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In vivo sheep and rabbit models for evaluating low-fouling zwitterionic polymer coatings in artificial lungs

机译:用于评估人造肺中低污染两性离子聚合物涂层的体内绵羊和兔子模型

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The veno-venous extracorporeal sheep model allowed a head-to-head comparison between three pCB coating methodologies. This study showed that DOPA coating was the most effective methodology that yielded the lowest resistance and the least chance of device failure. However, the major drawback to the sheep model is that, since all devices were attached simultaneously, information on blood-biomaterial interaction for a specific coating was lost. Hence, a follow-up rabbit study aimed to study DOPA coating using ELISA to quantify the changes in clotting activity. The rabbit study suggests that DOPA-pCB coating reduced clotting activity and clot weight by attracting hydration layers that resist non-specific protein adsorption. Future work will continue both animal studies to reach a higher sample size and better statistical power.
机译:静脉-静脉体外绵羊模型可以在三种pCB包衣方法之间进行头对头的比较。这项研究表明,DOPA涂层是最有效的方法,其产生最低的电阻和最少的设备故障机会。但是,绵羊模型的主要缺点是,由于所有设备都同时连接,因此有关特定涂层的血液-生物材料相互作用的信息丢失了。因此,一项后续的兔子研究旨在使用ELISA研究DOPA涂层,以量化凝血活性的变化。兔子的研究表明,DOPA-pCB涂层通过吸引抵抗非特异性蛋白质吸附的水合层而降低了凝结活性和凝块重量。未来的工作将继续进行两种动物研究,以达到更高的样本量和更好的统计能力。

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