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用于生物材料的辐射诱导接枝共聚物SBS-g-VP

Radiation-induced graft copolymer SBS-g-VP for biomaterial usage.

作者信息

Yang J M, Hsiue G H

机构信息

Department of Chemical Engineering, Chang Gung College of Medicine and Technology, Taiwan, ROC.

出版信息

J Biomed Mater Res. 1996 Jun;31(2):281-6. doi: 10.1002/(SICI)1097-4636(199606)31:2<281::AID-JBM16>3.0.CO;2-O.

Abstract

The grafting of 4-vinyl pyridine (VP) to styrene-butadienestyrene triblock copolymer (SBS) by radiation-induced graft copolymerization was studied. The cohesive properties such as cohesive energy (Ecoh), molar volume (V), solubility parameter (delta), molar molecular weight (WM), specific volume (Vg), and density (1/Vg) of SBS-g-VP graft copolymer were calculated according to the group contribution of Fedors. The morphology of SBS-g-VP was studied by optical polarizing microscopy. We also measured the glass transition temperature and the mechanical properties of SBS-g-VP graft copolymer. Contact angle and blood-clotting time experiments were also performed to evaluate the biocompatibility of SBS-g-VP. A second domain was found in the SBS-g-VP graft copolymer, which resulted in different properties between SBS-g-VP and SBS. The blood compatibility of SBS-g-VP as measured by the Lee-White clotting test was better than that of SBS and polystyrene.

摘要

研究了通过辐射诱导接枝共聚将4-乙烯基吡啶(VP)接枝到苯乙烯-丁二烯-苯乙烯三嵌段共聚物(SBS)上。根据费多尔斯基团贡献法计算了SBS-g-VP接枝共聚物的内聚能(Ecoh)、摩尔体积(V)、溶解度参数(δ)、摩尔分子量(WM)、比容(Vg)和密度(1/Vg)等内聚性能。通过光学偏光显微镜研究了SBS-g-VP的形态。我们还测量了SBS-g-VP接枝共聚物的玻璃化转变温度和力学性能。还进行了接触角和凝血时间实验以评估SBS-g-VP的生物相容性。在SBS-g-VP接枝共聚物中发现了第二个区域,这导致SBS-g-VP和SBS之间具有不同的性能。通过Lee-White凝血试验测得的SBS-g-VP的血液相容性优于SBS和聚苯乙烯。

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