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Immobilized Bioactive Agents onto Polyurethane Surface with Heparin and Phosphorylcholine Group

机译:固定有肝素和磷酸胆碱基团的聚氨酯表面生物活性剂

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Heparin (HEP) and phosphorylcholine groups (PC) were grafted onto the polyurethane (PU) surface in order to improve biocompatibility and anticoagulant activity. After the surface grafting sites of PU were amplified with the primary amine groups of polyethylenimine (PEI), heparin was covalently linked onto the surface by the reaction between the amino group and the carboxyl group. PC groups were covalently immobilized on the PU-PEI surface through the reaction between the amino group and the aldehyde group of phosphorylcholine glyceraldehyde (PCGA). The surface density of primary amine groups was determined by a mnhydrin assay. The amino group density reached a maximum of 0.88 μmol/cm~2 upon incorporation of 10 wt% PEI. The amount of heparin covalently immobilized on the PU-PEI surface was determined by the toluidine blue method. The grafting chemistry resulted in the comparatively dense immobilization of HEP (2.6 μg/cm~2) and PC to the PU-PEI surfaces. The HEP and PC modified surfaces were characterized by water uptake (PU 0.15 mg/cm~2, PU-PEI 3.54 mg/cm~2, PU-HEP 2.04 mg/ cm2, PU-PC 2.38 mg/cm2), water contact angle (PU 95.3°, PU-PEI 34.0°, PU-HEP 39.5°, PU-PC 37.2°), attenuated total reflection Fourier transform infrared spectroscopy (ATR-FTIR), X-ray photoelectron spectroscopy (XPS), atomic force microscopy (AFM), and scanning electron microscope (SEM). The results demonstrated that the PU-PEI surface was successfully grafted with HEP and PC. The hydrophilicity and hemocompatibility of these grafted surfaces were significantly improved. These results suggested that the PU-HEP and PU-PC composite films are promising candidates for blood contacting tissue engineering.
机译:肝素(HEP)和磷酰胆碱基团(PC)被接枝到聚氨酯(PU)表面,以提高生物相容性和抗凝活性。用聚乙烯亚胺(PEI)的伯胺基团扩增PU的表面接枝位点后,肝素通过氨基和羧基之间的反应共价连接到表面上。 PC基团通过磷酸胆碱甘油醛(PCGA)的氨基和醛基团之间的反应共价固定在PU-PEI表面上。伯胺基团的表面密度通过mnhydrin测定法测定。当掺入10wt%的PEI时,氨基密度达到最大0.88μmol/ cm〜2。通过甲苯胺蓝法测定共价固定在PU-PEI表面上的肝素的量。接枝化学导致HEP(2.6μg/ cm〜2)和PC相对致密地固定在PU-PEI表面上。 HEP和PC改性的表面的特征在于吸水率(PU 0.15 mg / cm〜2,PU-PEI 3.54 mg / cm〜2,PU-HEP 2.04 mg / cm2,PU-PC 2.38 mg / cm2),水接触角(PU 95.3°,PU-PEI 34.0°,PU-HEP 39.5°,PU-PC 37.2°),衰减全反射傅立叶变换红外光谱(ATR-FTIR),X射线光电子能谱(XPS),原子力显微镜( AFM)和扫描电子显微镜(SEM)。结果表明,PU-PEI表面已成功用HEP和PC接枝。这些接枝表面的亲水性和血液相容性显着提高。这些结果表明PU-HEP和PU-PC复合膜是血液接触组织工程的有希望的候选者。

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