931 resultados para Formulation de projets


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controversial in chronically infected adults. We report the pharmacokinetics and pharmacodynamics in six adult patients with Chagas disease treated with the new BNZ formulation (ABARAX®) in doses between 2.5-5.5 mg/Kg/ day. All but one patient had plasmatic BNZ concentrations within the expected range. All patients finalised treatment with nondetectable Trypanosoma cruzi quantitative polymerase chain reaction, which remained nondetectable at the six month follow-up. Our data suggests parasitological responses with the new BNZ and supports the hypothesis that treatment protocols with lower BNZ doses may be effective.

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Purpose: To formulate the water in oil (W/O) emulsion of corn silk (CS) extract and to evaluate its stability at various storage conditions. Methods: Ethanol CS extract was prepared using maceration (cold) technique. A 4 % CS emulsion was prepared using varying concentrations of liquid paraffin, ABIL EM90 and water. The formulations were kept at 40 oC for 28 days and to screen out the less stable formulations. The remaining formulations were further stressed at 50 oC to choose the most stable formulation. The optimized formulation was evaluated for physical characteristics including phase separation, rheology and mean droplet size. The physical stability of the formulation was evaluated by monitoring these parameters over a period of 12 weeks at 8, 25, 40 and 40 oC, and 75 % RH. Results: The chosen formulation showed good resistance to phase separation on centrifugation under all storage conditions. Rheological behavior followed non-Newtonian pseudoplastic pattern at various storage conditions. Mean droplet size of freshly prepared formulation was 2.98 ± 1.32 µm and did not show significant (p < 0.05) changes at normal storage conditions (8 and 25 oC). Conclusion: The findings indicate that the developed CS extract W/O emulsion is stable and therefore may be suitable for topical use on skin as an antioxidant preparation.

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The evolution of polymer-based nanoparticle as a drug delivery carrier has greatly contributed to the development of advanced nano and micro-medicine in the past few decades. The polymer-based nanoparticles of biodegradable and biocompatible polymers such as poly (lactide-co-glycolide) and chitosan which have been approved by Food & Drug Administration and/or European Medicine Agency can particularly facilitate the maintaining of specific properties for a real transition from laboratory to the clinical oral and parental administration. This review presents an overview of the strategies of preparing polymeric nanoparticles and using them for targeting colorectal cancer. Theranostics and surface engineering aspects of nanoparticle design in colonic cancer delivery are also highlighted.

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PurSil®AL20 (PUS), a copolymer of 4,4'-dicyclohexylmethane diisocyanate (HMDI), 1,4-butane diol (BD), poly-tetramethylene oxide (PTMO) and poly-dimethyl siloxane (PDMS) was investigated for stability as a vehicle for Docetaxel (DTX) delivery through oesophageal drug eluting stent (DES). On exposure to stability test conditions, it was found that DTX release rate declined at 4 and 40 &deg;C. In order to divulge reasons underlying this, changes in DTX solid state as well as PUS microstructure were followed. It was found that re-crystallization of DTX in PDMS rich regions was reducing the drug release at both 4 &deg;C and 40 &deg;C samples. So far microstructural features have not been correlated with stability and drug release, and in this study we found that at 40 &deg;C increase in microstructural domain sizes and the inter-domain distances (from ∼85 Å to 129 Å) were responsible for hindering the DTX release in addition to DTX re-crystallization.

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Purpose – The purpose of this paper is to provide an overview of current practice in forensic case formulation, describing different approaches and discussing some of the practical and ethical issues that routinely arise. The paper further identifies areas where future practice and research might be strengthened.

Design/methodology/approach – There is only a very small literature to draw upon in reviewing this topic. Therefore a narrative literature review was undertaken, synthesising findings from published, peer-reviewed studies, and papers that addressed case formulation in psychological practice.

Findings
Despite case formation being considered by many to be a core competency of evidence-based forensic practice, it is not currently possible to describe a typical forensic case formulation or advocate for a particular approach to practice.

Practical implications
– A number of practical and ethical issues routinely arise in the process of conducting a forensic case formulation. Ultimately, the absence of a consistent approach can lead to lead to poor clinical decision-making and the delivery of inadequate or inappropriate intervention.

Originality/value – This is one of the few discussions of case formulation that have been prepared for forensic practitioners. It is likely to be of interest to readers of the journal given the importance of the formulation process in contemporary forensic practice.

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Esophageal cancer (EC) mostly affects the elderly population and is frequently diagnosed at an advanced stage. Self-expanding metal stents (SEMS) are the most popular mode of palliation, but they are associated with reocclusion caused by tumor growth. To overcome this problem, docetaxel (DTX)-loaded polyurethane formulations were prepared for stent application. The films were evaluated against the cancer cell lines, OE-19 and OE-21, and normal esophageal cell line Het-1A. The DTX and the formulations were evaluated in vitro for the cytotoxicity and in vivo in nude mice. It was found that DTX and the formulations have a weak activity against the EC cell lines and an even weaker activity against Het-1A cell line. Preliminary in vivo studies showed skin toxicity in nude mice necessitating modification of the formulation. Reevaluation in a mouse xenograft model resulted in toxicity at high dose formulations while the low dose formulation exhibited modest advantage over commercial IV formulation; however, there was no significant difference between the commercial IV and blank formulation. DTX combination with an anti-cancer agent having complementary mode of action and non-overlapping toxicity could yield better outcome in future.

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The study used microchannel emulsification (MCE) to encapsulate quercetin in food grade oil-in-water (O/W) emulsions. A silicon microchannel plate (Model WMS 1-2) comprised of 10,300 discrete 10 × 104 μm microslots was connected to a circular microhole with an inner diameter of 10 μm. 1% (w/w) Tween 20 was used as optimized emulsifier in Milli-Q water, while 0.4 mg ml-1 quercetin in different oils served as a dispersed phase. The MCE was carried by injecting the dispersed phase at 2 ml h-1. Successful emulsification was conducted below the critical dispersed phase flux, with a Sauter mean diameter of 29 μm and relative span factor below 0.25. The O/W emulsions remained stable in terms of droplet coalescence at 4 and 25 &deg;C for 30 days. The encapsulation efficiency of quercetin in the O/W emulsions was 80% at 4 &deg;C and 70% at 25 &deg;C during the evaluated storage period.

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Nutritional deficiencies of ergocalciferol (VD2) and cholecalciferol (VD3) cause skeletal deformations. The primary aim of this study was to encapsulate VD2 and VD3 in food-grade oil-in-water (O/W) emulsions by using microchannel emulsification (MCE). Silicon asymmetric straight-through microchannel (MC) array consisting of 10 313 channels, each having an 11 × 104 μm microslot connected to a 10 μm circular microholes. 1% (w/w) sodium cholate or Tween 20 in water was used as the continuous phase, while 0.5% (w/w) of each VD2 and VD3 in different oils served as the dispersed phase. Monodisperse O/W emulsions with Sauter mean diameters of 28 to 32 μm and relative span factor widths below 0.3 were formulated via an asymmetric straight-through MC array under appropriate operating conditions. The monodisperse O/W emulsions stabilised with Tween 20 remained stable for >30 days with encapsulation efficiencies (EEs) of VD2 and VD3 of above 70% at 4 and 25 &deg;C. In contrast, those stabilised with sodium cholate had stability of >30 days with their EEs of over 70% only at 25 &deg;C.

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Ergocalciferol is one important form of vitamin D that is needed for proper functioning of the human metabolic system. The study formulates monodisperse food grade ergocalciferol loaded oil-in-water (O/W) emulsions by microchannel emulsification (MCE). The primary characterization was performed with grooved MCE, while the storage stability and encapsulating efficiency (EE) were investigated with straight-through MCE. The grooved microchannel (MC) array plate has 5 × 18 μm MCs, while the asymmetric straight-through MC array plate consists of numerous 10 × 80 μm microslots each connected to a 10 μm diameter circular MC. Ergocalciferol at a concentration of 0.2-1.0% (w/w) was added to various oils and served as the dispersed phase, while the continuous phase constituted either of 1% (w/w) Tween 20, decaglycerol monolaurate (Sunsoft A-12) or β-lactoglobulin. The primary characterization indicated successful emulsification in the presence of 1% (w/w) Tween 20 or Sunsoft A-12. The average droplet diameter increased slowly with the increasing concentration of ergocalciferol and ranged from 28.3 to 30.0 μm with a coefficient of variation below 6.0%. Straight-through MCE was conducted with 0.5% (w/w) ergocalciferol in soybean oil together with 1% (w/w) Tween 20 in Milli-Q water as the optimum dispersed and continuous phases. Monodisperse O/W emulsions with a Sauter mean diameter (d3,2) of 34 μm with a relative span factor of less than 0.2 were successfully obtained from straight-through MCE. The resultant oil droplets were physically stable for 15 days (d) at 4 °C without any significant increase in d3,2. The monodisperse O/W emulsions exhibited an ergocalciferol EE of more than 75% during the storage period.

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The aim of this study was to investigate the effects of the emulsifying conditions and emulsifier type on production of water-in-oil (W/O) emulsions encapsulating ascorbic acid derivatives by microchannel (MC) emulsification. The ascorbic acid derivatives added in a dispersed aqueous phase are calcium ascorbate (AA-Ca) and ascorbic acid 2-glucoside (AA-2G). The continuous phase used was decane, soybean oil or their mixture, containing 5% (w/w) tetraglycerin monolaurate condensed ricinoleic acid ester or sorbitan trioleate. A hydrophobized silicon MC array plate (model: MS407) with a channel depth of 7μm was used for MC emulsification. The use of MC emulsification enabled successful encapsulation of AA-Ca and AA-2G in monodisperse W/O emulsion droplets with coefficients of variation (CV) less than 7%. Their average droplet diameter (dav) increased with increasing the continuous-phase viscosity that is similar or higher than the dispersed-phase viscosity. The dav and CV of the resultant monodisperse W/O emulsions were unaffected by the dispersed-phase flow rate below critical values of 1.2-1.6mLh-1 when using decane as the continuous-phase medium.

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Stabilizing l-ascorbic acid is a challenge for food industries. The present study aimed to formulate monodisperse food-grade water-in-oil-in-water (W/O/W) emulsions containing a high concentration of l-ascorbic acid in an inner aqueous phase using homogenization and subsequent microchannel emulsification (MCE). The microchannel (MC) array plate used here was a silicon asymmetric straight-through MC array that consists of numerous 10. μm. ×. 100. μm microslots with a 30. μm depth, each connected to a 10. μm-diameter circular MC with a 70. μm depth. Water-in-oil (W/O) emulsions contained a soybean oil solution with 4-8% (w/w) tetraglycerin condensed ricinoleic acid ester as a continuous phase and an aqueous solution with 10-30% (w/v) l-ascorbic acid, 1% (w/w) magnesium sulfate, and 1% (w/v) gelatin as an inner aqueous phase. The W/O emulsion droplets formulated using a rotor-starter homogenizer had average droplet diameters of 2.6-2.9. μm and coefficients of variation (CVs) of 13-17%. MCE was performed using a dispersed W/O emulsion phase and a 5. mM phosphate buffer containing 1% (w/w) decaglycerol monolaurate and 10-30% (w/v) D(+)-glucose as an outer aqueous phase. Monodisperse W/O/W emulsions containing W/O droplets with average diameters of 26.0-31.5. μm and CVs below 10% were successfully formulated via an asymmetric straight-through MC array at a low hydrophobic emulsifier concentration, regardless of l-ascorbic acid concentration. The W/O droplets dispersed in these monodisperse W/O/W emulsions were physically stable in variation of average diameter and CV for more than 10d of storage at 4. °C. The monodisperse W/O/W emulsions also exhibited l-ascorbic acid retention exceeding 80% during storage.

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Depuis plus de trente ans, nos pratiques démocratiques évoluent au rythme de liens grandissants entre les instances décisionnelles et la société civile. Les exemples de démarches participatives s’accumulent et leurs formes sont de plus en plus diverses. Au cours des dernières années, les démarches en amont sont de plus en plus présentes dans le paysage participatif et les organisations sont plus nombreuses que jamais à faire le pari de l’amont. C’est le cas d’Hydro-Québec avec ses les tables d’information et d’échange (TIE). Ces tables, existantes depuis la fin des années 1990 et dirigées par le maître d’ouvrage, regroupent plusieurs acteurs du milieu. Elles se tiennent dès le début du processus de planification. L’Office de consultation publique de Montréal (OCPM) a elle aussi faut le saut en amont en adaptant ses méthodes pour intervenir plus tôt dans le processus pour certains mandats. À travers deux études de cas, une portant sur les TIE du complexe hydroélectrique de la Romaine, et l’autre sur la consultation de l’OCPM sur la planification détaillée du secteur de Griffintown, ce mémoire explore les effets de la participation en amont sur les projets et sur ces acteurs.

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Depuis plus de trente ans, nos pratiques démocratiques évoluent au rythme de liens grandissants entre les instances décisionnelles et la société civile. Les exemples de démarches participatives s’accumulent et leurs formes sont de plus en plus diverses. Au cours des dernières années, les démarches en amont sont de plus en plus présentes dans le paysage participatif et les organisations sont plus nombreuses que jamais à faire le pari de l’amont. C’est le cas d’Hydro-Québec avec ses les tables d’information et d’échange (TIE). Ces tables, existantes depuis la fin des années 1990 et dirigées par le maître d’ouvrage, regroupent plusieurs acteurs du milieu. Elles se tiennent dès le début du processus de planification. L’Office de consultation publique de Montréal (OCPM) a elle aussi faut le saut en amont en adaptant ses méthodes pour intervenir plus tôt dans le processus pour certains mandats. À travers deux études de cas, une portant sur les TIE du complexe hydroélectrique de la Romaine, et l’autre sur la consultation de l’OCPM sur la planification détaillée du secteur de Griffintown, ce mémoire explore les effets de la participation en amont sur les projets et sur ces acteurs.

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L’objectif de cet essai est de proposer pour Montréal une stratégie de participation publique visant l’implantation de projets de piétonnisation porteurs d’acceptabilité sociale dans tous les secteurs de la métropole. En effet, malgré quelques initiatives en faveur des modes de déplacement actif, les intérêts des piétons sont souvent délaissés au profit de ceux des automobilistes qui s’imposent plus facilement. Ainsi, la motorisation en constante croissance sur l’île a pour effet de dégrader l’environnement résiduel disponible pour les personnes. Au contraire, le choix d’aménagements favorisant les modes de déplacement doux comme la marche s’avère profitable, dans toutes les sphères du développement durable, tant sur le plan personnel que collectif. L’étude des pratiques d’aménagement urbain à Montréal démontre que les mécanismes de participation des citoyens à la transformation de l’environnement bâti comportent plusieurs lacunes et participent à cette dévalorisation du piéton. L’organisme responsable de la participation publique, l’Office de consultation publique de Montréal, propose une approche inadéquate pour traiter une question aussi complexe que la piétonnisation. Par conséquent, il n’y a pas de trame cohérente et consensuelle de la piétonnisation en ville. Ainsi les aménagements sont de qualité très inégale d’un arrondissement à l’autre, voire d’une rue à l’autre. La définition des concepts démontre qu’une organisation de l’espace à échelle humaine, soit à échelle piétonne, est incontournable lorsqu’il est question de l’aménagement de collectivités viables. Mettre en place des conditions favorables à la marchabilité permet effectivement de développer une vision structurante, à la base d’un milieu de vie plus sain et d’aborder en amont les problématiques propres à l’urbanisation. Par ailleurs, l’emploi d’une approche participative en urbanisme se présente comme une réponse incontournable dans la conception de projets porteurs d’acceptabilité sociale. La stratégie proposée dans le cadre de cet essai vise la mise en place des conditions nécessaires au partage du pouvoir en accord avec les théories de la gouvernance participative. D’abord, la vision de la piétonnisation montréalaise doit être construite en collaboration avec les membres de la collectivité. Ensuite, les projets doivent être co-construits en partenariat avec les parties prenantes afin de bien s’harmoniser avec le milieu d’accueil. 10 recommandations accompagnent cette stratégie de participation en deux volets. Il est entre autres question de redéfinir la culture de la participation publique à Montréal vers la construction de l’acceptabilité sociale des projets, de favoriser une démarche de participation flexible et de communiquer de manière continue, proactive et mobilisatrice.

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Abstract : Although concrete is a relatively green material, the astronomical volume of concrete produced worldwide annually places the concrete construction sector among the noticeable contributors to the global warming. The most polluting constituent of concrete is cement due to its production process which releases, on average, 0.83 kg CO[subscript 2] per kg of cement. Self-consolidating concrete (SCC), a type of concrete that can fill in the formwork without external vibration, is a technology that can offer a solution to the sustainability issues of concrete industry. However, all of the workability requirements of SCC originate from a higher powder content (compared to conventional concrete) which can increase both the cost of construction and the environmental impact of SCC for some applications. Ecological SCC, Eco-SCC, is a recent development combing the advantages of SCC and a significantly lower powder content. The maximum powder content of this concrete, intended for building and commercial construction, is limited to 315 kg/m[superscript 3]. Nevertheless, designing Eco-SCC can be challenging since a delicate balance between different ingredients of this concrete is required to secure a satisfactory mixture. In this Ph.D. program, the principal objective is to develop a systematic design method to produce Eco-SCC. Since the particle lattice effect (PLE) is a key parameter to design stable Eco-SCC mixtures and is not well understood, in the first phase of this research, this phenomenon is studied. The focus in this phase is on the effect of particle-size distribution (PSD) on the PLE and stability of model mixtures as well as SCC. In the second phase, the design protocol is developed, and the properties of obtained Eco-SCC mixtures in both fresh and hardened states are evaluated. Since the assessment of robustness is crucial for successful production of concrete on large-scale, in the final phase of this work, the robustness of one the best-performing mixtures of Phase II is examined. It was found that increasing the volume fraction of a stable size-class results in an increase in the stability of that class, which in turn contributes to a higher PLE of the granular skeleton and better stability of the system. It was shown that a continuous PSD in which the volume fraction of each size class is larger than the consecutive coarser class can increase the PLE. Using such PSD was shown to allow for a substantial increase in the fluidity of SCC mixture without compromising the segregation resistance. An index to predict the segregation potential of a suspension of particles in a yield stress fluid was proposed. In the second phase of the dissertation, a five-step design method for Eco-SCC was established. The design protocol started with the determination of powder and water contents followed by the optimization of sand and coarse aggregate volume fractions according to an ideal PSD model (Funk and Dinger). The powder composition was optimized in the third step to minimize the water demand while securing adequate performance in the hardened state. The superplasticizer (SP) content of the mixtures was determined in next step. The last step dealt with the assessment of the global warming potential of the formulated Eco-SCC mixtures. The optimized Eco-SCC mixtures met all the requirements of self-consolidation in the fresh state. The 28-day compressive strength of such mixtures complied with the target range of 25 to 35 MPa. In addition, the mixtures showed sufficient performance in terms of drying shrinkage, electrical resistivity, and frost durability for the intended applications. The eco-performance of the developed mixtures was satisfactory as well. It was demonstrated in the last phase that the robustness of Eco-SCC is generally good with regards to water content variations and coarse aggregate characteristics alterations. Special attention must be paid to the dosage of SP during batching.