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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.
41

Desenvolvimento de um biomaterial composto de poliuretano e microfibra de biovidro 45S5 em gradiente funcional para reparo de cartilagem articular: estudos in vitro e in vivo / Development of a biomaterial composed of polyurethane and bioglass microfiber in gradient functional to repair articular cartilage: in vitro and in vivo studies

Karen Cristina Laurenti 06 September 2011 (has links)
A cartilagem articular é um tema amplamente discutido na literatura por meio de vários estudos e pesquisas. Com o presente estudo, busca-se uma proposta inovadora e original no uso de um biomaterial composto e o desenvolvimento de uma cartilagem artificial que aja como coxim elástico, apresentando características de gel fibro-reforçado com finalidade biomimética mecânica que imite o comportamento da cartilagem articular. Foi conceituado um implante que tivesse uma superfície tribológica para contato com a cartilagem do platô tibial e gradualmente se convertesse em região osteo-integrável para fixação mecânica no osso subcondral. Foi desenvolvido um biomaterial composto por poliuretano e microfibra de biovidro 45S5 em gradiente funcional que foi obtido e validado através de ensaios in vitro, microscopia eletrônica de varredura e análise histológica. Nos testes in vitro seja na condição de citotoxicidade direta ou indireta, notou-se que a quantidade de células foi estatisticamente semelhante ao controle negativo, e estatisticamente diferente do controle positivo indicando que o biomaterial composto de poliuretano e microfibra de biovidro 45S5 apresentou não toxicidade direta ou indireta da amostra e ainda promoveram o crescimento e o espalhamento celular, resultados que o habilitaram para a continuidade nos estudos com experimentos in vivo com coelhos. O material foi manufaturado para aplicação em defeitos osteocondrais de coelhos medindo 3mm de diâmetro e 4mm de profundidade que foi realizado na região central da tróclea femoral. Após períodos experimentais de 15, 30 e 90 dias as análises de microscopia eletrônica de varredura mostrou na região distal da superfície tribológica uma neo-formação de uma estrutura semelhante as trabéculas ósseas que foi considerada biomimética confirmadas por análises histológicas, e na região proximal à superfície tribológica a presença de tecido fibrocartilaginoso com condrócitos e ricamente vascularizado, validando com sucesso o conceito proposto para o implante. / Articular cartilage has been widely discussed in the literature by means of several studies and researches. The present thesis reports on an innovative and original proposal to use a biomaterial compound and the development of an artificial cartilage that acts as a cushion rubber with characteristics of fiber-reinforced gel with biomimetic mechanical purpose mimicking the behavior of articular cartilage. An implant with a tribological surface for contact with the cartilage of the tibial plateau was designed. It should gradually turn into an osteo-integrable region for mechanical fixation in the subchondral bone. A biomaterial composed of polyurethane and bioglass microfiber in functional gradient was then developed and validated by scanning electron microscopy and histological analysis through in vitro tests. Under either direct or indirect cytotoxicity conditions, the tests showed that the amount of cells is statistically similar to negative control and statistically different from the positive control, indicating that the biomaterial composed of polyurethane and bioglass microfiber showed no direct or indirect toxicity and promoted cell growth and spreading. Such results allowed continuing the studies with in vivo experiments with rabbits. The material was manufactured for use in 3mm diameter and 4mm depth osteochondral defects in the central region of the femoral trochlea of rabbits. After experimental periods of 15, 30 and 90 days, the scanning electron microscopy analysis showed a neo-formation of a structure similar to trabecular bones on the tribological surface in the distal region. This neo-formation was considered biomimetic, confirmed by both histological analysis and the presence of richly vascularized fibrocartilaginous tissues with chondrocytes in the region proximal to the tribological surface.
42

Scale-Up of Modifiable Poly(propylene fumarate) and Surface Functionalization of Additive Manufactured Scaffolds for Bone Tissue Regeneration

Kleinfehn, Alex Patrick 29 August 2019 (has links)
No description available.
43

Scaffolds fabricated by three-dimensional plotting for bone tissue engineering and regeneration

Luo, Yongxiang 26 September 2013 (has links)
In this thesis, several types of scaffolds composed of different materials and designed structures and functions were fabricated by 3D plotting under mild conditions (room temperature and without using any organic solvent). Broad biomaterials including inorganic (such as calcium phosphate cement and mesoporous bioglass), organic (such as alginate and gelatin) and composite materials were prepared into printable pastes to plot as 3D scaffolds for bone tissue engineering. Organic/inorganic biphasic and bipartite structure, core/shell alginate/nano-hydroxyapatite and hollow fiber structure were designed and realized. Scaffolds with multi functions including suitable mechanical properties, sustained drug/protein delivery and in vitro vascularization were achievable. 3D plotting provided great achievements in the field of tissue engineering by preparing advanced scaffolds, as well as by plotting cell/matrix constructs, and even complex tissues and organs.
44

Análise in vitro da morfologia superficial de uma nova formulação de biovidro associado ao laser de Nd:YAG e laser de CO2 sobre dentina humana / In vitro analysis of the surface morphology of a new bioglass formulation associated with Nd: YAG laser and CO2 laser on human dentin

Lee, Ester Mi Ryoung 13 June 2017 (has links)
Dentre as opções de terapias dessensibilizantes, a proposta mais recente para o tratamento da Hipersensibilidade Dentinária é o uso do biovidro. Esse novo material apresenta a capacidade de promover a formação de hidroxiapatita na superfície da dentina, representando uma união química mais estável e duradoura sobre os túbulos dentinários. Este trabalho comparou o efeito de uma nova formulação de biovidro disperso em ácido fosfórico 30%, associado ao laser de Nd:YAG e ao laser de CO2 na obliteração de túbulos dentinários expostos. Foram obtidas 96 amostras de dentina humana que foram divididas em 6 grupos experimentais (n=16) e distribuídas como a seguir: G1 -­ controle negativo (nenhum tratamento adicional);? G2 -­ laser de Nd:YAG;? G3 -­ laser de CO2;? G4 -­ pasta de biovidro (biovidro + ácido fosfórico 30%);? G5 -­ pasta de biovidro + laser de Nd:YAG;? G6 -­ pasta de biovidro + laser de CO2. Os grupos G5 e G6 foram irradiados com laser de Nd:YAG e laser de CO2, respectivamente, após tratamento com a pasta de biovidro disperso em ácido fosfórico. Ao final do experimento, os grupos foram analisados qualitativamente por Espectroscopia de Infravermelho na Transformada de Fourier (FTIR), Difração de Raios X (DRX), Microscopia Eletrônica de Varredura (MEV) e Espectroscopia de Dispersão de Energia de Raios X (EDS). As análises evidenciaram que a dipersão do biovidro em ácido fosfórico 30% é capaz de formar cristais de hidrogenofosfato de cálcio e, quando a pasta formulada é aplicada sobre a dentina, ocorrem reações químicas com a estrutura dental, formando cristais de monetita. Ao irradiar os cristais formados com laser de Nd:YAG e CO2, ocorreu a desidratação desses cristais, levando à formação de hidroxiapatita. As imagens de MEV demonstram a formação de precipitados cristalinos e amorfos de dimensões variadas sobre a superfície de dentina e na entrada dos túbulos dentinários em todos os grupos que receberam o tratamento com a formulação de biovidro. O laser de CO2 foi capaz de promover alterações na morfologia do material formado de maneira ainda mais evidente especialmente nas dimensões e disposição dos cristais de hidroxiapatita formado sobre a superfície. A análise de EDS evidenciou presença de silício, composto que não está presente naturalmente na estrutura dentária, mas somente na composição do biovidro. Dessa forma, pode-­se concluir que a associação do pó de biovidro com ácido fosfórico 30% permitiu a formação de uma camada de cristais na superfície e entrada dos túbulos dentinários, evidenciando que a pasta formulada viabiliza a aplicação e manutenção do biovidro sobre a superfície dentinária. Sua associação com o laser de Nd:YAG e CO2 parece melhorar a interação desses cristais com a dentina, formando cristais de hidroxiapatita. Nesse estudo, o laser de CO2 promoveu a melhor distribuição e conformação dos cristais sobre a dentina. / Among desensitizing therapies options, the most recent proposal for Dentin Hypersensitivity treatment is the use of bioglass. This new material presents the ability to promote the formation of hydroxyapatite on dentin surface, representing a more stable and lasting chemical bond on dentin tubules. This work compared the effect of a new formulation of bioglass dispersed in 30% phosphoric acid, associated with Nd: YAG laser and CO2 laser in the obliteration of exposed dentin tubules. 96 human dentin samples were obtained, divided into 6 experimental groups (n = 16) and distributed as follows: G1 -­ negative control (no additional treatment);? G2-­ Nd: YAG laser;? G3 - CO2 laser;? G4 -­ bioglass paste (bioglass + 30% phosphoric acid);? G5 -­ bioglass paste + Nd: YAG laser;? G6 -­ bioglass paste + CO2 laser. Groups G5 and G6 were irradiated with Nd:YAG laser and CO2 laser, respectively, after treatment with the slurry dispersed in phosphoric acid. At the end of the experiment, all groups were qualitatively analyzed by Fourier Transform Infrared Spectroscopy (FTIR), X-­ray Diffraction (XRD), Scanning Electron Microscopy (SEM) and X-­ray Energy Dispersion Spectroscopy (EDS). The analysis showed that the dispersion of bioglass in 30% phosphoric acid forms calcium hydrogen phosphate crystals and when the formulated paste is applied on dentin surface, chemical reactions occur with the dental structure, forming monetite crystals. When irradiating these crystals with Nd: YAG and CO2 laser, dehydration of these crystals occurred leading to the formation of hydroxyapatite. MEV images demonstrate the formation of crystalline and amorphous precipitates of varying dimensions on the dentin surface and at the entrance of dentinal tubules in all groups receiving treatment with the bioglass formulation. The CO2 laser was able to promote changes in the morphology of the formed material even more evident especially in the dimension and arrangement of hydroxyapatite crystals formed on the surface. The analysis of EDS showed the presence of silicon, a compound that is not naturally present in the tooth structure, but only in the bioglass composition. Thus, it can be concluded that the association of bioglass powder with 30% phosphoric acid allowed the formation of a layer of crystals on the surface and its entrance of the dentinal tubules, evidencing that the formulated paste enables the application and maintenance of bioglass on dentin surface. Its association with the Nd:YAG and CO2 laser seems to improve the interaction of these crystals with dentin, forming hydroxyapatite crystals. In this study. CO2 laser promoted better crystals distribution and conformation on dentin surface.
45

Análise in vitro da morfologia superficial de uma nova formulação de biovidro associado ao laser de Nd:YAG e laser de CO2 sobre dentina humana / In vitro analysis of the surface morphology of a new bioglass formulation associated with Nd: YAG laser and CO2 laser on human dentin

Ester Mi Ryoung Lee 13 June 2017 (has links)
Dentre as opções de terapias dessensibilizantes, a proposta mais recente para o tratamento da Hipersensibilidade Dentinária é o uso do biovidro. Esse novo material apresenta a capacidade de promover a formação de hidroxiapatita na superfície da dentina, representando uma união química mais estável e duradoura sobre os túbulos dentinários. Este trabalho comparou o efeito de uma nova formulação de biovidro disperso em ácido fosfórico 30%, associado ao laser de Nd:YAG e ao laser de CO2 na obliteração de túbulos dentinários expostos. Foram obtidas 96 amostras de dentina humana que foram divididas em 6 grupos experimentais (n=16) e distribuídas como a seguir: G1 -­ controle negativo (nenhum tratamento adicional);? G2 -­ laser de Nd:YAG;? G3 -­ laser de CO2;? G4 -­ pasta de biovidro (biovidro + ácido fosfórico 30%);? G5 -­ pasta de biovidro + laser de Nd:YAG;? G6 -­ pasta de biovidro + laser de CO2. Os grupos G5 e G6 foram irradiados com laser de Nd:YAG e laser de CO2, respectivamente, após tratamento com a pasta de biovidro disperso em ácido fosfórico. Ao final do experimento, os grupos foram analisados qualitativamente por Espectroscopia de Infravermelho na Transformada de Fourier (FTIR), Difração de Raios X (DRX), Microscopia Eletrônica de Varredura (MEV) e Espectroscopia de Dispersão de Energia de Raios X (EDS). As análises evidenciaram que a dipersão do biovidro em ácido fosfórico 30% é capaz de formar cristais de hidrogenofosfato de cálcio e, quando a pasta formulada é aplicada sobre a dentina, ocorrem reações químicas com a estrutura dental, formando cristais de monetita. Ao irradiar os cristais formados com laser de Nd:YAG e CO2, ocorreu a desidratação desses cristais, levando à formação de hidroxiapatita. As imagens de MEV demonstram a formação de precipitados cristalinos e amorfos de dimensões variadas sobre a superfície de dentina e na entrada dos túbulos dentinários em todos os grupos que receberam o tratamento com a formulação de biovidro. O laser de CO2 foi capaz de promover alterações na morfologia do material formado de maneira ainda mais evidente especialmente nas dimensões e disposição dos cristais de hidroxiapatita formado sobre a superfície. A análise de EDS evidenciou presença de silício, composto que não está presente naturalmente na estrutura dentária, mas somente na composição do biovidro. Dessa forma, pode-­se concluir que a associação do pó de biovidro com ácido fosfórico 30% permitiu a formação de uma camada de cristais na superfície e entrada dos túbulos dentinários, evidenciando que a pasta formulada viabiliza a aplicação e manutenção do biovidro sobre a superfície dentinária. Sua associação com o laser de Nd:YAG e CO2 parece melhorar a interação desses cristais com a dentina, formando cristais de hidroxiapatita. Nesse estudo, o laser de CO2 promoveu a melhor distribuição e conformação dos cristais sobre a dentina. / Among desensitizing therapies options, the most recent proposal for Dentin Hypersensitivity treatment is the use of bioglass. This new material presents the ability to promote the formation of hydroxyapatite on dentin surface, representing a more stable and lasting chemical bond on dentin tubules. This work compared the effect of a new formulation of bioglass dispersed in 30% phosphoric acid, associated with Nd: YAG laser and CO2 laser in the obliteration of exposed dentin tubules. 96 human dentin samples were obtained, divided into 6 experimental groups (n = 16) and distributed as follows: G1 -­ negative control (no additional treatment);? G2-­ Nd: YAG laser;? G3 - CO2 laser;? G4 -­ bioglass paste (bioglass + 30% phosphoric acid);? G5 -­ bioglass paste + Nd: YAG laser;? G6 -­ bioglass paste + CO2 laser. Groups G5 and G6 were irradiated with Nd:YAG laser and CO2 laser, respectively, after treatment with the slurry dispersed in phosphoric acid. At the end of the experiment, all groups were qualitatively analyzed by Fourier Transform Infrared Spectroscopy (FTIR), X-­ray Diffraction (XRD), Scanning Electron Microscopy (SEM) and X-­ray Energy Dispersion Spectroscopy (EDS). The analysis showed that the dispersion of bioglass in 30% phosphoric acid forms calcium hydrogen phosphate crystals and when the formulated paste is applied on dentin surface, chemical reactions occur with the dental structure, forming monetite crystals. When irradiating these crystals with Nd: YAG and CO2 laser, dehydration of these crystals occurred leading to the formation of hydroxyapatite. MEV images demonstrate the formation of crystalline and amorphous precipitates of varying dimensions on the dentin surface and at the entrance of dentinal tubules in all groups receiving treatment with the bioglass formulation. The CO2 laser was able to promote changes in the morphology of the formed material even more evident especially in the dimension and arrangement of hydroxyapatite crystals formed on the surface. The analysis of EDS showed the presence of silicon, a compound that is not naturally present in the tooth structure, but only in the bioglass composition. Thus, it can be concluded that the association of bioglass powder with 30% phosphoric acid allowed the formation of a layer of crystals on the surface and its entrance of the dentinal tubules, evidencing that the formulated paste enables the application and maintenance of bioglass on dentin surface. Its association with the Nd:YAG and CO2 laser seems to improve the interaction of these crystals with dentin, forming hydroxyapatite crystals. In this study. CO2 laser promoted better crystals distribution and conformation on dentin surface.
46

Mise en oeuvre de biocomposites Poly(acide lactique)/Bioverres : Relation structure/ rhéologie/procédés de mise en forme / Biocomposites based on poly(lactic acid) and bioglass® fillers : Processing rheological and mechanical properties

Dergham, Nora 12 September 2014 (has links)
Le travail présenté porte sur la rhéologie, la mise en forme et la caractérisation de matériaux biocomposites de nouvelles générations pour des applications orthopédiques. Dans le cadre de cette étude, des biocomposites poly (D,L-lactide) (PDLLA)/bioverres ont été élaborés par extrusion bivis sous atmosphère inerte. Les bioverres différent par la nature de leur traitement thermique et leur morphologie. La première partie a été consacrée à l’étude de l’état de la dispersion des bioverres dans la matrice polymère. Nous avons montré que l’homogénéité de cette dispersion dépend, d’une part de la structure, de la morphologie, du taux volumique des charges et d’autre part des paramètres du procédé (cisaillement, température,…). Le comportement rhéologique des suspensions a été étudié à l’état fondu ainsi qu’à l’état solide. Un accent particulier a été porté sur l’étude de l’influence du taux des bioverres, de leur taille moyenne et plus particulièrement de leur traitement thermique. Les masses molaires de PDLLA extrait des composites élaborés ont été évaluées par chromatographie d’exclusion stérique (CES). Enfin, la qualité de la dispersion des charges, en termes de distance inter-particulaire et taille moyenne, a été étudiée par microscopie électronique à balayage (MEB) et analyses d’image. Il a été montré que l’utilisation de bioverres non traités thermiquement lors de la mise en forme de composites à haute température provoque la dégradation de la matrice. Aussi, on assiste à une réduction des masses molaires. Les propriétés viscoélastiques et les propriétés mécaniques sont altérées à leur tour. Cette dégradation a été étudiée par spectroscopie infrarouge (IRTF) et par analyse thermogravimétrique (ATG). Les origines et mécanismes sous-jacents de cette dégradation ont été proposés. Il est démontré pour la première fois que la présente dégradation du PDLLA peut être atténuée par l’emploi de différentes charges céramiques à propriétés spécifiques. En outre, l’utilisation de ces bioverres a permis l’obtention d’une dispersion homogène au sein de la matrice. L’analyse des propriétés rhéologiques de tels matériaux et leur modélisation a permis de mettre en évidence les interactions matrice-charges. La deuxième partie de l’étude a porté sur l’élaboration des biocomposites multicouches à gradient de propriétés par coextrusion. Ces multicouches présentent, d’une part, des propriétés variables selon le type de traitement et de composition du bioverre actif. D’autre part, le gradient de propriété a été également réalisé en faisant varier les paramètres expérimentaux relatifs au procédé de coextrusion. Les matériaux finaux, ainsi obtenus, présentent de très bonnes propriétés cohésives avec une bioactivité maîtrisée et contrôlée. / Bioactive and biodegradable composites have gained increasing importance in the orthopedic field as bone replacement materials and as scaffolds for tissue engineering. In this study, biocomposites based on poly(D,L-lactide) (PDLLA) and bioactive glass fillers were prepared by a twin screw extrusion under Argon inert gas with various filler contents, thermal treatments and particle sizes. The processing conditions were monitored to produce composites with well controlled physico-chemical, mechanical and dispersive properties. The aim of the present work is to gain a fundamental understanding of the relationships between structure, processing conditions and final properties of these biocomposites. The dispersion state of fillers was characterized by SEM. It was highlighted that the inclusion of non treated bioglass in PDLLA under elevated temperatures resulted in a decrease of molar mass. This degradation of the matrix leads to a reduction of the viscoelastic and mechanical properties of the composites. The origin and mechanisms of this degradation were probed using a Fourier Transform Infrared (FTIR) spectroscopy. The optimization of their processing allows a better control of this drastic loss of properties. Furthermore, the demonstration had been done that the present degradation of PDLLA matrix can be attenuated using a different glass ceramics with a special size and thermally treated. The rheological behaviour in linear and non linear viscoelasticity of the controlled PDLLA/BG suspensions has been assessed in both solid and molten state. Hence, their experimental rheological behaviour was compared to the theoretical suspension models. Finally, the effects of volume fraction, particle size and thermal treatment on the mechanical properties have been also investigated and discussed. The obtained results corroborate the rheological and physic-chemical ones. Finally, the multilayer structures with various amounts and treatments of BG fillers were obtained by a designed scale lab coextrusion machines. The gradient of properties has been obtained and improved cohesion properties between the neighboring were highlighted. Their bioactivity was finally demonstrated. At last, no residual stress inside the multilayers can be observed. This observation explains the conservation of the initial shape of those implants, without nor deformation neither relaxation, during the simulation of the chirurgical implantation in SBF.

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