986 resultados para S7-01
Resumo:
In the field of operational water management, Model Predictive Control (MPC) has gained popularity owing to its versatility and flexibility. The MPC controller, which takes predictions, time delay and uncertainties into account, can be designed for multi-objective management problems and for large-scale systems. Nonetheless, a critical obstacle, which needs to be overcome in MPC, is the large computational burden when a large-scale system is considered or a long prediction horizon is involved. In order to solve this problem, we use an adaptive prediction accuracy (APA) approach that can reduce the computational burden almost by half. The proposed MPC scheme with this scheme is tested on the northern Dutch water system, which comprises Lake IJssel, Lake Marker, the River IJssel and the North Sea Canal. The simulation results show that by using the MPC-APA scheme, the computational time can be reduced to a large extent and a flood protection problem over longer prediction horizons can be well solved.
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Ribosomal protein S7 from Escherichia coli binds to the lower half of the 3′ major domain of 16S rRNA and initiates its folding. It also binds to its own mRNA, the str mRNA, and represses its translation. Using filter binding assays, we show in this study that the same mutations that interfere with S7 binding to 16S rRNA also weaken its affinity for its mRNA. This suggests that the same protein regions are responsible for mRNA and rRNA binding affinities, and that S7 recognizes identical sequence elements within the two RNA targets, although they have dissimilar secondary structures. Overexpression of S7 is known to inhibit bacterial growth. This phenotypic growth defect was relieved in cells overexpressing S7 mutants that bind poorly the str mRNA, confirming that growth impairment is controlled by the binding of S7 to its mRNA. Interestingly, a mutant with a short deletion at the C-terminus of S7 was more detrimental to cell growth than wild-type S7. This suggests that the C-terminal portion of S7 plays an important role in ribosome function, which is perturbed by the deletion.
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Leishmaniasis is a neglected disease and endemic in developing countries. A lack of adequate and definitive chemotherapeutic agents to fight against this infection has led to the investigation of numerous compounds. The aim of this study was to investigate the effect of RT-01, an organotellurane compound presenting biological activities, in 2 experimental systems against Leishmania amazonensis. The in vitro system consisted of promastigotes and amastigotes forms of the parasite, and the in vivo system consisted of L. amazonensis infected BALB/c mice, an extremely susceptible mouse strain. The compound proved to be toxic against promastigotes and amastigotes. The study also showed that treatment with RT-01 produces an effect similar to that treatment with the reference antimonial drug, Glucantime, in L. amazonensis infected mice. The best results were obtained following RT-01 intralesional administration (720 mu g/kg/day); mice showed significant delay in the development of cutaneous lesions and decreased numbers of parasites obtained from the lesions. Significant differences in tissue pathology consisted mainly of no expressive accumulation of inflammatory cells and well-preserved structures in the skin tissue of RT-01-treated mice compared with expressive infiltration of infected cells replacing the skin tissue in lesions of untreated mice. These findings highlight the fact that the apparent potency of organotellurane compounds, together with their relatively simple structure, may represent a new avenue for the development of novel drugs to combat parasitic diseases.
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This article addresses the interactions of the synthetic antimicrobial peptide dermaseptin 01 (GLWSTIKQKGKEAAIAAA-KAAGQAALGAL-NH(2), DS 01) with phospholipid (PL) monolayers comprising (i) a lipid-rich extract of Leishmania amazonensis (LRE-La), (ii) zwitterionic PL (dipalmitoylphosphatidylcholine, DPPC), and (iii) negatively charged PL (dipalmitoylphosphatidylglycerol, DPPG). The degree of interaction of DS 01 with the different biomembrane models was quantified from equilibrium and dynamic liquid-air interface parameters. At low peptide concentrations, interactions between DS 01 and zwitterionic PL, as well as with the LRE-La monolayers were very weak, whereas with negatively charged PLs the interactions were stronger. For peptide concentrations above 1 mu g/ml, a considerable expansion of negatively charged monolayers occurred. In the case of DPPC, it was possible to return to the original lipid area in the condensed phase, suggesting that the peptide was expelled from the monolayer. However, in the case of DPPG, the average area per lipid molecule in the presence of DS 01 was higher than pure PLs even at high surface pressures, suggesting that at least part of DS 01 remained incorporated in the monolayer. For the LRE-La monolayers, DS 01 also remained in the monolayer. This is the first report on the antiparasitic activity of AMPs using Langmuir monolayers of a natural lipid extract from L. amazonensis. Copyright (C) 2011 European Peptide Society and John Wiley & Sons, Ltd.
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Para o rápido crescimento de mudas de bananeiras produzidas por micropropagação é necessário a utilização de substratos com adequadas características físicas, químicas e biológicas. Objetivou-se avaliar os atributos químicos e físicos de diferentes substratos contendo resíduo de mineração de areia e seu efeito sobre o desenvolvimento de mudas micropropagadas de bananeira 'Grande Naine', dispostos em delineamento em blocos ao acaso, com sete substratos e quatro repetições. Os materiais utilizados foram: resíduo de mineração de areia (RMA), Rendimax Floreira® (RF®) e casca de arroz carbonizada (CAC), com os quais se formulou os substratos: S1-100%RMA; S2-50% RMA:50% RF®; S3-50% RMA:50% CAC; S4-50% CAC:50% RF®; S5-25% RMA:37,5% CAC:37,5% RF®; S6-50% RMA:25% CAC:25% RF®; S7-75% RMA:12,5% CAC:12,5% RF®. Amostras dos materiais e dos substratos foram separadas para análises químicas e físicas. Noventa e oito dias após o transplante avaliou-se a altura, o diâmetro do colo, o número de folhas e a massa da matéria seca da parte área e das raízes das plantas. Os pHs dos substratos se encontraram na faixa adequada para o cultivo de plantas em recipientes. A CE diminuiu à medida que se aumentou a dose de RMA nos substratos. Os substratos S2, S6 e o RF® apresentaram resultados superiores para a densidade seca. Os substratos S2, S4, S5, S6 e S7 forneceram plantas superiores em altura e diâmetro do colo e, acrescidos do substrato S1, forneceram plantas superiores também no número de folhas e massa de matéria seca da parte aérea. Conclui-se que o RMA pode ser recomendado para a aclimatização de mudas micropropagadas de bananeira 'Grande Naine', desde que usado em mistura com outros materiais ou substratos, com limite máximo de 75% de inclusão.
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Trabalho Final de Mestrado para obtenção do grau de Mestre em Engenharia Mecânica