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SPUU-PEO-肝素接枝共聚物的血液相容性

Blood compatibility of SPUU-PEO-heparin graft copolymers.

作者信息

Park K D, Kim W G, Jacobs H, Okano T, Kim S W

机构信息

Department of Pharmaceutics/CCCD, University of Utah, Salt Lake City 84108.

出版信息

J Biomed Mater Res. 1992 Jun;26(6):739-56. doi: 10.1002/jbm.820260605.

Abstract

Biological responses to heparinized segmented polyurethaneurea (SPUU-PEO-Heparin) were evaluated in vitro and ex vivo. In vitro assays involved plasma protein adsorption, platelet adhesion, and release reaction studies. In addition, an ex vivo rabbit arterio-artery (A-A) shunt experiment was also performed to measure occlusion times of the heparinized surfaces. All SPUU-PEO-Heparin surfaces demonstrated less protein adsorption than Biomer and protein adsorption patterns similar to SPUU-PEO surfaces. Platelet adhesion and release studies demonstrated that both SPUU-PEO-Heparin and SPUU-PEO surfaces adsorbed less platelets and inhibited platelet release, as compared to Biomer. These findings correlated with reduction in protein adsorption observed for the modified surfaces. In low flow rate ex-vivo A-A shunt experiments, all heparinized surfaces prolonged occlusion time longer than controls. However, SPUU-PEO surfaces did not prolong occlusion time when compared to Biomer, although these surfaces suppressed protein adsorption and platelet interaction in vitro. The improved blood compatibility of SPUU-PEO-Heparin surfaces attest to the usefulness of this approach in improving the blood compatibility of blood contacting surfaces.

摘要

对肝素化的嵌段聚氨基甲酸酯脲(SPUU-PEO-肝素)进行了体外和离体生物学反应评估。体外试验包括血浆蛋白吸附、血小板黏附及释放反应研究。此外,还进行了一项离体兔动脉-动脉(A-A)分流实验,以测量肝素化表面的闭塞时间。所有SPUU-PEO-肝素表面的蛋白吸附均少于Biomer,且蛋白吸附模式与SPUU-PEO表面相似。血小板黏附及释放研究表明,与Biomer相比,SPUU-PEO-肝素和SPUU-PEO表面吸附的血小板均较少,且抑制血小板释放。这些发现与修饰表面蛋白吸附的减少相关。在低流速离体A-A分流实验中,所有肝素化表面的闭塞时间均比对照组延长。然而,与Biomer相比,SPUU-PEO表面并未延长闭塞时间,尽管这些表面在体外抑制了蛋白吸附和血小板相互作用。SPUU-PEO-肝素表面血液相容性的改善证明了该方法在改善血液接触表面血液相容性方面的有效性。

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