Propriedades antioxidante, anti-hemost?stica e antiproliferativa de galactanas sulfatadas da alga vermelha hypnea musciformis (wulfen) j. V. Lamouroux

Made available in DSpace on 2014-12-17T14:03:38Z (GMT). No. of bitstreams: 1 MoniqueGCFA_DISSERT_PARCIAL.pdf: 1765775 bytes, checksum: 3815c2c3560cb6ce59df27ea29b474ca (MD5) Previous issue date: 2011-07-18 === Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico === Marine algae are one...

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Main Author: Alves, Monique Gabriela das Chagas Faustino
Other Authors: CPF:06341462468
Format: Others
Language:Portuguese
Published: Universidade Federal do Rio Grande do Norte 2014
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Online Access:http://repositorio.ufrn.br:8080/jspui/handle/123456789/12589
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Summary:Made available in DSpace on 2014-12-17T14:03:38Z (GMT). No. of bitstreams: 1 MoniqueGCFA_DISSERT_PARCIAL.pdf: 1765775 bytes, checksum: 3815c2c3560cb6ce59df27ea29b474ca (MD5) Previous issue date: 2011-07-18 === Conselho Nacional de Desenvolvimento Cient?fico e Tecnol?gico === Marine algae are one of the major sources of biologic compounds. In extracellular matrix of these organisms there are sulfated polysaccharides that functions as structural components and provides protection against dehydration. The fraction 1.0 (F1.0) rich in sulfated galactans obtained from red seaweed Hypnea musciformis was physicochemical characterized and evaluated for pharmacologic activity through antioxidant activity, cytotoxic action on erythrocytes, anticoagulant, stimulatory action under antithrombotic heparan sulfate synthesis and their effects on cell proliferation and cycle cell progression. The main components of F1.0 were carbohydrates (49.70 ? 0.10%) and sulfate (44.59 ? 0.015%), presenting phenolic compounds (4.79 ? 0.016%) and low protein contamination (0.92 ? 0.001%). Fraction 1.0 showed polidisperse profile and signs in infrared analysis in 1262, 1074 and 930, 900 and 850 attributed to sulfate esters S=O bond, presence of a 3,6- anidrogalactose C-O bond, non-sulfated ?-D-galactose and a C-O-SO4 bond in galactose C4, respectively. The fraction rich in sulfated galactans exhibited strong antioxidant action under lipid peroxidation assay with IC50 of 0.003 mg/mL. Besides the inhibition of hemolysis induced by H2O2 in erythrocytes treated with F1.0, this fraction did not promote significant cytotoxity under erythrocytes membranes. F1.0 exhibited low anticoagulant activity causing moderate direct inhibition of enzimatic activity of thrombin. This fraction promoted stimulation around of 4.6 times on this synthesis of heparan sulfate (HS) by rabbit aortic endothelial cells (RAEC) in culture when was compared with non treated cells. The fraction of this algae displayed antiproliferative action under RAEC cells causing incresing on cell number on S fase, blocking the cycle cell progression. Thus F1.0 presented cytostatic and no cytotoxic action under this cell lineage. These results suggest that F1.0 from H. musciformis have antioxidant potential which is a great effect for a compound used as food and in food industry which could be an alternative to food industry to prevent quality decay of lipid containing food due to lipid peroxidation. These polysaccharides prevent the lipid peroxidation once the fraction in study exhibited strong inhibitory action of this process. Furthermore that F1.0 present strong antithrombotic action promoting the stimulation of antithrombotic HS synthesis by endothelial cells, being important for thrombosis preventing, by its inhibitory action under reactive oxygen species (ROS) in some in vitro methods, being involved in promotion of hypercoagulability state. === Algas marinhas s?o uma das principais fontes de compostos biologicamente ativos. Na matriz extracelular desses organismos existem os polissacar?deos sulfatados que funcionam como componente estrutural prevenindo-a contra desidrata??o. A fra??o 1,0 (F1,0) rica em galactanas sulfatadas obtida da alga vermelha Hypnea musciformis foi caracterizada fisicoquimicamente e avaliada quanto a atividade farmacol?gica por meio de ensaios de atividade antioxidante, a??o citot?xica sobre hem?cias, atividade anticoagulante, a??o estimulat?ria sobre a s?ntese de heparam sulfato antitromb?tico e seus efeitos na prolifera??o e progress?o do ciclo celular. Os principais componentes da F1,0 foram carboidratos (49,70 ? 0,10%) e sulfato (44,59 ? 0,015%), apresentando compostos fen?licos (4,79 ? 0,016%) e baixa contamina??o prot?ica (0,92 ? 0,001%). F1,0 mostrou perfil polidisperso e sinais na an?lise de infravermelho em 1262, 1074 e 930, 900 e 850 cm-1 atribu?dos a liga??es S=O de ?steres de sulfato, presen?a de liga??o C-O de 3,6-anidrogalactose, ?-D-galactose n?o sulfatada e liga??o C-O-SO4 no C4 da galactose, respectivamente. A fra??o rica em galactanas sulfatadas exibiu forte a??o antioxidante sobre o ensaio de peroxida??o lip?dica com IC50 de 0,003 mg/mL. Al?m da alta inibi??o da hem?lise induzida por H2O2 em hem?cias humanas tratadas com F1,0, esta fra??o n?o promoveu citotoxicidade significativa sobre a membrana de hem?cias. F1,0 exibiu baixa atividade anticoagulante, causando moderada inibi??o direta da atividade enzim?tica da trombina. Esta fra??o promoveu estimula??o de cerca de 4,6 vezes na s?ntese de heparam sulfato (HS) pelas c?lulas endoteliais da aorta de coelho (RAEC), em cultura, quando comparadas com as c?lulas n?o tratadas com F1,0. A fra??o dessa alga mostrou atividade antiproliferativa sobre as c?lulas RAEC, causando aumento no n?mero de c?lulas na fase S, impedindo a progress?o do ciclo celular. Assim, F1,0 apresentou a??o citost?tica e n?o citot?xica sobre esta linhagem celular. Esses resultados sugerem que F1,0 de H. musciformis tem potencial antioxidante, efeito importante para um composto utilizado como alimento e na ind?stria aliment?cia, podendo ser uma alternativa na ind?stria aliment?cia para a preven??o do decaimento da qualidade dos alimentos contendo lip?dio devido a peroxida??o lip?dica, uma vez que a fra??o em estudo exibiu forte a??o inibit?ria sobre a peroxida??o lip?dica. Al?m disso F1,0 apresenta forte a??o antitromb?tica promovendo a estimula??o da s?ntese de HS antitromb?tico pelas c?lulas endoteliais, sendo ?til na preven??o da trombose, devido tamb?m a sua a??o inibit?ria sobre as esp?cies reativas do oxig?nio (ROS) em alguns sistemas in vitro, estando envolvidos na promo??o de estado de hipercoagulabilidade.