187 resultados para LBL
Resumo:
The development of devices based on heterostructured thin films of biomolecules conveys a huge contribution on biomedical field. However, to achieve high efficiency of these devices, the storage of water molecules into these heterostructures, in order to maintain the biological molecules hydrated, is mandatory. Such hydrated environment may be achieved with lipids molecules which have the ability to rearrange spontaneously into vesicles creating a stable barrier between two aqueous compartments. Yet it is necessary to find conditions that lead to the immobilization of whole vesicles on the heterostructures. In this work, the conditions that govern the deposition of open and closed liposomes of 1.2-dipalmitoyl-sn-Glycero-3-[Phospho-rac-(1-glycerol)] (sodium Salt) (DPPG) onto polyelectrolytes cushions prepared by the layer-by-layer (LbL) method were analyzed. Electronic transitions of DPPG molecules as well as absorption coefficients were obtained by vacuum ultraviolet spectroscopy, while the elemental composition of the heterostructures was characterized by x-ray photoelectron spectroscopy (XPS). The presence of water molecules in the films was inferred by XPS and infrared spectroscopy. Quartz crystal microbalance (QCM) data analysis allowed to conclude that, in certain cases, the DPPG adsorbed amount is dependent of the bilayers number already adsorbed. Moreover, the adsorption kinetics curves of both adsorbed amount and surface roughness allowed to determine the kinetics parameters that are related with adsorption processes namely, electrostatic forces, liposomes diffusion and lipids re-organization on surface. Scaling exponents attained from atomic force microscopy images statistical analysis demonstrate that DPPG vesicles adsorption mechanism is ruled by the diffusion Villain model confirming that adsorption is governed by electrostatic forces. The power spectral density treatment enabled a thorough description of the accessible surface of the samples as well as of its inner structural properties. These outcomes proved that surface roughness influences the adsorption of DPPG liposomes onto surfaces covered by a polyelectrolyte layer. Thus, low roughness was shown to induce liposome rupture creating a lipid bilayer while high roughness allows the adsorption of whole liposomes. In addition, the fraction of open liposomes calculated from the normalized maximum adsorbed amounts decreases with the cushion roughness increase, allowing us to conclude that the surface roughness is a crucial variable that governs the adsorption of open or whole liposomes. This conclusion is fundamental for the development of well-designed sensors based on functional biomolecules incorporated in liposomes. Indeed, LbL films composed of polyelectrolytes and liposomes with and without melanin encapsulated were successfully applied to sensors of olive oil.
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The study of the effect of radiation on living tissues is a rather complex task to address mainly because they are made of a set of complex functional biological structures and interfaces. Particularly if one is looking for where damage is taking place in a first stage and what are the underlying reaction mechanisms. In this work a new approach is addressed to study the effect of radiation by making use of well identified molecular hetero-structures samples which mimic the biological environment. These were obtained by assembling onto a solid support deoxyribonucleic acid (DNA) and phospholipids together with a soft water-containing polyelectrolyte precursor in layered structures and by producing lipid layers at liquid/air interface with DNA as subphase. The effects of both ultraviolet (UV) radiation and carbon ions beams were systematically investigated in these heterostructures, namely damage on DNA by means vacuum ultraviolet (VUV), infrared (IR), X-Ray Photoelectron (XPS) and impedance spectroscopy. Experimental results revealed that UV affects furanose, PO2-, thymines, cytosines and adenines groups. The XPS spectrometry carried out on the samples allowed validate the VUV and IR results and to conclude that ionized phosphate groups, surrounded by the sodium counterions, congregate hydration water molecules which play a role of UV protection. The ac electrical conductivity measurements revealed that the DNA electrical conduction is arising from DNA chain electron hopping between base-pairs and phosphate groups, with the hopping distance equal to the distance between DNA base-pairs and is strongly dependent on UV radiation exposure, due loss of phosphate groups. Characterization of DNA samples exposed to a 4 keV C3+ ions beam revealed also carbon-oxygen bonds break, phosphate groups damage and formation of new species. Results from radiation induced damage carried out on biomimetic heterostructures having different compositions revealed that damage is dependent on sample composition, with respect to functional targeted groups and extent of damage. Conversely, LbL films of 1,2-dipalmitoyl-sn-Glycero-3-[Phospho-rac-(1-glycerol)] (Sodium Salt) (DPPG) liposomes, alternated with poly(allylamine hydrochloride) (PAH) revealed to be unaffected, even by prolonged UV irradiation exposure, in the absence of water molecules. However, DPPG molecules were damaged by the UV radiation in presence of water with cleavage of C-O, C=O and –PO2- bonds. Finally, the study of DNA interaction with the ionic lipids at liquid/air interfaces revealed that electrical charge of the lipid influences the interaction of phospholipid with DNA. In the presence of DNA in the subphase, the effects from UV irrladiation were seen to be smaller, which means that ionic products from biomolecules degradation stabilize the intact DPPG molecules. This mechanism may explain why UV irradiation does not cause immediate cell collapse, thus providing time for the cellular machinery to repair elements damaged by UV.
Resumo:
A proteção dos recursos hídricos tem uma enorme importância ecológica, sendo a água um recurso indispensável à Vida e fundamental para o bem-estar de uma sociedade. Para isso, muitos dos poluentes que afetam a qualidade deste recurso natural são detetados e eliminados nas estações de tratamento de águas residuais. Porém, o impacto dos Produtos Farmacêuticos e de Cuidado Pessoal (PPCPs), usados à escala global, carece ainda da atenção necessária, dado que os meios técnicos atualmente disponíveis para detetar estes produtos são dispendiosos ou insuficientes. Dentro daquela classe de produtos, destaca-se o Ibuprofeno, uma vez que este composto, sendo lipossolúvel, tem a capacidade para se acumular nas gorduras dos seres vivos e, por conseguinte, persistir no meio-ambiente com efeitos nocivos. Para além desse facto, por diferentes vias de reação, o Ibuprofeno tem potencial para gerar produtos de carácter semelhante. No entanto, pouco esforços têm sido feitos no sentido de o detetar. Assim, pretendeu-se com este projeto desenvolver metodologias com vista à deteção de muito baixas concentrações (entre o nano e o picoMolar) daquele composto em meio aquoso. Foi utilizada a tecnologia de Língua Eletrónica por Espectroscopia de Impedância e, para tentar melhorar a sensibilidade do sensor à molécula-alvo, foram utilizados filmes finos à base de nanotubos de carbono e de diferentes polieletrólitos, preparados pela técnica de Camada-sobre-Camada (LbL, do inglês Layer-by-Layer). A caracterização destes filmes foi feita pela técnica Espectrofotometria na faixa dos Ultravioleta e Visível. Para além da análise de diferentes concentrações de Ibuprofeno, foram ainda analisadas soluções de Cloreto de Sódio, com o intuito de perceber se o sensor é versátil na deteção de outro tipo de compostos, sendo, então, o sal um composto barato e relevante neste âmbito, uma vez que a água na Natureza apresenta sempre alguma salinidade. O trabalho compreendeu ainda o desenvolvimento de um programa informático para automatizar o processo de aquisição dos dados espectrais de impedância, recolhidos pelo analisador HAMEG Programmable LCR Bridge HM8118, o que foi feito com sucesso. Posteriormente, os dados foram tratados pelo procedimento estatístico de Análise de Componentes Principais, que permitiu discriminar espacialmente e sequencialmente as diferentes concentrações dos compostos analisados.
Resumo:
Os polímeros são materiais de grande interesse científico e tecnológico já que podem ser utilizados no desenvolvimento de dispositivos para aplicação em electrónica e fotónica. Tendo em conta a sua aplicação em dispositivos de conversão de energia solar em energia eléctrica, o estudo das propriedades eléctricas e ópticas de filmes destes materiais, quando irradiados por radiação ultravioleta e visível, é fundamental. Neste trabalho caracterizaram-se as propriedades eléctricas e ópticas de filmes finos obtidos pelas técnicas de derramamento e de camada-por-camada (Layer-by-Layer (LbL)) obtidos a partir do poli(cloreto de xilideno tetrahidrotiofeno) (PTHT) que após aquecimento é convertido em poli(p-fenileno vinileno) (PPV). Assim, e através da técnica de derramamento, foram preparados filmes sobre suportes sólidos com eléctrodos interdigitais de forma a proceder à medição da condutividade em modo de corrente alternada (AC), isto é, à medição da resistência e da capacidade em função da frequência. Verificou-se, portanto, que a presença de luz leva à formação de portadores de carga, ou seja, na presença de luminosidade os filmes apresentam uma menor capacitância e resistência, para além de degradar o material. Esta degradação foi verificada, também, a partir da espectrofotometria de Ultravioleta-Visível (UV-Vis) e de infravermelho (IV). Medições de condutividade de volume, isto é, colocando os filmes entre eléctrodos paralelos de funções de trabalho diferentes, permitiram traçar as curvas características e verificar que os dispositivos obtidos se comportam como díodos. Recorreu-se, também, a técnicas de espectrofotometria de ultravioleta do vácuo (VUV) e UV-Vis para caracterizar filmes LbL obtidos a partir do PTHT e de um polieletrólito comum o poli(estireno sulfonado) (PSS) antes e após aquecimento. Os espectros obtidos, após análise dos picos, mostram que a técnica de VUV é a técnica indicada para analisar a conversão do PTHT em PPV. Este trabalho permitiu concluir que as propriedades eléctricas e ópticas destes filmes, estão dependentes da presença de luminosidade, de oxigénio e da humidade relativa pelo que dispositivos obtidos a partir deste polímero devem ser, sempre, encapsulados.
Resumo:
Os polímeros são materiais de grande interesse científico e tecnológico já que podem ser utilizados no desenvolvimento de dispositivos para aplicação em electrónica e fotónica. Tendo em conta a sua aplicação em dispositivos de conversão de energia solar em energia eléctrica, o estudo das propriedades eléctricas e ópticas de filmes destes materiais, quando irradiados por radiação ultravioleta e visível, é fundamental. Neste trabalho caracterizaram-se as propriedades eléctricas e ópticas de filmes finos obtidos pelas técnicas de derramamento e de camada-por-camada (Layer-by-Layer (LbL)) obtidos a partir do poli(cloreto de xilideno tetrahidrotiofeno) (PTHT) que após aquecimento é convertido em poli(p-fenileno vinileno) (PPV). Assim, e através da técnica de derramamento, foram preparados filmes sobre suportes sólidos com eléctrodos interdigitais de forma a proceder à medição da condutividade em modo de corrente alternada (AC), isto é, à medição da resistência e da capacidade em função da frequência. Verificou-se, portanto, que a presença de luz leva à formação de portadores de carga, ou seja, na presença de luminosidade os filmes apresentam uma menor capacitância e resistência, para além de degradar o material. Esta degradação foi verificada, também, a partir da espectrofotometria de Ultravioleta-Visível (UV-Vis) e de infravermelho (IV). Medições de condutividade de volume, isto é, colocando os filmes entre eléctrodos paralelos de funções de trabalho diferentes, permitiram traçar as curvas características e verificar que os dispositivos obtidos se comportam como díodos. Recorreu-se, também, a técnicas de espectrofotometria de ultravioleta do vácuo (VUV) e UV-Vis para caracterizar filmes LbL obtidos a partir do PTHT e de um polieletrólito comum o poli(estireno sulfonado) (PSS) antes e após aquecimento. Os espectros obtidos, após análise dos picos, mostram que a técnica de VUV é a técnica indicada para analisar a conversão do PTHT em PPV. Este trabalho permitiu concluir que as propriedades eléctricas e ópticas destes filmes, estão dependentes da presença de luminosidade, de oxigénio e da humidade relativa pelo que dispositivos obtidos a partir deste polímero devem ser, sempre, encapsulados.
Resumo:
The weak fixation of biomaterials within the bone structure is one of the major reasons of implants failures. Calcium phosphate (CaP) coatings are used in bone tissue engineering to improve implant osseointegration by enhancing cellular adhesion, proliferation and differentiation, leading to a tight and stable junction between implant and host bone. It has also been observed that materials compatible with bone tissue either have a CaP coating or develop such a calcified surface upon implantation. Thus, the development of bioactive coatings becomes essential for further improvement of integration with the surrounding tissue. However, most of current applied CaP coatings methods (e.g. physical vapor deposition), cannot be applied to complex shapes and porous implants, provide poor structural control over the coating and prevent incorporation of bioactive organic compounds (e.g. antibiotics, growth factors) because of the used harsh processing conditions. Layer-by-layer (LbL) is a versatile technology that permits the building-up of multilayered polyelectrolyte films in mild conditions based on the alternate adsorption of cationic and anionic elements that can integrate bioactive compounds. As it is recognized in natureâ s biomineralization process the presence of an organic template to induce mineral deposition, this work investigate a ion based biomimetic method where all the process is based on LbL methodology made of weak natural-origin polyelectrolytes. A nanostructured multilayer component, with 5 or 10 bilayers, was produced initially using chitosan and chondroitin sulphate polyelectrolyte biopolymers, which possess similarities with the extracellular matrix and good biocompatibility. The multilayers are then rinsed with a sequential passing of solutions containing Ca2+ and PO43- ions. The formation of CaP over the polyelectrolyte multilayers was confirmed by QCM-D, SEM and EDX. The outcomes show that 10 polyelectrolyte bilayer condition behaved as a better site for initiating the formation of CaP as the precipitation occur at earlier stages than in 5 polyelectrolyte bilayers one. This denotes that higher number of bilayers could hold the CaP crystals more efficiently. This work achieved uniform coatings that can be applied to any surface with access to the liquid media in a low-temperature method, which potentiates the manufacture of effective bioactive biomaterials with great potential in orthopedic applications.
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Cell encapsulation within hydrogel microspheres shows great promise in the field of tissue engineering and regenerative medicine (TERM). However, the assembling of microspheres as building blocks to produce complex tissues is a hard task because of their inability to place along length scales in space. We propose a proof-of-concept strategy to produce 3D constructs using cell encapsulated as building blocks by perfusion based LbL technique. This technique exploits the â bindingâ potential of multilayers apart from coating
Resumo:
Commercial stents, especially metallic ones, present several disadvantages, and this gives rise to the necessity of producing or coating stents with different materials, like natural polymers, in order to improve their biocompatibility and minimize the disadvantages of metallic ones. This review paper discusses some applications of natural-based polymers in stents, namely polylactic acid (PLA) for stent development and chitosan for biocompatible coatings of stents . Furthermore, some effective stent functionalization techniques will be discussed, namely Layer by Layer (LBL) technique.
Resumo:
Multilayer systems obtained using the Layer-by-Layer (LbL) technology have been proposed for a variety of biomedical applications in tissue engineering and regenerative medicine. LbL assembly is a simple and highly versatile method to modify surfaces and fabricate robust and highly-ordered nanostructured coatings over almost any type of substrates and with a wide range of substances. The incorporation of polyoxometalate (POM) inorganic salts as constituents of the layers presents a possibility of promoting light-stimuli responses in LbL substrates. We propose the design of a biocompatible photo-responsive multilayer system based on a Preyssler-type POM ([NaP5W30O110]14â ) and a natural origin polymer, chitosan, using the LbL methodology. The photo-reduction properties of the POM allow the spatially controlled disruption of the assembled layers due to the weakening of the electrostatic interactions between the layers. This system has found applicability in detaching devices, such as the cell sheet technology, which may solve the drawbacks actually found in other cell treatment proposals.
Resumo:
The layer-by-layer (LbL) deposition method was used to build up alternating layers (five) of different polyelectrolyte solutions (alginate, zein-carvacrol nanocapsules, chitosan and chitosan-carvacrol emulsions) on an aminolysed/charged polyethylene terephthalate (A/C PET) film. These nanolaminated films were characterised by contact angle measurements and through the determination of water vapour (WVTR) and oxygen (O2TR) transmission rates. The effect of active nanolaminated films against the Alternaria sp. and Rhizopus stolonifer was also evaluated. This procedure allowed developing optically transparent nanolaminated films with tuneable water vapour and gas properties and antifungal activity. The water and oxygen transmission rate values for the multilayer films were lower than those previously reported for the neat alginate or chitosan films. The presence of carvacrol and zein nanocapsules significantly decreased the water transmission rate (up to 40 %) of the nanolaminated films. However, the O2TR behaved differently and was only improved (up to 45 %) when carvacrol was encapsulated, i.e. nanolaminated films prepared by alternating alginate with nanocapsules of zein-carvacrol layers showed better oxygen barrier properties than those prepared as an emulsion of chitosan and carvacrol. These films containing zein-carvacrol nanocapsules also showed the highest antifungal activity (30 %), which did not significantly differ from those obtained with the highest amount of carvacrol, probably due to the controlled release of the active agent (carvacrol) from the zein-carvacrol nanocapsules. Thus, this work shows that nanolaminated films prepared with alternating layers of alginate and zein-carvacrol nanocapsules can be considered to improve the shelf-life of foodstuffs.
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Tese de Doutoramento em Engenharia Química e Biológica.
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Inspired by nature, in particular by the marine mussels adhesive proteins (MAPs) and by the tough brick-and-mortar nacre-like structure, novel multilayered films are prepared in the present work. Organic-inorganic multilayered films, with an architecture similar to nacre based on bioactive glass nanoparticles (BG), chitosan and hyaluronic acid modified with catechol groups, which are the main responsible for the outstanding adhesion in MAPs, are developed for the first time. The biomimetic conjugate is prepared by carbodiimide chemistry and analyzed by ultraviolet-visible spectrophotometry. The build-up of the multilayered films is monitored with a quartz crystal microbalance with dissipation monitoring and their topography is characterized by atomic force microscopy. The mechanical properties reveal that the films containing catechol groups and BG present an enhanced adhesion. Moreover, the bioactivity of the films upon immersion in a simulated body fluid solution for 7 days is evaluated by scanning electron microscopy coupled with energy dispersive X-ray spectroscopy, Fourier transform infrared spectroscopy and X-ray diffraction. It was found that the constructed films promote the formation of bone-like apatite in vitro. Such multifunctional mussel inspired LbL films, which combine enhanced adhesion and bioactivity, could be potentially used as coatings of a variety of implants for orthopedic applications.
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La Facultat de Ciències de la Salut i de la Vida ha utilitzat des de 2004 la metodologia d'aprenentatge basat en problemes (en endavant ABP) com a mètode docent en els seus estudis de Biologia. En aquest període hem après algunes de les claus de l'aplicació del mètode en els nostres estudis. En primer lloc, cal disposar d'elements formatius que afavoreixin la formació dels tutors que participin en el projecte. Per assolir aquest objectiu hem dissenyat un portal on els nostres professors poden disposar de materials útils per a la seva activitat, així com de documents que permetin entendre millor el que suposa l'ABP. En segon lloc, el projecte tenia l'objectiu de dissenyar i avaluar activitats que permetessin integrar les pràctiques de laboratori en la lògica de la resolució de problemes pròpia de l'ABP. En aquest sentit vam dissenyar dues activitats en el tercer curs de la llicenciatura que anomenaren aprenentatge basat en el laboratori (ABL). Per aquest motiu es van dissenyar problemes que tinguessin una primera part de resolució a l'aula en grup de tutoria i una segona que obligués els estudiants a realitzar experiments de laboratori dirigits a entendre i resoldre les qüestions plantejades al grup de tutoria. L'ABL-1 fou un projecte de biologia cel·lular i destinat a aprofundir en els mecanismes implicats en els fenòmens de diferenciació dels miòcits. L'ABL-2 era un projecte conjunt dels professors de Fisiologia vegetal, Bioestadística i Microbiologia. En aquest cas es desitjava que els estudiants plantegessin la resolució a un problema que suposava la manipulació genètica de cèl·lules vegetals per fer possible que produïssin una substància específica, l'escopolamina. Finalment els estudiants havien d'escriure un article original com a projecte final de cada ABL. Els resultats dels dos anys d'experimentació han esta altament satisfactoris, d'acord amb les enquestes completades per alumnes i professors.
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We present an approach for creating image mosaics using navigation data consisting on 3D position estimates provided by sensors such as LBL available in deep water surveys. A central issue with acoustic 3D positioning is that the accuracy is far too low compositing the images within reasonable accuracy
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In this work we take advantage of the polyelectrolyte character of some Brazilian native gums to fabricate electrically conductive, nanostructured films. The gums Sterculia urens, (caraia), Sterculia striata (chicha) or Anadenanthera macrocarpa Benth were assembled in conjunction with poly(o-methoxyaniline) (POMA) in the form of layered nanostructured films using the layer-by-layer (LbL) technique. All the LbL films displayed a well-defined electroactivity, as confirmed via cyclic voltammetry. In comparison to POMA LbL films fabricated with conventional polyelectrolytes (viz. poly(vinyl sulfonic acid)-PVS), the presence of the gums in the LbL films increased remarkably the electrochemical stability of the films.