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Synthesis and Anticoagulant Activity of Polyureas Containing Sulfated Carbohydrates

机译:含硫酸碳水化合物的聚脲的合成与抗凝活性

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摘要

Polyurea-based synthetic glycopolymers containing sulfated glucose, mannose, glucosamine, or lactose as pendant groups have been synthesized by step-growth polymerization of hexamethylene diisocyanate and corresponding secondary diamines. The obtained polymers were characterized by gel permeation chromatography, nuclear magnetic resonance spectroscopy, and Fourier transform infrared spectroscopy. The nonsulfated polymers showed similar results to the commercially available biomaterial polyurethane TECOFLEX in a platelet adhesion assay. The average degree of sulfation after reaction with SO3 was calculated from elemental analysis and found to be between three and four -OSO3 groups per saccharide. The blood-compatibility of the synthetic polymers was measured using activated partial thromboplastin time, prothrombin time, thrombin time, anti-IIa, and anti-Xa assays. Activated partial thromboplastin time, prothrombin time, and thrombin time results indicated that the mannose and lactose based polymers had the highest anticoagulant activities among all the sulfated polymers. The mechanism of action of the polymers appears to be mediated via an anti-IIa pathway rather than an anti-Xa pathway.
机译:通过六亚甲基二异氰酸酯的阶梯生长聚合和相应的仲二胺,合成了含有硫酸化葡萄糖,甘露糖,葡萄糖胺或乳糖作为侧链的聚脲的合成甘蔗糖聚合物。通过凝胶渗透色谱,核磁共振光谱和傅里叶变换红外光谱表征所得聚合物。非硫酸化聚合物显示出与血小板粘附测定中市售的生物材料聚氨酯Tecoflex类似的结果。用元素分析计算与SO 3反应后的平均硫化程度,发现每糖的三和四组3组。使用活性的部分血栓形成时间,凝血酶原时间,凝血酶时间,抗IIa和抗Xa测定测量合成聚合物的血液相容性。活化的部分血栓形成时间,凝血酶原时间和凝血酶时间结果表明,甘露糖和乳糖基聚合物在所有硫酸化聚合物中具有最高的抗凝血活性。聚合物的作用机制似乎通过抗IIA途径而不是抗Xa途径介导。

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  • 来源
    《Biomacromolecules 》 |2014年第12期| 共12页
  • 作者单位

    Univ Cincinnati Dept Chem Cincinnati OH 45221 USA;

    Cincinnati Childrens Hosp Med Ctr Canc &

    Blood Dis Inst Cincinnati OH 45229 USA;

    Cincinnati Childrens Hosp Med Ctr Canc &

    Blood Dis Inst Cincinnati OH 45229 USA;

    Univ Cincinnati Dept Pharmacol &

    Cell Biophys Coll Med Cincinnati OH 45267 USA;

    Univ Cincinnati Dept Chem Cincinnati OH 45221 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学 ;
  • 关键词

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