首页> 外文期刊>Journal of biomedical materials research, Part A >An in vitro study of blood compatibility of vascular grafts made of bacterial cellulose in comparison with conventionally-used graft materials
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An in vitro study of blood compatibility of vascular grafts made of bacterial cellulose in comparison with conventionally-used graft materials

机译:与常规使用的移植材料相比,细菌纤维素制成的血管移植物血液相容性的体外研究

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In this study we analyzed the blood compatibility of bacterial cellulose (BC) as a new biosynthetic material for use as a vascular graft. As reference materials we used expanded polytetrafluoroethylene (ePTFE) and poly(ethylene terephthalate) (PET) vascular grafts. These materials are in clinical use today. Tubes with inner diameters of both 4 (not PET) and 6 mm were tested. Heparin-coated PVC tubes (hepPVC) were used as a negative control. Platelet consumption and thrombin-antithrombin complex (TAT) were used as parameters of coagulation and for complement activation, sC3a and sC5b-9 were used. The investigated parameters were measured after 1-h exposure to freshly drawn human blood supplemented with a low dose of heparin in a Chandler loop system. The results showed that BC exhibits no significant difference in platelet consumption, as compared with PET (6 mm), ePTFE and hepPVC. The PET material consumed more platelets than any of the other materials. The TAT generation for 4 mm tubes was not significantly different between BC and the other materials. For 6 mm tubes, however, differences were observed between hepPVC and PET (p < 0.0001); BC and hepPVC (p = 0.0016); ePTFE and PET (p < 0.0001); BC and ePTFE (p = 0.0029); BC and PET (p = 0.0141). Surprisingly, considering the low platelet consumption, the complement activation parameters (sC3a and sC5b-9) were much higher for BC, as compared with the other materials for both 4 and 6 mm tubes.
机译:在这项研究中,我们分析了细菌纤维素(BC)作为一种新的生物合成材料用作血管移植物的血液相容性。作为参考材料,我们使用了膨体聚四氟乙烯(ePTFE)和聚对苯二甲酸乙二醇酯(PET)血管移植物。这些材料如今已在临床上使用。测试了内径均为4(非PET)和6mm的试管。肝素涂层的PVC管(hepPVC)被用作阴性对照。血小板消耗和凝血酶-抗凝血酶复合物(TAT)用作凝血参数,补体激活使用sC3a和sC5b-9。在Chandler Loop系统中,暴露于补充有低剂量肝素的新鲜抽取人血1小时后,测量所研究的参数。结果表明,与PET(6 mm),ePTFE和hepPVC相比,BC的血小板消耗没有显着差异。 PET材料比其他任何材料消耗更多的血小板。 BC和其他材料之间4 mm管的TAT生成没有显着差异。但是,对于6 mm的试管,在hepPVC和PET之间观察到差异(p <0.0001)。 BC和hepPVC(p = 0.0016); ePTFE和PET(p <0.0001); BC和ePTFE(p = 0.0029); BC和PET(p = 0.0141)。出乎意料的是,考虑到低的血小板消耗,BC的补体激活参数(sC3a和sC5b-9)比4和6 mm管的其他材料要高得多。

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