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Morfogeneze a viskoelastické vlastnosti dimethakrylátových sítí / Morphogenesis and Viscoelastic Properties of Dimethacrylate NetworksBystřický, Zdeněk January 2019 (has links)
Tato dizertační práce se zabývá studiem morfogeneze dimethakrylátových sítí. V práci byly využity zjednodušené systémy založené na monomerech, které bývají typicky využívány jako složky matric pryskyřičných kompozitních materiálů využívaných v oblasti záchovné stomatologie. Kinetika a mechanismy formování polymerních sítí byly studovány především s ohledem na strukturu jednotlivých monomerů, jejich vzájemný molární poměr a koncentraci iniciačního systému využitého pro radikálovou polymeraci. Vypočtené profily konverze funkčních skupin a reakčních rychlostí byly využity jako základ pro pochopení a interpretaci mechanismů morfogeneze sítí a porovnání se známými modely. Dále byla studována kinetika termické degradace, která je s morfologií vytvrzených sítí přímo spjata. V rámci takto charakterizovaných systémů byla stanovena teplotní závislost dynamického modulu a byl popsán vztah mezi supra-molekulární strukturou dimethakrylátových sítí a jejich viskoelastickou odezvou v daném teplotním rozmezí. Kinetika polymerace byla studována pomocí diferenční kompenzační foto-kalorimetrie (DPC) a infračervené spektroskopie (FTIR). Proces termické degradace byl analyzován pomocí termo-gravimetrické analýzy (TGA). Viskoelastické parametry byly charakterizovány pomocí dynamicko-mechanické analýzy (DMA). Reaktivita jednotlivých systémů je přímo odvozena od molekulární struktury monomerů, která ovlivňuje mobilitu reagujících složek v průběhu polymerace. Kinetika polymerace je řízena především difúzí, přičemž její rychlost je dána tuhostí monomerní páteře, koncentrací funkčních skupin a vlivem fyzikálních interakcí. Omezená mobilita rostoucích řetězců, postranních funkčních skupin i samotných monomerů vede k monomolekulární terminaci makro-radikálů a omezení stupně konverze funkčních skupin. Vzhledem k tomu, že k zásadnímu omezení mobility dochází již v počáteční fázi polymerace, tj. v bodu gelace, je případná termodynamická nestabilita vedoucí k fázové separaci polymerujícího systému potlačena a proces kopolymerace je ve své podstatě náhodný. To bylo prokázáno i prostřednictvím identifikace jedné teploty skelného přechodu u charakterizovaných kopolymerů. Heterogenní charakter morfogeneze je spjat s rozdílnou reaktivitou postranních funkčních skupin. V počátečních fázích polymerace dochází k propagaci reakcí postranní funkční skupiny s radikálem na stejném rostoucím řetězci, což vede ke vzniku tzv. primárního cyklu. Pravděpodobnost cyklizace souvisí především s flexibilitou monomerní páteře. Heterogenita polymerace je charakterizována vznikem vnitřně zesítěných struktur, tzv. mikrogelů, a jejich následným spojováním. Tuhost monomeru naopak přispívá k vyšší efektivitě zesítění a více homogenní morfologii vytvrzené sítě. Heterogenita dimethakrylátových sítí se odráží v mechanismu termické degradace, přičemž přítomnost strukturně odlišných domén vede k rozkladu ve dvou krocích. Průběh soufázového modulu a teplota skelného přechodu korelují s tuhostí polymerních sítí, efektivitou zesítění a přítomností fyzikálních interakcí, které vyztužují strukturu sítě nad rámec kovalentního zesítění. Heterogenní morfologie sítí se projevuje rozšiřováním spektra relaxačních časů. Experimentální data jsou v kvalitativní shodě s existujícími numerickými modely popisujícími kinetiku radikálové polymerace multifunkčních monomerů.
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Novel Carbazole Based Methacrylates, Acrylates, and Dimethacrylates to Produce High Refractive Index PolymersRasmussen, Winola Lenore 02 January 2002 (has links)
Homopolymers and copolymers produced from aromatic based methacrylates, acrylates, and dimethacrylates are excellent materials with many applications in dentistry, microelectronics, and optics, including optical eye wear, fiber optics, and non-linear optics, such as holography. Carbazole based polymers have demonstrated good optical, photo-refractive, and charge-transporting properties, combined with ease of processing. The objective of this research was to design, synthesize, and characterize high refractive index polymers and copolymers for use in optical spectacle lenses of eyeglasses. Additionally, other interesting attributes were observed for selected carbazole based polymers, such as high thermal stability and birefringence, which could lend these materials to other uses, such as non-linear optics and electronic data storage. A family of novel, high refractive index homopolymers and copolymers were synthesized by incorporating carbazole, along with other aromatic substituents, into methacrylates, acrylates, and dimethacrylates. Subsequent free radical polymerizations provided for high refractive index materials well suited for lightweight optical spectacles and other applications.
The refractive index of materials can be increased by increasing the polarizability of substituent groups. By incorporating oxygen, sulfur, or sulfoxide groups into polymers, high refractive index polymers have been attained. By reacting the phenol, aromatic diols, or aromatic thiols with 9-(2,3-epoxypropyl)-carbazole, the refractive index of the final polymer can be increased further. The reaction of the carbazole based intermediate with methacryloyl chloride or methacrylic anhydride eliminated any hydroxyl groups in the final methacrylate or dimethacrylate. Hydroxyl groups undergo intermolecular hydrogen bonding, which increases viscosity. The absence of hydrogen bonding in the final methacrylated monomers reduces viscosity, which is desirable for processing.
Novel carbazole based monomers and polymers were characterized in terms of molecular composition and molecular weight, thermal properties, such as melting point, glass transition temperature, and decomposition, and in terms of optical properties, such as refractive index. The AIBN initiated carbazole-phenoxy based methacrylate polymerization was followed using in-situ FTIR, which showed the reaction to be completed within 40 minutes in DMAC at 90°C. Photo-DSC was used to determine the heat of polymerization (DHp) for the carbazole-phenoxy based methacrylate, which was found to be -39.4 kJ/mole. One and two dimensional 1H NMR was used to characterize the molecular structure of the carbazole-phenoxy based methacrylate monomer. The carbazole-phenoxy based methacrylate homopolymer had a surprisingly high decomposition temperature. 13C NMR spectroscopy experiments and molecular modeling were employed to explore the configuration of the polymerized carbazole-phenoxy based methacrylate. The lack of head-to-head linkages due to steric considerations could explain the higher thermal stability observed for the carbazole-phenoxy based methacrylate polymer.
Refractive indices of these carbazole based methacrylates, acrylates, and dimethacrylate polymers ranged from 1.53 to 1.63. Statistical copolymers of carbazole based methacrylates with methyl methacrylate were also produced by solution polymerization in DMAC, and characterized. Using free radical polymerization techniques, homopolymers and copolymers of the carbazole functionalized methacrylates, acrylates, and dimethacrylates were readily obtained. This research demonstrated a variety of carbazole based chemistries which could produce controlled linear and cross-linked materials with high refractive index values and other interesting features. / Ph. D.
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Preparação de micropartículas de quitosana incorporadas de nanogéis de poli-(N-vinilcaprolactama-co-ácido itacônico-co-dimetacrilato de etilenoglicol) via secagem por pulverização para liberação controlada de cetoprofeno / Preparation of poly(N-vinylcaprolactam-co-itaconic acid-coethylene glycol dimethacrylate)-based nanogels embedded in chitosan matrix for controlled release of ketoprofen by spray-drying techniqueFonseca, Jéssica de Matos 16 September 2016 (has links)
Neste trabalho foram desenvolvidas micropartículas híbridas em pó constituídas de uma matriz biodegradável de quitosana incorporada de partículas de nanogéis biocompatíveis sensíveis à temperatura e/ou ao pH para controlar a liberação de cetoprofeno e aumentar sua solubilidade. Cetoprofeno foi encapsulado em nanopartículas de poli(Nvinilcaprolactama- co-ácido itacônico-co-dimetacrilato de etilenoglicol) (poli(NVCL-co- AI-co-EGDMA)-cetoprofeno), sintetizadas via polimerização por precipitação, as quais foram incorporadas em matriz de quitosana (95% desacetilada e Mv) com os objetivos de melhorar a adesão das micropartículas híbridas no local de liberação e de auxiliar no controle de liberação do fármaco. As micropartículas híbridas de quitosana/poli(NVCL-co-AI-co-EGDMA)-cetoprofeno foram preparadas por interação eletrostática entre os polímeros dispersos em meio aquoso, seguida de secagem por pulverização (spray drying) a fim de melhorar a estabilidadedas micropartículas. Inicialmente foi realizado um estudo sobre a influência das concentrações de monômeros e de iniciador no diâmetro hidrodinâmico (Dh) e na sensibilidade à temperatura e ao pH das partículas de nanogéis. Duas formulações de nanogéis contendo partículas com diferentes valores de Dh (R51 = 185,9 nm e R50 = 120,6 nm) foram utilizadas para a encapsulação de cetoprofeno. As morfologias das partículas de nanogel e das micropartículas híbridas foram avaliadas por microscopias eletrônicas de transmissão e de varredura, respectivamente. Calorimetria diferencial de varredura (DSC), difração de raios X (DRX) e espectroscopia de infravermelho por transformada de Fourier (FTIR) foram utilizadas para analisar as propriedades térmicas, confirmar a encapsulação de cetoprofeno e avaliar qualitativamente a composição dos materiais e interações entre as matrizes poliméricas, respectivamente. Os resultados mostraram que o cetoprofeno foi amorfizado e encapsulado pela matriz de poli(NVCL-co-AI-co-EGDMA), com uma eficiência de encapsulação de 39,6% e 57,8% para as partículas R50 e R51, respectivamente. As matrizes poliméricas de quitosana e de poli(NVCL-co-AI-co-EGDMA) interagiram durante a sua mistura física e durante o processo de secagem, e a cristalinidade da quitosana diminuiu com a incorporação de partículas de nanogel em sua matriz. Os testes de liberação de cetoprofeno in vitro mostraram que as partículas de nanogéis conseguiram controlar a liberação de cetoprofeno e que liberaram 100% do fármaco encapsulado durante 52h de teste, na condição de pH 7,4 e a 37°C. Os testes também evidenciaram que o tamanho das partículas de nanogel foi o parâmetro que mais interferiu na difusão do cetoprofeno pelas partículas, e que a liberação de cetoprofeno foi mais acelerada para as partículas menores (reação R50). Nas mesmas condições de teste, a incorporação das partículas de nanogel na matriz de quitosana causou um retardo na liberação do cetoprofeno, devido à insolubilidade da quitosana no pH 7,4. E os resultados mostraram que para as micropartículas híbridas com maior concentração de partículas de nanogel com relação à massa de quitosana, a liberação de cetoprofeno foi menos acentuada. Isso ocorreu devido ao maior número de interações entre as matrizes poliméricas, o que limitou o contato das partículas de nanogel com o meio de liberação e diminuiu o grau de liberdade de suas cadeias poliméricas. / In this work, powdered hybrid microparticles composed by a chitosan biodegradable matrix embedded with biocompatible and thermo- and pH-responsive particles-based nanogels were developed and used to control the ketoprofen release and to increase its solubility. Ketoprofen was loaded in poly(N-vinylcaprolactam-co-itaconic acid-coethylene glycol dimethacrylate)-based nanogels (poly(NVCL-co-AI-co-EGDMA)- ketoprofen) synthetized by precipitation polymerization, which were embedded in chitosan matrix (95% deacetilation and Mv) aiming to improve the mucoadhesive properties of hybrid microparticles on the targeted tissue and to support in the control of drug release. Hybrid microparticles of chitosan/poly(NVCL-co-AI-co-EGDMA)- ketoprofen were prepared by electrostatic interactions between polymers dispersed in aqueous media and spray-dried in order to improve the microparticles stability. First, it was carried out a study about the influence of monomers and initiator concentrations in the size (hydrodynamic diameter) and thermo- and pH-responsiveness properties of particles-based nanogels. Two formulations of nanogels with different particle sizes (R51 = 185.9 nm e R50 = 120.6 nm) were used to encapsulate ketoprofen. The morphology of particles-based nanogels and hybrid microparticles was studied by transmission and scanning electron microscopies, respectively. Differential scanning calorimetry (DSC), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR) were used to study thermal properties, to confirm encapsulation of ketoprofen and qualitatively evaluate the composition of materials and interactions between polymeric matrices, respectively. The results showed that ketoprofen was converted from the crystalline to the amorphous state and was encapsulated by poly(NVCL-co-AI-co-EGDMA) matrix, with an encapsulation efficiency of 39.6% and 57.8%, for particles R50 and R51, respectively. Polymeric matrices of chitosan and poly(NVCL-co-AI-co-EGDMA) interacted during their mixture and drying process, and chitosan crystallinity decreased as a result of the incorporation of particles-based nanogels in their matrix. In vitro release tests of ketoprofen showed that poly(NVCL-co-AI-co-EGDMA)-based nanogels controlled the delivery of ketoprofen and 100% of ketoprofen-loaded has been released after 52h of the tests, carried out in pH 7.4 at 37°C. These tests also showed that the particles-based nanogels size was the parameter that most interfered in the ketoprofen diffusion by particles and that the ketoprofen release from smaller particles (R50 reaction) was faster. Under the same conditions, the incorporation of poly(NVCL-co-AI-co-EGDMA)-based nanogels in chitosan matrix slowed the ketoprofen release, due to insolubility of chitosan in the media at pH 7.4. The results showed that hybrid microparticles with a higher concentration of particles-based nanogels, with respect to the mass of chitosan, the release of ketoprofen was less pronounced. It was due to the greater number of interactions between the polymer matrices, which limited the contact of particles-based nanogels with the media of release and reduced the degree of freedom of the polymeric chains.
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Preparação de micropartículas de quitosana incorporadas de nanogéis de poli-(N-vinilcaprolactama-co-ácido itacônico-co-dimetacrilato de etilenoglicol) via secagem por pulverização para liberação controlada de cetoprofeno / Preparation of poly(N-vinylcaprolactam-co-itaconic acid-coethylene glycol dimethacrylate)-based nanogels embedded in chitosan matrix for controlled release of ketoprofen by spray-drying techniqueJéssica de Matos Fonseca 16 September 2016 (has links)
Neste trabalho foram desenvolvidas micropartículas híbridas em pó constituídas de uma matriz biodegradável de quitosana incorporada de partículas de nanogéis biocompatíveis sensíveis à temperatura e/ou ao pH para controlar a liberação de cetoprofeno e aumentar sua solubilidade. Cetoprofeno foi encapsulado em nanopartículas de poli(Nvinilcaprolactama- co-ácido itacônico-co-dimetacrilato de etilenoglicol) (poli(NVCL-co- AI-co-EGDMA)-cetoprofeno), sintetizadas via polimerização por precipitação, as quais foram incorporadas em matriz de quitosana (95% desacetilada e Mv) com os objetivos de melhorar a adesão das micropartículas híbridas no local de liberação e de auxiliar no controle de liberação do fármaco. As micropartículas híbridas de quitosana/poli(NVCL-co-AI-co-EGDMA)-cetoprofeno foram preparadas por interação eletrostática entre os polímeros dispersos em meio aquoso, seguida de secagem por pulverização (spray drying) a fim de melhorar a estabilidadedas micropartículas. Inicialmente foi realizado um estudo sobre a influência das concentrações de monômeros e de iniciador no diâmetro hidrodinâmico (Dh) e na sensibilidade à temperatura e ao pH das partículas de nanogéis. Duas formulações de nanogéis contendo partículas com diferentes valores de Dh (R51 = 185,9 nm e R50 = 120,6 nm) foram utilizadas para a encapsulação de cetoprofeno. As morfologias das partículas de nanogel e das micropartículas híbridas foram avaliadas por microscopias eletrônicas de transmissão e de varredura, respectivamente. Calorimetria diferencial de varredura (DSC), difração de raios X (DRX) e espectroscopia de infravermelho por transformada de Fourier (FTIR) foram utilizadas para analisar as propriedades térmicas, confirmar a encapsulação de cetoprofeno e avaliar qualitativamente a composição dos materiais e interações entre as matrizes poliméricas, respectivamente. Os resultados mostraram que o cetoprofeno foi amorfizado e encapsulado pela matriz de poli(NVCL-co-AI-co-EGDMA), com uma eficiência de encapsulação de 39,6% e 57,8% para as partículas R50 e R51, respectivamente. As matrizes poliméricas de quitosana e de poli(NVCL-co-AI-co-EGDMA) interagiram durante a sua mistura física e durante o processo de secagem, e a cristalinidade da quitosana diminuiu com a incorporação de partículas de nanogel em sua matriz. Os testes de liberação de cetoprofeno in vitro mostraram que as partículas de nanogéis conseguiram controlar a liberação de cetoprofeno e que liberaram 100% do fármaco encapsulado durante 52h de teste, na condição de pH 7,4 e a 37°C. Os testes também evidenciaram que o tamanho das partículas de nanogel foi o parâmetro que mais interferiu na difusão do cetoprofeno pelas partículas, e que a liberação de cetoprofeno foi mais acelerada para as partículas menores (reação R50). Nas mesmas condições de teste, a incorporação das partículas de nanogel na matriz de quitosana causou um retardo na liberação do cetoprofeno, devido à insolubilidade da quitosana no pH 7,4. E os resultados mostraram que para as micropartículas híbridas com maior concentração de partículas de nanogel com relação à massa de quitosana, a liberação de cetoprofeno foi menos acentuada. Isso ocorreu devido ao maior número de interações entre as matrizes poliméricas, o que limitou o contato das partículas de nanogel com o meio de liberação e diminuiu o grau de liberdade de suas cadeias poliméricas. / In this work, powdered hybrid microparticles composed by a chitosan biodegradable matrix embedded with biocompatible and thermo- and pH-responsive particles-based nanogels were developed and used to control the ketoprofen release and to increase its solubility. Ketoprofen was loaded in poly(N-vinylcaprolactam-co-itaconic acid-coethylene glycol dimethacrylate)-based nanogels (poly(NVCL-co-AI-co-EGDMA)- ketoprofen) synthetized by precipitation polymerization, which were embedded in chitosan matrix (95% deacetilation and Mv) aiming to improve the mucoadhesive properties of hybrid microparticles on the targeted tissue and to support in the control of drug release. Hybrid microparticles of chitosan/poly(NVCL-co-AI-co-EGDMA)- ketoprofen were prepared by electrostatic interactions between polymers dispersed in aqueous media and spray-dried in order to improve the microparticles stability. First, it was carried out a study about the influence of monomers and initiator concentrations in the size (hydrodynamic diameter) and thermo- and pH-responsiveness properties of particles-based nanogels. Two formulations of nanogels with different particle sizes (R51 = 185.9 nm e R50 = 120.6 nm) were used to encapsulate ketoprofen. The morphology of particles-based nanogels and hybrid microparticles was studied by transmission and scanning electron microscopies, respectively. Differential scanning calorimetry (DSC), X-ray diffraction (XRD) and Fourier transform infrared spectroscopy (FTIR) were used to study thermal properties, to confirm encapsulation of ketoprofen and qualitatively evaluate the composition of materials and interactions between polymeric matrices, respectively. The results showed that ketoprofen was converted from the crystalline to the amorphous state and was encapsulated by poly(NVCL-co-AI-co-EGDMA) matrix, with an encapsulation efficiency of 39.6% and 57.8%, for particles R50 and R51, respectively. Polymeric matrices of chitosan and poly(NVCL-co-AI-co-EGDMA) interacted during their mixture and drying process, and chitosan crystallinity decreased as a result of the incorporation of particles-based nanogels in their matrix. In vitro release tests of ketoprofen showed that poly(NVCL-co-AI-co-EGDMA)-based nanogels controlled the delivery of ketoprofen and 100% of ketoprofen-loaded has been released after 52h of the tests, carried out in pH 7.4 at 37°C. These tests also showed that the particles-based nanogels size was the parameter that most interfered in the ketoprofen diffusion by particles and that the ketoprofen release from smaller particles (R50 reaction) was faster. Under the same conditions, the incorporation of poly(NVCL-co-AI-co-EGDMA)-based nanogels in chitosan matrix slowed the ketoprofen release, due to insolubility of chitosan in the media at pH 7.4. The results showed that hybrid microparticles with a higher concentration of particles-based nanogels, with respect to the mass of chitosan, the release of ketoprofen was less pronounced. It was due to the greater number of interactions between the polymer matrices, which limited the contact of particles-based nanogels with the media of release and reduced the degree of freedom of the polymeric chains.
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Inibição da metaloproteinase 2 por dois monômeros amplamente utilizados na formulação de adesivos dentinários / Inhibition of metalloproteinase 2 by two monomers thoroughly used on the dentin bonding formulation.Carvalho, Rodrigo Varella de 30 January 2009 (has links)
Made available in DSpace on 2014-08-20T14:30:12Z (GMT). No. of bitstreams: 0
Previous issue date: 2009-01-30 / The aim of this study was to evaluate the effect of different concentrations of 2-hydroxyethyl methacrylate (HEMA) triethyleneglycol dimethacrylate (TEGDMA) on the inhibition of matrix metalloproteinase 2 (MMP-2). Mouse gingival explants were cultured overnight in DMEM and the expression of secreted enzymes was analyzed by gelatin zymography in buffers containing 5 mM CaCl2 (Tris-CaCl2) in 50 mM Tris-HCl buffer with the addition of HEMA and TEGDMA at different concentrations (0.62, 1.25, 2.5 or 5.0% (v/v)). The gelatinolytic proteinase present in the conditioned media was characterized as matrix metalloproteinase by means of specific chemical inhibition with 0.5 mM of EDTA and 0.5 mM of NEM. The matrix metalloproteinases present in the conditioned media were characterized as MMP-2 by immunoprecipitation.The eletrophoretic bands were scanned and the transmittance values were analyzed with ImageJ software. Data was plotted and submitted to linear regression to investigate MMP-2 inhibition as a function of HEMA and TEGDMA concentration. Three major bands were detected in the zymographic assays. Those bands were characterized as MMP-2. Zymogene (72 kDa), intermediate (66 kDa) and active forms of MMP-2 (62 kDa) were inhibited by HEMA and TEGDMA in a dose-dependent way. These findings suggest that HEMA and TEGDMA could inhibit MMP-2 expression even at small concentrations. / O objetivo do presente estudo foi avaliar o efeito de diferentes
concentrações de 2-hidroxietil metacrilato (HEMA) e trietilenoglicol dimetacrilato (TEGDMA) na inibição da metaloproteinase da matriz 2 (MMP-2). Tecidos gengivais de ratos foram incubados em DMEM e a expressão das enzimas secretadas foi analisada por zimografia em tampões de incubação contendo 5 mM de CaCl2 (Tris-CaCl2) em 50 mM de Tris-HCl com a adição de diferentes concentrações de HEMA e TEGDMA (0,62; 1,25; 2,5 e 5%) em volume. Para caracterizar as enzimas como MMPs foi realizado ensaio de inibição química específica com 0,5 mM de EDTA (um conhecido inibidor de MMPs) e 0,5 de NEM (um conhecido inibidor de proteinases serinas).Para caracterizar as enzimas como MMP-2
foi realizado o ensaio de imunoprecipitação. As bandas produzidas no gel foram escaneadas e os valores de transmitância foram analizados com o auxílio do programa ImageJ. Os resultados foram submetidos a regressão
linear em função da concentração de HEMA e TEGDMA. Três bandas foram identificadas após a zimografia. Essas bandas foram caracterizadas como MMP-2. O zimogênio (72 kDa), a forma intermediária (66 kDa) e a forma ativa da MMP-2 (62 kDa) foram inibidas pelo HEMA e pelo TEGDMA de forma dose-dependente. Nossos resultados sugerem que o HEMA e o TEGDMA podem inibir a expressão da MMP-2 mesmo em pequenas concentrações.
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Tegdma induction of apoptotic proteins in pulp fibroblastsBatarseh, Ghada January 2011 (has links)
Indiana University-Purdue University Indianapolis (IUPUI) / Monomers like triethylene glycol dimethacrylate (TEGDMA) leach from dental composites and adhesives due to incomplete polymerization or polymer degradation. The release of these monomers causes a variety of reactions that can lead to cell death. This death can be either necrotic, which is characterized mainly by inflammation and injury to the surrounding tissues, or apoptotic, which elicits little inflammatory responses, if any at all. TEGDMA-induced apoptosis in human pulp has been reported recently. However, the molecular mechanisms and the apoptotic (pro and anti) proteins involved in this process remain unclear.
The objective of this study was to determine the apoptotic proteins expressed or suppressed during TEGDMA-induced apoptosis. Human pulp fibroblasts (HPFs) were incubated for 24 hours with different TEGDMA concentrations (0.125-1.0 mM). Cytotoxicity was determined using the cytotoxicity Detection KitPLUS (Roche Applied Science, Mannheim, Germany). TEGDMA was shown to cause cell cytotoxicity at concentrations of 0.50 mM and up. The highest concentration with no significant cytotoxicity was used. Cells were incubated with or without 0.25 mM TEGDMA for 6 h and 24 h. Cell lysates were then prepared and the protein concentrations determined using the Bradford protein assay. A Human Apoptosis Array kit (Bio-Rad Hercules, CA ) was utilized to detect the relative levels of 43 apoptotic proteins. The results of this study showed statistically significant increases of multiple examined pro-apoptotic proteins. The anti-apoptotic proteins were also altered. Pro-apoptotic proteins involved in the intrinsic and extrinsic apoptotic pathways were increased significantly. The results indicated that TEGDMA has effects on both the extrinsic and intrinsic apoptotic pathways.
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CAD/CAM Resin-Based Composites for Use in Long-Term Temporary Fixed Dental ProsthesesHensel, Franziska 09 August 2022 (has links)
Ziel dieser In-vitro-Studie war es, die Leistungsfähigkeit von kunststoffbasierten CAD/CAM-Kompositen für die Herstellung von langzeitprovisorischem, festsitzendem Zahnersatz (FDP) zu analysieren und sie hinsichtlich ihrer Langzeitstabilität mit anderen handelsüblichen Alternativmaterialien zu vergleichen. Vier CAD/CAM-Materialien [Structur CAD (SC), VITA CAD-Temp (CT), Grandio disc (GD) und Lava Esthetic (LE)] und zwei direkte RBC's [(Structur 3 (S3) und LuxaCrown (LC)] wurden zur Herstellung von dreigliedrigen Brücken verwendet. 10/20 Brücken wurden einer Alterungssimulation mittels Thermocycling und mechanischer Belastung durch Kausimulation unterzogen und die anderen 10 Brücken wurden in destilliertem Wasser gelagert. Zwei Brücken von jedem Material wurden vor und nach der Kausimulation einer zusätzlichen Bilddiagnostik unterzogen. Die Bruchbelastung wurde gemessen und die Daten wurden statistisch ausgewertet.:Inhaltsverzeichnis
1. Einführung 1
1.1 Einleitung 1
1.2 Werkstoffe auf Kunststoffbasis für die subtraktive CAD/CAM-Technologie 3
1.3 Werkstoffbezogene Parameter 5
1.3.1 Zeitraffende Beanspruchung 6
1.3.2 Abrasion 7
1.3.3 Oberflächenrauheit 8
1.3.4 Mikrostruktur 9
1.3.5 Mechanische Belastbarkeit 10
1.4 Zielsetzung und Fragestellung der vorliegenden Studie 10
2. Publikationsmanuskript 12
3. Zusammenfassung der Arbeit 28
4. Literaturverzeichnis 32
5. Anlagen 38
5.1 Darstellung des eigenen Beitrags zur Publikationspromotion 38
5.2 Erklärung über die eigenständige Abfassung der Arbeit 39
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