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Biocompatibility assessment of the first generation PediaFlow pediatric ventricular assist device

机译:第一代PediaFlow小儿心室辅助设备的生物相容性评估

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摘要

The PediaFlow pediatric ventricular assist device is a miniature magnetically levitated mixed flow pump under development for circulatory support of newborns and infants (3-15 kg) with a targeted flow range of 0.3-1.5 L/min. The first generation design of the PediaFlow (PF1) was manufactured with a weight of approximately 100 g, priming volume less than 2 mL, length of 51 mm, outer diameter of 28 mm, and with 5-mm blood ports. PF1 was evaluated in an in vitro flow loop for 6 h and implanted in ovines for three chronic experiments of 6, 17, and 10 days. In the in vitro test, normalized index of hemolysis was 0.0087 ± 0.0024 g/100L. Hemodynamic performance and blood biocompatibility of PF1 were characterized in vivo by measurements of plasma free hemoglobin, plasma fibrinogen, total plasma protein, and with novel flow cytometric assays to quantify circulating activated ovine platelets. The mean plasma free hemoglobin values for the three chronic studies were 4.6 ± 2.7, 13.3 ± 7.9, and 8.8 ± 3.3 mg/dL, respectively. Platelet activation was low for portions of several studies but consistently rose along with observed animal and pump complications. The PF1 prototype generated promising results in terms of low hemolysis and platelet activation in the absence of complications. Hemodynamic results validated the magnetic bearing design and provided the platform for design iterations to meet the objective of providing circulatory support for young children with exceptional biocompatibility.
机译:PediaFlow儿科心室辅助设备是一种正在开发中的微型磁悬浮混合流泵,用于新生儿和婴儿(3-15 kg)的循环支持,目标流量范围为0.3-1.5 L / min。 PediaFlow(PF1)的第一代设计制造,重量约为100克,灌注体积小于2毫升,长度为51毫米,外径为28毫米,血液入口为5毫米。在体外循环中评估PF1 6小时,然后将其植入绵羊体内进行6、17和10天的三个慢性实验。在体外测试中,溶血标准化指数为0.0087±0.0024 g / 100L。 PF1的血流动力学性能和血液生物相容性通过测量血浆游离血红蛋白,血浆纤维蛋白原,血浆总蛋白,并采用新颖的流式细胞术测定循环活化的绵羊血小板来表征。三项慢性研究的平均血浆游离血红蛋白值分别为4.6±2.7、13.3±7.9和8.8±3.3 mg / dL。几项研究的某些部分血小板活化率较低,但随着观察到的动物和泵并发症而持续升高。 PF1原型在无并发症的情况下在低溶血和血小板活化方面产生了可喜的结果。血液动力学结果验证了磁性轴承的设计,并为设计迭代提供了平台,从而达到了为具有出色生物相容性的幼儿提供循环支持的目标。

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