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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.
131

Role of Snx9 in the Regulation of Mitochondrial Morphology

Magosi, Lerato E. 27 June 2012 (has links)
Mitochondria are dynamic; they alter their shape through fission, fusion and budding of vesicles. Mitochondrial vesicles serve as a quality control mechanism enabling these organelles to rid themselves of damaged lipids and proteins. Dysregulation in mitochondrial dynamics and quality control have been linked to Parkinson’s Disease, making the identification of molecules requisite for these processes a priority. We identified the endocytic protein, Sorting nexin 9 (Snx9) through a genome wide siRNA screen for genes which substantially alter mitochondrial morphology and therefore are important for its maintenance. In this work, the role of Snx9 in mitochondrial morphology is examined. Ultrastructural imaging of mitochondria within cells silenced for Snx9 revealed unbudded vesicles along a hyperfused mitochondrial reticulum suggesting a role for Snx9 in the release of these vesicles. The vesicular profiles contained concentric membranous whorls enriched for neutral lipids. Localization studies suggest the Parkinson’s disease genes, Parkin and Vps35 localize to the unbudded profiles.
132

Photo-crosslinked and pH sensitive polymersomes for triggering the loading and release of cargo

Gaitzsch, Jens, Appelhans, Dietmar, Gräfe, David, Schwille, Petra, Voit, Brigitte 31 March 2014 (has links) (PDF)
Crosslinkable and pH-sensitive amphiphilic block copolymers are promising candidates to establish pH-stable and permeable vesicles for synthetic biology. Here, we report the fabrication of crosslinked and pH-stable polymersomes as swellable vesicles for the pH-dependent loading and release of small dye molecules. / Dieser Beitrag ist mit Zustimmung des Rechteinhabers aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich.
133

Nasal delivery of recombinant human growth hormone with pheroid technology / Dewald Steyn

Steyn, Johan Dewald January 2006 (has links)
Over the past couple of years there has been rapid progress in the development and design of safe and effective delivery systems for the administration of protein and peptide drugs. The effective delivery of these type of drugs are not always as simple as one may think, due to various inherent characteristics of these compounds. Due to the hydrophilic nature and molecular size of peptide and protein drugs, such as recombinant human growth hormone, they are poorly absorbed across mucosal epithelia, both transcellularly and paracellularly. This problem can be overcome by the inclusion of absorption enhancers in peptide and protein drug formulations but this is not necessarily the best method to follow. This investigation focussed specifically on the evaluation of the ability of the PheroidTM carrier system to transport recombinant human growth hormone across mucosal epithelia especially when administered via the nasal cavity. The PheroidTM delivery system is a patented system consisting of a unique submicron emulsion type formulation. The PheroidTM delivery system, based on PheroidTM technology, will for ease of reading be called Pheroid(s) only throughout the rest of this dissertation. The Pheroid carrier system is a unique microcolloidal drug delivery system. A Pheroid is a stable structure within a novel therapeutic system which can be manipulated in terms of morphology, structure, size and function. Pheroids consist mainly of plant and essential fatty acids and can entrap, transport and deliver pharmacologically active compounds and other useful substances to the desired site of action. The specific objectives of this study can be summarised as follows: a literature study on Pheroid technology; a literature study on chitosan and N-trimethyl chitosan chloride; a literature study on recombinant human growth hormone (somatropin); a literature study on nasal drug administration; formulation of a suitable Pheroid carrier; entrapment of somatropin in the Pheroid carrier, and in vivo evaluation of nasal absorption of somatropin in Sprague-Dawley rats. / Thesis (M.Sc. (Pharmaceutics))--North-West University, Potchefstroom Campus, 2007.
134

Helicobacter pylori : molecular mechanisms for variable adherence properties

Vallström, Anna January 2009 (has links)
More than half of all people worldwide are infected with H. pylori. The infection always cause a gastric inflammation that may develop into peptic ulcer disease or gastric cancer. Attachment proteins, adhesins, mediate specific adherence of H. pylori to receptor structures on the human gastric mucosa. The best-characterized H. pylori adhesin-receptor interactions are the BabA adhesin and the binding to the fucosylated blood group antigens ABO/Lewis b (Leb) and the SabA adhesin and its binding to the inflammation associated sialyl-Lewis x antigen. During H. pylori infection the availability of receptor structures on the human gastric mucosa changes as a consequence of the host inflammatory and immune responses. Consequently the bacterial population need to adjust its adherence properties to stay colonized. This thesis describes mechanisms that generate H. pylori populations with variable adherence properties and mechanisms for adjustment of adhesin expression levels.In H. pylori strains devoid of Leb-binding, we found bacterial cells with Leb-binding. Isolation of such H. pylori clones demonstrated that the change in receptor binding phenotype was obtained via the mechanisms of homologous recombination and slipped strand mispairing (SSM). Disease presentation in relation to BabA expression was studied in H. pylori infected Mongolian gerbils. We showed that BabA was not essential for colonization but caused severe injury to the gastric mucosa and was turned off during long-term infection by nucleotide changes within the babA gene. Gerbils infected with BabA-weak-expressing strains maintained BabA expressing clones for a longer period than gerbils that were infected with BabA-high-expressing strains. Studies of the gerbil gastric mucosal glycosylation showed that gerbils respond in a similar way as humans and Rhesus monkeys which support gerbils to be a model suitable for studying H. pylori infection and disease outcome in relation to adherence.We studied the SSM mechanism of SabA phase variation and the cognate shift in sLex-binding phenotype and we show sLex-binding activity to be growth phase dependent. H. pylori vesicles were characterized for the major phosholipid and protein components. Virulence factors e.g., VacA, and CagA were identified and both the BabA and the SabA adhesins was shown to be located on the vesicle surface and to mediate specific binding to their cognate receptors present on the human gastric mucosa. H. pylori generate bacterial cells with different receptor binding phenotypes via the mechanisms of homologous recombination, SSM and nucleotide changes. These mechanisms will probably contribute to bacterial fitness by the generation of quasi species populations where some of the clones will be better adapted to the environmental chances during persistent infection.
135

Outer Membrane Vesicle Production in Escherichia coli Relieves Envelope Stress and is Modulated by Changes in Peptidoglycan

Schwechheimer, Carmen January 2014 (has links)
<p>Bacterial outer membrane vesicles (OMVs) are spherical buds of the outer membrane (OM) containing periplasmic lumenal components. OMVs have been demonstrated to play a critical part in the transmission of virulence factors, immunologically active compounds, and bacterial survival, however vesiculation also appears to be a ubiquitous physiological process for Gram-negative bacteria. Despite their characterized biological roles, especially for pathogens, very little is known about their importance for the originating organism as well as regulation and mechanism of production. Only when we have established their biogenesis can we fully uncover their roles in pathogenesis and bacterial physiology. The overall goal of this research was to characterize bacterial mutants which display altered vesiculation phenotypes using genetic and biochemical techniques, and thereby begin to elucidate the mechanism of vesicle production and regulation. One part of this work elucidated a synthetic genetic growth defect for a strain with reduced OMV production (&#916;nlpA, inner membrane lipoprotein with a minor role in methionine transport) and envelope stress (&#916;degP, dual function periplasmic chaperone/ protease responsible for managing proteinaceous waste). This research showed that the growth defect of &#916;nlpA&#916;degP correlated with reduced OMV production with respect to the hyprevesiculator &#916;degP and the accumulation of protein in the periplasm and DegP substrates in the lumen of OMVs. We further demonstrated that OMVs do not solely act as a stress response pathway to rid the periplasm of otherwise damaging misfolded protein but also of accumulated peptidoglycan (PG) fragments and lipopolysaccharide (LPS), elucidating OMVs as a general stress response pathway critical for bacterial well-being. The second part of this work, focused on the role of PG structure, turnover and covalent crosslinks to the OM in vesiculation. We established a direct link between PG degradation and vesiculation: Mutations in the OM lipoprotein nlpI had been previously established as a very strong hypervesiculation phenotype. In the literature NlpI had been associated with another OM lipoprotein, Spr that was recently identified as a PG hydrolase. The data presented here suggest that NlpI acts as a negative regulator of Spr and that the &#916;nlpI hypervesiculation phenotype is a result of rampantly degraded PG by Spr. Additionally, we found that changes in PG structure and turnover correlate with altered vesiculation levels, as well as non-canonical D-amino acids, which are secreted by numerous bacteria on the onset of stationary phase, being a natural factor to increase OMV production. Furthermore, we discovered an inverse relationship between the concentration of Lpp-mediated, covalent crosslinks and the level of OMV production under conditions of modulated PG metabolism and structure. In contrast, situations that lead to periplasmic accumulation (protein, PG fragments, and LPS) and consequent hypervesiculation the overall OM-PG crosslink concentration appears to be unchanged. Form this work, we conclude that multiple pathways lead to OMV production: Lpp concentration-dependent and bulk driven, Lpp concentration-independent.</p> / Dissertation
136

Perfil de miRNAs intracelulares e liberados via vesículas extracelulares na diferenciação neural de células-tronco pluripotentes. / Intracellular and extracellular vesicles miRNAs profile during neural differentiation of pluripotent stem cells.

Cruz, Lilian 05 April 2017 (has links)
As células-tronco processam e são sensíveis a múltiplos sinais dentro de seu microambiente, os quais podem exercer influências que regulam seu destino e sua função de forma espaço temporal. Neste contexto, células podem exercer seu papel biológico por transferir informação genética e alterar expressão gênica de alvos celulares através de vesículas extracelulares (VEs). MicroRNAs (miRNAs), uma classe de pequenos RNAs não codificantes, podem ser encontrados nestas vesículas e são considerados moléculas efetivas no controle do neurodesenvolvimento por regular genes chaves em tempo controlado. Pouco se sabe sobre como a diferenciação influencia o conteúdo de miRNAs liberados via VEs revelando o papel dos mesmos no microambiente de cada etapa do comprometimento neural. Assim, a proposta deste estudo foi analisar o perfil de miRNAs intracelulares e presentes em VEs envolvidos na diferenciação neural dopaminérgica de células-tronco pluripotentes e identificar os possíveis alvos regulados pelos mesmos como mecanismo de estabelecimento de um destino neural específico. / Stem cells sense and process multiple signals in their microenvironment, which can exert influences that regulate cell fate and function in a time spatial manner. In this context, the stem cells can exert their biological role transferring genetic information and altering the genetic expression of target cells through extracellular vesicles (EVs). MicroRNAs (miRNAs), a class of small non coding RNAs, can be found in those EVs and are considered effective molecules in the control of neurodevelopment and differentiation by regulating key genes in a time specific manner. However, little is known about how the cell differentiation influences the miRNAs content released through EVs, and how these molecules function in the microenvironment of each phase of neural commitment. Thus, the purpose of this study was to analyze the intracellular and EVs miRNAs profiles involved in the dopaminergic differentiation of pluripotent stem cells in attempt to identify possible targets regulated by miRNAs as a mechanism of specific neural fate decision.
137

Rôle de la clathrine dans le processus infectieux du champignon phytopathogène Botrytis cinerea / Role of clathrin in infection process of fungal plant pathogen Botrytis cinerea

Souibgui, Eytham 04 May 2017 (has links)
Les champignons sont les principaux agents pathogènes des plantes. Leur étude est donc essentielle pour contrôler les maladies et maintenir un bon rendement de production agricole. La nutrition de ces pathogènes est basée sur l'absorption de nutriments, préalablement dégradés par un arsenal d'enzymes lytiques secrétées. La sécrétion des protéines est assurée par le trafic intracellulaire mettant en jeu de nombreuses vésicules. Chez les champignons filamenteux, ces vésicules ont été visualisées en microscopie électronique mais le processus mis en jeu pour leur biogénèse n'est toujours pas élucidé. L'identification de ce mécanisme est un donc un prérequis pour comprendre la sécrétion de facteurs de virulence. Dans ce but, un mutant non pathogène altéré au niveau de l'expression du gène codant la chaine lourde de la clathrine a été sélectionné parmi une banque de mutants générés chez le champignon nécrotrophe Botrytis cinerea. Le gène codant pour la chaine lourde de la clathrine est essentiel chez de nombreux organismes, ainsi un mutant dominant négatif de la chaine lourde de la clathrine a été généré et confirme la perte de pathogénicité. La caractérisation du mutant par une approche de protéomique a mis en évidence un défaut de sécrétion de 82 protéines incluant des facteurs de virulence connus. Un défaut de production de vésicules intracellulaires a également été constaté. Par ailleurs, le marquage de la clathrine à la GFP a permis de préciser sa localisation dans les cellules fongiques. Enfin, de façon surprenante, aucun défaut d'endocytose n'a été constaté au sein des mutants déficients en clathrine. Cette étude met en évidence pour la première fois le rôle essentiel de la clathrine dans le processus infectieux d'un champignon pathogène ainsi que son rôle dans a sécrétion de facteurs de virulence / Fungi are the most important plant pathogens on agricultural and horticultural crops. Study of fungal pathogens remains essential to understand pathogenic process and control plant diseases. These organisms secrete high amount of degrading enzymes involved in plant decomposition and they feed by absorption of degraded nutriments. Secretory proteins were described to be transported form Endoplasmic Reticulum and Golgi apparatus to extracellular space through intracellular vesicles. In filamentous fungi, intracellular vesicles were observed using electron microscopy but their biogenesis process is still unknown. Therefore, elucidation of the process and the identification of proteins involved in secretory vesicles biogenesis remains a challenge to understand virulence factors delivery. A nonpathogenic mutant altered in the expression of the gene coding for clathrin heavy chain was selected in a random mutant library generated in the necrotrophic pathogen Botrytis cinerea,. This gene is essential in many organisms, thus a clathrin dominant negative mutant was generated and confirming the nonpathogenic phenotype observed on several host plant. In eukaryotic cells, clathrin heavy chain is mainly described to be involved in endocytosis, but it is also essential for high density secretory vesicles formation in yeast. Characterization of the mutants using a proteomic approach revealed a secretion defect of 82 proteins including known virulence factors, as Plant Cell Wall Degrading Enzymes and elicitors. Furthermore, the clathrin mutant revealed a strong reduction of intracellular vesicles production. Clathrin was also localized in living cells using fluorescent GFP-tag protein. Endocytosis was also studied and surprisingly, any observable defect was observed for clathrin mutants. This study demonstrated for the first time the essential role of clathrin in the infectious process of a fungal pathogen and its role in virulence factors secretion
138

Desenvolvimento de vesículas poliméricas de poli(etileno glicol)-b-poli(&#949;-caprolactona) (PEG-PCL) para veiculação de L-asparaginase / Development of polyethylene glycol-polycaprolactone polymer vesicles for L-Asparaginase

Vasconcelos, Juliana de Almeida Pachioni 21 June 2018 (has links)
A L-Asparaginase (ASNase) é um importante agente quimioterapêutico utilizado para o tratamento da leucemia linfoblástica aguda (ALL) há mais de 40 anos. No entanto, devido à origem biológica da ASNase, enzima produzida por Escherichia coli, problemas como a imunogenicidade e baixa meia vida-plasmática devem ser considerados. Com o objetivo de minimizar essas desvantagens, várias ASNases homólogas bem como formulações de ASNase de E. coli foram investigadas. Nenhuma das formulações desenvolvidas, entretanto, foi capaz de resolver definitivamente esses problemas associados à sua origem. Nesse sentido, considerando os recentes avanços na ciência de polímeros com a possibilidade do obtenção de vesículas poliméricas usando copolímeros, este trabalho concentrou-se no desenvolvimento de polimerossomos de poli(etileno glicol)-b-poli(&#949;-caprolactona) (PEG-PCL) para encapsular a ASNase. Diversas condições experimentais foram investigadas e, ao final, os polimerossomos foram produzidos pela técnica de hidratação do filme polimérico utilizando a centrifugação como técnica de pós-filme para remoção de copolímero precipitado, produzindo assim vesículas polímericas de 120 a 200nm com PDI de aproximadamente 0,250. A eficiência de encapsulação da ASNase, utilizando as metodologias de centrifugação ou cromatografia de exclusão molecular, revelou taxas de encapsulação de 20-25% e 1 a 7%, repectivamente. Esses resultados apontam a importância de se determinar a eficiência de encapsulação por cromatografia de exclusão molecular ou método direto no caso de nanoestruturas auto-agregadas formadas por copolímeros, devido a valores superestimados com o emprego da centrifugação. Ainda que estudos complementares se façam necessários para liberação da enzima encapsulada ou penetração da L-asparagina nas vesículas, nossos resultados demonstram o potencial de polimerossomos para veiculação de ASNase, bem como de outras proteínas terapêuticas. / L-Asparaginase (ASNase) is an important chemotherapeutic agent used for the treatment of acute lymphoblastic leukemia (ALL) for more than 40 years. However, due to the biological origin of ASNase (produced by Escherichia coli) some drawbacks such as immunogenicity and low plasma half life are present. In order to minimize the disadvantages, several ASNases proteoforms and formulations of E. coli ASNase were investigated. However, none of this formulations completely solved the main drawbacks of ASNase. In this sense, considering the recents advances in polymers science with the possibility to develop polymeric vesicles using copolymers, this work aimed at the development of poly(ethylene glycol)-b-poly(&#949;-caprolactone) (PEG-PCL) vesicles to encapsulate ASNase. Different experimental conditions were investigated and, the final polymersomes formulation was prepared by film hydratation using centrifugation as a post-film technique to remove the bulky coplymer. Polymeric vesicles of 120 to 200nm with PDI of approximately, 0.250 were obtained. The encapsulation efficiency of ASNase was determined indirectly by centrifugation and directly by size exclusion chromatography, resulting in encapsulation rates of 20-25% and 1 to 7%, respectively. These results indicate the importance of determining the efficiency of encapsulation by size exclusion chromatography or direct method in the case of self-aggregated nanostructures formed by copolymers, due to values overestimated with the use of centrifugation. Our results point to the potential of polymersomes for ASNase delivery, as well as other therapeutic proteins. Nonetheless, complimentary studies are still necessary for ASNase release or L-asparagine penetration into the vesicles.
139

Coencapsulação de curcumina e vitamina D3 em lipossomas multilamelares / Co-encapsulation of curcumin and vitamin D3 in multilamellar liposomes

Chaves, Matheus Andrade 23 February 2017 (has links)
Atualmente, a demanda por alimentos com apelo funcional tem se tornado cada vez mais recorrente dentre os consumidores devido a uma crescente busca por hábitos de vida mais saudáveis. Sendo assim, o desenvolvimento de técnicas que possibilitem uma adição mais efetiva de ingredientes funcionais em matrizes alimentícias se torna uma necessidade. Essas técnicas devem possibilitar principalmente (i) a incorporação de mecanismos de liberação sustentada na formulação; (ii) o aumento da bioacessibilidade e biodisponibilidade aos ingredientes, a partir do controle da microestrutura do alimento. Esse projeto visa contemplar essas duas premissas, ao propor a encapsulação de dois bioativos hidrofóbicos, a curcumina e a vitamina D3, conhecidos pelas suas propriedades antioxidantes e nutracêuticas, em carreadores de origem lipídica, os lipossomas, estabilizando-os com diferentes hidrocoloides - goma xantana, goma guar e inulina. Os lipossomas foram produzidos por hidratação de prolipossomas e suas propriedades físico-químicas foram caracterizadas ao longo de 42 dias de armazenagem, a partir de análises de diâmetro médio hidrodinâmico, potencial zeta, colorimetria instrumental e quantificação de bioativos encapsulados. Análises que permitiram a caracterização da microestrutura das dispersões produzidas também foram realizadas, sendo elas: calorimetria diferencial de varredura (DSC), espalhamento de raios-X a baixos ângulos (SAXS) e ensaios reológicos. As análises de SAXS mostraram que lipossomas produzidos na presença de curcumina são mais estáveis que àqueles produzidos na ausência da mesma e que não houve mudança na estrutura da bicamada lipídica das vesículas após a adição de vitamina D3, mesmo quando uma alta concentração foi incorporada ao sistema (80.000 UI). Por fim, verificou-se que a coencapsulação foi possível em lipossomas multilamelares estabilizados apenas com gomas guar e xantana, resultado que pode ser comprovado pelo alto teor de retenção dos bioativos ao longo do tempo de armazenagem. / Currently, the demand for food with functional appeal has become increasingly recurrent among the consumers due to a growing search for healthier living habits. Therefore, the development of techniques that allow a more effective addition of functional ingredients in food matrices becomes a necessity. These techniques should mainly enable to (i) incorporate a sustained release mechanisms into the formulation; (ii) increase the bioaccessibility and bioavailability to these ingredients, from the control of the food microstructure. This project aims to contemplate these two premises by proposing the encapsulation of two hydrophobic bioactives, curcumin and vitamin D3, known for their antioxidant and nutraceutical properties, in liposomes - lipid carriers - stabilizing them with different hydrocolloids - xanthan gum, guar gum and inulin. Liposomes were produced by proliposomes hydration and their physicochemical properties were characterized during 42 days of storage, including analyzes of hydrodynamic average diameter, zeta potential, instrumental colorimetry and quantification of encapsulated bioactives. Analyzes that allowed the microstructure characterization of the produced dispersions were also performed, including: differential scanning calorimetry (DSC), small-angle X-ray scattering and rheological tests. The SAXS analysis showed that liposomes produced in the presence of curcumin were more stable when compared to the empty ones and that there was no change in the lipid bilayer of the vesicles after the addition of vitamin D3, even when a high concentration was incorporated into the system (80,000 IU). Finally, it was concluded that the coencapsulation was possible in multilamellar liposomes stabilized with guar and xanthan gums, a result that can be evidenced by the high content of bioactives retained throughout the storage time.
140

Caracterização de copolímeros e efeito da estrutura em sistemas biomiméticos / Copolymers characterization and effect on the structure of biomimetic systems

Saraiva, Greice Kelle Viegas 16 June 2015 (has links)
Copolímeros, macromoléculas orgânicas ou inorgânicas com alta massa molar, consistem de unidades monômericas repetidas, unidas por ligações covalentes e que apresentam mais de um tipo de monômero. Neste trabalho estudamos três copolímeros constituídos por dois blocos distintos, isto é copolímeros dibloco, onde um dos blocos é constituído pelo polimetacrilato de metila, PMMA e o outro pelo polimetacrilato de N,N dimetilamino, PDMAEMA, e o homopolímero de PDMAEMA. A fórmula geral dos copolímeros dibloco estudados é PMMAm-b-PDMAEMAn onde o número de monômeros de cada bloco é representado pelos índices m e n. Os copolímeros PMMA1-b-PDMAEMA6,3 (MM, 54.200), PMMA1-b-PDMAEMA3,0 (MM 27.558), o PMMA1-b-PDMAEMA1,1 (MM 25.555) e o homopolímero PDMAEMA (MM 41.614,9) tiveram suas massas molares e a razão entre os monômeros de cada bloco caracterizados por cromatografia de gel permeação, GPC, e NMR. Determinamos a concentração micelar crítica (CMC) dos copolímeros e verificamos, por RMN e fluorescência, o efeito da concentração e do pH na sua agregação. A interação dos copolímeros com vesículas unilamelares grandes, LUVs, preparadas com misturas de fosfatidilcolina, PC, e fosfatidilglicerol, PG, foi estudada em diferentes condições de pH e força iônica. A interação dos polímeros com as LUVs também foi estudada medindo-se o diâmetro hidrodinâmico e potencial zeta das LUVs na presença dos polímeros. Observou-se que, quando a razão polímero/lipídio é alta, os polímeros se ligam às LUVs, neutralizando completamente a carga das vesículas. Quando a concentração de LUVs é próxima à dos polímeros, forma-se uma rede que conduz à agregação e precipitação dos complexos. Estudamos o efeito dos polímeros na permeabilização de LUVs e vesículas unilamelares gigantes (GUVs) preparadas com misturas de PC:PG. Os copolímeros permeabilizaram as LUVs, dependendo da razão polímero/lipídio, do pH, força iônica e das características hidrofóbicas e hidrofílicas de cada copolímero. Quanto maior a porcentagem de PG nas LUVs maior a interação com os copolímeros. A ligação dos copolímeros às LUVs deve produzir segregação dos fosfolipídios negativos na bicamada das LUVs (i.e., separação lateral de fases) facilitando a permeabilização das vesículas. Demonstramos que os copolímeros se ligam à superfície das GUVs modificando a sua forma e levando ao rompimento das vesículas. Estes efeitos foram modulados pelo pH e a força iônica do meio. O efeito de permeabilização dos copolímeros foi correlacionado com as razões entre os blocos hidrofóbicos e hidrofílicos. Quando o copolímero tem uma maior fração de PDMAEMA, o bloco mais hidrofílico do copolímero, este efeito é mais evidente. A porcentagem de permeabilização, após um tempo definido, para copolímeros de mesma massa molar, como o PMMA1-b-PDMAEMA3,0 (MM 27.558) e o PMMA1-b-PDMAEMA1,1 (MM 25.555), é muito maior com o copolímero com maior porção hidrofílica, o PMMA1-b-PDMAEMA3,0. O homopolímero DMAEMA também se mostrou eficiente na interação com as LUVs, porém menos que o PMMA1-b-PDMAEMA6,3.que possui maior numero de unidades DMAEMA e uma sequencia de monômeros de MMA. Demonstramos, nesta Tese, que o efeito de copolímeros sintéticos contendo regiões hidrofóbicas e hidrofílicas são bons modelos de peptídeos e proteínas permitindo avaliar quantitativamente o efeito dessas interações em modelos de membranas. / Copolymers are organic or inorganic macromolecules with high molecular weight, consisting of repeated monomer units joined by covalent bonds and exhibit more than one type of monomer. Here, we studied three copolymers consisting of two different blocks, i.e. diblock copolymers, where one block is constituted by methyl polymethacrylate, PMMA and other by polymethacrylate N, N-dimethylamino, PDMAEMA and a homopolymer PDMAEMA. The general formula of the diblock copolymers studied was PMMAm-b-PDMAEMAn where the number of monomers of each block is represented by indexes m and n. The PMMA1-b-PDMAEMA6,3 copolymers (MW, 54,200), PMMA1 PDMAEMA3,0-b (MW 27,558), the PMMA1 PDMAEMA1,1-b (MW 25,555) and PDMAEMA homopolymer (MW 41614.9) had their molecular weights and the ratio between the monomers of each block characterized by gel permeation chromatography, GPC, and NMR. The critical micelle concentration (CMC) of the copolymers was determined by fluorescence and the aggregation of the copolymers verified by NMR. The effect pH on the copolymers CMC was also determined. The interaction of copolymers with large unilamellar vesicles, LUV, prepared with mixtures of phosphatidylcholine, PC, and phosphatidylglycerol, PG, was studied under different conditions of pH and ionic strength. The interaction of the polymers with the LUVs was also studied measuring the hydrodynamic diameter and zeta potential of the LUVs in the presence of the polymers. It was observed that when the ratios polymer / lipid are high, the polymers bind to the LUVs, completely neutralizing the charge of the vesicles. When the concentration of LUVs is close to that of the polymers, it forms a network that leads to aggregation and precipitation of the complexes. We studied the effect of polymers in permeabilization LUVs and giant unilamellar vesicles (GUVs) prepared with PC:PG. The copolymers permeabilized the LUVs, depending on the ratio polymer / lipid, pH, ionic strength and the hydrophobic and hydrophilic characteristics of each copolymer. The higher the percentage PG LUVs lead to greater interaction with the copolymers. The binding of the copolymers to the LUVs with negative charge induced phase separation of phospholipids in the bilayer of LUVs (ie, lateral phase separation) facilitating the permeability of the vesicles. We demonstrate that copolymers bind to the surface of GUVs changing its shape and leading to rupture of vesicles. These effects are modulated by pH and ionic strength of the media. The permeabilization effect of the copolymers was correlated with the ratios of the hydrophobic and hydrophilic blocks. When the copolymer has a larger fraction of PDMAEMA, the more hydrophilic block copolymer, this effect is more evident. The percentage of permeabilization, after a set time, for the same molar mass copolymers such as b-PDMAEMA3,0 PMMA1 (MW 27,558) and PMMA1 PDMAEMA1,1-b (MW 25,555), is much more efficient with copolymer with greater hydrophilic portion, the b-PMMA1 PDMAEMA3,0. The DMAEMA homopolymer also proved efficient in interacting with the LUVs. We demonstrated that synthetic copolymers containing hydrophobic and hydrophilic regions are good models of peptides and proteins allowing quantitatively evaluate the effects of these interactions on model membranes

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