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Clinical investigation of the role of membrane structure on blood contact and solute transport characteristics of a cellulose membrane.

机译:膜结构对血液接触和纤维素膜溶质转运特性的作用的临床研究。

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Regenerated cellulose membranes contain cellulose chains with crystalline and amorphous regions in the direction of extrusion. A study was undertaken to investigate if reduced contact surface arising from alteration of pore size alters biocompatibility (complement activation (C3a and C5a) and neutropenia) and solute transport. The average pore size for the membrane studied (RC HP400A) was 7.23 compared to 2.76 nm for the standard membrane (Cuprophan). C3a levels rose to 6861+/-1595 compared to 2723+/-1228 ng/ml for Cuprophan at 15 min after initial blood contact (P < 0.0001). C5a levels also rose to 30.1+/-11.9 compared to 21.3+/-6.6 ng/ml for Cuprophan (P = 0.18). Both fractions gradually returned to baseline levels thereafter. Circulating white cell count fell rapidly over the same time period to 39+/-17% of the baseline value by 15 min and was similar to Cuprophan (27.5+/-11.2%) (P = 0.25). A small (< 10%) change in platelet numbers was noted for both membranes. Removal of urea (60 Da) was independent of pore size; however, the RC HP400A removed r2 microglobulin (11818 Da). These findings indicate that pore distribution fails to influence material-induced complement activation but influences large solute transport.
机译:再生的纤维素膜含有在挤出方向上具有结晶和非晶区的纤维素链。进行了一项研究,以调查由孔径变化引起的接触面减少是否会改变生物相容性(补体激活(C3a和C5a)和中性粒细胞减少症)和溶质转运。研究膜(RC HP400A)的平均孔径为7.23,而标准膜(Cuprophan)的平均孔径为2.76 nm。 C3a水平上升至6861 +/- 1595,而最初的血液接触后15分钟时,铜磷的水平为2723 +/- 1228 ng / ml(P <0.0001)。 C5a水平也上升至30.1 +/- 11.9,而铜黄磷的水平为21.3 +/- 6.6 ng / ml(P = 0.18)。此后,这两个部分逐渐恢复到基线水平。循环白细胞计数在同一时间段内迅速下降,到15分钟时降至基线值的39 +/- 17%,与Cuprophan(27.5 +/- 11.2%)相似(P = 0.25)。两种膜的血小板数量都有很小的变化(<10%)。尿素(60 Da)的去除与孔径无关。但是,RC HP400A去除了r2微球蛋白(11818 Da)。这些发现表明孔的分布不能影响材料诱导的补体活化,但会影响大的溶质转运。

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