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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.
171

Influence de la dispersion des charges et de la conformation des chaines sur les propriétés mécaniques de systèmes nanocomposites SBR/Silice / Influence of filler dispersion and chain conformation on mechanical properties of SBR/Silica nanocomposite systems

Bouty, Adrien 03 December 2013 (has links)
Dans l’industrie du pneumatique, l’incorporation de nanoparticules de silice dans les élastomères permet d’obtenir des pneumatiques avec des propriétés mécaniques améliorées. D’un point de vue fondamental, deux contributions sont communément invoquées pour expliquer ces changements : (i) une contribution du réseau de charges, fortement dépendante de leur état de dispersion, (ii) une contribution des chaines dont la conformation est potentiellement modifiée en présence du réseau de charges. Cependant, les mécanismes permettant de relier cette structure nanométrique aux propriétés macroscopiques du matériau sont encore mal compris. Dans ce contexte, nous avons synthétisé des systèmes SBR/Silice modèles constituant une première approche de systèmes industriels plus complexes. En modifiant les conditions de dispersion au moyen d’agent de greffage, nous avons obtenu des nanocomposites avec des dispersions variées et reproductibles, avec des organisations multi-échelle. Celles-ci ont été caractérisées finement par l’utilisation combinée de la Diffusion de Rayons X aux Petits Angles (DXPA) et de la Microscopie Electronique en Transmission (MET). La conformation des chaines, déterminée expérimentalement par Diffusion de Neutrons aux Petits Angles (DNPA), n’est pas affectée par un effet à longue distance des charges. La caractérisation quantitative de la dispersion a permis de mettre en évidence le rôle prépondérant de la compacité des agrégats de silice et de la densité de leur réseau sur le renforcement dans le régime élastique. / In tire industry, the incorporation of nano-sized silica in rubber leads to elastomeric materials with enhanced mechanical properties. In a fundamental approach, two main contributions are commonly accepted to explain these changes: (i) a first from the filler network highly depending on their dispersion, (ii) a second from the chains whose the conformation is potentially modified by the filler network. However, the mechanisms which permit to correlate these nanometric structural properties to the macroscopic mechanical properties are still poorly understood. In such a context, we have synthesized model nanocomposites SBR/silica systems constituting a first approach of more complex industrial systems. By varying dispersions conditions by using grafting agents, we have obtained various and reproducible dispersions, with multi-scale organizations. They have been finely characterized by combining Small Angle X-Ray Scattering (SAXS) and Transmission Electron Microscopy (TEM). Chain conformation experimentally determined by Small Angle Neutron Scattering (SANS) is not affected by any long range effect of fillers. The quantitative characterization of filler dispersions has shown the major role of silica aggregates compactness and the density of their network on the reinforcement in the elastic regime.
172

Desenvolvimento e caracterização de sistemas líquido-cristalinos para aplicação tópica de metotrexato : estudos de liberação, retenção e permeação in vitro /

Von Zuben, Eliete de Souza. January 2012 (has links)
Orientador: Maria Virgínia Costa Scarpa / Coorientador: Marlus Chorilli / Banca: Renata Fonsenca Vianna Lopez / Banca: Leila Aparecida Chiavacci / Resumo: Amplamente utilizado no tratamento de vários tipos de câncer e na psoríase, o metotrexato (MTX) é um quimioterápico, estruturalmente análogo do ácido fólico, que apesar de sua eficácia apresenta uma série de efeitos adversos, sendo a hepatotoxicidade o mais grave. Atualmente os sistemas nanoestruturados líquido-cristalinos de fase lamelar estão sendo utilizados como dispositivos para liberação modificada de fármacos, sendo vantajosos na liberação tópica de várias substâncias, conforme suas características de interação com o estrato córneo e as outras camadas da pele, evitando assim efeitos adversos sistêmicos. Os objetivos deste trabalho foram desenvolver sistemas nanoestruturados líquido-cristalinos de fase lamelar, acrescidos de MTX, caracteriza-los do ponto de vista físico, realizar a análise estrutural das formulações, através de microscopia de luz polarizada (MLP), espalhamento de raios-X a baixo ângulo (SAXS) e suas propriedades reológicas, executar os testes de estabilidade preliminar (TEP) das formulações, validar o método analítico para a quantificação de MTX por CLAE e executar ensaios de liberação, permeação e retenção in vitro. As formulações preparadas a partir da mistura do poliéter funcional siloxano (Dow Corning® 5329) como tensoativo, com silicone fluido de co-polímero glicol (Dow Corning® 193C) como fase oleosa titulados em fase aquosa, composta por tampão fosfato de potássio monobásico 0,01M pH 7,4, apresentaram fases líquido-cristalinas do tipo lamelar, confirmados pelos ensaios de MLP e SAXS. Os TEPs evidenciaram que as formulações A, B e C mantiveram-se estáveis durante o período do estudo. Os estudos do comportamento reológico das formulações apresentaram-se como fluidos pseudoplásticos não-newtonianos tixotrópicos ... / Abstract: Widely used in the treatment of some types of cancer, the methotrexate (MTX) is a chemotherapeutic, structurally analog of the folic acid, although its effectiveness, presents a series of adverse effect, being the most serious hepatotoxicity. Currently, the liquid crystal lamellar phase is being used of devices for modified release of drug demonstrated to be advantageous in the release topic of some substances, given to the characteristics of interaction with the stratum corneun and other layers of the skin, avoiding systemic adverse effects. The aims of this research had been to develop and to characterize liquid crystalline nanostructure systems of lamellar phase, increased of MTX of the physical point of view, also carry through the structural analysis of the formulations through by polarized light microscopy (PLM), small-angle X-ray scattering (SAXS) and rheological properties. Perform stability studies of the chosen formulations, validate the analytical method of quantification of MTX for High Performance Liquid Chromatography (HPLC) and carry through release assay, cutaneous permeation and skin retention in vitro for the chosen formulations. The formulations prepared by the mixture of polyether functional siloxane as surfactant, with silicone polyether copolymer as oily phase and phosphate buffer 0,01M pH 7,4 as aqueous phase demonstrating lamellar liquid-crystalline phases, confirmed by assays of PLM and SAXS. The stability studies showed that formulations A, B and C remained stable throughout the period of the study. The study of the rheological behavior of the formulations presented as not Newtonian pseudoplastic fluid and thixotropic ... / Mestre
173

Determination of the structure of y-alumina using empirical and first principle calculations combined with supporting experiments

Paglia, Gianluca January 2004 (has links)
Aluminas have had some form of chemical and industrial use throughout history. For little over a century corundum (α-Al2O3) has been the most widely used and known of the aluminas. The emerging metastable aluminas, including the γ, δ, η, θ, κ, β, and χ polymorphs, have been growing in importance. In particular, γ-Al2O3 has received wide attention, with established use as a catalyst and catalyst support, and growing application in wear abrasives, structural composites, and as part of burner systems in miniature power supplies. It is also growing in importance as part of the feedstock for aluminium production in order to affect both the adsorption of hydrogen fluoride and the feedstock solubility in the electrolytic solution. However, much ambiguity surrounds the precise structure of γ-Al2O3. Without proper knowledge of the structure, understanding the properties, dynamics and applications will always be less than optimal. The aim of this research was to contribute towards settling this ambiguity. This work was achieved through extensive computer simulations of the structure, based on interatomic potentials with refinements of promising structures using density functional theory (DFT), and a wide range of supporting experiments. In addition to providing a more realistic representation of the structure, this research has also served to advance knowledge of the evolution of the structure with changing temperature and make new insights regarding the location of hydrogen in γ-Al2O3. / Both the molecular modelling and Rietveld refinements of neutron diffraction data showed that the traditional cubic spinel-based structure models, based on m Fd3 space group symmetry, do not accurately describe the defect structure of γ-Al2O3. A more accurate description of the structure was provided using supercells of the cubic and tetragonal unit cells with a significant number of cations on c symmetry positions. These c symmetry based structures exhibited diffraction patterns that were characteristic of γ-Al2O3. The first three chapters of this Thesis provide a review of the literature. Chapter One provides a general introduction, describing the uses and importance of the aluminas and the problems associated with determining the structure of γ-Al2O3. Chapter Two details the research that has been conducted on the structure of vi γ-Al2O3 historically. Chapter Three describes the major principles behind the computational methods employed in this research. In Chapter Four, the specific experimental and computational techniques used to investigate the structure of γ-Al2O3 are described. All preparation conditions and parameters used are provided. Chapter Five describes the methodology employed in computational and experimental research. The examination of the ~ 1.47 billion spinel-based structural possibilities of γ-Al2O3, described using supercells, and the selection of ~ 122,000 candidates for computer simulation, is detailed. This chapter also contains a case study of the structure of κ-Al2O3, used to investigate the applicability of applying interatomic potentials to solving complex structures, where many possibilities are involved, and to develop a systematic procedure of computational investigation that could be applied to γ-Al2O3. Chapters Six to Nine present and discuss the results from the experimental studies. / Preliminary heating trials, performed to determine the appropriate preparation conditions for obtaining a highly crystalline boehmite precursor and an appropriate calcination procedure for the systematic study of γ-Al2O3, were presented in Chapter Six. Chapter Seven details the investigation of the structure from a singletemperature case. Several known structural models were investigated, including the possibility of a dual-phase model and the inclusion of hydrogen in the structure. It was demonstrated that an accurate structural model cannot be achieved for γ-Al2O3 if the cations are restricted to spinel positions. It was also found that electron diffraction patterns, typical for γ-Al2O3, could be indexed according to the I41/amd space group, which is a maximal subgroup of m Fd3 . Two models were presented which describe the structure more accurately; Cubic-16c, which describes cubic γ-Al2O3 and Tetragonal-8c, which describes tetragonal γ-Al2O3. The latter model was found to be a better description for the γ-Al2O3 samples studied. Chapter Eight describes the evolution of the structure with changing calcination temperature. Tetragonal γ-Al2O3 was found to be present between 450 and 750 °C. The structure showed a reduction in the tetragonal distortion with increasing temperature but at no stage was cubic γ-Al2O3 obtained. Examination of the progress of cation migration indicates the reduction in the tetragonal nature is due to ordering within inter-skeletal oxygen layers of the unit cell, left over from the breakdown of the hydroxide layers of boehmite when the transformation to γ-Al2O3 occurred. Above 750 °C, δ-Al2O3 was not observed, but a new phase was identified and designated γ.-Al2O3. / The structure of this phase was determined to be a triple cell of γ-Al2O3 and is herein described using the 2 4m P space group. Chapter Nine investigates the presence of hydrogen in the structure of γ-Al2O3. It was concluded that γ-Al2O3 derived from highly crystalline boehmite has a relatively well ordered bulk crystalline structure which contains no interstitial hydrogen and that hydrogen-containing species are located at the surface and within amorphous regions, which are located in the vicinity of pores. Expectedly, the specific surface area was found to decrease with increasing calcination temperature. This trend occurred concurrently with an increase in the mean pore and crystallite size and a reduction in the amount of hydrogen-containing species within the structure. It was also demonstrated that γ-Al2O3 derived from highly crystalline boehmite has a significantly higher surface area than expected, attributed to the presence of nano-pores and closed porosity. The results from the computational study are presented and discussed in Chapter Ten. Optimisation of the spinel-based structural models showed that structures with some non-spinel site occupancy were more energetically favourable. However, none of the structural models exhibited a configuration close to those determined from the experimental studies. Nor did any of the theoretical structures yield a diffraction pattern that was characteristic of γ-Al2O3. This discrepancy between the simulated and real structures means that the spinel-based starting structure models are not close enough to the true structure of γ-Al2O3 to facilitate the derivation of its representative configuration. / Large numbers of structures demonstrate migration of cations to c symmetry positions, providing strong evidence that c symmetry positions are inherent in the structure. This supports the Cubic-16c and Tetragonal-8c structure models presented in Chapter Seven and suggests that these models are universal for crystalline γ-Al2O3. Optimisation of c symmetry based structures, with starting configurations based on the experimental findings, resulted in simulated diffraction patterns that were characteristic of γ-Al2O3.
174

Interaction et structure de copolymères neutres-chargés dissymétriques en solution aqueuse

Muller, François 01 December 2000 (has links) (PDF)
Nous avons étudié les propriétés volumiques de copolymères diblocs neutres-chargés dissymétriques. Ces molécules sont composées d'une courte partie neutre de poly(éthylène propylène) (PEP) ou de poly(tert-butyl styrène) (PtBs), et d'une longue partie chargée (polyélectrolyte) poly(styrène sulfonate) sodium (PSSNa) de taux de sulfonation supérieur à 80. Des expériences de diffusion de neutrons aux petits angles et de diffusion quasi-élastique de la lumière ont montré que ces copolymères s'auto-assemblent en solution aqueuse en micelles sphériques : coeur composé de l'auto-association des parties neutres en mauvais solvant, duquel émergent les parties chargées en une grande couronne qui peut être vue comme une brosse polyélectrolyte en géométrie sphérique. La forme et la taille des coeurs hydrophobes ont été trouvées invariantes en fonction de la concentration en polymère et de la concentration en électrolyte ajouté (sel monovalent, NaCl). Cette invariance a permis de déterminer les facteurs de structure des solutions (images des interactions) : les interactions électrostatiques ordonnent les solutions même dans le régime dilué (régime sans contact entre micelles). Dans le régime dilué sans sel ajouté, les parties polyélectrolytes (composant la couronne micellaire) ont été trouvées avec une conformation étendue (quasi-bâtons). Avec du sel ajouté, cette conformation devient de plus en plus flexible dès que la concentration en sel est supérieure à la concentration interne en sel d'une micelle. Dans le régime concentré sans sel ajouté, l'apparition d'un pic polyélectrolyte aux petites échelles, typique de la formation d'un semi dilué de polyélectrolytes, a été mise en évidence. De manière surprenante, cet ordre polyélectrolyte coexiste avec l'ordre entre micelles. L'influence du nombre de chaîne par micelle (nombre d'agrégation) a été discutée. Avec du sel ajouté, le pic polyélectrolyte disparaît, tandis que les solutions restent ordonnées. La distribution des contre-ions a été étudiée par des expériences de diffusion de rayons x aux petits angles. Les contre-ions Na+ ont été remplacés par d'autres contre-ions (typiquement Cs+ et TMA+) par dialyse des solutions. Dans le cas des micelles de faible nombre d'agrégation, la distribution des contre-ions a été trouvée en accord avec la distribution donnée par l'équation de Poisson-Bolztmann autour d'un bâton. Dans le cas des micelles de grand nombre d'agrégation, une forte corrélation entre contre-ions, due au recouvrement des différents nuages, a été mise en évidence. Enfin, la concentration micellaire critique (concentration à partir de laquelle des micelles existent) et l'équilibre des solutions ont été étudiés par électrophorèse capillaire. Les résultats ne sont pas encore bien compris : il existe, quelle que soit la concentration en polymère, 20% de chaînes libres (non associées en micelles).
175

Modelle für die Kleinwinkel-Streuung und Anwendungen

Heinemann, André 30 September 2001 (has links) (PDF)
This work contributes to the structure investigation on the basis of small-angle neutron scattering (SANS). A new analytical scattering function for polydispers precipitates with diffusion zones is presented and used in SANS experiments. For diluted and dense packed systems structure describing parameter values were obtained. These results lead to a deeper understanding of the process of nanocristallization of amorphous alloys. The investigation of SANS on Fe73.5Si15.5B7Cu1Nb3 shows that the Fe3Si type nanocrystals created in the amorphous matrix during annealing are covered by Nb-atoms. The accumulation of Nb-atoms or Nb-B-aggregates acting as inhibitors at the surface of the nanocrystals is assumed to be the basic mechanism controlling the evolution of the precipitates. For the first time this inhibitor-model is shown to be correct without doubts. In the Zr32Ti7.5Al10Cu20Ni8 amorphous alloy the formation of ultrafine nanocystals of about 2-3 nm in diameter was observed. The nanocrystallization starts after ordered clusters achieved particular sizes and a certain packing fraction. This leads to a new model for the microscopic formation procedure of ultrafine nanocrystals in this amorphous alloy. Theoretical models of fractal systems are applied to complicated polydisperse materials. Both the theory for an exact surface fractal of Hermann (1994)and the model for coupled volume and surface fractals in the formulation of Wong (1992) are shown to be applicable. The latter approach is applied to experimental data here for the first time. With computer simulations conditions for scattering experiments were optained therewith predictions about the quality and grade of fractality in real specimens become possible. / Die vorliegende Arbeit ist ein Beitrag zur Strukturaufklärung mittels Neutronen-Kleinwinkel-Streuung (SANS). Es wird eine neu entwickelte analytische Streufunktion für polydisperse Ausscheidungen mit Diffusionszonen genutzt, um SANS Experimente auszuwerten. Sowohl für verdünnte, als auch für dicht gepackte Systeme werden auf diese Weise quantitative Strukturparameter gewonnen. Diese liefern einen Beitrag zum Verständnis des Nanokristallisationsverhaltens amorpher metallischer Gläser. Die Auswertung der Experimente an on Fe73.5Si15.5B7Cu1Nb3 zeigt, dass Fe3Si-artige Nanokristalle, die während der Temperaturbehandlung in der amorphen Matrix entstehen, von Nb-Atomen bedeckt werden. Diese Ansammlung von Nb-Atomen oder von entsprechenden Nb-B-Aggregaten auf der Oberfläche dieser Ausscheidungen hemmt das Größenwachstum der entstehenden Nanokristalle. Dieses Inhibitor-Modell wurde hier erstmals zweifelsfrei bestätigt. In Proben des amorphen metallischen Glases Zr32Ti7.5Al10Cu20Ni8 werden ultrafeine Ausscheidungen mit Durchmessern von 2-3 nm beobachtet. Diese entstehen verzögert nach der Ausprägung dicht gepackter Gebiete mit erhöhter Nahordnungsstruktur. Es wird ein Modell vorgeschlagen, das diesen Prozess erklären kann. Theoretisch diskutierte Modelle für fraktale Systeme werden auf komplizierte polydisperse Materialien angewendet. Sowohl die Formulierung von Hermann (1994) für ein exaktes Oberflächenfraktal, als auch der erstmals auf experimentelle Daten angewendete Ansatz von Wong (1992) für ein gekoppeltes Volumen- und Oberflächenfraktal erweisen sich als praktisch nutzbar. Mittels Computersimulationen wurden Bedingungen abgeleitet, die an Streuexperimente zu stellen sind, damit Aussagen über Qualität und Grad von Fraktalität in realen Proben getroffen werden können.
176

Nanofibres de cellulose pour la production de bionanocomposites / Cellulose nanofibers for the production of bionanocomposites

Nechyporchuk, Oleksandr 02 October 2015 (has links)
Un des principaux challenges dans le contexte du développement des matériaux biocomposites est de remplacer les matières plastiques à base de pétrole par des matériaux biosourcés. En raison de leurs origines naturelles, d'une résistance relativement élevée et de leur capacité à former des produits transparents, les nanofibres de cellulose possèdent un grand potentiel d'applications dans les matériaux composites. Dans ce travail des résultats ont été apportés premièrement sur l'optimisation des procédés de productions de nanofibres de cellulose par des traitements biochimiques et mécaniques, deuxièmement sur leurs propriétés rhéologiques et structurelles en milieu aqueux et troisièmement sur la production de composites à matrice de latex. Les questions de dispersions homogènes de nanofibres de cellulose dans la matrice et des interactions entre ces composants à des fins de renforcement des bio-composites ont été étudiés en détails. / One of the main challenges in the context of biocomposites development is to replace petroleum-based materials with bio-based. Because of their natural origin, relatively high strength and the ability to form transparent products, cellulose nanofibers have a large potential for application in the composite materials. This work was focused primarily on the optimization of cellulose nanofiber production methods using biochemical and mechanical treatments, secondly on their rheological and structural properties in an aqueous medium and thirdly on the production of latex-based composites. The questions of homogeneous dispersion of cellulose nanofibers in the matrix and the interactions between these components for the purpose of matrix reinforcement are particularly addressed.
177

Neutron scattering and methodological developments for the study of the bacterial translocation machinery / Diffraction de neutrons et développements méthodologiques pour l'étude de la machinerie de translocation bactérienne

Brocco, Benjamin 04 July 2018 (has links)
La diffusion de neutrons à petits angles (SANS) est une méthode utilisée pour l'étude d'une large variété de particules en solution. Combinée à un marquage isotopique et à la variation de contraste, elle permet d'obtenir des informations structurales uniques sur des complexes biologiques impliquant plusieurs partenaires, la rendant particulièrement intéressante pour l'étude des mécanismes de translocation. Dans les trois grands domaines de la vie, jusqu'à 30% des protéines doivent être sécrétées hors de la cellule ou intégrées dans sa membrane. Ces mécanismes complexes impliquent deux grands chemins de translocation qui dépendent de multiples protéines cytoplasmiques et membranaires.L'Holotranslocon est un large complexe protéique membranaire composé de sept sous-unités : le translocon triméric SecYEG et les sous-unités accessoires SecD-SecF-YidC-YajC. Cet assemblage peut sécréter des protéines vers l'extérieur de la cellule et en intégrer dans la bicouche lipidique. Nous avons utilisé une sélection de méthodes biophysiques pour analyser différentes stratégies de préparation et la diffusion de neutrons pour analyser les caractéristiques structurales de ce complexe. Nous avons étudié l'efficacité des protocoles actuels pour la production d'un échantillon suffisamment concentré et homogène mais aussi la possibilité d'utiliser des Amphipols comme substitut aux détergents classiquement utilisés pour la purification de ce complexe. Nous avons également tenter de deutérer HTL pour étendre les possibilités offertes par le SANS dans ce contexte. Alors que les caractérisations biophysiques utilisées n'ont pas permis d'améliorer les méthodes de préparation actuelles, la diffusion de neutron nous a permis de confirmer la présence de lipides au centre de la structure. Nous avons assuré la fiabilité de cette stratégie pour étudier des complexes bien définis, formés par plusieurs composants. Nous proposons des méthodes alternatives, basées sur la fluorescence ou la génération de lipodisques, pour l'étude de ce système complexe.Nous avons également étudié la protéine tétramérique SecB, une chaperonne moléculaire qui est impliquée dans l'adressage des substrats de translocation aux translocons membranaires. Puisque SecB interagit avec des partenaires cytosoliques et ses propres substrats, nous avons utilisé la diffusion de neutrons ainsi que le marquage au deutérium pour analyser des complexes pertinents dans le processus de translocation et impliquant jusqu'à trois partenaires : SecB, un substrat déplié et l'ATPase SecA. Nous avons utilisé les valeurs de "contrast match point" mesurées pour obtenir des informations sur la stœchiométrie et l'affinité des différents assemblages. L'analyse des rayons de girations a permis de localiser les différents composants au sein de ces complexes. De plus, nous avons montré que SecB s'étend lorsqu'elle reconnait son substrat et nous proposons un modèle fonctionnel, basé sur nos données, pour l'adressage des protéines textit{via} le chemin post-traductionnel.Dans l'optique de diversifier les applications du SANS pour les systèmes biologiques, nous avons étendus les protocoles utilisés pour la production de protéines partiellement deutérées textit{in vivo} aux lipides et acides nucléiques bactériens. Les niveaux de deutération ont été analysés grâce à la diffusion de neutrons, spectrométrie de masse ou résonance magnétique nucléaire. Sur la base de ces données, nous avons extrapolé les niveaux de deutération et "contrast match point" pour chaque type de biomolécule afin de pouvoir prédire les conditions de cultures optimales requises pour atteindre un marquage spécifique. Nous avons, de plus, développé une nouvelle stratégie permettant de marquer sélectivement les protéines tout en conservant un marquage minimal des autres types de molécules. / Small Angle Neutron Scattering (SANS) is a method that is used for the study of a wide range of particles in solution. Combined with isotope labelling and contrast variation approaches, it allows the extraction of unique structural information on biological complexes involving multiple partner molecules, making it a method of interest for the study of protein translocation mechanisms. In all three kingdoms of life, up to 30% of all proteins need to be secreted out of the cell or integrated into its membrane. These complex mechanisms involve two pathways of translocation that rely on multiple cytoplasmic and membrane proteins.The Holotranslocon (HTL) is a large membrane protein complex composed of seven subunits: the core trimeric translocon SecYEG and the accessory subunits SecD-SecF-YidC-YajC. This assembly can secrete proteins out of the cell or integrate them into the lipid bilayer. In this project, a range of biophysical methods and sample preparation strategies have been used to analyse the structural features of this complex by SANS. The efficiency of the current protocols to produce a concentrated and homogeneous sample have been investigated, as well as the use of an amhpipol molecules as a substitute to classical detergents for the purification of this complex. The deuteration of HTL was attempted to expand the capabilities of SANS in this context. While the biophysical characterization methods we used did not allow us to further improve the current preparation protocols, a key result was the fact that SANS confirmed the presence of lipids at the centre of the structure and the reliability of this analysis method for the study well-defined multi-component complexes was tested. Alternative methods for the analyses of this complicated system are proposed, including fluorescence-based assays or lipodisc formation.The tetrameric protein SecB was also studied; SecB is a molecular chaperone that is involved in the delivery of translocation substrates to the translocon. Since SecB interacts with cytosolic partners and its own substrate, SANS and deuterium labelling was used to analyse translocation-relevant complexes involving up to three partners: SecB, an unfolded substrate and the SecA ATPase. The measured contrast match point was used to obtain information on the stoichiometry and affinity of the various assemblies, and the radii of gyration was used to localize the different components within the complexes. It has also been shown that SecB expands upon substrate binding; a new working model for the post-translational targeting pathway has been proposed, based on these data.As a corollary to the work described above, protocols for textit{in vivo} protein deuterium labelling to the deuteration of textit{E. coli} lipids and nucleic acids have been developed and it is hoped that these may be of general value in widening the scope of SANS applications for the study of biological systems. the These approaches were characterized and evaluated by SANS, nuclear magnetic resonance and mass spectrometry. Based on these data, the relevant deuteration levels and contrast match points were extracted for each class of biomolecule so that the optimal culture conditions can be used to achieve a specific level of deuteration. In addition, a new strategy has been developed that allows the selective labeling of proteins while keeping the labelling of other classes of molecules to a minimum within a single culture.
178

Dissection de TFIID, un facteur de transcription général humain : Études structurales etfonctionnelles des sous-ensembles du TFIID human / Dissecting General Transcription Factor TFIID : structural and functional studies of human TFIID subassemblies

Gupta, Kapil 24 September 2015 (has links)
Les génomes eucaryotes sont très complexes et peuvent être très grands. Par exemple, le génome humain contient environ de 20 000 à 25 000 gènes codant pour des protéines. L'expression de ces gènes doit être strictement régulée à de nombreux niveaux (tels que l'organisation de la chromatine, la transcription des gènes, le traitement et l'exportation de l'ARN messager ainsi que la traduction) pour le bon fonctionnement de la machinerie cellulaire. De nombreuses protéines et complexes protéiques sont impliqués dans ces processus essentiels de régulation, tels que les remodeleurs de la chromatine, les activateurs, co-activateurs et répresseurs de la transcription et particulièrement la machinerie générale de transcription. Chez les eucaryotes, la transcription de gènes codant pour des protéines est appelée transcription génique de classe II, elle est catalysée par l'ARN polymérase II (Pol II). La transcription des gènes par la polymérase II nécessite l'interaction coopérative de plusieurs protéines et complexes protéiques afin de faciliter l'assemblage d'un complexe de pré-initiation (PIC) au promoteur de base. Le complexe de pré-initiation comprend l'ARN polymérase II et les facteurs de transcription généraux (GTFs) - TFIIA, TFIIB, TFIID, TFIIE, TFIIF et TFIIH ainsi que le complexe de Médiateur et une grande variété de co-activateurs transcriptionnels.Une étape fondamentale dans l'assemblage d'un complexe de pré-initiation est la reconnaissance du promoteur de base par le facteur de transcription général TFIID. TFIID est un complexe multi protéique d'environ 1,6 MDa. Chez l'homme, il comprend une vingtaine de sous-unités constituées de 14 protéines différentes - la protéine de liaison à la boite tata (TBP) et ses facteurs associés (TAFs 1 à 13). Une série d'études sur la TFIID humaine et ses sous-ensembles ont été réalisés depuis sa découverte il y a plus de 20 ans, cherchant à comprendre la structure et le mécanisme de ces facteurs de transcription général essentiel, cependant l'architecture de TFIID, ses activités, ses fonctions, ses rouages et ses mécanismes d'assemblage cellulaire reste largement incompris à ce jour.Cette thèse décrit les études biochimiques que nous avons effectuées sur trois sous-ensembles distincts de TFIID humain. Nous avons utilisé un certain nombre de techniques de biologie structurale : la cristallographie, la spectroscopie à résonance magnétique nucléaire (RMN) et la diffusion des rayons X aux petits angles (SAXs), pour étudier le complexe formé par les facteurs humains, associés à la protéine de liaison à la boite tata, TAF1 et TAF7. Ces études structurelles fournissent un aperçu détaillé sur l'interface d'interaction complexe de TAF1/TAF7, misent de concert avec des données disponibles dans la littérature, elles mettent en évidence la nature dynamique de l'interaction TAF1/TAF7 dans le complexe de TFIID humain.Dans une deuxième étude, nous avons analysé un complexe formé par TAF11, TAF13 et TBP en utilisant un panel de méthodes biophysiques et biochimiques : l'analyse électrophorétique de retard sur gel (EMSA), l'ultracentrifugation analytique (AUC), la chromatographie d'exclusion stérique (SEC) analyse, le pull-down, la spectrométrie de masse native et la spectrométrie de masse chimique à réticulation (CLMS). Ce complexe fait penser au complexe TAF1/TBP qui imite la boite tata.De plus, dans le cadre des efforts en cours au sein du laboratoire du Pr Imre Berger afin de déterminer la structure de l'holo-TFIID humaine, nous avons reconstitué un grand sous-ensemble de TFIID (900 KDa) appelé 9TAF, qui est composé de neuf différents facteurs associés de TBP. Nous avons effectué des études d'électro-microscopie par coloration négative sur le complexe 9TAF qui nous ont fourni des informations à faible résolution. Ces études ouvrent la voie à de futures études de cryo-EM sur le complexe 9TAF pour obtenir un modèle de plus haute resolution. / Eukaryotic genomes are highly complex and can be very large. For example, the human genome contains approximately 20,000-25,000 protein coding genes. Expression of these genes needs to be tightly regulated at many levels, including chromatin organization, gene transcription, mRNA processing and export and translation, for proper functioning of cellular machinery. Many proteins and protein complexes are involved in these essential regulatory processes, examples include chromatin remodelers, transcriptional activators and coactivators, transcriptional repressors and notably the general transcription machinery. Transcription of protein coding genes in eukaryotes is called Class II gene transcription, and is catalyzed by RNA polymerase II (Pol II). Gene transcription by Pol II requires the cooperative interaction of multiple proteins and protein complexes to facilitate the assembly of a preinitiation complex (PIC) at the core promoter. The PIC comprises Pol II and the General Transcription Factors (GTFs)- TFIIA, TFIIB, TFIID, TFIIE, TFIIF, and TFIIH, together with the Mediator complex and a large variety of transcriptional coactivators.A fundamental step in PIC assembly is recognition of the core promoter by GTF TFIID, a magdalton sized multiprotein complex. In humans, TFIID comprises about twenty subunits made up of 14 different proteins – the TATA box binding protein (TBP) and its associated factors (TAFs, numbered 1 to 13). A range of studies on human TFIID and its subassemblies have been carried out since its discovery more than two decades ago, to understand the structure and mechanism of this essential GTF, but the architecture of TFIID, its activities, its functions, its inner workings and the mechanisms of its cellular assembly have eluded detailed understanding to date.This thesis describes biochemical, biophysical, structural and functional studies carried out on three distinct human TFIID subassemblies. We used a number of structural biology techniques, including crystallization, nuclear magnetic resonance (NMR) spectroscopy and small angle X-ray scattering (SAXS) to analyse a complex formed by the human TBP associated factors TAF1 and TAF7. These structural studies provide detailed insights into the intricate interaction interface formed by TAF1 and TAF7, and, together with other data available from the literature, highlight the dynamic nature of the TAF1/TAF7 interaction in the human TFIID complex.In a second study, we analyzed a novel complex formed by TAF11, TAF13 and TBP using a range of biophysical and biochemical methods including electrophoretic mobility shift assay (EMSA), analytical ultracentrifugation (AUC), size exclusion chromatography (SEC) analysis, pull-down assay, native mass-spectroscopy and chemical cross-linking mass spectroscopy (CLMS). This complex is reminiscent of a so-called TATA-box mimicry discovered previously in a TAF1/TBP complex.As part of the ongoing efforts in the Berger laboratory to determine the structure of human holo-TFIID, we furthermore produced and purified a large (~900 kDa) TFIID subassembly called 9TAF, which is composed of nine different TBP associated factors. We carried out negative stain EM studies and random conical tilt (RCT) analysis on 9TAF to obtain low resolution structural information. These studies set the stage for future cryo-EM studies of this 9TAF complex to obtain a high(er) resolution model to decipher the inner workings of human TFIID.
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Étude de la relation microstructure/ténacité d'aciers maraging inoxydables / Study of the relationship between microstructure and fracture toughness of maraging stainless steels

Le Nué, Charline 24 March 2017 (has links)
L'acier maraging inoxydable MLX17, développé et élaboré par Aubert & Duval, est une nuance candidate pour des applications dans le domaine de l’aéronautique. Cette nuance possède un fort potentiel en termes de résistance mécanique qui dépasse celle des autres nuances inoxydables. Cependant, elle s’avère sensible à la vitesse de refroidissement après revenu, qui influence directement la ténacité. La recherche des origines scientifiques de la dégradation de la ténacité lorsque la vitesse de refroidissement après revenu diminue (refroidissement à l'air par rapport à un refroidissement à l'eau) constitue l’objectif majeur de cette thèse. Un suivi des modifications microstructurales de la nuance, selon différentes conditions de revenu a été réalisé. Une démarche intégrant différentes échelles d'observation (de l’échelle macroscopique jusqu'à l'échelle atomique) s’est imposée au vu de la complexité de la microstructure. Parallèlement, l’étude des propriétés mécaniques en traction et en résistance à la propagation brutale de fissure a été menée afin de s’attacher en permanence à corréler le comportement mécanique à l’évolution microstructurale observée pour les différentes conditions de revenu. Les analyses par dilatométrie et par sonde atomique tomographique ont permis de mettre en évidence la formation d’un complément de précipitation, à l'origine de la dégradation de la ténacité. Pour permettre une meilleure maîtrise du complément de précipitation et le rendre moins fragilisant, une modification des conditions de revenu a été proposée. Cette alternative a permis d'obtenir une amélioration du compromis résistance/ténacité. / The stainless maraging steel MLX17, produced and developed by Aubert & Duval, is a candidate for applications in the field of the aeronautics. This steel possesses a high potential in term of mechanical resistance that exceeds that of the other stainless steels. However, the fracture toughness of this grade proves to be sensitive to the cooling rate after aging, resulting of a dispersal of this property. The research of the scientific origins of the degradation of the fracture toughness by a decrease of the cooling rate (air cooling in comparison to water cooling) is the main objective of this thesis. The microstructure was observed for several aging conditions. An approach using various scales (from micrometric to atomic scale) was necessary because of the complexity of the microstructure. In parallel, the study of tensile mechanical properties and resistance to propagation of cracks was led. The aim was to correlate the mechanical behavior to the microstructural evolution observed for the aging conditions investigated. Microstructural analyses by dilatometry and atomic tomography probe have shown the formation of a complementary precipitation of the hardening phase, responsible of the fracture toughness deterioration. In order to have a better control of this additional precipitation and to make it less fragile, a modification of the aging conditions was proposed. This alternative enabled an improvement of the trade-offs between the high strength and the fracture toughness.
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Desenvolvimento e caracterização de sistemas líquido-cristalinos para aplicação tópica de metotrexato: estudos de liberação, retenção e permeação in vitro

Von Zuben, Eliete de Souza [UNESP] 27 June 2012 (has links) (PDF)
Made available in DSpace on 2014-12-02T11:16:33Z (GMT). No. of bitstreams: 0 Previous issue date: 2012-06-27Bitstream added on 2014-12-02T11:21:14Z : No. of bitstreams: 1 000693706.pdf: 2880957 bytes, checksum: 43d4b15dffaa346d602b5f57917996d4 (MD5) / Coordenação de Aperfeiçoamento de Pessoal de Nível Superior (CAPES) / Amplamente utilizado no tratamento de vários tipos de câncer e na psoríase, o metotrexato (MTX) é um quimioterápico, estruturalmente análogo do ácido fólico, que apesar de sua eficácia apresenta uma série de efeitos adversos, sendo a hepatotoxicidade o mais grave. Atualmente os sistemas nanoestruturados líquido-cristalinos de fase lamelar estão sendo utilizados como dispositivos para liberação modificada de fármacos, sendo vantajosos na liberação tópica de várias substâncias, conforme suas características de interação com o estrato córneo e as outras camadas da pele, evitando assim efeitos adversos sistêmicos. Os objetivos deste trabalho foram desenvolver sistemas nanoestruturados líquido-cristalinos de fase lamelar, acrescidos de MTX, caracteriza-los do ponto de vista físico, realizar a análise estrutural das formulações, através de microscopia de luz polarizada (MLP), espalhamento de raios-X a baixo ângulo (SAXS) e suas propriedades reológicas, executar os testes de estabilidade preliminar (TEP) das formulações, validar o método analítico para a quantificação de MTX por CLAE e executar ensaios de liberação, permeação e retenção in vitro. As formulações preparadas a partir da mistura do poliéter funcional siloxano (Dow Corning® 5329) como tensoativo, com silicone fluido de co-polímero glicol (Dow Corning® 193C) como fase oleosa titulados em fase aquosa, composta por tampão fosfato de potássio monobásico 0,01M pH 7,4, apresentaram fases líquido-cristalinas do tipo lamelar, confirmados pelos ensaios de MLP e SAXS. Os TEPs evidenciaram que as formulações A, B e C mantiveram-se estáveis durante o período do estudo. Os estudos do comportamento reológico das formulações apresentaram-se como fluidos pseudoplásticos não–newtonianos tixotrópicos ... / Widely used in the treatment of some types of cancer, the methotrexate (MTX) is a chemotherapeutic, structurally analog of the folic acid, although its effectiveness, presents a series of adverse effect, being the most serious hepatotoxicity. Currently, the liquid crystal lamellar phase is being used of devices for modified release of drug demonstrated to be advantageous in the release topic of some substances, given to the characteristics of interaction with the stratum corneun and other layers of the skin, avoiding systemic adverse effects. The aims of this research had been to develop and to characterize liquid crystalline nanostructure systems of lamellar phase, increased of MTX of the physical point of view, also carry through the structural analysis of the formulations through by polarized light microscopy (PLM), small-angle X-ray scattering (SAXS) and rheological properties. Perform stability studies of the chosen formulations, validate the analytical method of quantification of MTX for High Performance Liquid Chromatography (HPLC) and carry through release assay, cutaneous permeation and skin retention in vitro for the chosen formulations. The formulations prepared by the mixture of polyether functional siloxane as surfactant, with silicone polyether copolymer as oily phase and phosphate buffer 0,01M pH 7,4 as aqueous phase demonstrating lamellar liquid-crystalline phases, confirmed by assays of PLM and SAXS. The stability studies showed that formulations A, B and C remained stable throughout the period of the study. The study of the rheological behavior of the formulations presented as not Newtonian pseudoplastic fluid and thixotropic ...

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