| Literature DB >> 31221314 |
Luciana G Ferreira1, Ana Cláudia R da Silva2, Miguel D Noseda3, André L Fuly4, Mariana M de Carvalho5, Mutue T Fujii6, Eladio F Sanchez7, Jaqueline Carneiro8, Maria Eugênia R Duarte9.
Abstract
Aqueous and KCl-soluble polysaccharides were extracted from Laurencia dendroidea (Rhodomelaceae, Ceramiales) and their chemical profile was accessed by anion-exchange chromatography, chemical and spectroscopic analyses. The homogeneous agaran DHS-4 (181.3 × 103 g. mol-1, 21.3% of NaSO3) presents A units mostly 2-sulfated (18.9 mol%), nonsubstituted (15.3 mol%) and 6-O-methylated (10.1 mol%), while B units are l-sugars composed predominantly by galactose 6-sulfate precursor units (19.2 mol%) and 3,6-anhydrogalactose (13.8 mol%), besides non-precursor galactose 6-sulfate units bearing d-xylose substituents on C-3 (8.1 mol%). The crude KCl-soluble DHS agaran (20.5% of NaSO3) inhibited proteolysis and hemolysis induced by Lachesis muta and Bothrops jararaca venoms. DHS was able to inhibit up to 75% the L. muta venom hemorrhagic effect and to reduce the lethality displayed by B. jararaca venom, increasing the mice survival time up to 3 times. Therefore, this agaran has high potential to be used as an additional tool to treat snakebite envenomation.Entities:
Keywords: Antivenom activity; Bothrops jararaca; Chemical structure; Lachesis muta; Red seaweed; Sulfated agaran
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Year: 2019 PMID: 31221314 DOI: 10.1016/j.carbpol.2019.04.066
Source DB: PubMed Journal: Carbohydr Polym ISSN: 0144-8617 Impact factor: 9.381