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Navegando por Assunto "Collagen"

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    Otimização da extração de gelatina a partir de pele de tambaqui (Colossoma macropomum)
    (Universidade Federal do Pará, 2014-04-10) OLIVEIRA, Luã Caldas de; RIBEIRO, Suezilde da Conceição Amaral; http://lattes.cnpq.br/3519207052266437; ARAÚJO, Éder Augusto Furtado; http://lattes.cnpq.br/2252474296406344
    The aim of this study was to optimize the extraction of gelatin obtained from skin tambaqui (Colossoma macropomum). Were first studied eleven variables: concentration, immersion time and weight/weight (w/w) solutions of NaCl, NaOH and acetic acid, extraction time and extraction temperature as a function of the dependent variable total yield (%). A fractional planning Plackett Burman (PB) was used. Variables that showed significant effects were: w/w NaOH and acetic acid, extraction time and extraction temperature. They were then studied through a central composite design (CCD) and analyzed by Response Surface Methodology (RSM). The other variables that showed no significant effect, have had their fixed values. The responses evaluated were the total yield (%) viscosity (cP) and melting point (°C). From there a CCRD was produced twentyeight trials with sixteen factorial trials, four trials at the center point and eight trials on the axial levels. The models for all responses obtained F value higher than the tabulated value, being considered significant and predictive. The value of lack of fit was found lower than the tabulated for models of three responses value. The R2 values for the models were 0,947 for total yield, 0,969 for viscosity and 0,946 melting point. The choice of the optimal extraction conditions happened at the center point area, where these conditions were 1/5 (w/w) NaOH, 1/5 (w/w) acetic acid, extraction time of 12 hours of temperature extraction of 60ºC. After that, the physical and physico-chemical characterization and total amino acid amount of the skin and the gelatin extracted with the optimized conditions was performed, and instrumental color in gelatin. The skin moisture showed 38,11%, fat contents of of 26,56%, protein content of 30,39%, ash content of 1,37%, pH and total acidity of 6,35 ± 2,28 0.06 mL NaOH/100g skin. Gelatin had 9.43% moisture, fat contents of of 1,23%, protein content of 85,99%, ash content of 2,99%, pH 6,12, acidity of 2,94 mL NaOH/100g gelatin and water activity of 0,436. In addition, the process of extracting gelatin showed total yield of 29.06%. The gelatin had a viscosity of 3,48 cP, gel strength (Bloom) 124,5 g and melting point of 25,63 ° C. Also presented as instrumental color parameters L * (lightness) of 74,01, a * 4,17 and b * -10,25, Chroma 11,06 and Hue angle of -22,14°. The amino acid profile of skin gelatin were practically the same, except for cysteine. The amino acids in greater quantity in the gelatin were glycine, proline and hydroxyproline. These last two amino acids are classified as imino acids, and their content of 21.03% is considered high and is associated with higher viscoelastic properties.
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    Otimização das condições de extração da gelatina de pele de peixes amazônicos por diferentes métodos
    (Universidade Federal do Pará, 2016-08-24) SILVA, Elen Vanessa Costa da; PENA, Rosinelson da Silva; http://lattes.cnpq.br/3452623210043423; LOURENÇO, Lúcia de Fátima Henriques; http://lattes.cnpq.br/7365554949786769
    Fish industry residues are used due to their easy transformation into several products and because they have nutrients with high biological value, being rich in proteins and fatty acids, the work was to study the use of the skin of Amazonian fish for gelatin extraction. The gelatin extraction process from the skin of kumakuma (Brachyplatystoma filamentosum) and gilthead bream (Brachyplathystoma rousseauxii) with sodium hydroxide (NaOH) and calcium hydroxide (Ca(OH)2) was optimized and the product was characterized through analyses of yield, gel strength, color, viscosity, amino acid profile, scanning electron microscopy, melting point, foaming capacity, and emulsifying capacity. The optimized conditions established in the process from the skin of kumakuma (Brachyplatystoma filamentosum) with NaOH were 6 h extraction at 58 °C, with yield and gel strength at 19.7% and 244.3 g, respectively. The metod with (Ca(OH)2 the optimized conditions were defined over ten days of pre-treatment at 50 °C. This condition resulted in desirability of 0.965 and yield and gel strength values of 20.24% and 221 g, respectively. Glycine was the main amino acid both in the fish skin (23.77%) and in the gelatin obtained (NaOH - 23,39% e Ca(OH)2 - 24,97%). Pre-treatment with sodium hydroxide (NaOH) and calcium hydroxide (Ca(OH)2) was used and the gelatin the skin of gilthead bream (Brachyplathystoma rousseauxii) with 64 ° C and 6 h extraction. The pretreatment with Ca (OH)2 was for 12 days and 64 °C extraction for 6 hours. When the characteristics of the gelatins obtained were compared, the one that used NaOH had greater (p < 0.05) technological potential due to higher yield, greater amount of imino acids, and better properties (gel strength, viscosity, melting point, emulsifying power). However, the gelatin extracted with Ca(OH)2 had weak gels and lower melting point, which is appropriate for refrigerated products that require low gelling temperatures. It is concluded that the two gelatins obtained can be used in several applications in products according with the characteristic desired.
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