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Characteristics of crosslinked blends of Pellethene((R)) and multiblock polyurethanes containing phospholipid.

机译:Pellethene(R)和含磷脂的多嵌段聚氨酯的交联共混物的特征。

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A series of segmented multiblock polyurethanes (MPUs) were synthesized by polyaddition reaction using hexamethylene diisocyanate (HDI)/poly(ethylene oxide) (PEO, as a hydrophilic component)/ poly(tetramethylene oxide) (PTMO)/ poly(butadiene diol)(PBD)/1,4-butanediol(BD)/{2-[bis(2-hydroxyethyl) methyl ammonio]ethyl stearyl phosphate}[BESP, as a phospholipids component: 0-42mol% (0-9wt%)]. To improve the blood compatibility of biomedical grade polyurethane (Pellethene((R))), the Pellethene((R)) was blended with MPUs and then crosslinked using dicumyl peroxide as a crosslinking agent. Effects of BESP content [0-42mol% (0-9wt%)] in MPUs on the properties of MPUs and blend (Pellethene((R))/MPUs) films were investigated. The X-ray photoelectron spectra indicated that the BESP moieties were located at the surface of the crosslinked blend (Pellethene((R))/MPUs) films. As the BESP content in MPUs increased, the water contact angle on the surfaces of corsslinked blend film was decreased but the water absorption and mechanical properties were markedly increased. By the test of platelet adhesion on the surfaces of corsslinked blend film, it was found that the platelet adhesion on the surface was significantly decreased from 70% to 6% by increasing BESP content from 0 to 42mol% (0-9wt%) in MPUs. These results suggest that crosslinked blend films may have more potential as a new material for biomedical applications, which are directly in contact with blood.
机译:使用六亚甲基二异氰酸酯(HDI)/聚环氧乙烷(PEO,作为亲水性成分)/聚环氧丙烷(PTMO)/聚丁二烯二醇,通过加聚反应合成了一系列嵌段多嵌段聚氨酯(MPU)( PBD)/ 1,4-丁二醇(BD)/ {2- [双(2-羟乙基)甲基氨]乙基硬脂基磷酸} [BESP,作为磷脂组分:0-42mol%(0-9wt%)]。为了改善生物医学级聚氨酯(Pellethene)的血液相容性,将Pellethene与MPU混合,然后使用过氧化二枯基作为交联剂进行交联。研究了MPU中BESP含量[0-42mol%(0-9wt%)]对MPU和共混物(Pellethene(R)/ MPUs)薄膜性能的影响。 X射线光电子能谱表明BESP部分位于交联的共混物(Pellethene(R)/ MPUs)膜的表面。随着主控板中BESP含量的增加,共聚共混膜表面的水接触角减小,但吸水率和机械性能明显提高。通过对corsslinked共混膜表面的血小板粘附性进行测试,发现通过将MPU中的BESP含量从0增加到42mol%(0-9wt%),表面上的血小板粘附性从70%显着降低到6%。 。这些结果表明,交联的共混膜作为直接与血液接触的生物医学应用的新材料可能具有更大的潜力。

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