首页> 外文会议>2018 IX International Seminar of Biomedical Engineering >Decreased Platelet Deposition in SIS-Based Vascular Grafts via Covalent Conjugation of RAFT Polymers
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Decreased Platelet Deposition in SIS-Based Vascular Grafts via Covalent Conjugation of RAFT Polymers

机译:通过RAFT聚合物的共价共轭减少基于SIS的血管移植物中的血小板沉积

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The marked tendency to promote thrombogenesis is a major obstacle for the implementation at the clinical level, of regenerative vascular grafts derived from extracellular matrices such as the small intestinal submucosa (SIS). SIS has around 66% (w/w) content of the extremely thrombogenic type I Collagen, which is appropriate for regeneration purposes, but still problematic for cardiovascular applications. To overcome this major hurdle, we covalently conjugated addition–fragmentation chain-transfer (RAFT) polymerized macromolecules of Zwitterionic Phosphorylcholine (PC) on dried SIS tubes previously formed from decellularized wet sheets. Our results indicate that even after a low covalent conjugation yield via 1-Ethyl-3-(3dimethylaminopropyl) carbodiimide (EDC), platelet deposition decreased by about 94% with respect to the unmodified surface. This was also the case when compared with the commercially available vascular graft material expanded polytetrafluoroethylene (ePTFE), where platelet deposition decreased by nearly 93% Thermal stability of modified SIS as well as regenerative and proliferation abilities remained unchanged as evidenced by constant melting temperatures and high growth levels of HUVEC cells after 3 and 8 days. Low cytotoxic levels were detected, and mechanical properties were improved, resembling the mechanical behavior of the native carotid artery. The combination of attributes of the modified material make it attractive for the next generation of regenerative vascular grafts.
机译:明显的促进血栓形成的趋势是从细胞外基质如小肠粘膜下层(SIS)衍生的再生血管移植物在临床水平实施的主要障碍。 SIS含有约66%(w / w)的血栓形成性I型胶原蛋白,适合再生用途,但对于心血管应用仍然存在问题。为了克服这一主要障碍,我们将两性离子磷酸胆碱(PC)的加成-断裂链转移(RAFT)聚合大分子共价结合到了以前由脱细胞湿片形成的干燥SIS管上。我们的结果表明,即使在通过1-乙基-3-(3-二甲基氨基丙基)碳二亚胺(EDC)降低共价结合后,相对于未修饰的表面,血小板沉积也减少了约94%。与市售的血管移植材料膨胀的聚四氟乙烯(ePTFE)相比,情况也是如此,其血小板沉积降低了近93%,改性的SIS的热稳定性以及再生和增殖能力均保持不变,这由恒定的熔融温度和较高的温度证明。 3天和8天后,HUVEC细胞的生长水平。检测到低的细胞毒性水平,并改善了机械性能,类似于天然颈动脉的机械行为。改性材料的属性组合使其对下一代再生血管移植物具有吸引力。

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