911 resultados para SUPRAMOLECULAR GELS
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Multiarm star polymers are attractive materials due to their unusual bulk and solution properties. They are considered analogues of dendrimers with a wide range of applications, such as drug delivery, membranes, coatings and lithography.1 The advent of controlled polymerization made possible the existence of this unique class of organic nanoparticles (ONPs).2 Two major synthetic strategies are usually employed in the preparation of star polymers, the core-first and arm-first approaches. The core-first approach involves a controlled living polymerization using a multiarm initiator core while the arm-first methodology is based in the quenching of living polymers with multifunctional coupling agent or bifunctional vinyl compounds. Herein, we present the synthesis and characterization of a new star polymer, the multiarm star poly(2-hydroxyethyl methacrylate). The tetra-armed star polymer was prepared by reversible addition fragmentation chain-transfer (RAFT) polymerization using the core-first approach. The RAFT chain-transfer agent (RAFT CTA) pentaerythritol tetrakis[2-(dodecylthiocarbonothioylthio)-2-methylpropionate] was used as multiarm initiator core were 2-hydroxyethyl methacrylate (HEMA) was polymerized using AIBN as radical initiator. Structural characterization was performed by 1H NMR and FTIR. The new polymer is able to uptake large quantities of organic solvents, forming gels. The rheological behavior of these gels was also investigated.
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Nanocomposite materials with an organic-inorganic urea-silicate (di-ureasil) based matrix containing gold nanoparticles (NPs) were synthesized and characterized by optical (UV/Vis) spectroscopy and indentation measurement. The urea silicate gels were obtained by reaction between silicon alkoxyde modified by isocyanate group and polyethylene glycol oligomer with amine terminal groups in presence of catalyst. The latter ensures the successful incorporation of citrate-stabilized gold NPs in the matrix. It is shown that using a convenient destabilizing agent (AgNO3) and governing the preparative conditions, the aggregation degree of gold NPs can be controlled. The developed synthesis procedure significantly simplifies the preparative procedure of gold/urea silicate nanocomposites, compared to the procedure using gold NPs, preliminary covered with silica shells. Mechanical properties of the prepared sample were characterised using depth sensing indentation methods (DSI) and an idea about the type of aggregation structures was suggested.
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We investigate the strain hardening behavior of various gelatin networks-namely physical gelatin gel, chemically cross-linked gelatin gel, and a hybrid gel made of a combination of the former two-under large shear deformations using the pre-stress, strain ramp, and large amplitude oscillations shear protocols. Further, the internal structures of physical gelatin gels and chemically cross-linked gelatin gels were characterized by small angle neutron scattering (SANS) to enable their internal structures to be correlated with their nonlinear rheology. The Kratky plots of SANS data demonstrate the presence of small cross-linked aggregates within the chemically cross-linked network whereas, in the physical gelatin gels, a relatively homogeneous structure is observed. Through model fitting to the scattering data, we were able to obtain structural parameters, such as the correlation length (ξ), the cross-sectional polymer chain radius (Rc) and the fractal dimension (df) of the gel networks. The fractal dimension df obtained from the SANS data of the physical and chemically cross-linked gels is 1.31 and 1.53, respectively. These values are in excellent agreement with the ones obtained from a generalized nonlinear elastic theory that has been used to fit the stress-strain curves. The chemical cross-linking that generates coils and aggregates hinders the free stretching of the triple helix bundles in the physical gels.
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Tese de Doutoramento em Ciências (área de especialização em Química)
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Due to the limited self-repair capacity of cartilage, regenerative medicine therapies for the treatment of cartilage defects must use a significant amount of cells, preferably applied using a hydrogel system that can promise their delivery and functionality at the specific site. This paper discusses the potential use of k-carrageenan hydrogels for the delivery of stem cells obt ained from adipose tissue in the treatment of cartilage tissue defects. The developed hydrogels were produced by an ionotropic gelation met hod and human adipose stem cells (hASCs) were encapsulated in 1.5% w/v k-carrageenan solution at a cell density of 5 10 6 cells/ml. The results from the analysis of the cell-encapsulating hydrogels, cultured for up to 21 days, indicated that k-carrageenan hydrogels support the viability, proliferation and chondrogenic differentiation of hASCs. Additionally, the mec hanical analysis demonstrated an increase in stiffness and viscoelastic properties of k-carrageenan gels with their encapsulated cells with increasing time in culture with chondrogenic medium. These results allowed the conclusion that k-carrageenan exhibits properties t hat enable the in vitro functionality of encapsulated hASCs and thus may provide the basis for new successful approaches for the treatment of cartilage defects.
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Characterization, with emphasis on the rheological properties, of Cassia grandis seeds galactomannan gel containing immobilized Cramoll 1,4 is presented. The gels, with and without immobilized Cramoll 1,4, were evaluated along time by rheometry, pH, color, microbial contamination and lectin hemagglutinating activity (HA). Rheological determinations confirmed the gels to be very stable up to 30 days with variations occurring after this period. Rheological data also showed that the gel/Cramoll 1,4 immobilizing matrix loses its elastic modulus substantially after 60 days. Both gels presented no microbial contamination as well as a pH close to neutral. Colorimetric parameters demonstrated the gels transparency with occasional yellowness. The opacity of the galactomannan gel did not change significantly along the study; the same did not occur for the gel with immobilized Cramoll 1,4 as a statistically significant reduction of its opacity was observed. In what concerns immobilized Cramoll 1,4HA, up to 90% of its initial HA was maintained after 20 days, with a decrease to 60% after 60 days. These results combined with the thickening and stabilizing characteristics of the galactomannan gel make this gel a promising immobilizing matrix for Cramoll 1,4 that can be further exploited for clinical and cosmetic applications.
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This work focused on how different types of oil phase, MCT (medium chain triglycerides) and LCT (long chain triglycerides), exert influence on the gelation process of beeswax and thus properties of the organogel produced thereof. Organogels were produced at different temperatures and qualitative phase diagrams were constructed to identify and classify the type of structure formed at various compositions. The microstructure of gelator crystals was studied by polarized light microscopy. Melting and crystallization were characterized by differential scanning calorimetry and rheology (flow and small amplitude oscillatory measurements) to understand organogels' behaviour under different mechanical and thermal conditions. FTIR analysis was employed for a further understanding of oil-gelator chemical interactions. Results showed that the increase of beeswax concentration led to higher values of storage and loss moduli (G, G) and complex modulus (G*) of organogels, which is associated to the strong network formed between the crystalline gelator structure and the oil phase. Crystallization occurred in two steps (well evidenced for higher concentrations of gelator) during temperature decreasing. Thermal analysis showed the occurrence of hysteresis between melting and crystallization. Small angle X-ray scattering (SAXS) analysis allowed a better understanding in terms of how crystal conformations were disposed for each type of organogel. The structuring process supported by medium or long-chain triglycerides oils was an important exploit to apprehend the impact of different carbon chain-size on the gelation process and on gels' properties.
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El proyecto tiene como objetivo estudiar la implicancia funcional de los glucocorticoides liberados durante diferentes situaciones estresantes en las consecuencias comportamentales inducidas por las mismas. Asimismo, se evaluará la influencia de los esteroides en los cambios neuroquímicos (neurotransmisión gabaérgica) y neuroendócrinos (actividad del sistema hipotalámico-hipofisario-adrenal, HHA) que subyacen a las alteraciones comportamentales. El estudio contribuye, además, a la caracterización de los mecanismos neurales implicados en los déficits conductuales inducidos por estrés. Durante este período se abordarán los siguientes objetivos específicos: a) Caracterización de los sistemas de receptores centrales (MR o GR) involucrados en la respuesta ansiogénica inducida por una sesión de inmovilización y de las áreas centrales comprometidas. (...) De este modo se extenderán los hallazgos conductuales a la actividad del complejo supramolecular GABAa. b) Evaluación de los efectos inducidos por la inyección sistémica aguda de dexametasona sobre la funcionalidad complejo-receptor GABAa en corteza prefrontal por medio de la determinación de la captación de cloruro estimulada por GABA. (...) De este modo se extenderán los hallazgos conductuales a la actividad del complejo supramolecular GABAa. c) En el paradigma residente-intruso se evaluará la generalización de la acción de Corticoesterona (CS) sobre el diferentes medidas conductuales de reactividad a un evento aversivo novel. (...) d) Se evaluarán los cambios en la actividad del sistema HHA en relación a las diferentes expresiones conductuales (sumisión, "boxing" o "freezing") asociadas a la confrontación social, para lo cual se determinará el curso temporal de secreción de CS y ACTH, antes y después del encuentro agonístico. (...) e) Se investigarán los efectos de una experiencia previa de derrota sobre la respuesta neuroendócrina inducida por exposición a un evento aversivo novel.
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Se utiliza la RCN de línea ancha y la RMN con ciclaje del campo magnético y se desarrollan técnicas de espectroscopía bidimensional e imágenes por RCN para estudiar el orden local y las fluctuaciones de orden (en el rango de los movimientos lentos y ultralentos) en sistemas parcialmente desordenados. Como ejemplo se estudian cristales líquidos, cristales plásticos, fases inconmensuradas, polímeros y gels. Objetivos generales y específicos: Resonancias cuadrupolar y magnética en sistemas parcialmente desordenados. Específicamente se pretende estudiar los espectros de resonancia generados por las diferentes estructuras que forman las moléculas en ejemplos, tales como: sistemas inconmensurados, cristales líquidos, cristales plásticos, vidrios orgánicos y polímeros, y su influencia en la dinámica molecular en la escala de tiempos de los movimientos lentos y ultralentos. Se intenta contribuir así al conocimiento básico de los efectos comunes de diferentes tipos de arreglos moleculares sobre la distribución de gradientes de campo eléctrico en el sitio que ocupa el núcleo resonante que se observa. La influencia de esos mismos ordenamientos sobre las fluctuaciones en el orden molecular, es también parte del mismo trabajo. La formación de recursos humanos en el nivel del doctorado y del pregrado en Física esta presente en cada tarea que se realiza. Técnicas bidimensionales en Resonancia Cuadripolar Nuclear: Imágenes en Sólidos y Espectroscopía de intercambio. El desarrollo de estas técnicas tiene los siguientes propósitos específicos: 1) Lograr técnicas de manejo de datos para la formación de imágenes por RCN en el sistema rotante (rNQRI), para aplicarlas en: a) obtener distribución de temperatura, tensiones internas y esfuerzos externos en sólidos opacos; b) obtener imágenes superficiales de alta resolución; c) estudio de propiedades mecánicas microscópicas, particularmente en polímeros; d) desarrollar imágenes que resuelvan la orientación relativa de pequeños cristales en objetos policristalinos. 2) Aplicar la espectroscopía bidimensional por RCN a sistemas parcialmente desordenados, en particular cristales plásticos, para estudiar fluctuaciones de orden.
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Geralmente, a cardiomiopatia restritiva por deposição de desmina é caracterizada pela restrição ao enchimento diastólico ventricular e por diferentes graus de bloqueio atrioventricular (BAV). Neste relato, são descritas as alterações anatomopatológicas do sistema de condução cardíaco relacionadas ao BAV. O nó sinusal, o nó compacto e o feixe penetrante (feixe de His) não apresentavam anormalidades, entretanto, havia extensa fibrose das porções terminais do feixe ramificante e do início dos feixes esquerdo e direito, no topo do septo ventricular. A patogenia dessa substituição fibrosa é provavelmente a mesma que origina a extensa fibrose do miocárdio ventricular contrátil, e permanece por ser elucidada.
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Apesar de avanços nos últimos anos relacionados à prevenção e a tratamento, muitas são as vidas perdidas anualmente no Brasil relacionado à parada cardíaca e a eventos cardiovasculares em geral. O Suporte Básico de Vida envolve o atendimento às emergências cardiovasculares principalmente em ambiente pré-hospitalar, enfatizando reconhecimento e realização precoces das manobras de ressuscitação cardiopulmonar com foco na realização de compressões torácicas de boa qualidade, assim como na rápida desfibrilação, por meio da implementação dos programas de acesso público à desfibrilação. Esses aspectos são de fundamental importância e podem fazer diferença no desfecho dos casos como sobrevida hospitalar sem sequelas neurológicas. O início precoce do Suporte Avançado de Vida em Cardiologia também possui papel essencial, mantendo, durante todo o atendimento, a qualidade das compressões torácicas, adequado manejo da via aérea, tratamento específico dos diferentes ritmos de parada, desfibrilação, avaliação e tratamento das possíveis causas. Mais recentemente dá-se ênfase a cuidados pós-ressuscitação, visando reduzir a mortalidade por meio do reconhecimento precoce e tratamento da síndrome pós-parada cardíaca. A hipotermia terapêutica tem demonstrado melhora significativa da lesão neurológica e deve ser realizada em indivíduos comatosos pós-parada cardíaca. Para os médicos que trabalham na emergência ou unidade de terapia intensiva é de grande importância o aperfeiçoamento no tratamento desses pacientes por meio de treinamentos específicos, possibilitando maiores chances de sucesso e maior sobrevida.
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Estudi elaborat a partir d’una estada a l’ Ecole Nationale Supérieure de Chimie de Montpellier, França, durant 2006. S’han sintetitzat materials híbrids orgànico-inorgànics mitjançant el procés sol-gel i altres estratègies sintètiques. En alguns casos, s’ha intentat estructurar aquests materials, ja sigui per autoestructuració o per mitjà de tensioactius. Com a catalitzadors de les reaccions d'hidròlisi i policondensació s’han utilitzat àcids, bases i fluorurs. Els materials obtinguts s’han caracteritzat mitjançant diferents tècniques: BET (Brunauer-Emmett-Teller), TEM (microscopia electrònica de transmissió), SEM (microscòpia electrònica de rastreig), raigs X en pols , IR i RMN (ressonància magnètica nuclear) en estat sòlid. Amb aquests materials es pretén preparar catalitzadors heterogenis de Pd per reaccions d’acoblament creuat, i de Ru per reaccions de metàtesi. També s’han sintetitzat sals d'imidazoli amb cadenes hidrocarbonades llargues amb l'objectiu de preparar gels de sílice amb aquestes molècules atrapades dins la matriu inorgànica. Aquests materials s’utilitzaran com a organocatalitzadors i també es prepararan els corresponents catalitzadors de Pd per reaccions de Heck, Suzuki i Sonogashira. Les sals d’imidazoli s’han utilitzat com a tensioactius en la preparació de gels de sílice estructurats. Aquestes molècules han resultat ser cristalls líquids i s’han caracteritzar mitjançant DSC (differential scanning calorimetry), microscopia òptica i raigs X.
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Estudi elaborat a partir d’una estada a Çukurova University, Turquia, al juliol del 2006. L’emmagatzematge d’energia tèrmica ha atret interès en aplicacions tèrmiques com l’aigua calenta, la calefacció i l’aire condicionat. Aquests sistemes són útils per corregir la no coincidència entre la oferta i la demanda d’energia. Principalment hi ha dos tipus de sistemes d’emmagatzematge d’energia tèrmica, emmagatzematge amb calor sensible i amb calor latent. L’emmagatzematge amb calor latent és particularment atractiu degut a la seva habilitat de donar una densitat d’emmagatzematge d’energia més alt i la seva característica d’emmagatzemar calor a una temperatura constant corresponent a la temperatura de transició de fase de la substància emmagatzemadora de calor. Les salts hidratades orgàniques tenen certes avantatges com a materials d’emmagatzematge de calor latent sobre els materials orgànics. En canvi, quan les salts hidratades s’utilitzen com a materials de canvi de fase (PCM) apareixen alguns problemes en les aplicacions d’emmagatzematge de calor latent. Aquests són el subrefredament de les salts hidratades quan es congelen degut a les seves dèbils propietats de nucleació, i la separació de fase que hi apareix degut a una fusió incongruent. En aquest estudi, s’estabilitza sal de Glauber (Na2SO4.10H2O) amb diferents concentracions de poliacrilamida i gelatina per prevenir la fusió incongruent. Per prevenir el subrefredament s’utilitza un agent nucleant amb una estructura cristal•lina semblant a la de la sal de Glauber. La capacitat d’emmagatzematge de calor de les mostres de PCM estabilitzades amb diferents concentracions de gels polimèrics es determinen amb DCS i amb el mètode T-history.
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Perineural and intraneural fibrosis is thought to be the main cause of failure of the many surgical treatments of neuropathic pain. We have used Adcon-T/N carbohydrate polymer gel for prevention of perineural fibrosis in several parts of the body. In this retrospective study, 54 patients who presented with postoperative neuropathic pain had microsurgical epineural neurolysis and relocation of a terminal neuroma. In 19 of them, the carbohydrate gel was applied at the same time. The mean follow-up was four years and the nerve distribution varied. Postoperative improvement in pain scores (visual analogue scale (VAS) and neuropathic pain scale inventory (NPSI)), sensitivity, overall improvement and satisfaction were equivalent in the two groups, with pain relief in about 80% of the patients. There was no significant beneficial effect in the carbohydrate gel group. Patients treated with this device had a higher infection rate (21 compared with 0, p = 0.01) and delayed wound healing (31.6 compared with 11.8, p = 0.2). We conclude that good long-term pain relief is obtained postoperatively independently of the addition of carbohydrate gel. There was a slight but not significant trend towards profound pain relief with the gel.
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The cytoskeleton, composed of actin filaments, intermediate filaments, and microtubules, is a highly dynamic supramolecular network actively involved in many essential biological mechanisms such as cellular structure, transport, movements, differentiation, and signaling. As a first step to characterize the biophysical changes associated with cytoskeleton functions, we have developed finite elements models of the organization of the cell that has allowed us to interpret atomic force microscopy (AFM) data at a higher resolution than that in previous work. Thus, by assuming that living cells behave mechanically as multilayered structures, we have been able to identify superficial and deep effects that could be related to actin and microtubule disassembly, respectively. In Cos-7 cells, actin destabilization with Cytochalasin D induced a decrease of the visco-elasticity close to the membrane surface, while destabilizing microtubules with Nocodazole produced a stiffness decrease only in deeper parts of the cell. In both cases, these effects were reversible. Cell softening was measurable with AFM at concentrations of the destabilizing agents that did not induce detectable effects on the cytoskeleton network when viewing the cells with fluorescent confocal microscopy. All experimental results could be simulated by our models. This technology opens the door to the study of the biophysical properties of signaling domains extending from the cell surface to deeper parts of the cell.