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连续流泵送对小牛红细胞体积和血红蛋白浓度、黏弹性和机械脆性的改变。

Alterations in red blood cell volume and hemoglobin concentration, viscoelastic properties, and mechanical fragility caused by continuous flow pumping in calves.

机构信息

Department of Artificial Organs, Tokyo Medical and Dental University Graduate School of Medical and Dental Sciences, Tokyo, Japan.

出版信息

Artif Organs. 2011 Aug;35(8):791-9. doi: 10.1111/j.1525-1594.2011.01317.x.

Abstract

In this study, we have analyzed the changes in mean corpuscular volume (MCV), mean corpuscular hemoglobin concentration (MCHC), and the dynamic deformability and mechanical fragility of red blood cells (RBCs) in five male Holstein calves (body weight: 95.6 ± 10.8 kg) whose circulation was partially supported with a novel magnetically levitated extracorporeal centrifugal blood pump MedTech Dispo. One hour after the pumping has started, the MCV increased and the MCHC decreased by 1.064 ± 0.006 and 0.906 ± 0.050 times, respectively, as compared with those of the prepumped blood (P < 0.05). The deformability index L/W, where L and W are the long and short axes of the two-dimensional RBC images, respectively, sheared by a cyclically reversing shear flow increased indicating that the RBCs pumped for 1 h exhibited more elastic characteristics (P < 0.05). In addition, when the pumped blood cells were sheared for 30 min with a uniform shear stress of 25.38 Pa, the hemolysis level decreased dramatically as compared with the control blood, as more fragile RBCs were destroyed by pumping, leaving behind less fragile RBCs. All these characteristics of the RBCs exposed to continuous flow resemble those of young RBCs having larger MCV, lower MCHC, higher elasticity, and lower fragility. In conclusion, during continuous flow pumping, the RBCs having relatively lower threshold for hemolysis to mechanical shear stress generated by continuous flow blood pump (CFBP) are destroyed first and removed from circulation in the early stage of application of CFBP, thus leaving behind less fragile and stronger RBCs.

摘要

在这项研究中,我们分析了 5 头荷斯坦公犊(体重:95.6±10.8kg)循环部分由新型磁悬浮体外离心血泵 MedTech Dispo 支持时,平均红细胞体积(MCV)、平均红细胞血红蛋白浓度(MCHC)以及红细胞(RBC)的动态变形性和机械脆性的变化。在开始泵送 1 小时后,MCV 增加,MCHC 分别下降 1.064±0.006 和 0.906±0.050 倍,与预泵送血液相比(P<0.05)。由周期性反转剪切流剪切的二维 RBC 图像的长轴(L)和短轴(W)的变形指数 L/W 增加,表明泵送 1 小时的 RBC 表现出更具弹性的特性(P<0.05)。此外,当用 25.38Pa 的均匀剪切应力剪切泵送血细胞 30 分钟时,与对照血液相比,溶血水平显著降低,因为更多脆弱的 RBC 被泵送破坏,留下更少脆弱的 RBC。暴露于连续流动的 RBC 的所有这些特征与具有较大 MCV、较低 MCHC、较高弹性和较低脆性的年轻 RBC 相似。总之,在连续流动泵送过程中,对由连续流动血泵(CFBP)产生的机械剪切应力具有较低溶血阈值的 RBC 首先被破坏,并在应用 CFBP 的早期从循环中被清除,从而留下较少脆弱和更强壮的 RBC。

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