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Heparins and heparinoids: occurrence, structure and mechanism of antithrombotic and hemorrhagic activities.

机译:肝素和类肝素:抗血栓和出血活性的发生,结构和机制。

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The correlation between structure, anticlotting, antithrombotic and hemorrhagic activities of heparin, heparan sulfate, low molecular weight heparins and heparin-like compounds from various sources that are in used in clinical practice or under development is briefly reviewed. Heparin-like molecules composed exclusively of iduronic acid 2-O-sulfate residues have weak anticlotting activities, whereas molecules that contain both iduronic acid 2-O sulfate, iduronic acid and small amounts of glucuronic acid, such as heparin, or mixed amounts of glucuronic and iduronic acids (mollusk heparins) possess high anticlotting and anti-Xa activities. These results also suggest that a proper combination of these elements might produce a strong antithrombotic agent. Heparin isolated from shrimp mimics the pharmacological activities of low molecular weight heparins. A heparan sulfate derived from bovine pancreas and a sulfated fucan from brown algae have a potent antithrombotic activity in arterial and venous thrombosis model "in vivo" with a negligible activity upon the serine-proteases of the coagulation cascade "in vitro". These and other results led to the hypothesis that antithrombotic activity of heparin and other antithrombotic agents is due at least in part by their action on endothelial cells stimulating the synthesis of an antithrombotic heparan sulfate. All the antithrombotic agents derived from heparin and other heparinoids have hemorrhagic activity. Exceptions to this are a heparan sulfate from bovine pancreas and a sulfated fucan derived from brown algae, which have no hemorrhagic activity but have high antithrombotic activities "in vivo". Once the structure of these compounds are totally defined it will be possible to design an ideal antithrombotic.
机译:简要回顾了肝素,硫酸乙酰肝素,低分子量肝素和类肝素样化合物的结构,抗凝,抗血栓和出血活性之间的相关性,这些来源已用于临床实践或正在开发中。仅由艾杜糖醛酸2-O-硫酸酯残基组成的类肝素分子具有较弱的抗凝活性,而同时含有艾杜糖醛酸2-O硫酸盐,艾杜糖醛酸和少量葡萄糖醛酸(如肝素)或混合葡萄糖醛酸的分子艾杜糖酸(软体动物肝素)具有很高的抗凝血和抗Xa活性。这些结果还表明这些元素的适当组合可能会产生强抗血栓药。从虾中分离出的肝素模仿了低分子量肝素的药理活性。来自牛胰腺的硫酸乙酰肝素和来自褐藻的硫酸化岩藻聚糖在“体内”的动脉和静脉血栓形成模型中具有有效的抗血栓形成活性,而对“体外”的凝血级联的丝氨酸蛋白酶的活性可忽略不计。这些和其他结果导致了这样的假设:肝素和其他抗血栓形成剂的抗血栓形成活性至少部分地是由于它们对刺激抗血栓形成的硫酸乙酰肝素的合成的内皮细胞的作用所致。所有衍生自肝素和其他类肝素的抗血栓药均具有止血活性。牛胰的硫酸乙酰肝素和棕藻衍生的硫酸化的富康是例外,它们没有出血活性,但在体内具有很高的抗血栓形成活性。一旦这些化合物的结构被完全定义,就有可能设计出理想的抗血栓形成剂。

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