Wiegmann Lena, de Zélicourt Diane A, Speer Oliver, Muller Alissa, Goede Jeroen S, Seifert Burkhardt, Kurtcuoglu Vartan
The Interface Group, Institute of Physiology, University of Zurich, Zurich, Switzerland.
National Center of Competence in Research, Kidney.CH, Zurich, Switzerland.
Front Physiol. 2017 Sep 29;8:731. doi: 10.3389/fphys.2017.00731. eCollection 2017.
The ability to characterize the mechanical properties of erythrocytes is important in clinical and research contexts: to diagnose and monitor hematologic disorders, as well as to optimize the design of cardiovascular implants and blood circulating devices with respect to blood damage. However, investigation of red blood cell (RBC) properties generally involves preparatory and processing steps. Even though these impose mechanical stresses on cells, little is known about their impact on the final measurement results. In this study, we investigated the effect of centrifuging, vortexing, pipetting, and high pressures on several markers of mechanical blood damage and RBC membrane properties. Using human venous blood, we analyzed erythrocyte damage by measuring free hemoglobin, phosphatidylserine exposure by flow cytometry, RBC deformability by ektacytometry and the parameters of a complete blood count. We observed increased levels of free hemoglobin for all tested procedures. The release of hemoglobin into plasma depended significantly on the level of stress. Elevated pressures and centrifuging also altered mean cell volume (MCV) and mean corpuscular hemoglobin (MCH), suggesting changes in erythrocyte population, and membrane properties. Our results show that the effects of blood handling can significantly influence erythrocyte damage metrics. Careful quantification of this influence as well as other unwanted secondary effects should thus be included in experimental protocols and accounted for in clinical laboratories.
在临床和研究背景下,表征红细胞力学特性的能力很重要:用于诊断和监测血液系统疾病,以及优化心血管植入物和血液循环装置的设计以减少对血液的损伤。然而,对红细胞(RBC)特性的研究通常涉及制备和处理步骤。尽管这些步骤会对细胞施加机械应力,但人们对其对最终测量结果的影响知之甚少。在本研究中,我们研究了离心、涡旋、移液和高压对机械性血液损伤的几个标志物以及红细胞膜特性的影响。使用人体静脉血,我们通过测量游离血红蛋白来分析红细胞损伤,通过流式细胞术检测磷脂酰丝氨酸暴露情况,通过激光衍射法检测红细胞变形性以及进行全血细胞计数的各项参数。我们观察到所有测试程序的游离血红蛋白水平均有所升高。血红蛋白释放到血浆中的量显著取决于应力水平。高压和离心还改变了平均红细胞体积(MCV)和平均红细胞血红蛋白含量(MCH),表明红细胞群体和膜特性发生了变化。我们的结果表明,血液处理的影响会显著影响红细胞损伤指标。因此,在实验方案中应仔细量化这种影响以及其他不必要的次要影响,并在临床实验室中予以考虑。