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1.
Braz. j. med. biol. res ; 45(5): 386-391, May 2012.
Article Dans Anglais | LILACS | ID: lil-622772

Résumé

Heparan sulphate (HS) and the related polysaccharide, heparin, exhibit conformational and charge arrangement properties, which provide a degree of redundancy allowing several seemingly distinct sequences to exhibit the same activity. This can also be mimicked by other sulphated polysaccharides, both in overall effect and in the details of interactions and structural consequences of interactions with proteins. Together, these provide a source of active compounds suitable for further development as potential drugs. These polysaccharides also possess considerable size, which bestows upon them an additional useful property: the capability of disrupting processes comprising many individual interactions, such as those characterising the attachment of microbial pathogens to host cells. The range of involvement of HS in microbial attachment is reviewed and examples, which include viral, bacterial and parasitic infections and which, in many cases, are now being investigated as potential targets for intervention, are identified.


Sujets)
Humains , Bactéries/effets des médicaments et des substances chimiques , Adhérence bactérienne/effets des médicaments et des substances chimiques , Héparitine sulfate/composition chimique , Héparitine sulfate/pharmacologie , Polyosides/composition chimique , Héparine/composition chimique , Héparine/pharmacologie , Propriétés de surface
2.
Braz. j. med. biol. res ; 34(6): 699-709, Jun. 2001. ilus, tab, graf
Article Dans Anglais | LILACS | ID: lil-285842

Résumé

The anticlotting and antithrombotic activities of heparin, heparan sulfate, low molecular weight heparins, heparin and heparin-like compounds from various sources used in clinical practice or under development are briefly reviewed. Heparin isolated from shrimp mimics the pharmacological activities of low molecular weight heparins. A heparan sulfate from Artemia franciscana and a dermatan sulfate from tuna fish show a potent heparin cofactor II activity. A heparan sulfate derived from bovine pancreas has a potent antithrombotic activity in an arterial and venous thrombosis model with a negligible activity upon the serine proteases of the coagulation cascade. It is suggested that the antithrombotic activity of heparin and other antithrombotic agents is due at least in part to their action on endothelial cells stimulating the synthesis of an antithrombotic heparan sulfate.


Sujets)
Humains , Animaux , Bovins , Anticoagulants/pharmacologie , Endothélium vasculaire/cytologie , Fibrinolytiques/pharmacologie , Héparine/pharmacologie , Héparitine sulfate/pharmacologie , Anticoagulants/composition chimique , Anticoagulants/métabolisme , Crustacea , Fibrinolytiques/composition chimique , Fibrinolytiques/métabolisme , Glycosaminoglycanes/métabolisme , Glycosaminoglycanes/pharmacologie , Héparine bas poids moléculaire/composition chimique , Héparine bas poids moléculaire/métabolisme , Héparine bas poids moléculaire/pharmacologie , Héparine/métabolisme , Héparitine sulfate/biosynthèse , Thon
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