Department of Physiology and Pharmacology, Tel Aviv University, Tel Aviv, Israel.
Clin Hemorheol Microcirc. 2009;43(4):309-19. doi: 10.3233/CH-2009-1242.
In this study, the human RBC capillary flow has been modeled by passing 11 microl of RBC suspension (Hematocrit = 6%) in phosphate buffer solution (PBS) of a viscosity of 1 and 2.6 cP (in the presence of 2% Dextran) through 5 microm pore diameter polycarbonate Nuclepore filters. We have developed a digitally controlled experimental system for measuring the RBC filterability at a constant driving pressure, in the range of 10-400 Pa, producing a wall shear stress range of 1-50 Pa. The RBC filterability was evaluated by measuring the cell suspension flow rate normalized by the PBS flow rate. The RBC filterability has been found to be a nonlinear function of the driving pressure, having a single minimum locus at 25 Pa. Lowering the driving pressure below 25 Pa revealed an unexpected increase of the RBC filterability.The maximal RBC filterability (near unity) was detected at the lowest driving pressure (10 Pa) and the corresponding estimated RBC linear velocity while traveling through the capillary pore was as high as 800 microm/s. Increasing the driving pressure above 25 Pa confirmed previous results, where RBC filterability is monotonically and asymptotically increasing. Increasing the PBS medium viscosity from 1 to 2.26 cP significantly attenuated the RBC filterability and led to the anomalous increase of RBC deformability at the 10 Pa pressure range. We propose that the anomalous increase in RBC deformability was caused by RBCs undergoing spontaneous mechanical fluctuations.
在这项研究中,通过在粘度为 1 和 2.6 cP 的磷酸盐缓冲溶液(PBS)中通过 5 微米孔径聚碳酸酯 Nuclepore 过滤器传递 11 微升 RBC 悬浮液(Hct = 6%),模拟了人 RBC 毛细血管流。我们已经开发了一种数字控制的实验系统,用于在恒定驱动压力下测量 RBC 的滤过性,压力范围为 10-400 Pa,产生 1-50 Pa 的壁剪切应力范围。通过测量细胞悬浮液流速与 PBS 流速的归一化来评估 RBC 的滤过性。发现 RBC 的滤过性是驱动压力的非线性函数,在 25 Pa 处具有单个最小轨迹。将驱动压力降低到 25 Pa 以下会导致 RBC 滤过性出人意料地增加。在最低驱动压力(10 Pa)下检测到最大 RBC 滤过性(接近 1),并且 RBC 在毛细血管孔中行进时的相应估计 RBC 线性速度高达 800 微米/秒。将驱动压力增加到 25 Pa 以上证实了先前的结果,其中 RBC 滤过性单调且渐近增加。将 PBS 介质粘度从 1 增加到 2.26 cP 会显著减弱 RBC 的滤过性,并导致在 10 Pa 压力范围内 RBC 变形性的异常增加。我们提出,RBC 变形性的异常增加是由 RBC 自发发生机械波动引起的。