Türk Holger, Haag Rainer, Alban Susanne
Freiburg Materials Research Center, Albert-Ludwigs-University of Freiburg, Stefan-Meier-Strasse 21, 79104 Freiburg, Germany.
Bioconjug Chem. 2004 Jan-Feb;15(1):162-7. doi: 10.1021/bc034044j.
Due to several limitations of heparin, a widely used antithrombotic drug, there is large interest to develop alternatives. The aim of the presented study was to produce fully synthetic highly branched heparin mimetics. For this purpose, a new type of 'treelike' polysulfated polymers based on dendritic polyglycerol was synthesized. An efficient synthetic approach has been chosen to prepare several polyglycerol sulfates with different molecular weights as well as a polyglycerol carboxylate analogue and to evaluate them for their anticoagulant and anticomplementary activities. In contrast to the nonderivatized and the carboxylated polyglycerols, the polyglycerol sulfates prolong the activated partial thromboplastin time (APTT) and thrombin time (TT) and inhibit both the classical (CCA) and alternative complement activation (ACA). Whereas their anticoagulant activity in the APTT and in the TT amounts to 5.7-8.1% and 15.7-33.6%, respectively, of that of unfractionated heparin (UFH), their CCA and ACA inhibitory activity is 13.4-23.9 and 2.7-3.7 times, respectively, higher. In contrast to sulfated polysaccharides, the activities are not clearly dependent on the molecular weight, which might be due to the globular 3D-structure of the dendritic molecules. Due to the coherence between coagulation, complement activation and inflammation in the pathophysiology of numerous diseases, polyglycerol sulfates with both anticoagulant and anticomplementary activities represent promising candidates for the development of potential drugs.
由于广泛使用的抗血栓药物肝素存在多种局限性,人们对开发其替代品有着浓厚兴趣。本研究的目的是制备完全合成的高度支化肝素模拟物。为此,合成了一种基于树枝状聚甘油的新型“树状”多硫酸化聚合物。已选择一种有效的合成方法来制备几种不同分子量的聚甘油硫酸盐以及一种聚甘油羧酸盐类似物,并评估它们的抗凝血和抗补体活性。与未衍生化和羧化的聚甘油不同,聚甘油硫酸盐可延长活化部分凝血活酶时间(APTT)和凝血酶时间(TT),并抑制经典补体激活(CCA)和替代补体激活(ACA)。其在APTT和TT中的抗凝血活性分别相当于未分级肝素(UFH)的5.7 - 8.1%和15.7 - 33.6%,而其CCA和ACA抑制活性分别高13.4 - 23.9倍和2.7 - 3.7倍。与硫酸化多糖不同,这些活性并不明显依赖于分子量,这可能是由于树枝状分子的球状三维结构所致。由于在众多疾病的病理生理学中凝血、补体激活和炎症之间存在关联,具有抗凝血和抗补体活性的聚甘油硫酸盐是开发潜在药物的有前景的候选物。