Analgesic and anti-inflammatory actions on bradykinin route of a polysulfated fraction from alga Ulva lactuca

We investigated structural features of polysaccharides from Ulva lactuca and their effects on the classical models of nociception and inflammation. Crude extract was obtained by enzymatic digestion and isolated by ion exchange chromatography on DEAE-cellulose. The fraction with higher yield was used...

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Veröffentlicht in:International journal of biological macromolecules 2016-11, Vol.92, p.820-830
Hauptverfasser: de Araújo, Ianna Wivianne Fernandes, Rodrigues, José Ariévilo Gurgel, Quinderé, Ana Luíza Gomes, Silva, Jane de Fátima Teixeira, Maciel, Gabrielle de Freitas, Ribeiro, Natássia Albuquerque, de Sousa Oliveira Vanderlei, Edfranck, Ribeiro, Kátia Alves, Chaves, Hellíada Vasconcelos, Pereira, Karuza Maria Alves, Bezerra, Mirna Marques, Benevides, Norma Maria Barros
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Sprache:eng
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Zusammenfassung:We investigated structural features of polysaccharides from Ulva lactuca and their effects on the classical models of nociception and inflammation. Crude extract was obtained by enzymatic digestion and isolated by ion exchange chromatography on DEAE-cellulose. The fraction with higher yield was used in the tests (SP-Ul). Swiss mice received SP-Ul (1, 3 or 9mg/kg; i.v.), 30min prior to injection of 0.8%-acetic acid or 1%-formalin or prior to a thermal stimulus. At same doses, SP-Ul was tested on Wistar rats on paw edema elicited by different irritants (carrageenan, dextran, bradykinin, histamine or serotonin). The results of infrared characterization indicated the presence of hydroxyl groups, sulfate, uronic acid and glycosidic linkages in all SP fractions spectrums. SP-Ul decreased significantly the antinociception in response to acetic acid or formalin (second phase), but not in the hot-plate test, suggesting that its analgesia occurs through a peripheral mechanism. SP-Ul did not reduce carrageenan-induced paw edema as supported by both histological and myeloperoxidase activity assessments. However, SP-Ul (1mg/kg; s.c.) reduced dextran-elicited edema, showing vascular anti-inflammatory effect, with bradykinin as major target because it did not reduce histamine- and serotonin-induced paw edemas. Therefore, SP-Ul acts on bradykinin pathway in its antinociceptive and anti-inflammatory responses.
ISSN:0141-8130
1879-0003
DOI:10.1016/j.ijbiomac.2016.07.094