Antiviral and Antioxidant Activities of Sulfated Galactomannans from Plants of Caatinga Biome

Dengue represents a serious social and economic public health problem; then trying to contribute to improve its control, the objective of this research was to develop phytoterapics for dengue treatment using natural resources from Caatinga biome. Galactomannans isolated from Adenanthera pavonina L.,...

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Veröffentlicht in:Evidence-based complementary and alternative medicine 2015-01, Vol.2015 (2015), p.1-8
Hauptverfasser: Guedes, Maria Izabel Florindo, Lima, Danielle Malta, Araújo, Fernanda Montenegro de Carvalho, Pontes Filho, Tadeu Rocha, Barroso, Naiara Dutra, Silva, Ana Raquel Araújo da, de Morais, Selene Maia, Marques, Márcia Maria Mendes, Vieira, Ícaro Gusmão Pinto
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Sprache:eng
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Zusammenfassung:Dengue represents a serious social and economic public health problem; then trying to contribute to improve its control, the objective of this research was to develop phytoterapics for dengue treatment using natural resources from Caatinga biome. Galactomannans isolated from Adenanthera pavonina L., Caesalpinia ferrea Mart., and Dimorphandra gardneriana Tull were chemically sulfated in order to evaluate the antioxidant, and antiviral activities and the role in the inhibition of virus DENV-2 in Vero cells. A positive correlation between the degree of sulfation, antioxidant and antiviral activities was observed. The sulfated galactomannans showed binding to the virus surface, indicating that they interact with DENV-2. The sulfated galactomannans from C. ferrea showed 96% inhibition of replication of DENV-2 followed by D. gardneriana (94%) and A. pavonina (77%) at 25 µg/mL and all sulfated galactomannans also showed antioxidant activity. This work is the first report of the antioxidant and antiviral effects of sulfated galactomannans against DENV-2. The results are very promising and suggest that these sulfated galactomannans from plants of Caatinga biome act in the early step of viral infection. Thus, sulfated galactomannans may act as an entry inhibitor of DENV-2.
ISSN:1741-427X
1741-4288
DOI:10.1155/2015/591214