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首页> 外文期刊>Journal of biomaterials applications >Hemocompatibility evaluation of small elastomeric hollow fiber membranes as vascular substitutes
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Hemocompatibility evaluation of small elastomeric hollow fiber membranes as vascular substitutes

机译:小型弹性体中空纤维膜作为血管代用品的血液相容性评估

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摘要

One of the main challenges for clinical implementation of small diameter vascular grafts (SDVGs) is their limited hemocompatibility. Important design specifications for such grafts include features that minimize the long-term risks of restenosis, fouling, and thrombus formation. In our lab, we have developed elastomeric hollow fiber membranes (HFMs), using a phase inversion method, as candidates for SDVGs. Here, we present our results for in vitro hemocompatibility testing of our HFM under flow and static conditions. Our results showed that the polymer-based HFMs do not damage the integrity of human red blood cells (RBCs) as shown by their low hemolytic extent (less than 2%). When analyzed for blood cell lysis using lactate dehydrogenase (LDH) activity as an indicator, no significant differences were observed between blood exposed to our HFMs and uncoagulated blood. Analysis of protein adsorption showed a low concentration of proteins deposited on the surfaces of HFM after 24-h. Platelet adhesion profiles using human platelet-rich plasma (PRP) showed that a low level of platelets adhered to the HFMs after 24-h, indicating minimal thrombotic potential. Under the majority of conditions, no significant differences were observed between medical-grade polymers and our HFMs. Eventual optimization of hemocompatible elastomeric HFM vessel grafts could lead to improved tissue vascularization as well as vascularized, tissue-engineered scaffolds for organ repair.
机译:小直径血管移植物(SDVGs)临床实施的主要挑战之一是其有限的血液相容性。此类移植物的重要设计规格包括可将再狭窄,结垢和血栓形成的长期风险降至最低的功能。在我们的实验室中,我们已经开发出一种使用相转化法的弹性体中空纤维膜(HFM)作为SDVG的候选材料。在这里,我们介绍了在流动和静态条件下对我们的HFM进行体外血液相容性测试的结果。我们的结果表明,基于聚合物的HFM不会破坏人体红细胞(RBC)的完整性,如其低溶血程度(小于2%)所示。当使用乳酸脱氢酶(LDH)活性作为指标分析血细胞裂解时,暴露于我们的HFM的血液与未凝结的血液之间没有观察到显着差异。蛋白质吸附分析显示24小时后,沉积在HFM表面的蛋白质浓度较低。使用富含人体血小板的血浆(PRP)进行的血小板粘附曲线显示,在24小时后,低水平的血小板粘附于HFM,表明血栓形成的可能性最小。在大多数情况下,医学级聚合物与我们的HFM之间没有发现显着差异。血液相容性弹性体HFM血管移植物的最终优化可以改善组织的血管形成以及组织修复的血管化组织工程支架。

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