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新型合成肝素模拟物的药代动力学

Pharmacokinetics of new synthetic heparin mimetics.

作者信息

Hérault J P, Bernat A, Roye F, Michaux C, Schaeffer P, Bono F, Petitou M, Herbert J M

机构信息

Sanofi-Synthélabo Recherche, Toulouse, France.

出版信息

Thromb Haemost. 2002 Jun;87(6):985-9.

Abstract

Pharmacokinetics of oligosaccharides displaying various affinities for antithrombin (AT) allowed us to show that there was a close relationship between the plasma half-life of these antithrombotic oligosaccharides and their affinity for AT. Recently, we have described new heparin mimetics comprising an AT binding domain and a thrombin binding domain separated by a neutral methylated saccharide sequence. These compounds displayed strong anti-Xa and antii-IIA activities and, in contrast to heparin, escaped neutralisation by platelet factor 4. The aim of this work was to compare the pharmacokinetics of several of these heparin mimetics in rats. These compounds differed by their length, charge and affinity for AT (AT-binding domain). The results obtained indicate that the prolongation of the AT binding domain did not modify significantly their affinities for AT. However, an increase in the number of charges leads to a decrease in the half-life. When a methylated spacer was added in order to minimise the non-specific interactions to other proteins, half-lives of the heparin mimetic were in the same range than that of the pentasaccharide used as an AT binding domain. In conclusion, this study shows the influence of the charge of the oligosaccharides on their pharmacokinetics and underlinesthe importance of minimising their non-specific binding to plasma proteins in order to obtain compounds with predictive pharmacokinetics.

摘要

对抗凝血酶(AT)具有不同亲和力的寡糖的药代动力学研究使我们发现,这些抗血栓寡糖的血浆半衰期与其对AT的亲和力之间存在密切关系。最近,我们描述了一种新的肝素模拟物,它由一个AT结合结构域和一个凝血酶结合结构域组成,中间由一个中性甲基化糖序列隔开。这些化合物表现出很强的抗Xa和抗IIA活性,并且与肝素不同的是,它们不会被血小板因子4中和。这项工作的目的是比较几种此类肝素模拟物在大鼠体内的药代动力学。这些化合物在长度、电荷以及对AT的亲和力(AT结合结构域)方面存在差异。所得结果表明,延长AT结合结构域并不会显著改变它们对AT的亲和力。然而,电荷数量的增加会导致半衰期缩短。当添加一个甲基化间隔区以尽量减少与其他蛋白质的非特异性相互作用时,肝素模拟物的半衰期与用作AT结合结构域的五糖的半衰期处于同一范围。总之,本研究表明了寡糖电荷对其药代动力学的影响,并强调了尽量减少其与血浆蛋白非特异性结合以获得具有可预测药代动力学的化合物的重要性。

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