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首页> 外文期刊>The international journal of artificial organs >The effect of three different miniaturized blood purification devices on plasma cytokine concentration in an ex vivo model of endotoxinemia.
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The effect of three different miniaturized blood purification devices on plasma cytokine concentration in an ex vivo model of endotoxinemia.

机译:三种不同的小型血液净化设备对内毒素血症离体模型中血浆细胞因子浓度的影响。

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PURPOSE: A novel type of adsorptive plasma filtering device (ETX-A) capable of removing endotoxin from blood in a single step has recently been developed using nanotechnology. METHODS: In a miniaturized, ex vivo model of extracorporeal circuits, we tested the capacity to reduce plasma cytokine concentration of ETX-A filters in comparison to standard high-flux (HF) filters, high cut-off (HCO) filters and a control. Blood from six healthy volunteers was spiked with endotoxin and then circulated through closed (ETX-A, control) or open (HF, HCO) circuits. Blood flow was set at 16 ml/min and filtration flow at 1 ml/min. Samples for measurement of IL-1ra and IL-6 were taken at baseline and at 4 hours. RESULTS: Compared to control (703.3 [850.6] pg/mL), in HCO (383.5 [1144.1] pg/mL) and ETX-A (490.1 [683.2] pg/mL) filters, plasma IL-1ra pooled pre- and postfilter concentrations were lower at the end of the experiment (P=0.002; P=0.050, respectively) whereas, in standard HF filters, IL-1ra concentration was higher than control. HCO showed a trend toward a reduced relative increase in IL-6 concentration from commencement to end of experiment compared to control (P=0.07). After pooling end-of-experiment plasma cytokine values of novel blood purification devices, we found HCO + ETX-A superior to H with regard to reduction of IL-1ra (-27.0 [-20.5]% vs. 8.1 [18.9]%; p<0.001) and IL-6 (-18.0 [38.3]% vs. -1.1 [24.3]%; P=0.050) compared to control. CONCLUSIONS: HCO and ETX-A appeared to significantly reduce plasma IL-1ra and, when combined, plasma IL-6 concentration as well. It appears desirable to manufacture full-size blood purification devices using this technology and to explore their effect on cytokine removal.
机译:用途:最近已经使用纳米技术开发了一种新型的吸附血浆过滤装置(ETX-A),该装置可在一个步骤中从血液中去除内毒素。方法:在体外回路的微型体外模型中,我们测试了与标准高通量(HF)过滤器,高截止(HCO)过滤器和对照组相比,降低ETX-A过滤器血浆细胞因子浓度的能力。将来自六名健康志愿者的血液内毒素加标,然后通过封闭(ETX-A,对照)或开放(HF,HCO)回路循环。血流设置为16 ml / min,过滤流设置为1 ml / min。在基线和4小时时采集用于测量IL-1ra和IL-6的样品。结果:与对照组(703.3 [850.6] pg / mL)相比,在HCO(383.5 [1144.1] pg / mL)和ETX-A(490.1 [683.2] pg / mL)过滤器中,血浆IL-1ra汇集了前置和后置过滤器在实验结束时浓度较低(分别为P = 0.002; P = 0.050),而在标准HF滤器中,IL-1ra浓度高于对照。与对照相比,从实验开始到实验结束,HCO呈现出IL-6浓度相对降低的趋势(P = 0.07)。在汇总了新型血液净化设备的实验结束后血浆细胞因子值后,我们发现HCO + ETX-A在减少IL-1ra方面优于H(-27.0 [-20.5]%比8.1 [18.9]%;与对照相比,p <0.001)和IL-6(-18.0 [38.3]%对-1.1 [24.3]%; P = 0.050)。结论:HCO和ETX-A似乎可以显着降低血浆IL-1ra以及血浆IL-6的浓度。使用这种技术制造全尺寸的血液净化装置并探索其对细胞因子去除的作用似乎是可取的。

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