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Efficiency in extracorporeal membrane oxygenation-cellular deposits on polymethylpentene membranes increase resistance to blood flow and reduce gas exchange capacity

机译:聚甲基戊烯膜上体外膜氧合细胞沉积物的效率提高了对血流的抵抗力并降低了气体交换能力

摘要

Bioline-coated polymethylpentene (PMP) membrane oxygenators (MO) are used for extracorporeal membrane oxygenation (ECMO) to improve gas exchange in patients with severe acute respiratory distress syndrome (ARDS). However, in some patients, long-term durability is limited due to fibrous and cellular accumulations on the gas exchange surface which can increase resistance to blood flow and diffusion path. These surface deposits of PMP MO after removal were studied with scanning electron and fluorescence microscopy techniques. Three of 31 patients supported by a PMP MO in an ECMO setting required a replacement of the oxygenator after a mean support interval of 11 +/- 7 days due to an increase in flow resistance and an impairment of the gas exchange capacity. The membrane surface of the MO was covered with a fibrous network with imbedded platelets and red blood cells. A membranous structure composed of single cells and clusters of cells covered large areas of the PMP fibers. We assume that these cellular deposits lower the efficacy of ECMO. The identification of these cells could be a key for future therapeutic interventions and improvements in the development of MO.
机译:涂有生物膜的聚甲基戊烯(PMP)膜氧合器(MO)用于体外膜氧合(ECMO),以改善患有严重急性呼吸窘迫综合征(ARDS)的患者的气体交换。但是,在某些患者中,由于气体交换表面上的纤维状和细胞状堆积,会增加对血液流动和扩散路径的阻力,因此长期耐用性受到限制。使用扫描电子和荧光显微镜技术研究了去除后的PMP MO的这些表面沉积物。在ECMO设置中由PMP MO支持的31例患者中,有3例在平均支持间隔11 +/- 7天后需要更换充氧器,这是因为流动阻力增加和气体交换能力受损。 MO的膜表面覆盖有嵌有血小板和红细胞的纤维网络。由单个细胞和细胞簇组成的膜状结构覆盖了大面积的PMP纤维。我们假设这些细胞沉积物降低了ECMO的功效。这些细胞的鉴定可能是未来治疗干预和改善MO发展的关键。

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