Stuard S, Bonomini M, Settefrati N, Albertazzi A
Institute of Nephrology, Department of Medicine and Aging, G. D'Annunzio University, Chieti, Italy.
Int J Artif Organs. 1998 Feb;21(2):75-82.
Platelet interaction with neutrophils may occur to a significant degree during hemodialysis (HD). We have recently shown that the enhanced neutrophil reactive oxygen species (ROS) production during the early phase of HD with cuprophan (CUP) is sustained by neutrophils which have bound platelets through P-selectin (CD62P). The evaluation of platelet-neutrophil interactions during dialysis offers the novel aspect of cell-cell interactions as a new parameter for studying the biocompatibility of dialyzer membranes. By the use of flow cytometry techniques, the present study was set up to analyze intradialytic platelet-neutrophil coaggregate formation and neutrophil ROS (hydrogen peroxide) production from 6 HD patients each dialysed with CUP, cellulose diacetate (CDA), polymethylmethacrylate (PMMA), and polyacrylonitrile (PAN) in a cross-over clinical trial. Platelet-neutrophil coaggregate formation (percentage of neutrophil cells positive for CD62P) and ROS production by neutrophils (total population; CD62P+ cells; CD62P- cells) were determined before HD and after 10', 20'and 40'. CD62P+ neutrophils significantly increased during HD with CUP (10', 20', 40'), PMMA (20') and CDA (20), while no change was observed with PAN. The difference between CUP and the other membranes was significant at 10', 20' and 40'; at 20', PMMA vs PAN p<0.005. ROS production by total neutrophil population significantly increased with CUP (10', 20), PMMA (20) and CDA (20'). The increase with CUP was higher at 10' when compared to CDA (p<0.020) or PAN (p<0.005), and at 20' versus the other three membranes; at 20' PMMA vs PAN p<0.005. Only neutrophils gated in neutrophil-platelet coaggregate areas (CD26P+ neutrophils) produced hydrogen peroxide. ROS production by CD62P+ neutrophils significantly increased with CUP (10', 20), PMMA (20') and CDA (20'). The increase with CUP was significantly (p<0.0002) higher than the other three membranes at 10' and 20'; at 20', PMMA vs PAN p<0.02. With each membrane, ROS production by CD62P- neutrophils showed no significant change at any time point during HD. The results of the present study indicate that interactions between platelets and neutrophils can mediate some pathophysiological abnormalities associated with hemodialysis treatment. Our data show that cellulose diacetate, a modified cellulosic membrane, exhibits a biocompatibility profile in terms of platelet-neutrophil interactions improved as compared to the parent cellulose membrane and comparable to that of some synthetic membranes. Our data also show that there is considerable variability in the biocompatibility of synthetic membranes. Though cellulosic membranes are generally considered as being less biocompatible than synthetic membranes, our results indicate that classification of membranes by biocompatibility is more complex than a simple division into cellulosic and synthetic membranes, especially with the advent of modified cellulosic membranes.
在血液透析(HD)过程中,血小板与中性粒细胞之间可能会发生显著程度的相互作用。我们最近发现,在用铜仿膜(CUP)进行血液透析早期,中性粒细胞活性氧(ROS)生成增强,这是由通过P-选择素(CD62P)结合了血小板的中性粒细胞维持的。评估透析过程中的血小板-中性粒细胞相互作用,为细胞间相互作用提供了一个新的研究方向,可作为研究透析器膜生物相容性的一个新参数。本研究利用流式细胞术技术,在一项交叉临床试验中,对6例分别使用CUP、二醋酸纤维素(CDA)、聚甲基丙烯酸甲酯(PMMA)和聚丙烯腈(PAN)进行透析的HD患者透析期间的血小板-中性粒细胞共聚集形成以及中性粒细胞ROS(过氧化氢)生成进行分析。在透析前以及透析10分钟、20分钟和40分钟后,测定血小板-中性粒细胞共聚集形成(CD62P阳性中性粒细胞的百分比)以及中性粒细胞的ROS生成(总体;CD62P+细胞;CD62P-细胞)。在用CUP透析时(10分钟、20分钟、40分钟)、PMMA透析时(20分钟)和CDA透析时(20分钟),CD62P+中性粒细胞显著增加,而用PAN透析时未观察到变化。CUP与其他膜之间的差异在10分钟、20分钟和40分钟时显著;在20分钟时,PMMA与PAN相比,p<0.005。中性粒细胞总体的ROS生成在用CUP透析时(10分钟、20分钟)、PMMA透析时(20分钟)和CDA透析时(20分钟)显著增加。与CDA相比(p<0.020)或与PAN相比(p<0.005),CUP在10分钟时的增加更高,在20分钟时与其他三种膜相比也更高;在20分钟时,PMMA与PAN相比,p<0.005。只有位于中性粒细胞-血小板共聚集区域的中性粒细胞(CD26P+中性粒细胞)产生过氧化氢。CD62P+中性粒细胞的ROS生成在用CUP透析时(10分钟、20分钟)、PMMA透析时(20分钟)和CDA透析时(20分钟)显著增加。与其他三种膜相比,CUP在10分钟和20分钟时的增加显著更高(p<0.0002);在20分钟时,PMMA与PAN相比,p<0.02。对于每种膜,CD62P-中性粒细胞的ROS生成在透析期间的任何时间点均未显示出显著变化。本研究结果表明,血小板与中性粒细胞之间的相互作用可介导一些与血液透析治疗相关的病理生理异常。我们的数据表明,二醋酸纤维素作为一种改性纤维素膜,在血小板-中性粒细胞相互作用方面表现出的生物相容性,与母体纤维素膜相比有所改善,且与一些合成膜相当。我们的数据还表明,合成膜的生物相容性存在相当大的变异性。尽管纤维素膜通常被认为比合成膜的生物相容性差,但我们的结果表明,根据生物相容性对膜进行分类比简单地分为纤维素膜和合成膜更为复杂,尤其是随着改性纤维素膜的出现。