| Literature DB >> 30200211 |
Ariana A Vasconcelos1,2, Isabela D Sucupira3,4, Alessandra L Guedes5,6, Ismael N Queiroz7,8, Flavia S Frattani9, Roberto J Fonseca10,11, Vitor H Pomin12,13,14.
Abstract
The anticoagulant and antithrombotic properties of three structurally correlated sea urchin-derived 3-linked sulfated α-glycans and their low molecular-weight derivatives were screened comparatively through various in vitro and in vivo methods. These methods include activated partial thromboplastin time, the inhibitory activity of antithrombin over thrombin and factor Xa, venous antithrombosis, the inhibition of platelet aggregation, the activation of factor XII, and bleeding. While the 2-sulfated fucan from Strongylocentrotus franciscanus was observed to be poorly active in most assays, the 4-sulfated fucan from Lytechinus variegatus, the 2-sulfated galactan from Echinometra lucunter and their derivatives showed multiple effects. All marine compounds showed no capacity to activate factor XII and similar low bleeding tendencies regardless of the dose concentrations used to achieve the highest antithrombotic effect observed. The 2-sulfated galactan showed the best combination of results. Our work improves the background about the structure-function relationship of the marine sulfated glycans in anticoagulation and antithrombosis. Besides confirming the negative effect of the 2-sulfated fucose and the positive effect of the 2-sulfated galactose on anticoagulation in vitro, our results also demonstrate the importance of this set of structural requirements on antithrombosis in vivo, and further support the involvement of high-molecular weight and 4-sulfated fucose in both activities.Entities:
Keywords: anticoagulation; antithrombosis; marine glycan; sulfated fucan; sulfated galactan
Mesh:
Substances:
Year: 2018 PMID: 30200211 PMCID: PMC6163371 DOI: 10.3390/md16090304
Source DB: PubMed Journal: Mar Drugs ISSN: 1660-3397 Impact factor: 5.118
Figure 1Structural representation (A–C), polyacrylamide gel electrophoresis (PAGE) (D) and 1H-13C dept-heteronuclear single quantum coherence (HSQC) spectra (E–L) of the three structurally correlated sea urchin sulfated glycans. Their structures are the 3-linked 4-sulfated α-fucan from Lytechinus variegatus (A), the 3-linked 2-sulfated α-fucan from Strongylocentrotus franciscanus (B), and the 3-linked 2-sulfated α-galactan from Echinometra lucunter (C). The molecular weight (MW) ranges of the native sulfated glycans, of their low-MW derivatives and of the standards unfractionated heparin (UFH) (MW~16 kDa) and low molecular-weight heparin (LMWH) (MW ~ 8 kDa) are comparatively analyzed through PAGE (D). The 1H-13C dept-HSQC spectra were recorded for UFH (E), L.v (F), S.f. (G), E.l. (H), LMWH (I), L.v. hd (J), S.f. hd (K), and E.l. hd (L). While cross-peaks from CH and CH3 (in-phase) are shown in blue, those from CH2 (anti-phase) are shown in red. In panels (E) and (I), peaks labeled with (A) and (I) stand for glucosamine and iduronate, respectively. In panel (F–H) and(J–L), (A) stands for the sulfated units and (B) stands for the desulfated units.
Figure 2Anticoagulant properties of the native sea urchin sulfated glycans (A,C,E) and their low-MW derivatives (B,D,F) screened by aPTT (A,B) and by AT-mediated IIa (C,D) and Xa (E,F) inhibition.
Potency values (UI/mg) from the in vitro anticoagulant (AT-mediated anti-IIa and anti-Xa) assays of the sea urchin sulfated glycans and their low-MW derivatives.
| Glycan | AT/IIa | AT/Xa |
|---|---|---|
| UFH | 210 | 204 |
| LMWH | 35 | 100 |
|
| 0.44 | 0.29 |
| 0.07 | 0.06 | |
|
| 0.02 | 0.05 |
| 0.05 | 0.04 | |
|
| 0.56 | 0.27 |
| 0.12 | 0.08 |
Figure 3Antithrombotic properties of the native sea urchin sulfated glycans (A,B) and their low-MW derivatives (C), in venous model of thrombosis, (A) and platelet aggregation (B,C).
Figure 4Effects of the native sea urchin sulfated glycans (A, and solid circles in panel C) and low-MW derivatives (B, and open circles in panel C) in assays of factor XII activation (A,B) and bleeding tendency (C).