999 resultados para Àcido lático
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The copolymer poly (L-co-D,L lactic acid), PLDLA, has gained prominence in the field of temporary prostheses due to the fact that their time of degradation is quite compatible with the requirement in the case of osseous fracture. In this work the in vivo degradation of devices from copolymer, as a system of plates and screws, used in fixation of the tibia of rabbits was studied. The devices were implanted in 15 adult rabbits, albinos, New Zealand race, and they were used as control devices of alloys of titanium (Ti-6Al-4V/ V grade). The use of copolymers, synthesized in the laboratory, was tested in the repair of fracture in rabbits'tibias, being assessed in the following times: 2 weeks, 2 months and 3 months. Morphological analysis of tissue surrounding the plate and screw system, for 2 weeks of implantation, showed the presence of osteoblasts, indicating a pre bone formation. After 2 months there was new bone formation in the region in contact with the polymer. This bone growth occurred simultaneously with the process of PLDLA degradation, invading the region where there was polymer and after 3 months there was an intense degradation of the copolymer and hence greater tissue invasion compared to 2 months which characterized bone formation in a region where the polymer degraded. The in vivo degradation study of the devices for PLDLA by means of histological evaluations during the period of consolidation of the fracture showed the efficiency of plate and screw system, and it was possible to check formation of bone tissue at the implantation site, without the presence of inflammatory reaction
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A critical study of three methods for the determination of lactic acid (EDWARDS, MENDEL & GOLDSCHEIDER, MILLER & MUNTZ) is presented and some modifications are proposed. It was shown t hat more accurate results could be obtained with Edward's technic when an Iena glass filter is connected with the absorption tube. Before the dropping of the permanganate solution it is necessary to pass a current of air through the reaction flask to avoid the oxidation of the non-lactic acid substances which interfere with the reaction. The absorption tube must be maintained at 18°C during the destillation and the titration of the bisulphite binding aldehyde at 4°C. When the sample contains more than 5 mg it is useful to work with greater quantities of the bisulphite. More permanganate is consumed when the lactic acid concentration is higher. The sensivity of the method permits the titration of 0.04 mg to 5 mg of lactic acid in the sample. The calculated error of the method gave 0.018 % and the normal values for blood determined in 20 human cases averaged 10.30 mg per 100 ml (Table VI). MENDEL and GOLDSCHEIDER'S method was modified in the following details: Somogyis deproteinization was performed instead metaphosphoric acid as in the original method; to avoid the evaporation of the acetic aldehyde during the heating time with sulfuric acid a special glass stopped tube is proposed (Fig. 2). The reaction with sulfuric acid and veratrol is performed in an ice bath. Blood proteins precipitants were tried and Somogyi's lattest tecnic showed better results (Table V). Colorimetric readings were done in the PULFRICH photometer using filter S 53 and a 10 mm cup. The method is accurate within an error of 0.23 % and samples of 5 to 70 microg. could be easily determined. Normal values for human blood averaged 10.78 mg per 100 ml. More accurate results were obtained with the technic of MILLER & MUNTZ. Slight modifications were introduced: deproteinization with copper sulfate and sodium tungstate; satured p-hydroxydiphenyl solution according to KOENEMANN which is stable for 5 months when stored in the ice-box. Using the PULFRICH step-photometer the error is 0.17% with samples varying from 0.1 to 10 microg. of lactic acid. The filter employed was S 57 with the 5 mm cup. The method was adapted to 0.1 ml of blood. Normal values for human blood gave an average of 10.58 mg per 100 ml.
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Carbon nanotubes (CNT) have been studied for biomedical applications due to their unique properties. However, pristine CNT have structural features and impurities that can cause toxicity to biological systems. In this work, we describe a method to purify multiwalled carbon nanotubes (MWCNT) by chemical modification and subsequent attachment of hydroxyl and carboxyl groups to improve dispersion and to decrease toxic effects. Nanocomposites from poly (L-lactic acid) (PLLA) and nanotubes were produced by the solvent casting method and characterized and evaluated for cytocompatibility with Vero cells. The nanocomposite interactions with Vero cells demonstrated that the cells were able to adhere and sustain proliferation and showed favorable cytocompatibility. In vitro studies also revealed an increase in fibroblast cell viability in the nanocomposites, compared with neat PLLA.
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OBJETIVO: Avaliar a eficácia do uso de um biomaterial de ácido lático (SurgiWrap®) como protetor de tela de polipropileno (Marlex®) em relação à formação de aderências intraperitoneais em ratos. MÉTODO: Quarenta ratas Wistar formaram os grupos a seguir: Grupo 0 (Sham) - apenas laparotomia; Grupo I - tela de polipropileno; Grupo II - tela de polipropileno protegida por filme de ácido lático. Estes animais foram operados com laparotomia e colocação das telas no fechamento. Após 21 dias foram sacrificados para análise aderencial quanto ao tipo (0 a 3), porcentagem de área acometida e força necessária para rompimento. RESULTADOS: O Grupo 0 não apresentou aderências intraperitoneais. Em relação à classificação foi evidenciado a maior prevalência de aderências tipo 3 em ambos os grupos. Quanto à força para ruptura aderencial o Grupo 1 obteve média de 1,58 N e o Grupo 2 de 1,23 N. A tela foi envolvida por aderências em mais de 50% da área de sua superfície em 87% no Grupo 1 e 84% no Grupo 2. Por diferentes métodos estatísticos constatou-se que não houve diferença significativa entre os grupos nas variáveis estudadas. CONCLUSÃO: A utilização do combinado tela de polipropileno e bioprotetor de ácido lático demonstrou índices semelhantes em relação à formação de aderências intraperitoneais quando comparada ao uso individual da mesma tela.
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O presente trabalho teve como objetivo estudar a utilização de excedentes agrícolas como substrato para produção de dextrana e ácido lático. As fermentações foram conduzidas com o microorganismo Leuconostoc mesenteroides B512F, em meio contendo suco de caju e sacarose. As concentrações de açúcar redutor e sacarose foram variadas de acordo com um planejamento experimental. No final da fermentação foram quantificados a dextrana, o ácido lático e a biomassa produzida. Os resultados foram avaliados através da metodologia de análise de superfície de resposta. De acordo com os resultados obtidos, a elevação da concentração de açúcares favorece a produção de dextrana e de ácido lático. A utilização do suco de caju como substrato alternativo para produção de dextrana e ácido lático apresentou viabilidade técnica.
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Amidos oxidados em elevadas concentrações produzem pastas fluidas, são estáveis à retrogradação e aplicados em indústrias de papel, têxtil e de alimentos. Esta propriedade é atribuída à presença de carboxilas, com cargas negativas e mais volumosas que as hidroxilas. Neste trabalho, amidos de batata, batata doce, mandioca, mandioquinha salsa, milho e milho ceroso foram modificados com KMnO4/ácido lático e NaOCl/ácido lático e caracterizados quanto ao teor de carboxilas, poder redutor, coloração diferencial, propriedade de expansão e propriedades viscoamilográficas, em água e tampões acetato (pH 4,0) e fosfato (pH 7,0). Amidos de milho ceroso e de mandioca modificados com KMnO4/ácido lático apresentaram elevadas expansões (25,8 e 24,1 mL.g-1, respectivamente). As pastas de amido de milho ceroso resistiram a ciclos de congelamento/descongelamento. A coloração diferencial e o teor de carboxilas não permitiram diferenciar as amostras; apenas o amido de batata reagiu com azul de metileno devido aos grupos fosfato. Quanto ao pH e acidez, as amostras apresentaram valores próximos da neutralidade, exceto o amido de milho e milho ceroso modificados com NaOCl. Amidos oxidados com KMnO4/ácido lático apresentaram picos de viscosidade inferiores aos tratados com NaOCl. Os picos de viscosidade em tampão fosfato foram inferiores aos em água e em tampão acetato.
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O ácido lático é um produto de grande importância industrial. Sua obtenção por fermentação representa mais de 50% da produção mundial. Para comportar a demanda, esforços para se baixar os custos têm sido alvo de vários estudos. Este trabalho teve como objetivo avaliar a produção de ácido lático utilizando o xarope do pedúnculo do caju (Anacardium orcidentale). O microrganismo escolhido foi o Leuconostoc mesenteroides B512F. Foi realizado um planejamento experimental para se determinar a faixa de extrato de levedura e açúcares redutores totais iniciais adequados ao meio de cultura. Um segundo planejamento foi realizado com a adição de extrato de levedura, fosfato e a diluição xarope em relação aos açúcares iniciais de acordo com o planejamento para se otimizar o meio de cultura baseado no xarope de caju. Uma cinética foi realizada com o substrato otimizado de acordo com o planejamento. Portanto, conclui-se que a linhagem produz o ácido lático em concentração satisfatória em se tratando de um substrato natural acrescido apenas de fontes de nitrogênio e fosfato.
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Methotrexate (MTX) is a drug used in the chemotherapy of some kind of cancers, autoimmune diseases and non inflammatory resistant to corticosteroids uveits. However, the rapid plasmatic elimination limits its therapeutic success, which leads to administration of high doses to maintain the therapeutic levels in the target tissues, occurring potential side effects. The aim of this study was to obtain spray dried biodegradable poly-lactic acid co-glycolic acid (PLGA) microparticles containing MTX. Thus, suitable amounts of MTX and PLGA were dissolved in appropriate solvent system to obtain solutions at different ratios drug/polymer (10, 20, 30 and 50% m/m). The physicochemical characterizing included the quantitative analysis of the drug using a validate UV-VIS spectrophotometry method, scanning electron microscopy (SEM), infrared spectrophotometry (IR), thermal analyses and X-ray diffraction analysis. The in vitro release studies were carried out in a thermostatized phosphate buffer pH 7.4 (0.05 M KH2PO4) medium at 37°C ± 0.2 °C. The in vitro release date was subjected to different kinetics release models. The MTX-loaded PLGA microparticles showed a spherical shape with smooth surface and high level of entrapped drug. The encapsulation efficiency was greater then 80%. IR spectroscopy showed that there was no chemical bond between the compounds, suggesting just the possible occurrence of hydrogen bound interactions. The thermal analyses and X-ray diffraction analysis shown that MTX is homogeneously dispersed inside polymeric matrix, with a prevalent amorphous state or in a stable molecular dispersion. The in vitro release studies confirmed the sustained release for distinct MTX-loaded PLGA microparticles. The involved drug release mechanism was non Fickian diffusion, which was confirmed by Kornmeyer-Peppas kinetic model. The experimental results demonstrated that the MTX-loaded PLGA microparticles were successfully obtained by spray drying and its potential as prolonged drug release system.
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The dried beef is a food traditionally eaten by Northeastern and has an extensive trade in the city of Natal-RN. It is usually produced in an empirical manner, without any standardization in production. Characterized as partially dehydrated meat product, so that the activity of water present is not sufficient to prevent microbial growth, degradation or the production of microbial toxins. The guarantee that the market dried beef is to provide a quality product hygienic, microbiological, physicochemical and sensory stable and adequate for the safety and consumer satisfaction, which has been increasingly attracted to food with natural preservatives. Thus, the meat industries are replacing the current seasonings and natural preservatives for similar, with it without affecting the shelf life of products. Lactic acid has been used to meet these requirements. In this sense, this study aimed to evaluate the effect of lactic acid on the physico-chemical, microbiological and sensory, besides knowing the consumer profile of dried meat of the City of Natal / RN. The results demonstrated that the use of lactic acid in concentrations of 1% and 2% during the processing of dried meat, had statistically significant effect (p < 0.05) on the physico-chemical (pH and water activity) and consequently reduced the microbial count does not alter the taste of the new product developed. Regarding the results on the consumer profile, it was found that the majority of respondents (71.75%) did not observe the presence of the stamp of the Federal Inspection Service (SIF) to buy this meat food that 81.55% of consumers check the hygiene conditions of the site and handlers, however, a large proportion of respondents not concerned with the guarantee of origin of typical regional products featuring a hazard to food safety for consumers of the city of Natal-RN
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Uma característica valorizada pelo setor alimentício é a propriedade de expansão dos grânulos de amido. Com este trabalho, teve-se por objetivo avaliar o efeito da concentração de ácido lático durante tratamento de modificação fotoquímica das féculas de batata-doce (Ipomoea batatas), biri (Canna edulis), mandioca (Manihot esculenta) e taioba (Xanthosoma sagittifolium). Pelos resultados obtidos neste experimento, nas condições em que este foi realizado, conclui-se que a concentração de ácido lático interferiu na propriedade de expansão das féculas de batata-doce, mandioca e taioba e não apresentou efeito na fécula de biri, devendo ser ajustado para cada tipo de fécula a ser modificada. Os índices de expansão obtidos nas diferentes féculas foram considerados baixos, quando comparados aos índices obtidos para fécula de mandioca modificada.
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Pós-graduação em Agronomia (Energia na Agricultura) - FCA
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Pós-graduação em Engenharia e Ciência de Alimentos - IBILCE
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)
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Conselho Nacional de Desenvolvimento Científico e Tecnológico (CNPq)