Kameneva M V, Antaki J F, Borovetz H S, Griffith B P, Butler K C, Yeleswarapu K K, Watach M J, Kormos R L
Artificial Heart and Lung Program, University of Pittsburgh School of Medicine, PA 15219, USA.
ASAIO J. 1995 Jul-Sep;41(3):M457-60.
Clinical experience with circulatory support devices has typically shown alteration of patient blood rheology exhibited through increasing blood viscosity and decreasing erythrocyte deformability. Our hemorheologic studies have additionally shown a remarkable increase in red blood cell (RBC) aggregation in the blood of artificial heart patients as compared to healthy donors. These hemorheologic changes may be caused by mechanical trauma to RBCs. The authors hypothesize that the mechanical trauma process, from a rheologic point of view, could be analogous to an "accelerated" RBC aging process. The hypothesis was examined through in vivo and in vitro experiments on RBCs, age-separated on the basis of density, specifically to identify the rheologic similarities between aged and mechanically traumatized RBCs. Older RBCs demonstrated an increased mechanical fragility, a decreased deformability, and a increased ability to aggregate as compared to younger RBCs. RBCs exposed to mechanical stress demonstrated similar alterations in the same rheologic parameters. Our experiments have also shown that mechanical stress decreases the negative surface charge of RBCs as is known to occur in aged RBCs. Similarities found between the processes of RBC mechanical trauma and senescence enhance our understanding of mechanisms of subhemolytic trauma incurred in assisted circulation. This may improve the design and evaluation of future heart assist devices through minimizing shear induced blood trauma.
循环支持设备的临床经验通常显示,患者血液流变学发生改变,表现为血液粘度增加和红细胞变形性降低。我们的血液流变学研究还表明,与健康供体相比,人工心脏患者血液中的红细胞(RBC)聚集显著增加。这些血液流变学变化可能是由红细胞的机械损伤引起的。作者推测,从流变学角度来看,机械损伤过程可能类似于红细胞“加速”老化过程。通过对基于密度进行年龄分离的红细胞进行体内和体外实验来检验这一假设,以具体确定老化红细胞和机械损伤红细胞之间的流变学相似性。与年轻红细胞相比,老年红细胞表现出机械脆性增加、变形性降低和聚集能力增强。受到机械应力作用的红细胞在相同的血液流变学参数上表现出类似的变化。我们的实验还表明,机械应力会降低红细胞的表面负电荷,这在老化红细胞中也会发生。在红细胞机械损伤和衰老过程中发现的相似性,增强了我们对辅助循环中发生的亚溶血损伤机制的理解。这可能通过最小化剪切诱导的血液损伤来改进未来心脏辅助设备的设计和评估。