首页> 外文期刊>Journal of the Korean Chemical Society >Synthesis and Blood Compatibility of New Biocompatible Copolypeptides : Blood Compatibility of Copolypeptide Having Ethylene Glycol Oligomers Substituted in the Side Chain
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Synthesis and Blood Compatibility of New Biocompatible Copolypeptides : Blood Compatibility of Copolypeptide Having Ethylene Glycol Oligomers Substituted in the Side Chain

机译:新型生物相容性共多肽的合成和血液相容性:侧链上具有乙二醇低聚物的共多肽的血液相容性

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Polyethylene glycol (PEG) grafted poly (¥?-benzyl L-glutamate) (PBLG) was synthesized by the substitution reaction of PBLG and PEG having primary amino groups at both ends. PEG-g-PBLG films containing hydroxyl group were also prepared by the substitution reaction of PEG-g-PBLG film and ethanolamine (EA). Adhesion of platelets and activation of plasma proteins on the copolypeptide films were studied. The results showed that platelets are less adhered and activated on the PEG-g-PBLG than on other polypeptides and plasma recalcification time (PRT) on the PEG-g-PBLG was longer than that on other polypeptides. These results were consistent with those of blood clotting time and thrombus formation on the polypeptides. As a results, PEG-g-PBLG surfaces showed better blood compatibility than PBLG or PEG-g-PBLG-EA surfaces.
机译:聚乙二醇(PEG)接枝的聚(β-苄基L-谷氨酸)(PBLG)是通过PBLG和在两端具有伯氨基的PEG的取代反应而合成的。还通过PEG-g-PBLG膜和乙醇胺(EA)的取代反应制备了具有羟基的PEG-g-PBLG膜。研究了血小板在共多肽膜上的粘附和血浆蛋白的活化。结果显示,与其他多肽相比,PEG-g-PBLG上血小板的粘附和活化程度更低,并且与其他多肽相比,PEG-g-PBLG上的血浆重钙化时间(PRT)更长。这些结果与多肽的血液凝固时间和血栓形成的结果一致。结果,PEG-g-PBLG表面显示出比PBLG或PEG-g-PBLG-EA表面更好的血液相容性。

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