveis. O uso de polímeros de fontes renováveis, preparados a partir de produtos vegetais, vem ganhando importância nessa abordagem. O concentrado de proteína de soja e amido de mandioca podem ser considerados uma alternativa aos polímeros petroquímicos. O processamento pela radiação ionizante pode ser empregado para a modificação de polímeros e macromoléculas, resultando em novos materiais com grandes perspectivas de utilização industrial. A indústria de alimentos, uma das indústrias tradicionalmente mais inovadoras, exige o desenvolvimento constante de novos produtos. A capacidade de proteínas e polissacarídeos de formar filmes, amplamente conhecida, é um ponto de partida para o desenvolvimento de novos materiais que atendam os variados requerimentos dessa pungente indústria. Neste trabalho elaboraram-se filmes a base de fécula de mandioca e proteína isolada de soja em duas proporções diferentes e posteriormente irradiados e analisados quanto às suas propriedades mecânicas, cor, absorção de água, permeabilidade ao vapor de agua, análise térmica TGA e DSC entre outros. Os filmes tornaram-se aparentemente mais solúveis e menos resistentes a perfuração com o aumento da dose de radiação aplicada. Com relação às propriedades térmicas observou-se que os filmes com maior proporção de proteína são mais resistentes. Os filmes apresentaram-se menos permeáveis na dose de 40 kGy, e, com relação a absorção de água, esta foi reduzida em função da dose de radiação. Filmes com boa resistência ao vapor de água e com reduzida absorção podem ser considerados adequados para embalagens de alimentos. A radiação mostrou ser uma ferramenta conveniente na modificação de materiais poliméricos principalmente para elaboração de filmes solúveis onde esta é uma nova tendência para embalagens bioativas. / In recent decades, there has been a substantial increase in the amount of research focusing on the development and characterization of biodegradable materials, particularly edible films. The use of polymers from renewable sources, prepared from plant products, has gained importance in this approach. Soy protein concentrate and cassava starch may be considered an alternative to petrochemical polymers. Processing by ionizing radiation can be used for the modification of polymers and macromolecules, resulting in new materials with great prospects of industrial use. The food industry, one of the traditionally most innovative industries, requires the constant development of new products. The widely known ability of film forming proteins and polysaccharides is a starting point for the development of new materials that meet the varying requirements of this pungent industry. In this work, films based on manioc starch and isolated soy protein were prepared in two different proportions and later irradiated and analyzed for their mechanical properties, color, water absorption, water vapor permeability, TGA and DSC thermal analysis between others. The films became apparently more soluble and less resistant to drilling with the increased radiation dose applied. Regarding the thermal properties, it was observed that the films with greater protein orientation are more resistant. Properties such as water vapor permeability and water absorption, the films were less permeable at the 40 kGy dose. With regard to water absorption, it was reduced as a function of the radiation dose. Films with good resistance to water vapor and with low absorption are considered efficient for food packaging. Radiation has proven to be a convenient tool in the modification of polymeric materials mainly for the production of soluble films where it is a new trend for bioactive packaging.
266

Análise econômica da produção de polímeros biodegradáveis no contexto de uma biorefinaria a partir de cana-de-açúcar. / Economic assessment of biopolymer production in a sugarcane based biorefinery context.

Raicher, Gil 05 September 2011 (has links)
Polihidroxialcanoatos são polímeros biodegradáveis, sintetizados por bactérias a partir de fontes de carbono renováveis. Este trabalho se concentra na produção de P3HB a partir de xilose no contexto de uma usina padrão de álcool e açúcar que produz energia através de cogeração, utiliza resíduos agrícolas de cana-de-açúcar e passaria a produzir etanol de segunda geração a partir do bagaço. A produção de PHAs a partir de xilose, hoje descartada, poderá viabilizar a geração de etanol de segunda geração. Variou-se a produtividade (0,28 e 1,11 g/L.h), o preço (R$ 4,50 R$ 9,00), o custo do fermentador (três cenários entre US$ 475 - 3.013 mil) e a capacidade produtiva da planta (dez cenários de 1.000 a 35.000 mil t/ano). As visões de resultado oferecem a margem de contribuição, lucratividade líquida da operação, bem como o ponto de breakeven. Recomenda-se redirecionar parte dos esforços de pesquisa voltados a um aumento do teor de P3HB na célula para a melhoria da produtividade do processo, que é o fator-chave para que o processo se torne economicamente mais atrativo. / Polyihydroxyalkanoates are biodegradable polymers, synthetized by bacteria from renewable sources of carbon. This thesis focuses on production of P3HB from xylose in the context of a standard sugar and ethanol plant, cogenerates steam and electrical energy utilizing sugarcane bagasse and agricultural residues. PHAs production from xylose, discarded in most mills nowadays, may enable profitability of 2nd generation bioethanol. Productivity varied from 0,28 to 1,11 g/L.h, and PHB price ranged from R$ 4,50 to R$ 9,00 per kilo. Fermentor cost was studied in 3 scenarios from US$ 475 to 3.013 thousand and the production capacity was analyzed in ten different scenarios, from 1,000 to 35,000 thousand tonnes/year. Result reviews offer contribution margin, net operational profit, as well as breakeven point analysis. Recommended is to redirect part of the research efforts from improving P3HB yields to process productivity improvement, which turned out to be the key factor to economic feasibility.
267

Influência da quantidade e qualidade da matéria orgânica sedimentar na estrutura e distribuição vertical e horizontal das comunidades bentônicas na plataforma de São Sebastião, São Paulo, Brasil / Influence of sedimentary organic matter quantity and quality on the structure, vertical and horizontal distribution of benthic communities in the São Sebastião shelf, São Paulo, Brazil

Caballero, Natalia Venturini 14 March 2008 (has links)
Os ambientes costeiros marinhos são sítios de uma intensa produção, movimentação e enterramento de carbono orgânico, já que uma fração substancial do material orgânico produzido na zona eufótica deposita-se nos sedimentos e constitui a principal fonte de alimento para o bentos. O objetivo geral deste trabalho é estudar a influência da quantidade, origem e qualidade (composição bioquímica) da matéria orgânica sedimentar sobre a estrutura e distribuição vertical e horizontal da meiofauna e macrofauna bentônicas, em três ambientes com aportes diferenciados de matéria orgânica e submetidos a duas condições oceanográficas diferentes. Foram realizadas 2 campanhas de coleta em 6 estações localizadas no Canal de São Sebastião (CSS), Enseada de Caraguatatuba e Baía de Castelhanos. Em cada estação, foram analisadas as variáveis físico-químicas da água do mar, topografia do fundo, taxa de sedimentação atual. Coletaram-se amostras de sedimentos para análise das características granulométricas, concentração de pigmentos fotossintéticos, teores de matéria orgânica, carbono orgânico, nitrogênio e enxofre total, biopolímeros orgânicos (carboidratos, lipídios e proteínas), concentração e composição dos ácidos graxos, meiofauna e macrofauna, em sete horizontes da coluna sedimentar. As concentrações de pigmentos fotossintéticos, carbono orgânico, biopolímeros orgânicos, carbono biopolimérico e da razão PRT/CHO mostram que com exceção das estações 1 e 6, os sedimentos das demais áreas da região do CSS apresentam um certo grau de eutrofizacão e recebem um aporte importante de detritos orgânicos derivados da produção primária planctônica e bentônica, em diferentes estados de degradação. A composição dos ácidos graxos evidencia que a matéria orgânica particulada possui uma origem principalmente autóctone, e está constituída por uma combinação de material derivado do plâncton vivo ou detrítico, das microalgas bentônicas, da produção bacteriana e da fauna associada ao sedimento, havendo uma contribuição terrestre relativamente pequena. Nos locais estudados na região do CSS a quantidade do alimento não é um fator limitante; porém, a variação na sua qualidade em função de aportes esporádicos de matéria orgânica lábil, derivada da produção primária planctônica e bentônica, é um fator com importante influência na estruturação das comunidades bentônicas. / Coastal marine environments are places of intensive production, movement and burial of organic carbon, due to a considerable fraction of the organic material produced in the euphotic zone is deposited on sediments and represents the main food source for the benthos. The general aim of this work is to study the influence of sedimentary organic matter quantity, origin and quality (biochemical composition) on the structure, vertical and horizontal distribution of benthic meiofauna and macrofauna, in three environments with different organic inputs and under two different oceanographic conditions. Two sampling surveys were performed at 6 stations located in the São Sebastião Channel (SSC), Caraguatatuba Bight, and Castelhanos Bay. At each site the physico-chemical variables of marine water, bottom topography and the sedimentation rate were analyzed. Sediment samples were taken to analyze granulometric characteristics, photosynthetic pigment concentrations, organic matter, organic carbon, nitrogen and sulphur contents, organic biopolymers (carbohydrates, lipids and proteins), concentration and composition of fatty acids, meiofauna and macrofauna in seven sediment layers. Phytopigments, organic carbon, organic biopolymers and biopolymeric carbon concentrations and the PRT/CHO ratio show that excepting stations 1 and 6, the sediments of the other locations have a certain degree of eutrophication and receive a significant input of organic detritus derived from planktonic and benthic primary production at different stages of degradation. Fatty acids composition shows that the particulate organic matter has mainly an autochthonous origin and it is constituted by a mixture of material derived from live or dead plankton, benthic microalgae, bacterial production and from the resident fauna, having a relatively low terrestrial contribution. Food quantity is not a limiting factor at the studied sites in the SSC region; however, variability in food quality related to sporadic inputs of labile organic matter produced by planktonic and benthic primary producers, is an important structuring factor of benthic communities.
268

Microencapsulação por liofilização de D-limoneno em maltodextrina e quitosana modificada / Microencapsulation by lyophilization of d-limonene in maltodextrin and modified chitosan

Borgognoni, Camila Figueiredo 15 March 2005 (has links)
A quitosana é um biopolímero produzido a partir da quitina, presente na casca de crustáceos. O grande interesse nesta substância é atribuído à sua diversidade de aplicações industriais. A quitosana utilizada neste estudo foi quimicamente modificada para tornar-se solúvel em água. Estudou-se a estabilidade de emulsões de d-limoneno com esta quitosana, a retenção e liberação do aroma contido nas microcápsulas liofilizadas e o comportamento higroscópico destas microcápsulas. Os mesmos estudos foram realizados com maltodextrina, para comparação, já que é um produto muito utilizado como agente de encapsulação de aromas. A estabilidade das emulsões foi analisada por espectrofotometria e por cromatografia gasosa associada à técnica da análise do espaço livre. As emulsões foram caracterizadas por microscopia óptica. A análise da liberação do aroma contido nas microcápsulas foi realizada em função da umidade relativa do ambiente e da temperatura. Observou-se boa estabilidade de emulsões de d-limoneno com quitosana succinilada ao longo do tempo e características muito distintas em relação às observadas nas outras emulsões. Verificou-se 72% de retenção de d-limoneno em maltodextrina (40% p/p) e 62% de retenção de d-limoneno em quitosana modificada (1% p/p) após o processo de liofilização, sendo que durante todas as etapas do processo de encapsulação a perda de aroma em maltodextrina foi de 72%, enquanto em quitosana modificada foi de 50%. As microcápsulas de maltodextrina sofreram colapso estrutural em ambiente de 90% de umidade relativa. Os valores de umidades de monocamada das microcápsulas decaíram com o aumento da temperatura. O calor total de sorção de microcápsulas de quitosana modificada apresentou-se superior, assim como seu coeficiente de difusividade. A área superficial dos poros de microcápsulas de quitosana modificada apresentou-se superior, absorvendo água por capilares. Conclui-se que microcápsulas de quitosana modificada podem apresentar-se como uma nova opção na escolha de agentes de encapsulação de aromas. / Chitosan is a biopolymer derived from chitin, a component of the shells of crustaceans. It has been of interest due to their broad range of industrial applications. In this study, the chitosan used was chemically modified in order to become water soluble. It was studied the stability of d-limonene emulsion with modified chitosan, flavour retention and release and the hygroscopic behaviour of the microcapsules. The same tests were made with maltodextrin that is a product widely used as a flavour encapsulating agent. The stability of the emulsion was analyzed by spectrofotometry and by headspace/gas chromatography technique. The emulsion characterization was obtained by optical microscopy. Flavour release of microcapsules was measured under different relatives humidities and temperatures. It was observed an improvement on the stability of d-limonene emulsion with modified chitosan along the time and different characteristics in relation to the other. Retention of d-limonene after lyophilization in maltodextrin (40% w/w) was 72% and 62% in modified chitosan (1% w/w). Although, flavour released after encapsulation process in maltodextrin was 72% while in modified chitosan was 50%. Maltodextrin microcapsules presented structural collapse in 90% of relative humidity. The humidity monolayers decreased with temperature increasing for both microcapsules. The heat of sorption for the chitosan microcapsules was greater as well as its diffusivity coefficient. Its pore superficial area was greater. It was observed that chitosan microcapsules absorb water by capilariy absorption. The results suggest that chitosan microcapsules could be a new option of flavour encapsulating agent.
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Efeito da radiação ionizante de feixe de elétrons em propriedades de biopolímeros comestíveis a base de proteína isolada de soja e fécula de mandioca / Effect of ionizing electron beam radiation on properties of edible biopolymers based on isolated soybean protein and cassava starch

Vanessa Bernardo Uehara 24 May 2017 (has links)
Nas últimas décadas, têm aumentado substancialmente a quantidade de pesquisas focando no desenvolvimento e caracterização de materiais biodegradáveis, particularmente, filmes comestíveis. O uso de polímeros de fontes renováveis, preparados a partir de produtos vegetais, vem ganhando importância nessa abordagem. O concentrado de proteína de soja e amido de mandioca podem ser considerados uma alternativa aos polímeros petroquímicos. O processamento pela radiação ionizante pode ser empregado para a modificação de polímeros e macromoléculas, resultando em novos materiais com grandes perspectivas de utilização industrial. A indústria de alimentos, uma das indústrias tradicionalmente mais inovadoras, exige o desenvolvimento constante de novos produtos. A capacidade de proteínas e polissacarídeos de formar filmes, amplamente conhecida, é um ponto de partida para o desenvolvimento de novos materiais que atendam os variados requerimentos dessa pungente indústria. Neste trabalho elaboraram-se filmes a base de fécula de mandioca e proteína isolada de soja em duas proporções diferentes e posteriormente irradiados e analisados quanto às suas propriedades mecânicas, cor, absorção de água, permeabilidade ao vapor de agua, análise térmica TGA e DSC entre outros. Os filmes tornaram-se aparentemente mais solúveis e menos resistentes a perfuração com o aumento da dose de radiação aplicada. Com relação às propriedades térmicas observou-se que os filmes com maior proporção de proteína são mais resistentes. Os filmes apresentaram-se menos permeáveis na dose de 40 kGy, e, com relação a absorção de água, esta foi reduzida em função da dose de radiação. Filmes com boa resistência ao vapor de água e com reduzida absorção podem ser considerados adequados para embalagens de alimentos. A radiação mostrou ser uma ferramenta conveniente na modificação de materiais poliméricos principalmente para elaboração de filmes solúveis onde esta é uma nova tendência para embalagens bioativas. / In recent decades, there has been a substantial increase in the amount of research focusing on the development and characterization of biodegradable materials, particularly edible films. The use of polymers from renewable sources, prepared from plant products, has gained importance in this approach. Soy protein concentrate and cassava starch may be considered an alternative to petrochemical polymers. Processing by ionizing radiation can be used for the modification of polymers and macromolecules, resulting in new materials with great prospects of industrial use. The food industry, one of the traditionally most innovative industries, requires the constant development of new products. The widely known ability of film forming proteins and polysaccharides is a starting point for the development of new materials that meet the varying requirements of this pungent industry. In this work, films based on manioc starch and isolated soy protein were prepared in two different proportions and later irradiated and analyzed for their mechanical properties, color, water absorption, water vapor permeability, TGA and DSC thermal analysis between others. The films became apparently more soluble and less resistant to drilling with the increased radiation dose applied. Regarding the thermal properties, it was observed that the films with greater protein orientation are more resistant. Properties such as water vapor permeability and water absorption, the films were less permeable at the 40 kGy dose. With regard to water absorption, it was reduced as a function of the radiation dose. Films with good resistance to water vapor and with low absorption are considered efficient for food packaging. Radiation has proven to be a convenient tool in the modification of polymeric materials mainly for the production of soluble films where it is a new trend for bioactive packaging.
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Investigação dos processos de intercalação e esfoliação de hexaniobato lamelar e preparação de materiais híbridos com biopolímeros / Investigation of the intercalation and exfoliation processes of layered hexaniobate and preparation of hybrid materials with biopolymers

Shiguihara, Ana Lucia 01 September 2010 (has links)
A presente tese tem como objetivo principal a investigação do processo de intercalação e esfoliação do hexaniobato lamelar em soluções de hidróxidos de tetraalquilamônios e, também, do emprego das partículas do niobato na preparação de materiais híbridos com polissacarídeos. O material de composição H2K2Nb6O17 foi suspenso em soluções aquosas contendo diferentes concentrações dos hidróxidos de tetrametilamônio (TMA+), tetraetilamônio (TEA+) e tetrapropilamônio (TPA+). Após o tempo de reação foram separadas duas frações: o sólido depositado no recipiente e o sobrenadante turvo contendo as partículas não depositadas de características coloidais. Os resultados de difratometria de raios X, análise termogravimétrica, análise elementar, espectroscopia vibracional no infravermelho e Raman mostram que o processo de intercalação é promovido segundo a ordem: TMA+ > TEA+ > TPA+, isto é, a intercalação é facilitada para íons pouco volumosos. Já o processo de esfoliação do hexaniobato é promovido na ordem inversa: TPA+ » TEA+ > TMA+, ou seja, quanto mais volumoso o íon tetraalquilamônio, maior a extensão do processo de separação das lamelas. A formação das partículas cilíndricas, presentes em maior quantidade nas amostras tratadas com soluções de TPA+ e TBA+, é favorecida pelo aumento do tamanho da cadeia carbônica e da concentração das soluções do hidróxido. Além dos processos de intercalação ou esfoliação, observou-se o processo de formação de gel na etapa de remoção de eletrólitos na lavagem dos sólidos depositados. O entumescimento das lamelas empilhadas de hexaniobato é favorecido para amostras intercaladas com íons TEA+; possivelmente esses íons possuem a melhor relação entre hidrofilicidade e tamanho, promovendo a formação de gel. O composto contendo íons TEA+ intercalados no hexaniobato ácido foi empregado na preparação de material híbrido contendo o polissacarídeo quitosana intercalado na matriz inorgânica, com o objetivo de modificar a superfície do hexaniobato para promover a compatibilização com o amido e a formação de nanocompósitos. Filmes de amido desestruturado contendo partículas de hexaniobato foram preparados por casting. Para alcançar alto grau de dispersão da partícula inorgânica no polímero, três tipos de partículas de hexaniobato foram empregadas: (i) partículas esfoliadas com n-butilamina, (ii) partículas altamente hidratadas de TEA+-hexaniobato e (iii) partículas modificadas pela intercalação com quitosana. As técnicas de difratometria de raios X, análise termogravimétrica acoplada à espectrometria de massa, espectroscopia vibracional no infravermelho e microscopia eletrônica de varredura sugerem que nos filmes transparentes e flexíveis obtidos, a matriz lamelar se encontra preferencialmente na forma intercalada. Os resultados preliminares de análise dinâmico-mecânica sugerem a seguinte tendência no comportamento mecânico dos filmes: a adição do hexaniobato torna os filmes de amido mecanicamente mais resistentes e as amostras sem o plastificante glicerol apresentam maior resistência e menor deformação que aquelas com glicerol. / The main aim of this Thesis is the investigation of intercalation and exfoliation processes occurring when the layered material H2K2Nb6O17 is suspended in alkaline solutions containing tetramethylammonium (TMA+), tetraethylammonium (TEA+) or tetrapropylammonium (TPA+) cations, as well as the employment of the hexaniobate particles in the preparation of hybrid materials with polysaccharides. After the reaction using different concentrations of the tetraalkylammonium hydroxide solutions, two fractions were separated: the deposited solid (i.e. the sediment at bottom of the flasks) and the opaque supernatant containing particles with colloidal characteristics. Experimental data from X-ray diffractometry (XRD), mass spectrometry coupled thermogravimetric analyses (TG-MS), elemental analysis, vibrational infrared (IR) and Raman spectroscopies show that intercalation reaction is promoted in the order TMA+ > TEA+ > TPA+ while exfoliation process is facilitated in the inverse order: TPA+ » TEA+ > TMA+. Development of particles with stick-like shapes is observed when H2K2Nb6O17 is kept mainly in the solutions containing the larger TPA+ and TBA+ ions. Samples containing intercalated TEA+ ions form a gel-like system when washed to remove the non-intercalated ions dissolved in water. Experimental data suggest that the gel phase constituted by long-range swelled particles. This fact was interpreted as a consequence of the intermediate characteristics (surface polarity and ion radius) of the TEA+ ions compared to the others ions investigated in this study. The hexaniobate material intercalated with TEA+ ions was used to prepare a hybrid material having the chitosan polymer intercalated into the inorganic matrix in order to compatibilize the hexaniobate particles with starch and a nanocomposite formation. The study of the films of starch-niobate showed that the matrix is in the intercalation form preferentially, even using different exfoliation agents and modification species (n-butylamine, TEAOH and chitosan). Films of destructured starch having hexaniobate particles were prepared by casting method. In order to reach a high level of inorganic particles dispersed in the polymer, three kinds of hexaniobate particles were used: (i) particles exfoliated with n-butylamine, (ii) hydrated particles of TEA+-hexaniobate and (iii) hexaniobate particles intercalated with chitosan. XRD, TG-MS, IR, and scanning electron microscopy (SEM) techniques suggest that hexaniobate particles are mainly in the intercalated form in the transparent and flexible obtained starch films. Preliminary dynamic mechanical analysis data indicate the following general tendency in the mechanic characteristics of the films: niobate particles make the starch films more resistant and the samples without the glycerol plasticizer present higher resistance and lower deformation than the films with glycerol.

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