975 resultados para Spirulina Maxima


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This work describes a simple and economical experiment for the extraction and purification of chlorophyll a from Spirulina maxima. Extraction and purification of natural compounds can be considered one of the most illustrative experiments that can be performed in Organic Chemistry courses. Particularly, the chromatography of dyes and pigments allows students to have a better comprehension of the chromatography separations. These compounds represent an important class of organic pigments applied in pharmaceutical, cosmetic, detergent compositions, and various other fields and can be extracted from plants and algae. To extract, separate and purify chlorophyll a from associated pigments such as xanthophylls, carotenes, and pheophytins, very costly processes are reported. The present approach is perfectly adequate for use in Chemistry experiments for undergraduate students.

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Spirulina maxima, which is used as a food additive, is a microalga rich in protein and other essential nutrients. Spirulina contains phenolic acids, tocopherols and ß-carotene which are known to exhibit antioxidant properties. The aim of the present study was to evaluate the antioxidant capacity of a Spirulina extract. The antioxidant activity of a methanolic extract of Spirulina was determined in vitro and in vivo. The in vitro antioxidant capacity was tested on a brain homogenate incubated with and without the extract at 37oC. The IC50 (concentration which causes a 50% reduction of oxidation) of the extract in this system was 0.18 mg/ml. The in vivo antioxidant capacity was evaluated in plasma and liver of animals receiving a daily dose of 5 mg for 2 and 7 weeks. Plasma antioxidant capacity was measured in brain homogenate incubated for 1 h at 37oC. The production of oxidized compounds in liver after 2 h of incubation at 37oC was measured in terms of thiobarbituric acid reactant substances (TBARS) in control and experimental groups. Upon treatment, the antioxidant capacity of plasma was 71% for the experimental group and 54% for the control group. Data from liver spontaneous peroxidation studies were not significantly different between groups. The amounts of phenolic acids, a-tocopherol and ß-carotene were determined in Spirulina extracts. The results obtained indicate that Spirulina provides some antioxidant protection for both in vitro and in vivo systems.

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A microalga Spirulina maxima foi cultivada em meios com 2,5g/L KNO3 (2,5N), proposto por PAOLETTI et al [10] e considerado meio padrão, em meios com 0,2g/L KNO3 (0,2N) e em ausência de nitrogênio (0,0N) nas temperaturas de 25°C e 35°C. A composição da biomassa celular seca apresentou a 35°C um aumento médio dos lipídios totais, de 2,8 vezes do meio com ausência de nitrogênio (0,0N) e 2,9 vezes do meio 0,2N em relação ao meio padrão. A 25°C apresentou um aumento médio de 3,1 vezes do meio com ausência de nitrogênio (0,0N) e 3,2 vezes do meio 0,2N em relação ao meio padrão. A biomassa em forma de gel de cada tratamento foi recolhida e feita a extração dos lipídios totais, os quais foram pesados em base seca. As análises estatísticas dos resultados, em estimativa não linear com superfície de resposta e regressão múltipla com análise de resíduos, mostraram para o aumento dos lipídios totais uma função linear com a temperatura (T) e não linear com o nitrogênio (N), ajustando-se a um modelo onde o coeficiente de regressão R=0,99459 e a equação LIPT = A+B²T+CN ².

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Spirulina maxima é uma cianobactéria de grande interesse para a produção de substâncias nutritivas e terapêuticas. É mesofílica, essencialmente fotoautotrófica, sendo suas principais fontes de nitrogênio os nitratos, uréia ou sais de amônio em meios com alta alcalinidade [1, 2, 3, 10, 16]. Spirulina maxima foi cultivada em fermentadores, expostos a luz com intensidade de 2400lux, contendo 3L do meio proposto por PAOLETTI, PUSHPARAJ & TOMASELLI [7] com concentração de 2,5g/L de KNO3, em meio modificado com 0,2g/L de KNO3 e em meio sem fonte de nitrogênio, denominados respectivamente meios 2,5N, 0,2N e SN, visando observar as alterações provocadas em sua composição final. Em culturas crescidas a 35ºC observou-se redução do teor de proteínas na massa celular seca de 28,84% e de 32,87%, aumento do teor de carboidratos de 30,34% e de 54,21% e aumento dos lipídios totais de 287,90% e 277,37%, quando se utilizou os meios 0,2N e SN, respectivamente, em comparação com o meio 2,5N. O teor de cinzas mostrou variação desprezível. Quando a temperatura de cultivo foi reduzida para 25ºC, ocorreu uma redução do teor de proteínas da massa seca de 40,28% e 39,02%, aumento de teor de carboidratos de 88,90% e de 91,15% e aumento do teor de lipídios totais em 321,25% e de 307,08%, quando se utilizou os meios 0,2N e SN em comparação com o meio 2,5N, respectivamente. Os resultados mostraram alterações sensíveis na composição da biomassa seca, com a diminuição do teor de nitrogênio e da temperatura de cultivo, exceto no teor de cinzas que não foi significativo.

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)

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Tesis (Zootecnista). -- Universidad de La Salle. Facultad de Ciencias Agropecuarias. Programa de Zootecnia, 2014

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We report the detection of insulin-like antigens in a large range of species utilizing a modified ELISA plate assay and Western blotting. We tested the leaves or aerial parts of species of Rhodophyta (red alga), Bryophyta (mosses), Psilophyta (whisk ferns), Lycopodophyta (club mosses), Sphenopsida (horsetails), gymnosperms, and angiosperms, including monocots and dicots. We also studied species of fungi and a cyanobacterium, Spirulina maxima. The wide distribution of insulin-like antigens, which in some cases present the same electrophoretic mobility as bovine insulin, together with results recently published by us on the amino acid sequence of an insulin isolated from the seed coat of jack bean (Canavalia ensiformis) and from the developing fruits of cowpea (Vigna unguiculata), suggests that pathways depending on this hormone have been conserved through evolution.

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Carbon dioxide released from alcoholic fermentation accounts for 33% of the whole CO(2) involved in the use of ethanol as fuel derived from glucose. As Arthrospira platensis can uptake this greenhouse gas, this study evaluates the use of the CO(2) released from alcoholic fermentation for the production of Arthrospira platensis. For this purpose, this cyanobacterium was cultivated in continuous process using urea as nitrogen source, either using CO(2) from alcoholic fermentation, without any treatment, or using pure CO(2) from cylinder. The experiments were carried out at 120 mu mol photons m(-2) s(-1) in tubular photobioreactor at different dilution rates (0.2 <= D <= 0.8 d(-1)). Using CO(2) from alcoholic fermentation, maximum steady-state cell concentration (2661 +/- 71 mg L(-1)) was achieved at D 0.2 d(-1), whereas higher dilution rate (0.6 d(-1)) was needed to maximize cell productivity (839 mg L(-1) d(-1)). This value was 10% lower than the one obtained with pure CO(2), and there was no significant difference in the biomass protein content. With D 0.8 d(-1), it was possible to obtain 56% +/- 1.5% and 50% +/- 1.2% of protein in the dry biomass, using pure CO(2) and CO(2) from alcoholic fermentation, respectively. These results demonstrate that the use of such cost free CO(2) from alcoholic fermentation as carbon source, associated with low cost nitrogen source, may be a promising way to reduce costs of continuous cultivation of photosynthetic microorganisms, contributing at the same time to mitigate the greenhouse effect. (C) 2011 American Institute of Chemical Engineers Biotechnol. Prog., 27: 650-656, 2011

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BACKGROUND: Fed-batch culture allows the cultivation of Arthrospira platensis using urea as nitrogen source. Tubular photobioreactors substantially increase cell growth, but the successful use of this cheap nitrogen source requires a knowledge of the kinetic and thermodynamic parameters of the process. This work aims at identifying the effect of two independent variables, temperature (T) and urea daily molar flow-rate (U), on cell growth, biomass composition and thermodynamic parameters involved in this photosynthetic cultivation. RESULTS: The optimal values obtained were T = 32 degrees C and U = 1.16 mmol L-1 d-1, under which the maximum cell concentration was 4186 +/- 39 mg L-1, cell productivity 541 +/- 5 mg L-1 d-1 and yield of biomass on nitrogen 14.3 +/- 0.1 mg mg-1. Applying an Arrhenius-type approach, the thermodynamic parameters of growth (?H* = 98.2 kJ mol-1; ?S* = - 0.020 kJ mol-1 K-1; ?G* = 104.1 kJ mol-1) and its thermal inactivation (Delta H-D(0) =168.9 kJ mol-1; Delta S-D(0) = 0.459 kJ mol-1 K-1; Delta G(D)(0) =31.98 kJ mol-1) were estimated. CONCLUSIONS: To maximize cell growth T and U were simultaneously optimized. Biomass lipid content was not influenced by the experimental conditions, while protein content was dependent on both independent variables. Using urea as nitrogen source prevented the inhibitory effect already observed with ammonium salts. Copyright (c) 2012 Society of Chemical Industry

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Universidade Estadual de Campinas . Faculdade de Educação Física